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硫代酰胺:免疫调节剂硫代类似物的合成、稳定性及免疫活性。利用氟苯并咪唑酮衍生物制备新型硫酰化剂。

Thioamides: synthesis, stability, and immunological activities of thioanalogues of Imreg. Preparation of new thioacylating agents using fluorobenzimidazolone derivatives.

作者信息

Zacharie B, Lagraoui M, Dimarco M, Penney C L, Gagnon L

机构信息

BioChem Pharma Inc., 275 Armand-Frappier Blvd., Laval, Quebec, Canada, H7V 4A7.

出版信息

J Med Chem. 1999 Jun 3;42(11):2046-52. doi: 10.1021/jm9900467.

DOI:10.1021/jm9900467
PMID:10354413
Abstract

Imreg (Tyr1-Gly2-Gly3) is a well-known immunostimulant. However, it possesses a short half-life. Stabilized analogues of Imreg were prepared by a regioselective insertion in which peptide bonds at position 1,2 or 2,3 were replaced by thioamide linkages. This was achieved by using new thioacylating agents based on thioacyl-fluoro-N-benzimidazolone. The synthesis and properties of these reagents are described herein. This peptide modification enhanced significantly the half-life of the thioanalogues relative to Imreg in blood. The thioanalogues and Imreg were tested in vitro in T and B cell proliferation assays and for their ability to stimulate cytotoxic T-lymphocytes (CTLs). Only thiotyrosyl glycyl glycine 11 displayed some activity as evidenced by a weak stimulation of CTLs. On the basis of this activity and the increased stability, an in vivo immunological evaluation was undertaken. Immunophenotyping of 11 revealed a significant increase in activated CTL and NK cell populations in the spleen. This expansion was also accompanied by a significant stimulation of NK cells and the B cell proliferative response. Thioanalogues of Imreg were generally nontoxic, as exemplified by 11. The latter is a promising immunostimulant which may be targeted for cancer and viral infections, where CTLs and NK cells play an important role, or as a vaccine adjuvant where stimulation of antibody-producing B cells is important.

摘要

免疫调节肽(Tyr1 - Gly2 - Gly3)是一种著名的免疫刺激剂。然而,它的半衰期较短。通过区域选择性插入制备了免疫调节肽的稳定类似物,其中第1、2位或2、3位的肽键被硫代酰胺键取代。这是通过使用基于硫代酰基 - 氟 - N - 苯并咪唑酮的新型硫代酰化剂实现的。本文描述了这些试剂的合成和性质。相对于免疫调节肽,这种肽修饰显著提高了硫代类似物在血液中的半衰期。在T细胞和B细胞增殖试验以及刺激细胞毒性T淋巴细胞(CTL)的能力方面对硫代类似物和免疫调节肽进行了体外测试。只有硫代酪氨酰甘氨酰甘氨酸11显示出一些活性,CTL的微弱刺激证明了这一点。基于这种活性和增加的稳定性,进行了体内免疫学评估。对11的免疫表型分析显示脾脏中活化的CTL和NK细胞群体显著增加。这种扩增还伴随着NK细胞的显著刺激和B细胞增殖反应。免疫调节肽的硫代类似物一般无毒,11就是一个例子。后者是一种有前途的免疫刺激剂,可用于CTL和NK细胞起重要作用的癌症和病毒感染,或作为刺激产生抗体的B细胞很重要的疫苗佐剂。

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