Page last updated: 2024-10-18

glycerol and Glioma

glycerol has been researched along with Glioma in 24 studies

Moon: The natural satellite of the planet Earth. It includes the lunar cycles or phases, the lunar month, lunar landscapes, geography, and soil.

Glioma: Benign and malignant central nervous system neoplasms derived from glial cells (i.e., astrocytes, oligodendrocytes, and ependymocytes). Astrocytes may give rise to astrocytomas (ASTROCYTOMA) or glioblastoma multiforme (see GLIOBLASTOMA). Oligodendrocytes give rise to oligodendrogliomas (OLIGODENDROGLIOMA) and ependymocytes may undergo transformation to become EPENDYMOMA; CHOROID PLEXUS NEOPLASMS; or colloid cysts of the third ventricle. (From Escourolle et al., Manual of Basic Neuropathology, 2nd ed, p21)

Research Excerpts

ExcerptRelevanceReference
"Radiotherapy up to 10 Gy given in five fractions does not influence the glucose metabolism nor does it induce any acute cytotoxic effect detected with glutamate or glycerol in malignant glioma, as assessed by microdialysis."7.74Glucose metabolites, glutamate and glycerol in malignant glioma tumours during radiotherapy. ( Bergenheim, AT; Bergström, P; Henriksson, R; Tabatabaei, P, 2008)
" In this study we show that the chemical chaperone, glycerol, and the transcriptional regulator, sodium 4-phenylbutyrate, inhibit the constitutively activated inward current and reduce cell growth and migration in glioblastoma multiforme."7.73Surface expression of ASIC2 inhibits the amiloride-sensitive current and migration of glioma cells. ( Benos, DJ; Bubien, JK; Colby, G; Esimai, O; Fuller, CM; Gillespie, GY; Jovov, B; Kovacs, GG; Mapstone, TB; Markert, JM; Pahwa, AK; Vila-Carriles, WH; Zhou, ZH, 2006)
" We investigated the spatial distribution of intracarotid fluorescein sodium and intravenous lissamine-rhodamine B200 (RB 200)-albumin in the brain of normal and C6 glioma-bearing rats after intracarotid co-administration of 1-O-pentylglycerol (200 mm)."7.72Alkylglycerol opening of the blood-brain barrier to small and large fluorescence markers in normal and C6 glioma-bearing rats and isolated rat brain capillaries. ( Alipour, M; Eibl, H; Erdlenbruch, B; Fricker, G; Kugler, W; Lakomek, M; Miller, DS, 2003)
"ErPC (40 mg/kg) was given to C6 glioma-bearing rats either as a single intracarotid bolus injection in the presence or absence of 1- O-pentylglycerol (300 m M) or as an intracarotid infusion in conjunction with bradykinin."7.71Increased delivery of erucylphosphocholine to C6 gliomas by chemical opening of the blood-brain barrier using intracarotid pentylglycerol in rats. ( Eibl, H; Erdlenbruch, B; Jendrossek, V; Kugler, W; Lakomek, M, 2002)
"Paclitaxel (Taxol), an anti-cancer drug derived from Taxus species, was tested for its anti-migrational, anti-invasive and anti-proliferative effect on two human glioma cell lines (GaMg and D-54Mg) grown as multicellular tumour spheroids."7.69Proliferation, migration and invasion of human glioma cells exposed to paclitaxel (Taxol) in vitro. ( Arnold, H; Bjerkvig, R; Dahl, O; Gundersen, G; Heese, O; Terzis, AJ; Thorsen, F; Visted, T, 1997)
"External application of bradykinin to neuroblastoma X glioma hybrid NG108-15 cells produced a sustained depolarization preceded by a transient hyperpolarization."7.67Bradykinin-induced rapid breakdown of phosphatidylinositol 4,5-bisphosphate in neuroblastoma X glioma hybrid NG108-15 cells. ( Higashida, H; Inoue, R; Nozawa, Y; Yano, K, 1984)
"Curcumin has multiple biological and pharmacological activities, including antioxidant, anti-inflammatory, antiviral, antibacterial, antifungal, and antitumor activities."5.39A poly(glycerol-sebacate-curcumin) polymer with potential use for brain gliomas. ( Dong, DL; Lu, XL; Sun, B; Sun, ZJ; Tao, RB; Xie, X, 2013)
"To evaluate the effect of glycerol, thirty-two patients with brain tumor were directed to the study, including 17 gliomas and 15 meningiomas."5.08Effect of glycerol on blood flow distribution in tumoral and peritumoral brain tissue. ( Furuse, M; Ichimi, K; Inao, S; Ishikawa, Y; Kawai, T; Kuchiwaki, H; Niwa, M; Oyama, H; Shibayama, M; Takada, S, 1997)
" This study's objective was to utilise microdialysis to monitor levels of glucose, lactate, pyruvate, glutamate and glycerol in patients following surgery for intrinsic brain tumours, and to assess the concentration of growth factors, cytokines and other proteins involved in the pathogenesis of high-grade gliomas in vivo."3.76In vivo assessment of high-grade glioma biochemistry using microdialysis: a study of energy-related molecules, growth factors and cytokines. ( Carpenter, KL; Hutchinson, PJ; Marcus, HJ; Price, SJ, 2010)
