Page last updated: 2024-12-05

hematoporphyrin

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Description

Hematopophyrin (Hp) is a naturally occurring porphyrin derivative that can be extracted from blood or synthesized chemically. It is a photosensitizer, meaning it absorbs light and then transfers energy to nearby molecules, leading to various chemical reactions. Hp has been extensively studied for its potential applications in photodynamic therapy (PDT) for treating cancer. In PDT, Hp is administered to a patient, and the tumor cells accumulate the compound. Then, the tumor is irradiated with a specific wavelength of light, which activates Hp and generates reactive oxygen species that damage and destroy the cancer cells. Hp also exhibits other biological activities, such as anti-inflammatory and antiviral effects. Research continues to investigate the use of Hp in PDT, as well as other potential therapeutic applications. '

Hematoporphyrins: Iron-free derivatives of heme with 4 methyl groups, 2 hydroxyethyl groups and 2 propionic acid groups attached to the pyrrole rings. Some of these PHOTOSENSITIZING AGENTS are used in the PHOTOTHERAPY of malignant NEOPLASMS. [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

hematoporphyrin : A dicarboxylic acid that is protoporphyrin in which the vinyl groups at positions 7 and 12 are replaced by 1-hydroxyethyl groups. [Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Cross-References

ID SourceID
PubMed CID11103
CHEMBL ID317840
CHEMBL ID403729
CHEBI ID36162
SCHEMBL ID15669
SCHEMBL ID15670
SCHEMBL ID1649168
MeSH IDM0010060

Synonyms (92)

Synonym
CHEMBL317840
haemaporphyrin
SDCCGMLS-0066934.P001
SPECTRUM5_000763
nsc-59265
SPECTRUM_001204
SPECTRUM4_001942
BSPBIO_002820
wln: t d5 i5 n5-16-5 a d- i- n- am d-n i-m n-nj eyq f j k2vq o2vq tyq u
1,5,8-tetramethyl-2,4-bis(.alpha.-hydroxyethyl)prophine-6,7-dipropionic acid
hematoporphyrin ix
14459-29-1
21h,18-dipropanoic acid, 7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-
hematoporphyrin
photodyn
nsc-267084
nsc267084
hp
2, 7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-
nsc 59265
hematoporphyrin i
3-[(1z,4z,9z,15z)-18-(2-carboxyethyl)-8,13-bis(1-hydroxyethyl)-3,7,12,17-tetramethyl-21,23-dihydroporphyrin-2-yl]propanoic acid
NSC59265 ,
1,3,5,8-tetramethyl-2,4-bis(alpha-hydroxyethyl)prophine-6,7-dipropionic acid
21h,23h-porphine-2,18-dipropanoic acid, 7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-
einecs 238-450-7
hp (van)
nsc 267084
7,12-bis(1-hydroxyethyl)-2,8,13,17-tetramethyl-21h,23h-porphin-2,18-dipropionsaeure
2,4-bis(1-hydroxyethyl)-1,3,5,8-tetramethyl-5,7-porphindipropionsaeure
2,18-porphinedipropionic acid, 7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl- (van)
2,18-porphinedipropionic acid, 7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-
brn 0078957
KBIO2_004252
KBIO3_002040
KBIOSS_001684
KBIO2_006820
KBIO2_001684
KBIOGR_002346
SPECTRUM3_001110
SPBIO_000452
SPECTRUM2_000436
haematoporphyrin
7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethylporphyrin-2,18-dipropanoic acid
7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-21h,23h-porphine-2,18-dipropanoic acid
CHEBI:36162 ,
CHEMBL403729
hemoporfin
3-[18-(2-carboxyethyl)-8,13-bis(1-hydroxyethyl)-3,7,12,17-tetramethyl-22,23-dihydroporphyrin-2-yl]propanoic acid
KFKRXESVMDBTNQ-UHFFFAOYSA-N
A808241
NCGC00185009-01
NCGC00185009-02
136752-88-0
photosan 3
hbt6m5h379 ,
hematoporphyrins
unii-hbt6m5h379
FT-0626879
CCG-214649
HY-B0754
SCHEMBL15669
SCHEMBL15670
hematoporphyrin [mi]
hemoporfin [who-dd]
21h,23h-porphine-2,18-dipropanoic acid, 7(or 12)-(1-hydroxyethyl)-12(or 7)-(1-methoxyethyl)-3,8,13,17-tetramethyl-
hematoporphyrin [who-dd]
SCHEMBL1649168
1,3,5,8-tetramethyl-2,4-bis(.alpha.-hydroxyethyl)prophine-6,7-dipropionic acid
GATIRTLNRJTHMO-AMPAVEGJSA-N
7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-2,18-porphinedipropionic acid
UJKPHYRXOLRVJJ-AMPAVEGJSA-N
mfcd00005077
SR-05000002762-1
sr-05000002762
hamatoporphyrin
hematoporphyrin_i
J-007971
1,3,5,8-tetramethyl-2,4-bis( -hydroxyethyl)porphine-6,7-dipropionic acid
1,3,5,8-tetramethyl-2,4-bis( -hydroxyethyl)porphine-6,7-dipropionate
1,3,5,8-tetramethyl-2,4-bis(a-hydroxyethyl)porphine-6,7-dipropionic acid
1,3,5,8-tetramethyl-2,4-bis(a-hydroxyethyl)porphine-6,7-dipropionate
hpix
1,3,5,8-tetramethyl-2,4-bis(alpha-hydroxyethyl)prophine-6,7-dipropionate
7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethyl-2,18-porphinedipropionate
photodyn and 8,13-bis(1-hydroxyethyl)-3,7,12,17-tetramethyl-21h,23h-porphine-2,18-dipropionic acid
AS-78345
hematoporphyrin base cas 14459-29-1
DTXSID901030645
DTXSID00864508
3,3'-[7,12-bis(1-hydroxyethyl)-3,8,13,17-tetramethylporphyrin-2,18-diyl]dipropanoic acid
PD148961

