Metabolic Engineered Biocatalyst: A Solution for PLA Based Problems

Author:

Riaz Sundus12ORCID,Fatima Nosheen1,Rasheed Ahmed3,Riaz Mehvish4,Anwar Faiza2,Khatoon Yamna5

Affiliation:

1. Department of Biomedical Engineering and Sciences, National University of Sciences & Technology, Islamabad, Pakistan

2. Pakistan Agricultural Research Council, FQSRI, SARC, Karachi, Pakistan

3. PhD. Scholar, Sun Yat-Sen University (East Campus), Higher Education Mega Centre North, Guangzhou, China

4. MPH, London South Bank University, UK

5. Postgraduate Scholar, Department of Agriculture and Agribusiness Management, University of Karachi, Karachi, Pakistan

Abstract

Polylactic acid (PLA) is a biodegradable thermoplastic polyester. In 2010, PLA became the second highest consumed bioplastic in the world due to its wide application. Conventionally, PLA is produced by direct condensation of lactic acid monomer and ring opening polymerization of lactide, resulting in lower molecular weight and lesser strength of polymer. Furthermore, conventional methods of PLA production require a catalyst which makes it inappropriate for biomedical applications. Newer method utilizes metabolic engineering of microorganism for direct production of PLA through fermentation which produces good quality and high molecular weight and yield as compared to conventional methods. PLA is used as decomposing packaging material, sheet casting, medical implants in the form of screw, plate, and rod pin, etc. The main focus of the review is to highlight the synthesis of PLA by various polymerization methods that mainly include metabolic engineering fermentation as well as salient biomedical applications of PLA.

Publisher

Hindawi Limited

Subject

Biomedical Engineering,Biomaterials

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