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纳米悖论:应对纳米毒性以促进可持续农业、循环经济和可持续发展目标

The nano-paradox: addressing nanotoxicity for sustainable agriculture, circular economy and SDGs.

作者信息

Rajpal Vijay Rani, Nongthongbam Byonkesh, Bhatia Manika, Singh Apekshita, Raina Soom Nath, Minkina Tatiana, Rajput Vishnu D, Zahra Noreen, Husen Azamal

机构信息

Hansraj College, University of Delhi, Delhi, 110007, India.

Department of Botany, University of Delhi, Delhi, 110007, India.

出版信息

J Nanobiotechnology. 2025 Apr 24;23(1):314. doi: 10.1186/s12951-025-03371-5.

Abstract

Engineered nanomaterials (ENMs) have aroused extensive interest in agricultural, industrial, and medical applications. The integration of ENMs into the agricultural systems aligns with the principles of United Nations' sustainable development goals (SDGs), circular economy (CE) and bio-economy (BE) principles. This approach offers excellent opportunities to enhance productivity and address global climate change challenges. The revelation of the adverse effects of nanomaterials (NMs) on various organisms and ecosystems, however, has fueled the debate on 'Nano-paradox' leading to emergence of a new research domain 'Nanotoxicology'. ENMs have shown different interactions with biological and environmental systems as compared to their bulk counterparts. They bioaccumulate in organisms, soils, and other environmental matrices, move through food chains and reach higher trophic levels including humans ultimately resulting in oxidative stress and cellular damage. Understanding nano-bio interactions, the mechanism of gene- and cytotoxicity, and associated potential hazards, is therefore, essential to mitigate their toxicological outputs. This review comprehensively examines the cyto- and genotoxicity mechanisms of ENMs in biological systems, covering aspects such as their entry, uptake, cellular responses, dynamic interactions in biological environments their long-term effects and environmental risk assessment (ERA). It also discusses toxicological assessment methods, regulatory policies, strategies for toxicity management/mitigation and future research directions in nanotechnology, all within the context of SDGs, CE, promoting resource efficiency and sustainability. Navigating the nano-paradox involves balancing the benefits of nanomaterials with concerns about nanotoxicity. Prioritizing thorough research on above facets can ensure sustainability and safety, enabling responsible harnessing of nanotechnology's transformative potential in various applications including mitigating global climate change and enhancing agricultural productivity.

摘要

工程纳米材料(ENMs)在农业、工业和医学应用中引起了广泛关注。将ENMs整合到农业系统中符合联合国可持续发展目标(SDGs)、循环经济(CE)和生物经济(BE)原则。这种方法为提高生产力和应对全球气候变化挑战提供了绝佳机会。然而,纳米材料(NMs)对各种生物体和生态系统的不利影响的揭示引发了关于“纳米悖论”的争论,导致了一个新的研究领域“纳米毒理学”的出现。与它们的块状对应物相比,ENMs与生物和环境系统表现出不同的相互作用。它们在生物体、土壤和其他环境基质中生物累积,通过食物链移动并到达包括人类在内的更高营养级,最终导致氧化应激和细胞损伤。因此,了解纳米-生物相互作用、基因毒性和细胞毒性机制以及相关的潜在危害,对于减轻它们的毒理学影响至关重要。本综述全面研究了ENMs在生物系统中的细胞毒性和基因毒性机制,涵盖了它们的进入、摄取、细胞反应、在生物环境中的动态相互作用、长期影响以及环境风险评估(ERA)等方面。它还讨论了毒理学评估方法、监管政策、毒性管理/减轻策略以及纳米技术未来的研究方向,所有这些都在SDGs、CE、促进资源效率和可持续性的背景下进行。应对纳米悖论需要在纳米材料的益处与对纳米毒性的担忧之间取得平衡。优先对上述方面进行深入研究可以确保可持续性和安全性,从而能够在包括缓解全球气候变化和提高农业生产力在内的各种应用中负责任地利用纳米技术的变革潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5f0/12023416/f7d6863f532a/12951_2025_3371_Fig1_HTML.jpg

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