"Radiotherapy up to 10 Gy given in five fractions does not influence the glucose metabolism nor does it induce any acute cytotoxic effect detected with glutamate or glycerol in malignant glioma, as assessed by microdialysis."3.74Glucose metabolites, glutamate and glycerol in malignant glioma tumours during radiotherapy. ( Bergenheim, AT; Bergström, P; Henriksson, R; Tabatabaei, P, 2008)
" In this study we show that the chemical chaperone, glycerol, and the transcriptional regulator, sodium 4-phenylbutyrate, inhibit the constitutively activated inward current and reduce cell growth and migration in glioblastoma multiforme."3.73Surface expression of ASIC2 inhibits the amiloride-sensitive current and migration of glioma cells. ( Benos, DJ; Bubien, JK; Colby, G; Esimai, O; Fuller, CM; Gillespie, GY; Jovov, B; Kovacs, GG; Mapstone, TB; Markert, JM; Pahwa, AK; Vila-Carriles, WH; Zhou, ZH, 2006)
" We investigated the spatial distribution of intracarotid fluorescein sodium and intravenous lissamine-rhodamine B200 (RB 200)-albumin in the brain of normal and C6 glioma-bearing rats after intracarotid co-administration of 1-O-pentylglycerol (200 mm)."3.72Alkylglycerol opening of the blood-brain barrier to small and large fluorescence markers in normal and C6 glioma-bearing rats and isolated rat brain capillaries. ( Alipour, M; Eibl, H; Erdlenbruch, B; Fricker, G; Kugler, W; Lakomek, M; Miller, DS, 2003)
"ErPC (40 mg/kg) was given to C6 glioma-bearing rats either as a single intracarotid bolus injection in the presence or absence of 1- O-pentylglycerol (300 m M) or as an intracarotid infusion in conjunction with bradykinin."3.71Increased delivery of erucylphosphocholine to C6 gliomas by chemical opening of the blood-brain barrier using intracarotid pentylglycerol in rats. ( Eibl, H; Erdlenbruch, B; Jendrossek, V; Kugler, W; Lakomek, M, 2002)
"Paclitaxel (Taxol), an anti-cancer drug derived from Taxus species, was tested for its anti-migrational, anti-invasive and anti-proliferative effect on two human glioma cell lines (GaMg and D-54Mg) grown as multicellular tumour spheroids."3.69Proliferation, migration and invasion of human glioma cells exposed to paclitaxel (Taxol) in vitro. ( Arnold, H; Bjerkvig, R; Dahl, O; Gundersen, G; Heese, O; Terzis, AJ; Thorsen, F; Visted, T, 1997)
"The effect of glycerol on blood flow in tumoral and peritumoral tissue was measured in 32 patients with brain tumor, 17 gliomas and 15 meningiomas."3.69Effect of glycerol on blood flow distribution in tumoral and peritumoral brain tissue. ( Furuse, M; Inao, S; Kida, Y; Kobayashi, T; Maesawa, S; Niwa, M; Oyama, H; Tanaka, T; Yoshida, J, 1997)
"External application of bradykinin to neuroblastoma X glioma hybrid NG108-15 cells produced a sustained depolarization preceded by a transient hyperpolarization."3.67Bradykinin-induced rapid breakdown of phosphatidylinositol 4,5-bisphosphate in neuroblastoma X glioma hybrid NG108-15 cells. ( Higashida, H; Inoue, R; Nozawa, Y; Yano, K, 1984)
"Twenty-six patients with intracerebral tumors (predominantly gliomas) were treated with intraarterial BCNU, VM-26, and cisplatin combined with the systemic administration of VM-26, methotrexate, vincristine, bleomycin, and procarbazine."3.67Combined intraarterial and systemic chemotherapy for intracerebral tumors. ( Benoit, B; Grahovac, Z; Hugenholtz, H; Richard, M; Russell, N; Stewart, DJ, 1987)
"Sixteen patients with intracerebral tumors received intraarterial cisplatin, teniposide, and BCNU combined with intravenous cisplatin, teniposide, and cytosine arabinoside."2.67Feasibility study of intraarterial vs intravenous cisplatin, BCNU, and teniposide combined with systemic cisplatin, teniposide, cytosine arabinoside, glycerol and mannitol in the treatment of primary and metastatic brain tumors. ( Belanger, G; Benoit, B; DaSilva, V; Grahovac, Z; Hugenholtz, H; Richard, MT; Russell, N; Stewart, DJ, 1993)
"Curcumin has multiple biological and pharmacological activities, including antioxidant, anti-inflammatory, antiviral, antibacterial, antifungal, and antitumor activities."1.39A poly(glycerol-sebacate-curcumin) polymer with potential use for brain gliomas. ( Dong, DL; Lu, XL; Sun, B; Sun, ZJ; Tao, RB; Xie, X, 2013)
"Glycerol was incorporated similarly by all cell types, and was renewed with a half-life of 19-37 hr."1.27Incorporation and turnover of phospholipid precursors in normal and tumoral glial cells in culture. ( Hugues, P; Montaudon, D; Robert, J, 1985)

