Please use this identifier to cite or link to this item: http://repository.i3l.ac.id/jspui/handle/123456789/1534
Title: Investigating Novel Synta66-Derived ORAI1 Inhibitors For Cytotoxic Activity Against Glioblastoma
Authors: Leidin, Ellen Amanda
Keywords: glioblastoma multiforme
ORAI1
store-operated calcium entry
MPT786
Synta66 derivatives
cytotoxicity
temozolomide resistance
Issue Date: 10-Aug-2026
Publisher: i3L Press
Series/Report no.: EP25-106;EP BM-028
Abstract: Glioblastoma multiforme (GBM) is the most lethal primary brain malignancy in adults, with a median overall survival of 12–15 months despite maximal therapy. Resistance to the standard chemotherapeutic agent temozolomide (TMZ) remains a near-universal clinical obstacle, motivating the development of mechanistically distinct therapeutic strategies. ORAI1-mediated store-operated calcium entry (SOCE) is aberrantly elevated in GBM and drives pro-survival AKT signaling, including MDM2-dependent suppression of the tumor suppressor p53, representing a tractable but underexplored therapeutic target. Although the parent ORAI1 inhibitor Synta66 efficiently suppresses SOCE, previous studies demonstrated minimal or absent cytotoxic and anti-proliferative activity in GBM cell lines, limiting its therapeutic applicability as a standalone anti-cancer agent. Hence, a structurally modified derivative library was developed to improve the cytotoxic efficacy of Synta66 while retaining ORAI1-targeting activity. Twenty structural derivatives of the ORAI1 inhibitor Synta66 (MPT1B783–MPT1B802) were screened at 10 μM against A172 GBM cells using the MTT cytotoxicity assay at 24 and 72 hours. MPT786 demonstrated the most pronounced reduction in cell viability (69.7 ± 9.2% at 24 hours; 53.6 ± 11.4% at 72 hours) and was selected for dose-response characterization, yielding an IC50 of 9.020 μM (95% CI: 7.977–10.44 μM; R2 = 0.9287) in A172 cells. Time-dependent cytotoxicity assays across four GBM cell lines: A172, A172-R, U-87 MG, and U-87 MG-R, which are confirmed to be statistically significant and sustained anti-proliferative activity in all models, including TMZ-resistant derivatives (A172-R and U-87 MG-R), suggesting that MPT786 activity may not be substantially impaired by O6-methylguanine-DNA methyltransferase (MGMT)-associated resistance mechanisms. These findings identify MPT786 as a lead ORAI1 inhibitor derivative warranting mechanistic validation and structural optimization for GBM therapeutic development.
URI: http://repository.i3l.ac.id/jspui/handle/123456789/1534
Appears in Collections:Biomedicine

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