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OT-82
本产品不向个人销售,仅用作科学研究,不用于任何人体实验及非科研性质的动物实验。
OT-82图片
规格:98%
分子量:424.47
包装与价格:
包装价格(元)
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OT-82 是一种强效、选择性和具有口服活性的 NAMPT 的抑制剂。OT-82 对造血源细胞有选择性毒性,以 NAD+ 依赖方式诱导细胞死亡。OT-82 是一种很有前途的抗肿瘤试剂 (antineoplastic agent),用于血液系统恶性肿瘤的研究。
货号:ajcx29566
CAS:1800487-55-1
分子式:C26H21FN4O
分子量:424.47
溶解度:N/A
纯度:98%
存储:Store at -20°C
库存:现货

Background:

OT-82 is a potent, selective and orally active inhibitor of NAMPT. OT-82 is selectively toxic to cells of hematopoietic origin and induces cell death in a NAD+ dependent manner. OT-82 is a promising antineoplastic agent for the study of hematological malignancies[1].

OT-82 (0.0001-10 μM; 72 hours) demonstrates tissue-selective (HP vs non-HP) cytotoxicity. It is against HP cell lines MV4-11, U937, RS4;11, HEL92.1.7 and PER485 cell growth with IC50 values of 2.11 nM, 2.70 nM, 1.05 nM and 1.36 nM, respectively. It also against nonHP cell lines MCF-7, U87, HT29, and H1299 cell growth with IC50 values of 37.92 nM, 29.52 nM, 15.67 nM and 7.95 nM , respectively[1].OT-82 demonstrates cancer-selective (tumor vs normal) cytotoxicity. It more sensitive to BMMNC from leukemia patients, the IC50 values are 31 nM and 7.10 nM for AML and ALL donors, respectively. The IC50 value is 62.69 nM for BMMNC from healthy donors[1].OT-82 (0.001-10 μM; 48 hours) inhibits recombinant NAMPT activity and causes dose-dependent reductions in cellular NAD and ATP concentrations in MV4-11 cells[1].OT-82 (0.01-100 nM; 48 hours) results in activation of caspase-3, an increase in the proportion of cells with sub-G1 DNA content, and depolarization of the mitochondrial membrane in MV4-11 cells[1]. Cell Viability Assay[1] Cell Line: HP cell lines (MV4-11, U937, RS4;11, HEL92.1.7, PER485)Non-HP cell lines (MCF-7, U87, HT29, H1299)

OT-82 (oral gavage; 20 or 40 mg/kg; 3 weeks) treatment increases survival to 100% and 56% at 40 or 20 mg/kg, respectively after treatment discontinuation in SC xenograft model of Burkitt's lymphoma[1]. Animal Model: SC xenograft model of Burkitt's lymphoma in SCID mice[1]

[1]. Korotchkina L, et al. OT-82, a novel anticancer drug candidate that targets the strong dependence of hematological malignancies on NAD biosynthesis.Leukemia. 2020 Jan 2.

 
 
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