Research

Studies (24)

TimeframeStudies, this research(%)All Research%
pre-19908 (33.33)18.7374
1990's5 (20.83)18.2507
2000's6 (25.00)29.6817
2010's4 (16.67)24.3611
2020's1 (4.17)2.80

Authors

AuthorsStudies
Halim, AA1
Alsayed, B1
Embarak, S1
Yaseen, T1
Dabbous, S1
Fontaine, O1
Dueluzeau, R1
Raibaud, P1
Chabanet, C1
Popoff, MR1
Badoual, J1
Gabilan, JC1
Andremont, A1
Gómez, L1
Andrés, S1
Sánchez, J1
Alonso, JM1
Rey, J1
López, F1
Jiménez, A1
Yan, Z1
Zhou, L1
Zhao, Y3
Wang, J6
Huang, L2
Hu, K1
Liu, H4
Wang, H3
Guo, Z1
Song, Y1
Huang, H4
Yang, R1
Owen, TW1
Al-Kaysi, RO1
Bardeen, CJ1
Cheng, Q1
Wu, S1
Cheng, T1
Zhou, X1
Wang, B4
Zhang, Q4
Wu, X2
Yao, Y3
Ochiai, T1
Ishiguro, H2
Nakano, R2
Kubota, Y2
Hara, M1
Sunada, K1
Hashimoto, K1
Kajioka, J1
Fujishima, A1
Jiao, J3
Gai, QY3
Wang, W2
Zang, YP2
Niu, LL2
Fu, YJ3
Wang, X4
Yao, LP1
Qin, QP1
Wang, ZY1
Liu, J4
Aleksic Sabo, V1
Knezevic, P1
Borges-Argáez, R1
Chan-Balan, R1
Cetina-Montejo, L1
Ayora-Talavera, G1
Sansores-Peraza, P1
Gómez-Carballo, J1
Cáceres-Farfán, M1
Jang, J1
Akin, D1
Bashir, R1
Yu, Z1
Zhu, J2
Jiang, H1
He, C2
Xiao, Z1
Xu, J2
Sun, Q1
Han, D1
Lei, H1
Zhao, K2
Zhu, L1
Li, X4
Fu, H2
Wilson, BK1
Step, DL1
Maxwell, CL1
Gifford, CA1
Richards, CJ1
Krehbiel, CR1
Warner, JM1
Doerr, AJ1
Erickson, GE1
Guretzky, JA1
Rasby, RJ1
Watson, AK1
Klopfenstein, TJ1
Sun, Y4
Liu, Z3
Pham, TD1
Lee, BK1
Yang, FC1
Wu, KH1
Lin, WP1
Hu, MK1
Lin, L3
Shao, J1
Sun, M1
Xu, G1
Zhang, X6
Xu, N1
Wang, R1
Liu, S1
He, H1
Dong, X2
Yang, M2
Yang, Q1
Duan, S1
Yu, Y2
Han, J2
Zhang, C3
Chen, L2
Yang, X1
Li, W3
Wang, T2
Campbell, DA1
Gao, K1
Zager, RA1
Johnson, ACM1
Guillem, A1
Keyser, J1
Singh, B1
Steubl, D1
Schneider, MP1
Meiselbach, H1
Nadal, J1
Schmid, MC1
Saritas, T1
Krane, V1
Sommerer, C1
Baid-Agrawal, S1
Voelkl, J1
Kotsis, F1
Köttgen, A1
Eckardt, KU1
Scherberich, JE1
Li, H4
Yao, L2
Sun, L3
Zhu, Z1
Naren, N1
Zhang, XX2
Gentile, GL1
Rupert, AS1
Carrasco, LI1
Garcia, EM1
Kumar, NG1
Walsh, SW1
Jefferson, KK1
Guest, RL1
Samé Guerra, D1
Wissler, M1
Grimm, J1
Silhavy, TJ1
Lee, JH2
Yoo, JS1
Kim, Y1
Kim, JS2
Lee, EJ1
Roe, JH1
Delorme, M1
Bouchard, PA1
Simon, M1
Simard, S1
Lellouche, F1
D'Urzo, KA1
Mok, F1
D'Urzo, AD1
Koneru, B1
Lopez, G1
Farooqi, A1
Conkrite, KL1
Nguyen, TH1
Macha, SJ1
Modi, A1
Rokita, JL1
Urias, E1
Hindle, A1
Davidson, H1
Mccoy, K1
Nance, J1
Yazdani, V1
Irwin, MS1
Yang, S1
Wheeler, DA1
Maris, JM1
Diskin, SJ1
Reynolds, CP1
Abhilash, L1
Kalliyil, A1
Sheeba, V1
Hartley, AM2
Meunier, B2
Pinotsis, N1
Maréchal, A2
Xu, JY1
Genko, N1
Haraux, F1
Rich, PR1
Kamalanathan, M1
Doyle, SM1
Xu, C1
Achberger, AM1
Wade, TL1
Schwehr, K1
Santschi, PH1
Sylvan, JB1
Quigg, A1
Leong, W1
Xu, W2
Gao, S1
Zhai, X1
Wang, C2
Gilson, E1
Ye, J1
Lu, Y1
Yan, R1
Zhang, Y6
Hu, Z1
You, Q1
Cai, Q1
Yang, D1
Gu, S1
Dai, H1
Zhao, X1
Gui, C1
Gui, J1
Wu, PK1
Hong, SK1
Starenki, D1
Oshima, K1
Shao, H1
Gestwicki, JE1
Tsai, S1
Park, JI1
Wang, Y7
Zhao, R1
Gu, Z1
Dong, C2
Guo, G1
Li, L4
Barrett, HE1
Meester, EJ1
van Gaalen, K1
van der Heiden, K1
Krenning, BJ1
Beekman, FJ1
de Blois, E1
de Swart, J1
Verhagen, HJ1
Maina, T1
