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Discovery of a novel tetrahydroimidazo[1,2-a]pyridine-5-carboxylic acid derivative as a potent and selective heparanase-1 inhibitor utilizing an improved synthetic approach

化学 吡啶 乙酰肝素酶 立体化学 选择性 取代基 试剂 差向异构体 化学合成 生物化学 硫酸乙酰肝素 体外 药物化学 有机化学 催化作用 细胞
作者
Yudai Imai,Ryō Suzuki,Daisuke Matsuda,Nozomi Tanaka-Yamamoto,Yuta Ohki,Ryotaro Tabata,Sota Kato,Mami Sugisaki,Natsuko Fujimoto,Takuya Fukunaga,Sayaka Kato,Teisuke Takahashi,Hiroyuki Kakinuma
出处
期刊:Bioorganic & Medicinal Chemistry Letters [Elsevier]
卷期号:97: 129543-129543 被引量:2
标识
DOI:10.1016/j.bmcl.2023.129543
摘要

Heparanase-1 (HPSE1) is an endo-β-d-glucuronidase that catalyzes degradation of heparan sulfate proteoglycans. Inhibition of HPSE1 appears to be a useful therapeutic target against cancer and proteinuric kidney diseases. We previously reported tetrahydroimidazo[1,2-a]pyridine 2 as a potent HPSE1 inhibitor after optimization of the synthetic reaction. However, synthesis of 2 involves a total of 19 steps, including a cyclization process that accompanies a strong odor due to the use of Lawesson's reagent and an epimerization reaction; furthermore, 2 exhibited insufficient selectivity for HPSE1 over exo-β-d-glucuronidase (GUSβ) and glucocerebrosidase (GBA), which also needed to be addressed. First, the cyclization reaction was optimized to synthesize tetrahydroimidazo[1,2-a]pyridine without using Lawesson's reagent or epimerization, with reference to previous reports. Next, 16 and 17 containing a bulkier substituent at position 6 than the 6-methoxyl group in 2 were designed and synthesized using the improved cyclization conditions, so that the synthetic route of 16 and 17 was shortened by five steps as compared with that of 2. The inhibitory activities of 16 and 17 against GUSβ and GBA were reduced as compared with those of 2, that is, the compounds showed improved selectivity for HPSE1 over GUSβ and GBA. In addition, 16 showed enhanced inhibitory activity against HPSE1 as compared with that of 2. Compound 16 appears promising as an HPSE1 inhibitor with therapeutic potential due to its highly potent inhibitory activity against HPSE1 with high selectivity for HPSE1.
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