Palit Puja, Minkara Maya, Abida Maisha, Marwa Safa, Sen Chandrima, Roy Ayan, Pasha Md Ridoan, Mosae Paulraj Selvakumar, Saha Ayan, Ferdoush Jannatul
Department of Biological Sciences, Asian University for Women, Chittagong 4000, Bangladesh.
Department of Biology, Geology, and Environmental Science, University of Tennessee at Chattanooga, 615 McCallie Ave, Chattanooga, TN 37403, USA.
Biomolecules. 2025 May 8;15(5):684. doi: 10.3390/biom15050684.
Plastic pollution has become a significant environmental issue worldwide, with global plastic production expected to reach 1800 million tons by 2050. One of the most commonly used plastics in the world is polyethylene terephthalate (PET), a synthetic polymer that is extremely durable but difficult to degrade. Thus, PET is dangerous to human health. To address this crisis, innovative approaches are being developed, including genome editing technologies. One of the recently advanced genome editing technologies is PlastiCRISPR, a novel concept that applies CRISPR-based genome editing to transform plastic waste management. PlastiCRISPR utilizes microorganisms to degrade plastic, generating valuable bioproducts like biofuels and biochemicals. Thus, this technology offers a sustainable solution because of its simple design, adequacy, and low cost, which can be integrated into existing waste management systems. Importantly, this review focuses on the PlastiCRISPR-based management of PET because it could drastically lower plastic waste, sustain natural resources by decreasing the requirement for plastic production, minimize energy intake, etc. Overall, this review provides an overview of the principles, applications, challenges, and future prospects of PlastiCRISPR in combating plastic pollution and shaping a more sustainable future.
塑料污染已成为全球重大环境问题,预计到2050年全球塑料产量将达到18亿吨。聚对苯二甲酸乙二酯(PET)是世界上最常用的塑料之一,它是一种合成聚合物,极其耐用但难以降解。因此,PET对人类健康有害。为应对这一危机,人们正在开发创新方法,包括基因组编辑技术。最近发展起来的基因组编辑技术之一是PlastiCRISPR,这是一个新颖的概念,它应用基于CRISPR的基因组编辑来变革塑料废物管理。PlastiCRISPR利用微生物降解塑料,产生生物燃料和生化物质等有价值的生物产品。因此,这项技术因其设计简单、适用性强和成本低而提供了一种可持续的解决方案,可融入现有的废物管理系统。重要的是,本综述重点关注基于PlastiCRISPR的PET管理,因为它可以大幅减少塑料废物,通过减少对塑料生产的需求来维持自然资源,减少能源消耗等。总体而言,本综述概述了PlastiCRISPR在对抗塑料污染和塑造更可持续未来方面的原理、应用、挑战和未来前景。