Research Excerpts

Overview

Hematoporphyrin derivative is a solution containing a complex mixture of dicarboxylic porphyrins.

ExcerptReferenceRelevance
"Hematoporphyrin derivative is a solution containing a complex mixture of dicarboxylic porphyrins such as hematoporphyrin IX, monohydroxyethyl monovinyl deuteroporphyrin isomers, and protoporphyrin IX in addition to porphyrin aggregates of variable molecular sizes."( Solid-phase purification and analysis of dicarboxylic porphyrins extracted from cultured tumor cells.
Garbo, GM; Keck, RW; Kramer, JB; Kreimer-Birnbaum, M; Selman, SH, 1985
)
0.99

Effects

Hematoporphyrin derivative has been shown to selectively localize in malignant tissues and chemically induced animal papillomas. Hematopmorphyrin derivatives have been recommended for photodynamic therapy of malignant processes.

ExcerptReferenceRelevance
"Hematoporphyrin derivative has an affinity for malignant tissue and emits a red fluorescence when exposed to excitatory light. "( [A diagnostic imaging system for cancer localization using an excimer dye laser].
Aizawa, K; Kato, H; Kawate, N; Kinoshita, K; Konaka, C; Nishimiya, K; Noguchi, M; Okitsu, H; Shinohara, H; Yoneyama, K, 1986
)
1.71
"Hematoporphyrin derivative has been shown to lend reproducible results in the study of tumor fluorescence."( Potential applications of photoradiation therapy in head and neck surgery.
Atiyah, RA; Berktold, RE; Ossoff, RH; Pelzer, HJ; Sisson, GA, 1984
)
0.99
"Hematoporphyrin derivatives have been recommended for photodynamic therapy of malignant processes. "( Embryotoxicity of TPPS4 and PS 3 photosensitizers in chicken embryo under different light conditions.
Jirsa, M; Klepácek, I; Peterka, M, 2001
)
1.75
"Hematoporphyrin derivative has been shown to selectively localize in malignant tissues and chemically induced animal papillomas. "( Hematoporphyrin derivative therapy of papillomas. Experimental study.
Abramson, AL; Shikowitz, MJ; Steinberg, BM, 1986
)
3.16
"Hematoporphyrin derivative has an affinity for malignant tissue and emits a red fluorescence when exposed to excitatory light. "( [A diagnostic imaging system for cancer localization using an excimer dye laser].
Aizawa, K; Kato, H; Kawate, N; Kinoshita, K; Konaka, C; Nishimiya, K; Noguchi, M; Okitsu, H; Shinohara, H; Yoneyama, K, 1986
)
1.71

