Page last updated: 2024-11-04

curdlan

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Description

D-hexose : A hexose that has D-configuration at position 5. [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 CID206
CHEBI ID167473
CHEBI ID18133
SCHEMBL ID34307
SCHEMBL ID21123450
SCHEMBL ID20094856
SCHEMBL ID23758905
MeSH IDM0115736

Synonyms (104)

Synonym
CHEBI:167473
nsc-8102
nsc8102 ,
galactose, (d)
.beta.-d-glucopyranose
.alpha.-d-galactopyranose
.alpha.-d-galactose
d-glucose anhydrous
9031-11-2
curdlan ,
54724-00-4
hexopyranose
nsc274237
nsc-287045
nsc287045
MOLMAP_000072
9001-37-0
C00738
d-hexose
hexose ,
nsc144657
allopyranose, d-
9010-72-4
an aldopyranose
51DB4B86-692B-40EA-A7AD-4B20C8174CBE
FT-0668994
FT-0694932
FT-0695367
FT-0658143
FT-0661493
6-(hydroxymethyl)oxane-2,3,4,5-tetrol
AKOS000119941
STL163560
BBL012219
FT-0639543
FT-0624557
FT-0624357
FT-0627820
FT-0636415
FT-0622903
d-mannose-6-13c
HMS3373C02
HMS3373E09
FT-0620872
AKOS022061531
AKOS016038567
SCHEMBL34307
478529-73-6
d-[3-2h]galactose
unknown hexose
unknown hexopyranoside
hexopyranoside
unknown hexopyranose
d-[11-13c]talose
6-methyloltetrahydropyran-2,3,4,5-tetrol
35669-34-2
288846-86-6
106032-60-4
beta-d-glucose (contains alpha-d-glucose)
mfcd00066772
SY008815
SY015251
SCHEMBL21123450
FT-0773891
AKOS037503714
SY057403
(2s,3r,4s,5r,6r)-6-(hydroxymethyl)tetrahydro-2h-pyran-2,3,4,5-tetraol
d-[6-13c,6,6'-2h2]glucose
d-[5-13c]galactose
d-[1-13c]gulose
d-[2,5-13c2]glucose
FT-0626726
FT-0772988
VS-03240
42752-07-8
d-[4-2h]galactose
d-mannose-1-c-d
DTXSID80858960 ,
d-[1-13c,1-2h]glucose
SCHEMBL20094856
d-[3-13c]glucose
d-[5-13c]glucose
d-[4,6-13c2]glucose
d-[4,5-13c2]glucose
HMS3744K13
CCG-272298
a pyranose
SB45285
SB44851
SB47940
d-[3-13c]galactose
EN300-33349
SCHEMBL23758905
alpha-d-glucoseanhydrous
d-[1,6-13c2,6,6'-2h2]glucose
glucose oxidase from aspergillus niger,
d-glucose-2-d 97 atom % d
alpha-d-glucopyranose-1,2-13c2 (9ci)
alpha-d-(+)-glucose
SY012757
dtxcid10196988
wurcs=2.0/1,1,0/(axxxxh-1x_1-5_2*ncc/3=o)/1/
chebi:18133
dtxcid40202844

Research Excerpts

Overview

Curdlan is a neutral linear exopolysaccharide produced by Agrobacterium spp. Curdlan induces inflammatory responses via the C-type lectin receptor dectin-1 on dendritic cells (DCs)

