首页> 外文期刊>Research journal of pharmacy and technology >Kinetic, Logistic, Box-Behnken model and statistical procedure for media optimization of tannase producing bacteria from Tannery Effluent and its application in Glue and gelatine production for pharma applications
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Kinetic, Logistic, Box-Behnken model and statistical procedure for media optimization of tannase producing bacteria from Tannery Effluent and its application in Glue and gelatine production for pharma applications

机译:香蒲流出物皂酶生产细菌的培养基优化培养基,物流,BoxNken模型及统计程序及其在制药应用中的应用

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摘要

A key enzyme tannase enables the degradation of gal!otannins, a type of hydrolysable tannins. A wide variety of microorganisms such as yeasts, fungi and bacteria leads to the production of tannase. Among these the tannase producing bacteria were commonly reported in dissipated water from paper, leather and forestry industries. In this study we will discuss about diverse bacteria that were isolated from the tannery effluent of several industries and its screening, characterization and the production of extracellular tannase. The production of extracellular tannase is highly influenced by Media Optimization and hence wide range of pH and temperature is utilized for the production of tannase and the optimal activity was found to be at 45°C and at a pH 6.5. The placket-Burman Logistic, Kinectic and Box-Behnken models were employed to optimize the media for tannase producing bacteria. In submerged culture (SMC) and solid-state (SSC) the induction and repression pattern of tannase production can be observed and the results presented that SSC has higher potential to minimize catabolite repression. Assessment of the effect of various additives on tannase activity was also done and thus among the various metal salts tested, the enzyme was found to be strongly inhibited byHgCl2 followed by ZnC12 and MnC12. Again it was also found that EDTA and beta- mercaptoethanol had inhibitory effect where as the detergents (Tween-20, -60 and -80 as well as SDS) did not affect the activity of the enzyme. The recovery of glue and gelatin from tannery effluent was also studied and for that a three step hydrolysis process is best suited for maximum recovery of collagen hydroiysate followed by the glue and gelatine production from it. It was also reported in accordance with the antibiotic sensitivity test (Abst) that the bacteria were very sensitive for streptomycin.
机译:键酶鞣酶能够降解GAL!OT annins,一种可水解的单宁。各种微生物如酵母,真菌和细菌导致鞣酸的产生。其中,在纸张,皮革和林业工业中常见地报道生产细菌的鞣酸酶。在这项研究中,我们将讨论各种各样的细菌,这些细菌与若干行业的制革流出物分离及其筛查,表征和细胞外鞣酶的产生。细胞外鞣酶的产生受培养基优化的影响,因此使用型pH和温度范围的温度,并发现最佳活性在45℃和pH6.5处。采用Placket-Burman Logistic,Kinectic和Box-Behnken模型来优化培养的鞣蛋白产生细菌的培养基。在浸没培养物(SMC)和固态(SSC)中,可以观察到鞣酸酶产生的诱导和抑制模式,结果表明SSC具有更高的潜力,以最大限度地减少抗粘土抑制。还进行评估各种添加剂对鞣酸酶活性的影响,因此在测试的各种金属盐中,发现酶被强烈抑制的ByHCl2,其次是ZnC12和MNC12。同样,也发现EDTA和β-巯基乙醇具有抑制作用,其中作为洗涤剂(Tween-20,-60和-80以及SDS)不影响酶的活性。还研究了来自制革所流出物的胶水和明胶的回收率,并且对于三步水解过程最适合于最大限度地回收胶原醇酸盐,然后是胶水和明胶产生。还根据抗生素敏感性试验(ABST)报道,细菌对链霉素非常敏感。

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