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可生物降解塑料的微生物酶促降解

Microbial Enzymatic Degradation of Biodegradable Plastics.

作者信息

Bano Kulsoom, Kuddus Mohammed, Zaheer Mohammed R, Zia Qamar, Khan Mohammed F, Ashraf Ghulam Md, Gupta Anamika, Aliev Gjumrakch

机构信息

Protein Research Laboratory, Department of Bioengineering, Integral University, Lucknow, U.P., India.

Protein Research Laboratory, Department of Bioengineering, Integral University, Lucknow, India.

出版信息

Curr Pharm Biotechnol. 2017;18(5):429-440. doi: 10.2174/1389201018666170523165742.

Abstract

BACKGROUND

The renewable feedstock derived biodegradable plastics are important in various industries such as packaging, agricultural, paper coating, garbage bags and biomedical implants. The increasing water and waste pollution due to the available decomposition methods of plastic degradation have led to the emergence of biodegradable plastics and biological degradation with microbial (bacteria and fungi) extracellular enzymes. The microbes utilize biodegradable polymers as the substrate under starvation and in unavailability of microbial nutrients. Microbial enzymatic degradation is suitable from bioremediation point of view as no waste accumulation occurs.

METHODS

It is important to understand the microbial interaction and mechanism involved in the enzymatic degradation of biodegradable plastics under the influence of several environmental factors such as applied pH, thermo-stability, substrate molecular weight and/or complexity. To study the surface erosion of polymer film is another approach for hydrolytic degradation characteristion.

RESULTS

The degradation of biopolymer is associated with the production of low molecular weight monomer and generation of carbon dioxide, methane and water molecule. This review reported the degradation study of various existing biodegradable plastics along with the potent degrading microbes (bacteria and fungi). Patents available on plastic biodegradation with biotechnological significance is also summarized in this paper.

CONCLUSION

This paper assesses that new disposal technique should be adopted for the degradation of polymers and further research is required for the economical production of biodegradable plastics along with their enzymatic degradation.

摘要

背景

可再生原料衍生的可生物降解塑料在包装、农业、纸张涂层、垃圾袋和生物医学植入物等各个行业中都很重要。由于现有的塑料降解分解方法导致水和废物污染日益严重,可生物降解塑料以及利用微生物(细菌和真菌)胞外酶进行的生物降解应运而生。在饥饿和微生物营养物质缺乏的情况下,微生物将可生物降解聚合物用作底物。从生物修复的角度来看,微生物酶促降解是合适的,因为不会产生废物积累。

方法

了解在诸如施加的pH值、热稳定性、底物分子量和/或复杂性等几种环境因素影响下,参与可生物降解塑料酶促降解的微生物相互作用和机制非常重要。研究聚合物薄膜的表面侵蚀是表征水解降解的另一种方法。

结果

生物聚合物的降解与低分子量单体的产生以及二氧化碳、甲烷和水分子的生成有关。本综述报道了各种现有可生物降解塑料的降解研究以及强效降解微生物(细菌和真菌)。本文还总结了具有生物技术意义的塑料生物降解方面的现有专利。

结论

本文评估认为,应采用新的处置技术来降解聚合物,并且在可生物降解塑料的经济生产及其酶促降解方面还需要进一步研究。

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