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Utilization of Fishery Processing By-Product Squid Pens for α-Glucosidase Inhibitors Production by Paenibacillus sp.

机译:利用渔业加工副产品鱿鱼钢型肺糖苷抑制剂的培养型Sp。

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摘要

The supernatants (the solution part received after centrifugation) of squid pens fermented by four species of Paenibacillus showed potent inhibitory activity against α-glucosidases derived from yeast (79–98%) and rats (76–83%). The inhibition of acarbose—a commercial antidiabetic drug, used against yeast and rat α-glucosidases—was tested for comparison; it showed inhibitory activity of 64% and 88%, respectively. Other chitinolytic or proteolytic enzyme-producing bacterial strains were also used to ferment squid pens, but no inhibition activity was detected from the supernatants. Paenibacillus sp. TKU042, the most active α-glucosidase inhibitor (aGI)-producing strain, was selected to determine the optimal cultivation parameters. This bacterium achieved the highest aGI productivity (527 µg/mL) when 1% squid pens were used as the sole carbon/nitrogen source with a medium volume of 130 mL (initial pH 6.85) in a 250 mL flask (48% of air head space), at 30 °C for 3–4 d. The aGI productivity increased 3.1-fold after optimization of the culture conditions. Some valuable characteristics of Paenibacillus aGIs were also studied, including pH and thermal stability and specific inhibitory activity. These microbial aGIs showed efficient inhibition against α-glucosidases from rat, yeast, and bacteria, but weak inhibition against rice α-glucosidase with IC50 values of 362, 252, 189, and 773 µg/mL, respectively. In particular, these aGIs showed highly stable activity over a large pH (2–13) and temperature range (40–100 °C). Various techniques, including: Diaoin, Octadecylsilane opened columns, and preparative HPLC coupled with testing bioactivity resulted in isolating a main active compound; this major inhibitor was identified as homogentisic acid (HGA). Notably, HGA was confirmed as a new inhibitor, a non-sugar-based aGI, and as possessing stronger activity than acarbose with IC50, and maximum inhibition values of 220 μg/mL, 95%, and 1510 μg/mL, 65%, respectively. These results suggest that squid pens, an abundant and low-cost fishery processing by-product, constitute a viable source for the production of antidiabetic materials via fermentation by strains of Paenibacillus. This fermented product shows promising applications in diabetes or diabetes related to obesity treatment due to their stability, potent bioactivity, and efficient inhibition against mammalian enzymes.
机译:将上清液通过4种类芽孢杆菌的发酵鱿鱼笔(离心后接收到的解决方案的一部分)显示出有效的抑制活性对来自酵母(79-98%)和大鼠(76-83%)衍生的α葡糖苷酶。阿卡波糖-商用抗糖尿病药的抑制,抗酵母和大鼠用于α葡萄糖苷酶 - 用于对比测试;它分别显示出64%和88%的抑制活性,。其它几丁质或蛋白水解酶产生细菌菌株也用于发酵鱿鱼笔,但是从上清液中没有检测到抑制活性。芽孢杆菌属。 TKU042,最活跃的α葡萄糖苷酶抑制剂(AGI)产生应变,选择以确定最佳的培养参数。这种细菌获得的最高AGI生产率(527微克/毫升),当1%鱿鱼笔被用作与130毫升(初始pH 6.85)的在空气中的头的250ml烧瓶中,(48%的介质体积唯一碳源/氮源空间),在30℃下3-4 d。该AGI生产率提高的培养条件优化后的3.1倍。类芽孢杆菌AGIS的一些有价值的特性进行了研究,包括pH和热稳定性和特异性抑制活性。这些微生物AGIS显示对α葡萄糖苷酶抑制效率从大鼠,酵母和细菌,但弱抑制针对稻α葡糖苷酶分别为362,252,189的IC 50个值,和773微克/毫升。特别地,这些AGIS表明高度稳定的活性在大的pH值(2-13)和温度范围(40-100℃)。多种技术,包括:Diaoin,十八烷基硅烷开的列,并加上测试生物活性制备HPLC导致分离出主要活性化合物;这主要抑制剂被确定为尿黑酸(HGA)。值得注意的是,HGA被确认为一个新的抑制剂,非基于糖AGI,并且为具有比用IC50阿卡波糖更强的活性,和220微克/毫升,95%,和1510微克/毫升的最大抑制值,65%,分别。这些结果表明,鱿鱼笔,副产品丰富且低成本的渔业处理,构成为通过发酵生产抗糖尿病物质的类芽孢杆菌由菌株一个可行的来源。此发酵产品展示,由于其稳定性,强大的生物活性,以及​​对哺乳动物酶有效抑制,看好在糖尿病或肥胖有关的糖尿病治疗的应用。

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