Treatment

ExcerptReferenceRelevance
"Treatment with hematoporphyrin followed by irradiation with light can destroy glioma cells in culture in less than 8 min and gliomas growing s.c."( Photochemotherapy of glioma cells by visible light and hematoporphyrin.
Diamond, I; Granelli, SG; McDonagh, AF; Nielsen, SL; Wilson, CB, 1975
)
0.84

Toxicity

ExcerptReferenceRelevance
" Coronary irradiation at less than 200 J/cm2 appears to be safe for photodynamic treatment of atherosclerotic lesions."( In vivo canine coronary artery laser irradiation: photodynamic therapy using dihematoporphyrin ether and 632 nm laser. A safety and dose-response relationship study.
Chang-Zong, C; Fox, J; Hammond, EH; Johnson, MD; Mackie, RW; Orme, EC; Vincent, GM, 1991
)
0.51
"The toxic and phototoxic effects of tetraphenylporphinesulphonate (TPPS4) and haematoporphyrin derivative (HpD) have been examined in vitro."( Toxic and phototoxic effects of tetraphenylporphinesulphonate and haematoporphyrin derivative in vitro.
Evensen, JF; Moan, J; Winkelman, JW, 1987
)
0.27
" Hematoporphyrin D produced toxic deaths at doses of 37."( Phototoxicity of the chemotherapeutic agents hematoporphyrin D, meso-tetra(p-sulfophenyl)porphine and zinc-tetra(p-sulfophenyl)porphine.
Grenan, M; Tsutsui, M; Wysor, M, 1980
)
1.43
"To elucidate the mechanism of phototoxicity induced as a side effect by some of the new quinolone antibiotics, we studied sparfloxacin (SPFX), lomefloxacin, enoxacin, ofloxacin, and ciprofloxacin."( Participation of reactive oxygen species in phototoxicity induced by quinolone antibacterial agents.
Arakane, K; Hirobe, M; Mashiko, S; Nagano, T; Ryu, A; Umezawa, N, 1997
)
0.3
" The changes in two characteristics of neurite outgrowth, the mean radial length of neurites growing out from the ganglia and the area of neurite outgrowths, are used as parameters to evaluate the toxic effect."( Neurotoxicity of tetraphenylporphinesulfonate (TPPS4) and a hematoporphyrin derivative (Photosan) in organotypic cultures of chick embryonic dorsal root ganglia.
Jirsa, M; Jirsová, K; Mandys, V; Vrana, J, 1998
)
0.54
" Treatment reactions and adverse events (AE) were recorded separately."( Efficacy and safety of hemoporfin in photodynamic therapy for port-wine stain: a multicenter and open-labeled phase IIa study.
Gu, Y; Tao, J; Tu, P; Zhao, Y; Zheng, Q; Zhou, G; Zhou, Z; Zhu, X, 2011
)
0.37
"Hemoporfin-PDT is effective and safe for patients with PWS aged 16-50."( Efficacy and safety of hemoporfin in photodynamic therapy for port-wine stain: a multicenter and open-labeled phase IIa study.
Gu, Y; Tao, J; Tu, P; Zhao, Y; Zheng, Q; Zhou, G; Zhou, Z; Zhu, X, 2011
)
0.37
"To evaluate treatment responses and adverse effects associated with Hemoporfin PDT for the treatment of PWS and their management."( Adverse effects associated with photodynamic therapy (PDT) of port-wine stain (PWS) birthmarks.
Gao, JH; Huang, Z; Yuan, KH, 2012
)
0.38
" Treatment-related reactions and adverse effects were reviewed."( Adverse effects associated with photodynamic therapy (PDT) of port-wine stain (PWS) birthmarks.
Gao, JH; Huang, Z; Yuan, KH, 2012
)
0.38
" pigmentation change, scar formation) adverse effects were generally caused by the phototoxicity associated with the combination of photosensitizer and light exposure."( Adverse effects associated with photodynamic therapy (PDT) of port-wine stain (PWS) birthmarks.
Gao, JH; Huang, Z; Yuan, KH, 2012
)
0.38
"Although PDT is a safe treatment alternative for PWS birthmarks, treatment parameters must be selected for each individual patient and cutaneous changes must be monitored during light irradiation to minimize the risk of adverse effects."( Adverse effects associated with photodynamic therapy (PDT) of port-wine stain (PWS) birthmarks.
Gao, JH; Huang, Z; Yuan, KH, 2012
)
0.38
" These findings suggest that PBP is safe in vivo and has potential as a new therapy for inactivating blood-borne microorganisms."( Preliminary safety evaluation of photodynamic therapy for blood purification: an animal study.
Chen, H; Kong, D; Li, Y; Wang, W; Yin, H; Zhang, G, 2014
)
0.4
" The stains' blanching degree and occurrence of adverse events were registered."( Efficacy and safety of hemoporfin photodynamic therapy for port-wine stains in paediatric patients: A retrospective study of 439 cases at a single centre.
Can, L; Chun-Hua, T; Guang-Hui, W; Hua, W; Jian, Z; Li, L; Li-Qiang, G; Si-Li, N; Xiao-Yan, L; Yi, W, 2021
)
0.62
" No photosensitivity or systemic adverse reactions were observed."( Efficacy and safety of hemoporfin photodynamic therapy for port-wine stains in paediatric patients: A retrospective study of 439 cases at a single centre.
Can, L; Chun-Hua, T; Guang-Hui, W; Hua, W; Jian, Z; Li, L; Li-Qiang, G; Si-Li, N; Xiao-Yan, L; Yi, W, 2021
)
0.62

