Caffeine-Mediated Inhibition of Calcium Release Channel Inositol 1,4,5-Trisphosphate Receptor Subtype 3 Blocks Glioblastoma Invasion and Extends Survival
- Authors
- Kang, Sang Soo; Han, Kyung-Seok; Ku, Bo Mi; Lee, Yeon Kyung; Hong, Jinpyo; Shin, Hye Young; Almonte, Antoine G.; Woo, Dong Ho; Brat, Daniel J.; Hwang, Eun Mi; Yoo, Seung Hyun; Chung, Chun Kee; Park, Sung-Hye; Paek, Sun Ha; Roh, Eun Joo; Lee, Sung Joong; Park, Jae-Yong; Traynelis, Stephen F.; Lee, C. Justin
- Issue Date
- 2010-02-01
- Publisher
- AMER ASSOC CANCER RESEARCH
- Citation
- CANCER RESEARCH, v.70, no.3, pp.1173 - 1183
- Abstract
- Calcium signaling is important in many signaling processes in cancer cell proliferation and motility including in deadly glioblastomas of the brain that aggressively invade neighboring tissue. We hypothesized that disturbing Ca2+ signaling pathways might decrease the invasive behavior of giloblastoma, extending survival. Evaluating a panel of small-molecule modulators of Ca2+ signaling, we identified caffeine as an inhibitor of glioblastoma cell motility. Caffeine, which is known to activate ryanodine receptors, paradoxically inhibits Ca2+ increase by inositol 1,4,5-trisphospate receptor subtype 3 (IP(3)R3), the expression of which is increased in glioblastoma cells. Consequently, by inhibiting IP(3)R3-mediated Ca2+ release, caffeine inhibited migration of glioblastoma cells in various in vitro assays. Consistent with these effects, caffeine greatly increased mean survival in a mouse xenograft model of glioblastoma. These findings suggest IP(3)R3 as a novel therapeutic target and identify caffeine as a possible adjunct therapy to slow invasive growth of glioblastoma. Cancer Res; 70(3); 1173-83. (C)2010 AACR.
- Keywords
- GROWTH-FACTOR RECEPTOR; UVB-INDUCED APOPTOSIS; SKH-1 MICE; MIGRATION; SIGNALS; PLASMA; COMMON; BRAIN; CELLS; GROWTH-FACTOR RECEPTOR; UVB-INDUCED APOPTOSIS; SKH-1 MICE; MIGRATION; SIGNALS; PLASMA; COMMON; BRAIN; CELLS
- ISSN
- 0008-5472
- URI
- https://pubs.kist.re.kr/handle/201004/131727
- DOI
- 10.1158/0008-5472.CAN-09-2886
- Appears in Collections:
- KIST Article > 2010
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