ExcerptReferenceRelevance
"Curdlan is a neutral, water-insoluble, unbranched, linear β-(1,3)-glucan. "( Exopolysaccharide synthesis repressor genes (exoR and exoX) related to curdlan biosynthesis by Agrobacterium sp.
Gao, M; Hu, X; Jiang, Y; Li, Z; Liu, Z; Wang, Z; Yan, J; Zhan, X; Zhao, Z; Zheng, Z, 2022
)
2.4
"Curdlan, is a linear beta-1,3-glucan and has the potential to induce immune responses."( Prompting immunostimulatory activity of curdlan with grafting methoxypolyethylene glycol.
Ding, Q; Hu, Y; Li, H; Luo, L; Tang, S; Wang, C; Wang, X; Zhou, Q; Zhou, Z, 2022
)
1.71
"Curdlan is a neutral linear exopolysaccharide produced by Agrobacterium spp. "( Glutamine synthetase gene glnA plays a vital role in curdlan biosynthesis of Agrobacterium sp. CGMCC 11546.
Chang, Z; Gao, H; Huang, J; Huang, Y; Jia, C; Jiang, D; Jin, M; Niu, Y; Tian, J; Wu, S; Yang, X; Zhang, W; Zou, C, 2020
)
2.25
"Curdlan is a water-insoluble exopolysaccharide produced by Agrobacterium species under nitrogen starvation. "( Methionine biosynthesis pathway genes affect curdlan biosynthesis of Agrobacterium sp. CGMCC 11546 via energy regeneration.
Chang, Z; Gao, H; Huang, Y; Jia, C; Jiang, D; Niu, Y; Tian, J; Yang, X; Zhang, J; Zhang, W; Zou, C, 2021
)
2.32
"Curdlan is a water-insoluble microbial exo-polysaccharide that is hardly degraded. "( Effective degradation of curdlan powder by a novel endo-β-1→3-glucanase.
Chen, W; Li, K; Li, S; Tan, H; Wang, W; Yin, H, 2018
)
2.23
"Curdlan is a bacterial polysaccharide that has been of significant recent interest due to its interesting and valuable rheological properties and its inherent bioactivity. "( Properties, chemistry, and applications of the bioactive polysaccharide curdlan.
Edgar, KJ; Zhang, R, 2014
)
2.08
"Curdlan is a 1,3-linked bacterial/fungal derived beta-glucan that induces inflammatory responses via the C-type lectin receptor dectin-1 on dendritic cells (DCs)."( Dectin-1 activation induces proliferation and migration of human keratinocytes enhancing wound re-epithelialization.
Geijtenbeek, TB; Richters, CD; Ulrich, MM; van den Berg, LM; Zijlstra-Willems, EM,
)
0.85
"Curdlan is a bioactive β-1,3-glucan with considerable promise for biomedical applications."( Water-soluble aminocurdlan derivatives by chemoselective azide reduction using NaBH4.
Edgar, KJ; Zhang, R, 2015
)
1.47
"Curdlan is a polysaccharide that consists of β-1,3-linked glucose residues. "( Production and optimization of curdlan produced by Pseudomonas sp. QL212.
Bao, J; Fan, X; Hu, Z; Li, Q; Li, Y; Qu, Y; Wang, Y; Yang, M; Zhu, Y, 2016
)
2.16
"Curdlan is a secondary metabolite synthesized by Agrobacterium sp. "( Enhanced curdlan production with nitrogen feeding during polysaccharide synthesis by Rhizobium radiobacter.
Dong, JJ; Han, RZ; Ni, Y; Wang, XY; Xu, GC, 2016
)
2.29
"Curdlan is a commercial polysaccharide made by fermentation of Agrobacterium sp. "( Metabolic engineering of Agrobacterium sp. ATCC31749 for curdlan production from cellobiose.
Chen, R; Kim, MK; Liu, L; Park, YI; Shin, HD, 2016
)
2.12
"Curdlan is a linear polysaccharide considered a dietary fiber and with gelation properties. "( Description of recovery method used for curdlan produced by Agrobacterium sp. IFO 13140 and its relation to the morphology and physicochemical and technological properties of the polysaccharide.
Bruschi, ML; Fenelon, VC; Ferreira, SB; Koga, LN; Mangolim, CS; Matioli, G; Silva, TT, 2017
)
2.17
"Curdlan is a specific dectin-1 ligand without TLR2- or TLR4-stimulating properties."( Dectin-1 synergizes with TLR2 and TLR4 for cytokine production in human primary monocytes and macrophages.
Adema, GJ; Ferwerda, G; Kullberg, BJ; Meyer-Wentrup, F; Netea, MG, 2008
)
1.07
"Curdlan is a water insoluble exopolysaccharide produced by Alcaligenes faecalis under nitrogen-limiting conditions. "( [Enhanced production of curdlan by Alcaligenes faecalis by selective feeding with ammonia water during the cell growth phase of fermentation].
Liu, H; Wu, J; Zhan, X; Zheng, Z, 2008
)
2.1
"Curdlan is a linear 1,3-β-glucan that has been used extensively to study the nature of these helical structures and gels, and Curdlan sulfates have found ongoing application in the inhibition of HIV infection."( Pharmacological, structural, and drug delivery properties and applications of 1,3-β-glucans.
Gu, FX; Lehtovaara, BC, 2011
)
1.09
"Curdlan is a water-insoluble β-(1,3)-glucan produced by Agrobacterium species under nitrogen-limited condition. "( Recent advances in curdlan biosynthesis, biotechnological production, and applications.
Lin, CC; Zhan, XB; Zhang, HT, 2012
)
2.15
"Curdlan is a microbial polysaccharide composed exclusively of β-(1,3)-linked glucose residues. "( Production of extracellular water-insoluble polysaccharide from Pseudomonas sp.
Cui, JD; Qiu, JQ, 2012
)
1.82
"Curdlan is a water-insoluble β-1,3-glucan reagent, the low cost of which (about 100 JPY/g) allows the economical preparation of beads."( A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads.
Horiuchi, M; Inagaki, F; Kobashigawa, Y; Ochiai, M; Takahasi, K, 2012
)
1.33
"Curdlan is a linear (1→3)-β-glucan and has shown activity against tumors and infectious agents."( Evaluation of the immunomodulatory effect of curdlan on maturation and function of mouse spleen-derived dendritic cells.
Erfani, N; Kalantari, T; Kamali Sarvestani, E; Karimi, MH; Soltani, MH, 2012
)
1.36
"Curdlan is a natural beta-1,3-glucan produced by Agrobacterium biovar 1. "( Anticoagulant activity of sulfoalkyl derivatives of curdlan.
Bae, JH; Kim, BS; Kim, JS; Kim, YS; Kwak, ST; Lee, KB; Yoo, YC, 2001
)
2

