Matin Mohammed M, Sharma Tarun, Sabharwal Sushma G, Dhavale Dilip D
Garware Research Centre, Department of Chemistry, University of Pune, Pune 411 007, India.
Org Biomol Chem. 2005 May 7;3(9):1702-7. doi: 10.1039/b418283a. Epub 2005 Mar 29.
An efficient strategy for the synthesis of 5-hydroxy substituted isofagomine analogues and , having both -CH2OH/CH3 and -OH functionality at the C-5 position, and evaluation of their inhibitory potency is reported. The synthetic methodology involves the aldol-Cannizzaro reaction of easily available alpha-d-xylopentodialdose followed by hydrogenolysis to afford the triol . Selective amidation of the alpha- and beta-hydroxymethyl group at C-4, deprotection of the 1,2-acetonide group and hydrogenation gave the target molecules, which were found to be potent against beta-glycosidases with IC50 values in the micro molar range. Compound showed excellent potency against glycosidases and human salivary amylase.
报道了一种合成5-羟基取代异法戈明类似物的有效策略,该类似物在C-5位同时具有-CH2OH/CH3和-OH官能团,并对其抑制活性进行了评估。合成方法包括易得的α-D-木糖戊二醛的羟醛-坎尼扎罗反应,然后进行氢解得到三醇。对C-4位的α-和β-羟甲基进行选择性酰胺化,1,2-丙酮叉基团脱保护和氢化得到目标分子,发现这些分子对β-糖苷酶具有强效,IC50值在微摩尔范围内。化合物对糖苷酶和人唾液淀粉酶显示出优异的活性。