Nock, BA1
Norenberg, JP1
de Jong, M1
Gijsen, FJH1
Bernsen, MR1
Martínez-Milla, J1
Galán-Arriola, C1
Carnero, M1
Cobiella, J1
Pérez-Camargo, D1
Bautista-Hernández, V1
Rigol, M1
Solanes, N1
Villena-Gutierrez, R1
Lobo, M1
Mateo, J1
Vilchez-Tschischke, JP1
Salinas, B1
Cussó, L1
López, GJ1
Fuster, V1
Desco, M1
Sanchez-González, J1
Ibanez, B1
van den Berg, P1
Schweitzer, DH1
van Haard, PMM1
Geusens, PP1
van den Bergh, JP1
Zhu, X1
Huang, X2
Xu, H2
Yang, G2
Lin, Z1
Salem, HF1
Nafady, MM1
Kharshoum, RM1
Abd El-Ghafar, OA1
Farouk, HO1
Domiciano, D1
Nery, FC1
de Carvalho, PA1
Prudente, DO1
de Souza, LB1
Chalfun-Júnior, A1
Paiva, R1
Marchiori, PER1
Lu, M2
An, Z1
Jiang, J2
Li, J7
Du, S1
Zhou, H1
Cui, J1
Wu, W1
Liu, Y7
Song, J1
Lian, Q1
Uddin Ahmad, Z1
Gang, DD1
Konggidinata, MI1
Gallo, AA1
Zappi, ME1
Yang, TWW1
Johari, Y1
Burton, PR1
Earnest, A1
Shaw, K1
Hare, JL1
Brown, WA1
Kim, GA1
Han, S1
Choi, GH1
Choi, J1
Lim, YS1
Gallo, A1
Cancelli, C1
Ceron, E1
Covino, M1
Capoluongo, E1
Pocino, K1
Ianiro, G1
Cammarota, G1
Gasbarrini, A1
Montalto, M1
Somasundar, Y1
Lu, IC1
Mills, MR1
Qian, LY1
Olivares, X1
Ryabov, AD1
Collins, TJ1
Zhao, L1
Doddipatla, S1
Thomas, AM1
Nikolayev, AA1
Galimova, GR1
Azyazov, VN1
Mebel, AM1
Kaiser, RI1
Guo, S1
Yang, P1
Yu, X2
Wu, Y2
Zhang, H1
Yu, B2
Han, B1
George, MW1
Moor, MB1
Bonny, O1
Langenberg, E1
Paik, H1
Smith, EH1
Nair, HP1
Hanke, I1
Ganschow, S1
Catalan, G1
Domingo, N1
Schlom, DG1
Assefa, MK1
Wu, G2
Hayton, TW1
Becker, B1
Enikeev, D1
Netsch, C1
Gross, AJ1
Laukhtina, E1
Glybochko, P1
Rapoport, L1
Herrmann, TRW1
Taratkin, M1
Dai, W1
Shi, J2
Carreno, J1
Kloner, RA1
Pickersgill, NA1
Vetter, JM1
Kim, EH1
Cope, SJ1
Du, K1
Venkatesh, R1
Giardina, JD1
Saad, NES1
Bhayani, SB1
Figenshau, RS1
Eriksson, J1
Landfeldt, E1
Ireland, S1
Jackson, C1
Wyatt, E1
Gaudig, M1
Stancill, JS1
Happ, JT1
Broniowska, KA1
Hogg, N1
Corbett, JA1
Tang, LF1
Bi, YL1
Fan, Y2
Sun, YB1
Wang, AL1
Xiao, BH1
Wang, LF1
Qiu, SW1
Guo, SW1
Wáng, YXJ1
Sun, J2
Chu, S1
Pan, Q1
Li, D2
Zheng, S2
Ma, L1
Wang, L3
Hu, T1
Wang, F1
Han, Z1
Yin, Z1
Ge, X1
Xie, K1
Lei, P1
Dias-Santagata, D1
Lennerz, JK1
Sadow, PM1
Frazier, RP1
Govinda Raju, S1
Henry, D1
Chung, T1
Kherani, J1
Rothenberg, SM1
Wirth, LJ1
Marti, CN1
Choi, NG1
Bae, SJ1
Ni, L1
Luo, X1
Dai, T1
Yang, Y3
Lee, R1
Fleischer, AS1
Wemhoff, AP1
Ford, CR1
Kleppinger, EL1
Helms, K1
Bush, AA1
Luna-Abanto, J1
García Ruiz, L1
Laura Martinez, J1
Álvarez Larraondo, M1
Villoslada Terrones, V1
Dukic, L1
Maric, N1
Simundic, AM1
Chogtu, B1
Ommurugan, B1
Thomson, SR1
Kalthur, SG1
Benidir, M1
El Massoudi, S1
El Ghadraoui, L1
Lazraq, A1
Benjelloun, M1
Errachidi, F1
Cassar, M1
Law, AD1
Chow, ES1
Giebultowicz, JM1
Kretzschmar, D1
Salonurmi, T1
Nabil, H1
Ronkainen, J1
Hyötyläinen, T1
Hautajärvi, H1
Savolainen, MJ1
Tolonen, A1
Orešič, M1
Känsäkoski, P1
Rysä, J1
Hakkola, J1
Hukkanen, J1
Zhu, N1
Li, Y4
Du, Q1
Hao, P1
Cao, X1
Li, CX1
Zhao, S1
Luo, XM1
Feng, JX1
Gonzalez-Cotto, M1
Guo, L1
Karwan, M1
Sen, SK1
Barb, J1
Collado, CJ1
Elloumi, F1
Palmieri, EM1
Boelte, K1
Kolodgie, FD1
Finn, AV1
Biesecker, LG1
McVicar, DW1
