Advancements in microbial production of polyhydroxyalkanoates (PHA) from wastes for sustainable active food packaging: An eclectic review

IF 3.4 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Sunita Adak , Ramalingam Kayalvizhi , Moumita Bishai , Samuel Jacob , Debajyoti Kundu
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Abstract

Search for alternatives to synthetic plastics led to the development of eco-friendly degradable polymers of natural origin termed ‘bioplastic’ which is a sustainable option to reduce the reliance on fossil fuel resources and address the needs of pressing environmental problems. Food packaging has become an important aspect of supply chain management that not only governs the food from spoilage but also contributes to a sensible biocompatible material, safe for human consumption as there is a recent concern on microplastic leaching. Polyhydroxyalkanoates (PHAs), derived from microorganisms, are extensively used as a polymeric base for packaging applications in food industries as they offer advantages such as biodegradability, non-toxicity, hydrophobicity, thermoplasticity, and superior barrier properties, thereby making them a promising alternative to conventional synthetic plastics. However, challenges related to material properties, performance, and cost of the product must be addressed for PHA to make it an economical and feasible packaging material. Recent developments in PHA formulations in terms of technology, additives, and production factors have led to improvement in the polymer properties and beaconed the advent of active packaging. PHA-based packaging systems can redefine food industry packaging, turning it from a passive physical entity into an active solution that sustainably ensures food quality and safety. This review examines the sustainable microbial production of PHA from waste resources, recent advancements in PHA formulations, and their impact on material properties. It highlights emerging trends in active food packaging with PHA, such as controlled-release, antimicrobial and antioxidant properties, advanced barrier properties and spoilage indicators.

Abstract Image

从废物中利用微生物生产聚羟基烷酸(PHA)以实现可持续活性食品包装的进展:综述
在寻找合成塑料替代品的过程中,开发出了生态友好型可降解天然聚合物,即 "生物塑料",这是一种可持续的选择,可减少对化石燃料资源的依赖,并解决紧迫的环境问题。食品包装已成为供应链管理的一个重要方面,它不仅能防止食品变质,还能提供一种合理的生物相容性材料,可供人类安全食用,因为最近人们对微塑料沥滤问题十分关注。从微生物中提取的聚羟基烷酸酯(PHAs)具有生物降解性、无毒性、疏水性、热塑性和优异的阻隔性等优点,因此被广泛用作食品工业包装应用的聚合物基材,从而使其成为传统合成塑料的理想替代品。然而,要使 PHA 成为一种经济可行的包装材料,必须解决与材料特性、性能和产品成本有关的难题。PHA 配方在技术、添加剂和生产因素方面的最新发展改善了聚合物的性能,并预示着活性包装的到来。基于 PHA 的包装系统可以重新定义食品工业包装,将其从被动的物理实体转变为可持续确保食品质量和安全的主动解决方案。本综述探讨了利用废弃资源以可持续微生物方式生产 PHA、PHA 配方的最新进展及其对材料特性的影响。它强调了 PHA 活性食品包装的新趋势,例如控释、抗菌和抗氧化特性、高级阻隔特性和腐败指标。
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来源期刊
Biocatalysis and agricultural biotechnology
Biocatalysis and agricultural biotechnology Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
7.70
自引率
2.50%
发文量
308
审稿时长
48 days
期刊介绍: Biocatalysis and Agricultural Biotechnology is the official journal of the International Society of Biocatalysis and Agricultural Biotechnology (ISBAB). The journal publishes high quality articles especially in the science and technology of biocatalysis, bioprocesses, agricultural biotechnology, biomedical biotechnology, and, if appropriate, from other related areas of biotechnology. The journal will publish peer-reviewed basic and applied research papers, authoritative reviews, and feature articles. The scope of the journal encompasses the research, industrial, and commercial aspects of biotechnology, including the areas of: biocatalysis; bioprocesses; food and agriculture; genetic engineering; molecular biology; healthcare and pharmaceuticals; biofuels; genomics; nanotechnology; environment and biodiversity; and bioremediation.
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