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Reclamation of Marine Chitinous Materials for the Production of α-Glucosidase Inhibitors via Microbial Conversion

机译:通过微生物转化来回收海洋几丁质材料以生产α-葡萄糖苷酶抑制剂

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摘要

Six kinds of chitinous materials have been used as sole carbonitrogen (C/N) sources for producing α-glucosidase inhibitors (aGI) by Paenibacillus sp. TKU042. The aGI productivity was found to be highest in the culture supernatants using demineralized crab shell powder (deCSP) and demineralized shrimp shell powder (deSSP) as the C/N source. The half maximal inhibitory concentration (IC50) and maximum aGI activity of fermented deCSP (38 µg/mL, 98%), deSSP (108 µg/mL, 89%), squid pen powder (SPP) (422 µg/mL, 98%), and shrimp head powder (SHP) (455 µg/mL, 92%) were compared with those of fermented nutrient broth (FNB) (81 µg/mL, 93%) and acarbose (1095 µg/mL, 74%), a commercial antidiabetic drug. The result of the protein/chitin ratio on aGI production showed that the optimal ratio was 0.2/1. Fermented deCSP showed lower IC50 and higher maximum inhibitory activity than those of acarbose against rat intestinal α-glucosidase.
机译:六种几丁质材料已被用作Paenibacillus sp。生产α-葡萄糖苷酶抑制剂(aGI)的唯一碳/氮(C / N)源。 TKU042。使用脱矿蟹壳粉(deCSP)和脱矿虾壳粉(deSSP)作为C / N源,在培养上清液中发现aGI生产率最高。发酵的deCSP(38μg/ mL,98%),deSSP(108μg/ mL,89%),鱿鱼粉(SPP)(422μg/ mL,98%)的半数最大抑制浓度(IC50)和最大aGI活性),将虾头粉(SHP)(455 µg / mL,92%)与发酵营养肉汤(FNB)(81 µg / mL,93%)和阿卡波糖(1095 µg / mL,74%)进行比较,商业抗糖尿病药。蛋白质/几丁质比例对aGI产生的结果表明,最佳比例为0.2 / 1。与阿卡波糖相比,发酵的deCSP对大鼠肠道α-葡萄糖苷酶的IC50较低,并且最大抑制活性更高。

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