Compound-Compound Interactions

Hematoporphyrin monomethyl ether (HMME) combined with He-Ne laser irradiation is a novel and promising photodynamic therapy (PDT)-induced apoptosis.

ExcerptReferenceRelevance
"The mechanism of cell damage by ultrasound in combination with hematoporphyrin was studied."( Mechanism of cell damage by ultrasound in combination with hematoporphyrin.
Nishigaki, R; Umemura, K; Umemura, S; Yumita, N, 1990
)
0.76
" This study suggests that photodynamic therapy may have an important role in combination with operation and other modalities in advanced lung cancers."( Preoperative laser photodynamic therapy in combination with operation in lung cancer.
Kato, H; Kawate, N; Kito, T; Konaka, C; Nishimiya, K; Noguchi, M; Ono, J; Saito, M; Sakai, H; Shinohara, H, 1985
)
0.27
" The synergistic effect was especially prominent when PDT was used in combination with a low dose of MMC (1 mg kg-1), since treatment of 1 mg kg-1 MMC alone had no effect on the tumour."( Anti-tumour activity of photodynamic therapy in combination with mitomycin C in nude mice with human colon adenocarcinoma.
Iani, V; Ma, LW; Moan, J; Steen, HB, 1995
)
0.29
"The main goal of this work is to investigate the killing effects and molecular mechanism of photodynamic therapy (PDT) mediated by the Ad5/F35-APE1 siRNA recombinant adenovirus in combination with a hematoporphrphyrin derivative (HpD) in the A549 human lung adenocarcinoma cell line in vitro to provide a theoretical reference for treating lung cancer by HpD-PDT."( Killing effect of Ad5/F35-APE1 siRNA recombinant adenovirus in combination with hematoporphrphyrin derivative-mediated photodynamic therapy on human nonsmall cell lung cancer.
Guan, W; Li, ZP; Wang, D; Wang, G; Xia, L; Yang, ZZ; Zeng, LL; Zhang, YS, 2013
)
0.39
" These results demonstrated that HMME combined with green LED significantly induced apoptosis of Tca8113 cells, suggesting that HMME-PDT using green LED might be a potential therapeutic strategy for human tongue squamous cell carcinoma."( HMME combined with green light-emitting diode irradiation results in efficient apoptosis on human tongue squamous cell carcinoma.
Hu, J; Lai, X; Li, X; Liu, J; Ning, F; Tang, L; Wang, D; Wu, J; Xia, X, 2015
)
0.42
"Hematoporphyrin monomethyl ether (HMME) combined with He-Ne laser irradiation is a novel and promising photodynamic therapy (PDT)-induced apoptosis that can be applied in vitro on canine breast cancer cells."( Hematoporphyrin monomethyl ether combined with He-Ne laser irradiation-induced apoptosis in canine breast cancer cells through the mitochondrial pathway.
Bao, J; Li, H; Liu, Y; Tang, D; Tian, W; Tong, J, 2016
)
3.32
"To investigate the acute effect of a variable pulse width Nd:YAG laser combined with hematoporphyrin monomethyl ether (HMME)-mediated photodynamic therapy (PDT) on a cockscomb model of NF."( Acute effect of a variable pulse width Nd:YAG laser combined with hematoporphyrin monomethyl ether-mediated photodynamic therapy on a cockscomb model of nevus flammeus.
Liao, M; Lin, L; Luo, C; Ma, K; Qin, Y; Yang, L; Ye, D, 2020
)
1.02

