Microbial degradation of polylactic acid bioplastic

In modern urban society, plastic has become a major component in many applications. Despite their usefulness, plastics are known for their alarming resistance to biodegradation and therefore pose a huge burden on the environment. The surge in plastic waste has led to the development of biodegradable...

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Main Authors: Ahmad Kamarudin, Nor Hafizah, Muhd Noor, Noor Dina, Raja Abd Rahman, Raja Noor Zaliha
Format: Article
Published: Universiti Malaysia Terengganu 2021
Online Access:http://psasir.upm.edu.my/id/eprint/94178/
https://jssm.umt.edu.my/?page_id=4926
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.941782023-05-09T02:53:28Z http://psasir.upm.edu.my/id/eprint/94178/ Microbial degradation of polylactic acid bioplastic Ahmad Kamarudin, Nor Hafizah Muhd Noor, Noor Dina Raja Abd Rahman, Raja Noor Zaliha In modern urban society, plastic has become a major component in many applications. Despite their usefulness, plastics are known for their alarming resistance to biodegradation and therefore pose a huge burden on the environment. The surge in plastic waste has led to the development of biodegradable plastics. Biodegradable plastics are perceived to be one of the sustainable ways to reduce plastic wastes. Among the biodegradable plastics, polylactic acid (PLA), a bio-based plastic, has been widely used for diverse applications. PLA however, is known to be less susceptible to biodegradation and requires longer time to degrade in the natural environment compared to other aliphatic polyesters. Therefore, identification of PLA-degraders is the current focus of research. Potential PLA-degraders have been isolated from various sources, but the number is still limited. Considering temperature as one of the important factors in biodegradation, in this review, we categorize PLA degraders into three groups; thermophilic, mesophilic and psychrophilic, and discuss their relevance to PLA biodegradation. Enzymes associated with PLA degradation are described according to their temperature preference. One of the current limitations is the structural insights into the catalytic mechanism. Discovery of more PLA-degraders and understanding of the mechanism could aid in designing strategies to accelerate the biodegradation process. Universiti Malaysia Terengganu 2021-10 Article PeerReviewed Ahmad Kamarudin, Nor Hafizah and Muhd Noor, Noor Dina and Raja Abd Rahman, Raja Noor Zaliha (2021) Microbial degradation of polylactic acid bioplastic. Journal of Sustainability Science and Management, 16 (7). 299 - 317. ISSN 1823-8556; ESSN: 2672-7226 https://jssm.umt.edu.my/?page_id=4926 10.46754/jssm.2021.10.021
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description In modern urban society, plastic has become a major component in many applications. Despite their usefulness, plastics are known for their alarming resistance to biodegradation and therefore pose a huge burden on the environment. The surge in plastic waste has led to the development of biodegradable plastics. Biodegradable plastics are perceived to be one of the sustainable ways to reduce plastic wastes. Among the biodegradable plastics, polylactic acid (PLA), a bio-based plastic, has been widely used for diverse applications. PLA however, is known to be less susceptible to biodegradation and requires longer time to degrade in the natural environment compared to other aliphatic polyesters. Therefore, identification of PLA-degraders is the current focus of research. Potential PLA-degraders have been isolated from various sources, but the number is still limited. Considering temperature as one of the important factors in biodegradation, in this review, we categorize PLA degraders into three groups; thermophilic, mesophilic and psychrophilic, and discuss their relevance to PLA biodegradation. Enzymes associated with PLA degradation are described according to their temperature preference. One of the current limitations is the structural insights into the catalytic mechanism. Discovery of more PLA-degraders and understanding of the mechanism could aid in designing strategies to accelerate the biodegradation process.
format Article
author Ahmad Kamarudin, Nor Hafizah
Muhd Noor, Noor Dina
Raja Abd Rahman, Raja Noor Zaliha
spellingShingle Ahmad Kamarudin, Nor Hafizah
Muhd Noor, Noor Dina
Raja Abd Rahman, Raja Noor Zaliha
Microbial degradation of polylactic acid bioplastic
author_facet Ahmad Kamarudin, Nor Hafizah
Muhd Noor, Noor Dina
Raja Abd Rahman, Raja Noor Zaliha
author_sort Ahmad Kamarudin, Nor Hafizah
title Microbial degradation of polylactic acid bioplastic
title_short Microbial degradation of polylactic acid bioplastic
title_full Microbial degradation of polylactic acid bioplastic
title_fullStr Microbial degradation of polylactic acid bioplastic
title_full_unstemmed Microbial degradation of polylactic acid bioplastic
title_sort microbial degradation of polylactic acid bioplastic
publisher Universiti Malaysia Terengganu
publishDate 2021
url http://psasir.upm.edu.my/id/eprint/94178/
https://jssm.umt.edu.my/?page_id=4926
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