Effects

Curdlan has no side chains and self-assembles to form an water-insoluble triple helical structure. schizophyllan, which has a 1,6-D-glucose side chain on every third glucose unit along the main chain, is completely water soluble.

ExcerptReferenceRelevance
"Curdlan has been applied to weaken the quality deterioration of frozen cooked noodles (FCN) during frozen storage. "( Further interpretation of the strengthening effect of curdlan on frozen cooked noodles quality during frozen storage: Studies on water state and properties.
Jia, F; Liang, Y; Liu, M; Qu, Z; Wang, J; Wang, L; Zhan, X; Zhang, X; Zhu, M, 2021
)
2.31
"Curdlan has no side chains and self-assembles to form an water-insoluble triple helical structure, while schizophyllan, which has a 1,6-D-glucose side chain on every third glucose unit along the main chain, is completely water soluble."( Molecular dynamics studies of side chain effect on the beta-1,3-D-glucan triple helix in aqueous solution.
Miyoshi, K; Okobira, T; Sakurai, K; Shinkai, S; Uezu, K, 2008
)
1.07

Treatment

In curdlan-treated SKG mice, arthritis, enthesitis, and ileitis were IL-23 dependent. Curdlan-treatment stimulated the production of IL-17 by alloreactive CD4 (+) T cells more strongly than Poly (I:C)-treated MoDC.

ExcerptReferenceRelevance
"In curdlan-treated SKG mice, arthritis, enthesitis, and ileitis were IL-23 dependent. "( Interleukin-23 mediates the intestinal response to microbial β-1,3-glucan and the development of spondyloarthritis pathology in SKG mice.
Baillet, AC; Benham, H; Brown, MA; Hasnain, SZ; Kikly, K; McGuckin, MA; Rehaume, LM; Ruutu, M; Strutton, G; Thomas, GP; Thomas, R; Tseng, HW; Velasco, J; Wang, R, 2014
)
1.02
"Curdlan-treated MoDC stimulated the production of IL-17 by alloreactive CD4 (+) T cells more strongly than Poly (I:C)-treated MoDC."( Signaling through Toll-like receptor 3 and Dectin-1 potentiates the capability of human monocyte-derived dendritic cells to promote T-helper 1 and T-helper 17 immune responses.
Bozic, B; Colic, M; Dragicevic, A; Dzopalic, T; Tomic, S; Vasilijic, S; Vucevic, D, 2012
)
1.1

Compound-Compound Interactions

The ultrasonic treatment combination with curdlan resulted in a significant improvement (p < 0.0) Compared with the 1 % low-salt group.