Bioavailability

ExcerptReferenceRelevance
"The present study demonstrates the potential of hematoporphyrin derivative pretreatment in increasing the bioavailability of 2-DG in a mice Ehrlich ascites tumor model."( Optimization of tumor radiotherapy. Part VI: Modification of tumor glucose metabolism for increasing the bioavailability of 2-deoxy-D-glucose (2-DG) in a murine tumor model.
Degaonkar, M; Jain, V; Maitra, A; Raghunathan, P; Sharma, RK; Singh, S, 2000
)
0.56

Dosage Studied

Tests indicated the system could detect a tumor only 100 micron thick at the expected concentration of hematoporphyrin derivative: 1 microgram/gm.

ExcerptRelevanceReference
" The increase is mostly due to a change in the extent of the shoulder of the dose-response curve at low doses."( Photodynamic inactivation of synchronized human cells in vitro in the presence of hematoporphyrin.
Christensen, T; Moan, J, 1979
)
0.49
" Intravenous dosage induced bladder wall oedema/haemorrhage and total necrosis of the epithelium."( Morphological effects of photodynamic therapy on rabbit bladder using Photofrin II and Photosan intravesically and intravenously.
Mokka, R; Rannikko, S; Riihelä, M; Taari, K; Talja, M, 1992
)
0.28
"This study examined the safety and dose-response relationships of 632-nm laser irradiation of photosensitized normal coronary arteries in 27 dogs."( In vivo canine coronary artery laser irradiation: photodynamic therapy using dihematoporphyrin ether and 632 nm laser. A safety and dose-response relationship study.
Chang-Zong, C; Fox, J; Hammond, EH; Johnson, MD; Mackie, RW; Orme, EC; Vincent, GM, 1991
)
0.51
" A dose-response relationship was established between the amount of photosensitizer administered and the light dose delivered with the release of thromboxane immediately following PDT."( Role of thromboxane and prostacyclin release on photodynamic therapy-induced tumor destruction.
Doak, KW; Fingar, VH; Wieman, TJ, 1990
)
0.28
" Dose-response curves were determined for cells incubated in 25 micrograms/ml of Photofrin II for 2 h, followed by exposure to 630-nm light to total energies of 0-3150 J/m2."( Sensitivity of different human lung cancer histologies to photodynamic therapy.
Evans, S; Matthews, W; Mitchell, JB; Pass, HI; Perry, RR; Russo, A, 1990
)
0.28
"Growth and dose-response curves were established for a subcutaneously implanted isogenic fibrosarcoma in BD9 rats after treatment with photochemotherapy (PCT), using Photofrin II or polyhaematoporphyrin with superficial or interstitial 630 nm light, cyclophosphamide or gamma-irradiation."( The response of a rodent fibrosarcoma to superficial/interstitial photochemotherapy, chemotherapy or radiotherapy.
Ash, DV; Brown, SB; Dixon, B; Gilson, D; Vernon, D, 1990
)
0.28
" Similarly at high photosensitiser dosage (25 mg kg-1) there was no quantitative difference between A1SPc and HpD."( The significance of the nature of the photosensitizer for photodynamic therapy: quantitative and biological studies in the colon.
Barr, H; Boulos, PB; Bown, SG; MacRobert, AJ; Tralau, CJ, 1990
)
0.28
" Photofrin II and the argon-dye laser at the highest light dosage (54 J/cm2) and Chlorin e6 monoethylene diamine monohydrochloride administered 2 hours before argon-dye laser irradiation at 655 nm at the highest light dosage (54 J/cm2) produced wart regression."( Laser photodynamic therapy for papilloma viral lesions.
Go, PM; Reed, RN; Straight, RC; Waner, M, 1990
)
0.28
" There was an obvious dose-response relationship between cell damage and photodynamic therapy both for the cellular photofrin II content and the total amount of light energy delivered."( Effect of photofrin II and light energy on retinoblastoma-like cells in vitro. Dose-response relationships, effect of light dose rate and recovery ratio.
Winther, J, 1989
)
0.28
" There was a marked dose-response relationship between Photofrin II and the light energy both in vitro and in vivo."( Experimental studies of photodynamic therapy in a retinoblastoma-like tumour.