Qu, F1
Deng, Z1
Xie, Y2
Tang, J3
Chen, Z2
Luo, W1
Xiong, D1
Zhao, D1
Fang, J1
Zhou, Z1
Niu, PP1
Song, B1
Xu, YM1
Zhang, Z2
Qiu, N1
Yin, J1
Zhang, J4
Guo, W1
Liu, M2
Liu, T2
Chen, D5
Luo, K1
He, Z2
Zheng, G1
Xu, F1
Sun, W1
Yin, F1
van Hest, JCM1
Du, L2
Shi, X1
Kang, S1
Duan, W1
Zhang, S2
Feng, J2
Qi, N1
Shen, G1
Ren, H1
Shang, Q1
Zhao, W2
Yang, Z2
Jiang, X2
Alame, M1
Cornillot, E1
Cacheux, V1
Tosato, G1
Four, M1
De Oliveira, L1
Gofflot, S1
Delvenne, P1
Turtoi, E1
Cabello-Aguilar, S1
Nishiyama, M1
Turtoi, A1
Costes-Martineau, V1
Colinge, J1
Guo, Q1
Quan, M1
Dong, J1
Bai, J1
Han, R1
Cai, Y1
Lv, YQ1
Chen, Q1
Lyu, HD1
Deng, L1
Zhou, D1
Xiao, X1
De Langhe, S1
Billadeau, DD1
Lou, Z1
Zhang, JS1
Xue, Z1
Shen, XD1
Gao, F1
Busuttil, RW1
Kupiec-Weglinski, JW1
Ji, H1
Otano, I1
Alvarez, M1
Minute, L1
Ochoa, MC1
Migueliz, I1
Molina, C1
Azpilikueta, A1
de Andrea, CE1
Etxeberria, I1
Sanmamed, MF1
Teijeira, Á1
Berraondo, P1
Melero, I1
Zhong, Z1
Xie, X2
Yu, Q1
Zhou, C1
Liu, C2
Liu, W1
Chen, W1
Yin, Y1
Li, CW1
Hsu, JL1
Zhou, Q1
Hu, B1
Fu, P1
Atyah, M1
Ma, Q2
Xu, Y1
Dong, Q1
Hung, MC1
Ren, N1
Huang, P1
Liao, R1
Chen, X3
Cao, Q1
Yuan, X1
Nie, W1
Yang, J2
Shao, B1
Ma, X1
Bi, Z1
Liang, X1
Tie, Y1
Mo, F1
Xie, D1
Wei, Y1
Wei, X2
Dokla, EME1
Fang, CS1
Chu, PC1
Chang, CS1
Abouzid, KAM1
Chen, CS1
Blaszczyk, R1
Brzezinska, J1
Dymek, B1
Stanczak, PS1
Mazurkiewicz, M1
Olczak, J1
Nowicka, J1
Dzwonek, K1
Zagozdzon, A1
Golab, J1
Golebiowski, A1
Xin, Z1
Himmelbauer, MK1
Jones, JH1
Enyedy, I1
Gilfillan, R1
Hesson, T1
King, K1
Marcotte, DJ1
Murugan, P1
Santoro, JC1
Gonzalez-Lopez de Turiso, F1
Pedron, J1
Boudot, C1
Brossas, JY1
Pinault, E1
Bourgeade-Delmas, S1
Sournia-Saquet, A1
Boutet-Robinet, E1
Destere, A1
Tronnet, A1
Bergé, J1
Bonduelle, C1
Deraeve, C1
Pratviel, G1
Stigliani, JL1
Paris, L1
Mazier, D1
Corvaisier, S1
Since, M1
Malzert-Fréon, A1
Wyllie, S1
Milne, R1
Fairlamb, AH1
Valentin, A1
Courtioux, B1
Verhaeghe, P1
Fang, X1
Gao, M1
Gao, H1
Bi, W1
Tang, H1
Cui, Y1
Zhang, L3
Fan, H1
Yu, H1
Mathison, CJN1
Chianelli, D1
Rucker, PV1
Nelson, J1
Roland, J1
Huang, Z2
Xie, YF1
Epple, R1
Bursulaya, B1
Lee, C1
Gao, MY1
Shaffer, J1
Briones, S1
Sarkisova, Y1
Galkin, A1
Li, N1
Li, C2
Hua, S1
Kasibhatla, S1
Kinyamu-Akunda, J1
Kikkawa, R1
Molteni, V1
Tellew, JE1
Jin, X1
Pang, B1
Liu, Q2
Liu, X3
Huang, Y2
Josephine Fauci, A1
Ma, Y1
Soo Lee, M1
Yuan, W1
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Qi, H1
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Yang, F2
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Huang, M1
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Kim, GD1
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Scott, ME1
Koski, KG1
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Cen, YK1
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Wang, YL1
Wang, JY1
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Spirk, D1
Noll, S1
Burnier, M1
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Singhroy, DN1
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Myers, RK1
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Yerys, BE1
