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新型天然和合成的溶质载体 SGLT1 和 SGLT2 抑制剂。

Novel natural and synthetic inhibitors of solute carriers SGLT1 and SGLT2.

机构信息

Unilever Research & Development Vlaardingen The Netherlands.

Division of Drug Discovery & Safety, Leiden Academic Centre for Drug Research Leiden University Leiden The Netherlands.

出版信息

Pharmacol Res Perspect. 2019 Jul 30;7(4):e00504. doi: 10.1002/prp2.504. eCollection 2019 Aug.

Abstract

Selective analogs of the natural glycoside phloridzin are marketed drugs that reduce hyperglycemia in diabetes by inhibiting the active sodium glucose cotransporter SGLT2 in the kidneys. In addition, intestinal SGLT1 is now recognized as a target for glycemic control. To expand available type 2 diabetes remedies, we aimed to find novel SGLT1 inhibitors beyond the chemical space of glycosides. We screened a bioactive compound library for SGLT1 inhibitors and tested primary hits and additional structurally similar molecules on SGLT1 and SGLT2 (SGLT1/2). Novel SGLT1/2 inhibitors were discovered in separate chemical clusters of natural and synthetic compounds. These have IC-values in the 10-100 μmol/L range. The most potent identified novel inhibitors from different chemical clusters are (SGLT1-IC Mean ± SD, SGLT2-IC Mean ± SD): (+)-pteryxin (12 ± 2 μmol/L, 9 ± 4 μmol/L), (+)-ε-viniferin (58 ± 18 μmol/L, 110 μmol/L), quinidine (62 μmol/L, 56 μmol/L), cloperastine (9 ± 3 μmol/L, 9 ± 7 μmol/L), bepridil (10 ± 5 μmol/L, 14 ± 12 μmol/L), trihexyphenidyl (12 ± 1 μmol/L, 20 ± 13 μmol/L) and bupivacaine (23 ± 14 μmol/L, 43 ± 29 μmol/L). The discovered natural inhibitors may be further investigated as new potential (prophylactic) agents for controlling dietary glucose uptake. The new diverse structure activity data can provide a starting point for the optimization of novel SGLT1/2 inhibitors and support the development of virtual SGLT1/2 inhibitor screening models.

摘要

选择性的天然糖苷根皮苷类似物是市售药物,通过抑制肾脏中的活性钠-葡萄糖共转运蛋白 SGLT2 来降低糖尿病患者的高血糖。此外,肠道 SGLT1 现在被认为是控制血糖的靶点。为了扩大可用的 2 型糖尿病治疗方法,我们旨在寻找超越糖苷化学空间的新型 SGLT1 抑制剂。我们筛选了一个生物活性化合物库,寻找 SGLT1 抑制剂,并在 SGLT1 和 SGLT2(SGLT1/2)上测试了主要命中化合物和其他结构相似的分子。在天然和合成化合物的不同化学簇中发现了新型 SGLT1/2 抑制剂。这些抑制剂的 IC 值在 10-100 μmol/L 范围内。不同化学簇中鉴定出的最有效新型抑制剂为:(+)-pteryxin(12 ± 2 μmol/L,9 ± 4 μmol/L)、(+)-ε-viniferin(58 ± 18 μmol/L,110 μmol/L)、奎尼丁(62 μmol/L,56 μmol/L)、cloperastine(9 ± 3 μmol/L,9 ± 7 μmol/L)、bepridil(10 ± 5 μmol/L,14 ± 12 μmol/L)、trihexyphenidyl(12 ± 1 μmol/L,20 ± 13 μmol/L)和布比卡因(23 ± 14 μmol/L,43 ± 29 μmol/L)。发现的天然抑制剂可能作为控制饮食葡萄糖摄取的新的潜在(预防)药物进一步研究。新的多样化结构活性数据可以为新型 SGLT1/2 抑制剂的优化提供起点,并支持虚拟 SGLT1/2 抑制剂筛选模型的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ca0/6664820/8e6b655eaa25/PRP2-7-e00504-g001.jpg

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