Overgaard, J; Winther, J, 1987
)
0.27
" Previous, less exact methods relied on specifying the drug dosage and delay after injection and or the irradiance at the surface or power from an interstitial fiber."( Dose measurements in photodynamic therapy of cancer.
Doiron, DR; Profio, AE, 1987
)
0.27
" Animals that failed to show a lesion were cats characterized by low Photofrin II dosage and low photoactivation intensity."( Photodynamic therapy of normal cerebral tissue in the cat: a noninvasive model for cerebrovascular thrombosis.
Chopp, M; Glasberg, MR; Hetzel, FW; Riddle, JM; Welch, KM, 1987
)
0.27
" Phototoxicity dose-response curves of the sensitizers were completed using a standard clonogenic assay to determine cell viability."( In vitro characterization of monoaspartyl chlorin e6 and diaspartyl chlorin e6 for photodynamic therapy.
Berns, MW; Nelson, JS; Roberts, WG; Shiau, FY; Smith, KM, 1988
)
0.27
" The 3H-HPD level in gliomas was consistently 2-3 X greater than in brain tissue, despite changes in dosage and time interval."( Penetration of hematoporphyrin derivative into rat brain and intracerebral 9L glioma tissue.
Boisvert, DP; Cheng, MK; Cummins, J; McKean, JD; Tulip, J, 1985
)
0.62
" A technique was devised to obtain dose-response curves for the sensitizer fraction that resists one day of elution by tissue culture medium--the retained fraction."( Photodynamic toxicity of porphyrins and chlorins for a human tumor cell line: combined light and concentration dose responses for the retained fraction.
Jordan, RT; Nourse, WL; Parkhurst, RM; Skinner, WA, 1988
)
0.27
" Separately, 3H-HpD of like dosage was injected into 20 Fischer-344 rats (Group B), 5 control and 15 with a 9L gliosarcoma implanted in the left anterior cerebral cortex."( Observations in studies of quantitative kinetics of tritium labelled hematoporphyrin derivatives (HpDI and HpDII) in the normal and neoplastic rat brain model.
Apuzzo, ML; Gomer, CJ; Hyman, S; Little, FM, 1984
)
0.5
" This was based on a dose-response study for normal tissue damage by photodynamic therapy (PDT) in this animal model, because the underlying rationale was to study photo-detection as a method of locating additional (early) malignancies in patients treated by PDT."( In vivo photo-detection of chemically induced premalignant lesions and squamous cell carcinoma of the rat palatal mucosa.
Nauta, JM; Nikkels, PG; Roodenburg, JL; Speelman, OC; Star, WM; van Leengoed, HL; Vermey, A; Witjes, MJ, 1997
)
0.3
" Both Ps induced a light dose-dependent impairment of the mitochondrial function with the dose-response curve being steep for ALA and flat for Ph."( Ultrastructural changes in PAM cells after photodynamic treatment with delta-aminolevulinic acid-induced porphyrins or photosan.
Hönigsmann, H; Ortel, B; Radakovic-Fijan, S; Rappersberger, K; Tanew, A, 1999
)
0.3
" The killing effects were positively correlated with the concentration of HpD and the dosage of laser irradiation."( [Hematoporphyrin derivative-mediated photodynamic therapy for human colon carcinoma: a comparative study with LoVo and CoLo205 cells in vitro].
Geng, XZ; Ma, HJ; Yang, XM; Zhang, XR, 2007
)
1.25
" Over estimation of required light dosage or failure to recognize cutaneous changes associated with adverse effects can increase the risk of a poor outcome."( Adverse effects associated with photodynamic therapy (PDT) of port-wine stain (PWS) birthmarks.
Gao, JH; Huang, Z; Yuan, KH, 2012
)
0.38
"We evaluated the influence of the photodynamic therapy (PDT) dosage with hematoporphyrin monomethyl ether (HMME) on its therapeutic efficacy in a rabbit model of in situ rectal cancer."( Evaluation of the effect of photodynamic therapy with hematoporphyrin monomethyl ether on VX2 tumors implanted in the rectal submucosa of rabbits.
Dong, M; Gao, H; Li, W; Li, Y; Lu, Y; Niu, Q; Shen, J; Shi, L; Wang, C; Wang, H; Yin, H, 2016
)
0.91
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Bioassays (62)