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Schmelz, EM1
Davalos, RV1
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Erndt-Marino, J1
Levin, M1
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Yang, C2
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Kim, MJ1
Baek, SH1
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Jun, S1
Park, D1
Kim, HG1
Kim, SJ1
Lee, JO1
Kim, BT1
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Kang, D1
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De Clercq, E1
Pannecouque, C1
Zhan, P1
Guo, Y1
Shen, Y1
Wang, Q2
Kawazoe, Y1
Jena, P1
Sun, Z1
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Xu, X1
Ma, G1
Huo, X1
Church, JS1
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Ratner, JR1
Zelikoff, JT1
Schwartzer, JJ1
Fiseha, T1
Tamir, Z1
Yao, W1
Wang, P1
Mi, K1
Cheng, J1
Gu, C1
Huang, J2
Sun, HB1
Xing, WQ1
Liu, XB1
Zheng, Y1
Yang, SJ1
Wang, ZF1
Liu, SL1
Ba, YF1
Zhang, RX1
Liu, BX1
Fan, CC1
Chen, PN1
Liang, GH1
Yu, YK1
Wang, HR1
Li, HM1
Li, ZX1
Lalani, SS1
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Poh, CL1
Khan, IT1
Nadeem, M1
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Kong, D1
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Zhou, Y3
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Noer, PR1
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Goldstein, A1
Ke, C1
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Mazumder, D1
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Kong, X1
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Robert, P1
Le Foll, B1
Xia, Y1
Chen, S1
Luo, M1
Wu, J1
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Jackowski, K1
Yuan, Q1
Sherrell, PC1
Chen, J2
Bi, X1
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Hengphasatporn, K1
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Shigeta, Y1
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Rungrotmongkol, T1
Caffrey, PJ1
Kher, R1
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Delaney, S1
Xue, J1
Wu, P1
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Yuan, Y1
Luo, J1
Ye, S1
Ustriyana, P1
Wei, B1
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Hu, Y1
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Sahai, N1
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McAuley, DF1
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Yu, HG1
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Cheng, H1
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Jiang, F1
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Jiang, Z1
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Nafie, MS1
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Alakhdar, AA1
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Fan, S1
Hu, H1
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Peng, X1
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Zhou, HY1
Sui, ZY1
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Wang, HY1
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Reviews