ExcerptReferenceRelevance
" ATCC 31749, is the presence of dissolved oxygen (DO) gradients combined with pH control."( Improved curdlan fermentation process based on optimization of dissolved oxygen combined with pH control and metabolic characterization of Agrobacterium sp. ATCC 31749.
English, N; Lin, CC; Wu, JR; Yu, XB; Zhan, XB; Zhang, HT; Zheng, ZY, 2012
)
0.8
" This paper reports on a rapid non-destructive quantitative method for the determination of eugenol concentration in curdlan (CD) biofilms by electronic nose (E-nose) combined with gas chromatography-mass spectrometry (GC-MS)."( Rapid Non-Destructive Quantification of Eugenol in Curdlan Biofilms by Electronic Nose Combined with Gas Chromatography-Mass Spectrometry.
Fan, X; Han, L; Pan, L; Peng, J; Tu, K; Wang, J; Zhang, C; Zhu, J, 2020
)
1.02
" Compared with the 1 % low-salt group, the ultrasonic treatment combination with curdlan resulted in a significant improvement (p < 0."( Ultrasonic treatment combined with curdlan improves the gelation properties of low-salt Nemipterus virgatus surimi.
Ai, C; Cao, H; Chen, L; Imran, M; Lu, M; Teng, H; Xiao, J; Zhang, C, 2023
)
1.41

Bioavailability

ExcerptReferenceRelevance
" The energy conversion was evaluated in terms of the specific absorption rate (SAR) as a function of the MNPs concentration in composites and to estimate their potential in temperature-controlled regenerative processes and hyperthermia."( Efficient non-contact heat generation on flexible, ternary hydroxyapatite/curdlan/nanomagnetite hybrids for temperature controlled processes.
Belcarz, A; Ginalska, G; Kulpa-Greszta, M; Kłoda, P; Pązik, R; Pałka, K; Tomaszewska, A; Zachanowicz, E, 2021
)
0.85

Dosage Studied

Curdlan eliminated the liver and spleen parasite burden in a 45-day BALB/c mouse model of visceral leishmaniasis.

ExcerptRelevanceReference
" There was a dose-response relationship between the amount of intratracheally injected glucan and the extent of pulmonary histologic abnormalities, which consisted of peribronchiolar and intraalveolar infiltration with chronic inflammatory cells."( Effect of glucan on murine lungs.
Cherne, A; Gott, K; Schuyler, M, 1998
)
0.3
" Curdlan eliminated the liver and spleen parasite burden in a 45-day BALB/c mouse model of visceral leishmaniasis at a dosage of 10 mg/kg/day as determined by Giemsa-stained organ impression smears."( Successful therapy of visceral leishmaniasis with curdlan involves T-helper 17 cytokines.
Das, PK; Ghosh, K; Kar, S; Saha, A; Sharma, G; Ukil, A, 2013
)
1.55
" The effect of solution pH and composite dosage was carefully evaluated."( Preparation and characterization of chitosan-curdlan composite magnetized by zinc ferrite for efficient adsorption of tetracycline antibiotics in water.
Bateni, A; Behroozi, AH; Maleki, A; Rafiei, R; Sojoodi, N; Valizadeh, K, 2023
)
1.17
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Drug Classes (1)

ClassDescription
hexoseAny six-carbon monosaccharide which in its linear form contains either an aldehyde group at position 1 (aldohexose) or a ketone group at position 2 (ketohexose).
[compound class information is derived from 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]

Protein Targets (1)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
histone acetyltransferase KAT2A isoform 1Homo sapiens (human)Potency31.62280.251215.843239.8107AID504327
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Bioassays (1)

Assay IDTitleYearJournalArticle
AID504749qHTS profiling for inhibitors of Plasmodium falciparum proliferation2011Science (New York, N.Y.), Aug-05, Volume: 333, Issue:6043
Chemical genomic profiling for antimalarial therapies, response signatures, and molecular targets.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (388)

TimeframeStudies, This Drug (%)All Drugs %
pre-19909 (2.32)18.7374
1990's39 (10.05)18.2507
2000's64 (16.49)29.6817
2010's177 (45.62)24.3611
2020's99 (25.52)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 41.56

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 strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index41.56 (24.57)
Research Supply Index6.00 (2.92)
Research Growth Index5.33 (4.65)
Search Engine Demand Index62.09 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (41.56)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials0 (0.00%)5.53%
Reviews15 (3.74%)6.00%
Case Studies0 (0.00%)4.05%
Observational1 (0.25%)0.25%
Other385 (96.01%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]