Assay IDTitleYearJournalArticle
AID315523Survival of human H69 cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID588213Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in non-rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID315510Survival of human K562 cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315563Survival of human H209 cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315538Survival of human MDA-MB cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315552Photohemolysis in human RBC at 375 nM under exposure to light for 10 mins2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315511Survival of human K562 cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315557Photohemolysis in human RBC assessed as concentration required to 50% hemolysis under light exposure for 10 mins2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315556Photohemolysis in human RBC assessed as concentration required to 50% hemolysis under light exposure for 5 mins2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315539Survival of human MDA-MB cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315545Cytotoxicity against human K562 cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315536Survival of human 2780.9S cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315519Survival of human HeLa cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315528Survival of human H209 cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315506Survival of human SIHA cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315504Survival of human SIHA cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315529Survival of human H209 cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315549Cytotoxicity against human 2780.9S cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315508Survival of human K562 cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315526Survival of human H69 cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315540Survival of human MDA-MB cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315559Survival of human K562 cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315524Survival of human H69 cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315513Survival of human Raji cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315547Cytotoxicity against human H69 cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315543Cytotoxicity against human Raji cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315565Survival of human MDA-MB cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315514Survival of human Raji cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315530Survival of human H209 cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID588211Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in humans2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID315546Cytotoxicity against human HeLa cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315562Survival of human H69 cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315521Survival of human HeLa cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315525Survival of human H69 cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID588212Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID315533Survival of human 2780.9S cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315564Survival of human 2780.9S cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315544Cytotoxicity against human MDA-MB cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315518Survival of human HeLa cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315515Survival of human Raji cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315520Survival of human HeLa cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315531Survival of human H209 cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315535Survival of human 2780.9S cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315542Cytotoxicity against human SIHA cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315516Survival of human Raji cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315534Survival of human 2780.9S cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315541Survival of human MDA-MB cells at 100 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315503Survival of human SIHA cells at 0.1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315560Survival