1 review available for glycerol and Glioma

ArticleYear
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016

Trials

3 trials available for glycerol and Glioma

ArticleYear
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016
Feasibility study of intraarterial vs intravenous cisplatin, BCNU, and teniposide combined with systemic cisplatin, teniposide, cytosine arabinoside, glycerol and mannitol in the treatment of primary and metastatic brain tumors.
    Journal of neuro-oncology, 1993, Volume: 17, Issue:1

    Topics: Adult; Aged; Antineoplastic Combined Chemotherapy Protocols; Brain Neoplasms; Carmustine; Cisplatin;

1993
Effect of glycerol on blood flow distribution in tumoral and peritumoral brain tissue.
    Acta neurochirurgica. Supplement, 1997, Volume: 70

    Topics: Brain Neoplasms; Cerebrovascular Circulation; Glioma; Glycerol; Humans; Meningeal Neoplasms; Meningi

1997

Other Studies

21 other studies available for glycerol and Glioma

ArticleYear
Intratumoral retrograde microdialysis treatment of high-grade glioma with cisplatin.
    Acta neurochirurgica, 2020, Volume: 162, Issue:12

    Topics: Adult; Aged; Aged, 80 and over; Antineoplastic Agents; Brain; Brain Neoplasms; Cisplatin; Female; Gl

2020
Radiotherapy induces an immediate inflammatory reaction in malignant glioma: a clinical microdialysis study.
    Journal of neuro-oncology, 2017, Volume: 131, Issue:1

    Topics: Aged; Aged, 80 and over; Brain Neoplasms; Cytokines; Female; Glioma; Glucose; Glutamic Acid; Glycero

2017
Glucose metabolites, glutamate and glycerol in malignant glioma tumours during radiotherapy.
    Journal of neuro-oncology, 2008, Volume: 90, Issue:1

    Topics: Brain Neoplasms; Glioma; Glucose; Glutamic Acid; Glycerol; Humans; Microdialysis; Radiosurgery

2008
Cerebral metabolism during air transport of patients after surgery for malignant glioma.
    Aviation, space, and environmental medicine, 2008, Volume: 79, Issue:7

    Topics: Air Ambulances; Brain; Brain Neoplasms; Glioma; Glucose; Glutamic Acid; Glycerol; Humans; Lactic Aci

2008
In vivo assessment of high-grade glioma biochemistry using microdialysis: a study of energy-related molecules, growth factors and cytokines.
    Journal of neuro-oncology, 2010, Volume: 97, Issue:1

    Topics: Adult; Aged; Antineoplastic Agents, Hormonal; Cytokines; Dexamethasone; Energy Metabolism; Female; G

2010
A poly(glycerol-sebacate-curcumin) polymer with potential use for brain gliomas.
    Journal of biomedical materials research. Part A, 2013, Volume: 101, Issue:1

    Topics: Animals; Antineoplastic Agents; Brain Neoplasms; Cell Death; Cell Line, Tumor; Curcumin; Decanoates;

2013
Increased delivery of erucylphosphocholine to C6 gliomas by chemical opening of the blood-brain barrier using intracarotid pentylglycerol in rats.
    Cancer chemotherapy and pharmacology, 2002, Volume: 50, Issue:4

    Topics: Animals; Antineoplastic Agents; Blood-Brain Barrier; Brain; Brain Neoplasms; Glioma; Glycerol; Injec