of human Raji cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315548Cytotoxicity against human Daudi cells under deem light after 96 hrs by MTT assay2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315561Survival of human HeLa cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315558Survival of human SIHA cells at 1 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315505Survival of human SIHA cells at 50 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315550Photohemolysis in human RBC in absence of light2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID315509Survival of human K562 cells at 10 uM under deem light after 96 hrs by MTT assay relative to control2008Bioorganic & medicinal chemistry letters, Jan-01, Volume: 18, Issue:1
Preparation and in vitro biological evaluation of tetrapyrrole ethanolamide derivatives as potential anticancer agents.
AID1594145Inhibition of Escherichia coli GroEL expressed in Escherichia coli DH5alpha/Escherichia coli GroES expressed in Escherichia coli BL21 (DE3) assessed as reduction in GroEL/GroES-mediated denatured rhodanese refolding by measuring rhodanese enzyme activity 2019Bioorganic & medicinal chemistry letters, 05-01, Volume: 29, Issue:9
HSP60/10 chaperonin systems are inhibited by a variety of approved drugs, natural products, and known bioactive molecules.
AID1261564Induction of reactive oxygen generation assessed as quantum yield of singlet oxygen generation in O2 saturated D2O containing 0.1% DMSO by spectrometry2015Journal of medicinal chemistry, Nov-12, Volume: 58, Issue:21
Synthesis, Photophysical Properties, and Biological Evaluation of trans-Bisthioglycosylated Tetrakis(fluorophenyl)chlorin for Photodynamic Therapy.
AID1261566Induction of reactive oxygen generation assessed as quantum yield of hydroxyl radical generation in O2 saturated PBS containing 1% DMSO under photoirradiation by spectrometry relative to control hematoporphyrin2015Journal of medicinal chemistry, Nov-12, Volume: 58, Issue:21
Synthesis, Photophysical Properties, and Biological Evaluation of trans-Bisthioglycosylated Tetrakis(fluorophenyl)chlorin for Photodynamic Therapy.
AID1261565Induction of reactive oxygen generation assessed as quantum yield of hydrogen peroxide generation in O2 saturated PBS containing 1% DMSO under photoirradiation by spectrometry relative to control hematoporphyrin2015Journal of medicinal chemistry, Nov-12, Volume: 58, Issue:21
Synthesis, Photophysical Properties, and Biological Evaluation of trans-Bisthioglycosylated Tetrakis(fluorophenyl)chlorin for Photodynamic Therapy.
AID1594144Inhibition of Escherichia coli GroEL expressed in Escherichia coliDH5alpha/Escherichia coli GroES expressed in Escherichia coli BL21 (DE3) assessed as reduction in GroEL/GroES-mediated denatured soluble pig heart MDH refolding by measuring MDH enzyme acti2019Bioorganic & medicinal chemistry letters, 05-01, Volume: 29, Issue:9
HSP60/10 chaperonin systems are inhibited by a variety of approved drugs, natural products, and known bioactive molecules.
AID1159607Screen for inhibitors of RMI FANCM (MM2) intereaction2016Journal of biomolecular screening, Jul, Volume: 21, Issue:6
A High-Throughput Screening Strategy to Identify Protein-Protein Interaction Inhibitors That Block the Fanconi Anemia DNA Repair Pathway.
AID1224817Assays to identify small molecules inhibitory for eIF4E expression2015Chemistry & biology, Jul-23, Volume: 22, Issue:7
Internal Ribosome Entry Site-Based Bicistronic In Situ Reporter Assays for Discovery of Transcription-Targeted Lead Compounds.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (1,921)

TimeframeStudies, This Drug (%)All Drugs %
pre-19901149 (59.81)18.7374
1990's407 (21.19)18.2507
2000's137 (7.13)29.6817
2010's181 (9.42)24.3611
2020's47 (2.45)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 33.27

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be moderate demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index33.27 (24.57)
Research Supply Index7.63 (2.92)
Research Growth Index4.38 (4.65)
Search Engine Demand Index49.28 (26.88)
Search Engine Supply Index1.96 (0.95)

This Compound (33.27)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials43 (2.13%)5.53%
Reviews91 (4.50%)6.00%
Case Studies74 (3.66%)4.05%
Observational1 (0.05%)0.25%
Other1,811 (89.65%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]