2002
Alkylglycerol opening of the blood-brain barrier to small and large fluorescence markers in normal and C6 glioma-bearing rats and isolated rat brain capillaries.
    British journal of pharmacology, 2003, Volume: 140, Issue:7

    Topics: Animals; Antineoplastic Agents; Biomarkers, Tumor; Blood-Brain Barrier; Brain; Brain Neoplasms; Capi

2003
Surface expression of ASIC2 inhibits the amiloride-sensitive current and migration of glioma cells.
    The Journal of biological chemistry, 2006, Jul-14, Volume: 281, Issue:28

    Topics: Acid Sensing Ion Channels; Amiloride; Antineoplastic Agents; Brain Neoplasms; Cell Membrane; Cell Mo

2006
LDI-glycerol polyurethane implants exhibit controlled release of DB-67 and anti-tumor activity in vitro against malignant gliomas.
    Acta biomaterialia, 2008, Volume: 4, Issue:4

    Topics: Camptothecin; Cell Death; Cell Line, Tumor; Delayed-Action Preparations; Drug Screening Assays, Anti

2008
Bradykinin-induced rapid breakdown of phosphatidylinositol 4,5-bisphosphate in neuroblastoma X glioma hybrid NG108-15 cells.
    The Journal of biological chemistry, 1984, Aug-25, Volume: 259, Issue:16

    Topics: Animals; Bradykinin; Cell Line; Glioma; Glycerol; Hybrid Cells; Kinetics; Membrane Potentials; Mice;

1984
[A role of glycerol in contrast enhancement (author's transl)].
    No shinkei geka. Neurological surgery, 1980, Volume: 8, Issue:12

    Topics: Adolescent; Adult; Astrocytoma; Brain Neoplasms; Contrast Media; Extravasation of Diagnostic and The

1980
Altered phospholipid metabolism in sodium butyrate-induced differentiation of C6 glioma cells.
    Lipids, 1997, Volume: 32, Issue:3

    Topics: Acylation; Animals; Arachidonic Acid; Butyrates; Butyric Acid; Calcium; Chloroform; Glioma; Glutamat

1997
Proliferation, migration and invasion of human glioma cells exposed to paclitaxel (Taxol) in vitro.
    British journal of cancer, 1997, Volume: 75, Issue:12

    Topics: Adult; Animals; Antineoplastic Agents, Phytogenic; Brain Neoplasms; Cell Division; Cell Movement; Fe

1997
Effect of glycerol on blood flow distribution in tumoral and peritumoral brain tissue.
    Neurologia medico-chirurgica, 1997, Volume: 37, Issue:11

    Topics: Adolescent; Adult; Aged; Brain Neoplasms; Cerebrovascular Circulation; Female; Glioma; Glycerol; Hum

1997
Assembly of tubulin from cultured cells and comparison with the neurotubulin model.
    Cell, 1977, Volume: 12, Issue:3

    Topics: Animals; Brain; Cattle; Cell Line; Cell-Free System; Cricetinae; Cricetulus; Cytosol; Female; Glioma

1977
[The effects of glycerol and mannitol on the epidural intracranial presssure of the patients with increased intracranial pressure (author's transl)].
    Nihon geka hokan. Archiv fur japanische Chirurgie, 1977, Nov-01, Volume: 46, Issue:6

    Topics: Adult; Astrocytoma; Brain Neoplasms; Dura Mater; Female; Glioma; Glycerol; Humans; Intracranial Pres

1977
[Experimental and clinical investigations on the treatment of brain edema by intravenous glycerin administration].
    Acta neurochirurgica, 1977, Volume: 37, Issue:1-2

    Topics: Animals; Brain Edema; Brain Neoplasms; Dexamethasone; Glioma; Glycerol; Hematoma, Subdural; Humans;

1977
Combined intraarterial and systemic chemotherapy for intracerebral tumors.
    Neurosurgery, 1987, Volume: 21, Issue:2

    Topics: Adolescent; Adult; Aged; Antineoplastic Combined Chemotherapy Protocols; Bleomycin; Brain Neoplasms;

1987
Incorporation and turnover of phospholipid precursors in normal and tumoral glial cells in culture.
    The International journal of biochemistry, 1985, Volume: 17, Issue:5

    Topics: Acetates; Animals; Bucladesine; Cells, Cultured; Cricetinae; Glioma; Glycerol; Half-Life; Membrane L

1985
Optimal conditions for the measurement of lipid peroxidation products (lipofuscin) in individual cultivated human glial and glioma cells.
    Mechanisms of ageing and development, 1987, Volume: 38, Issue:1

    Topics: Acetates; Acetic Acid; Cell Line; Ethanol; Fluorometry; Formaldehyde; Glioma; Glycerol; Humans; Lipo

1987