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基于纳米技术的纳米材料在单胃动物中替代抗生素的应用。

Use of nanotechnology-based nanomaterial as a substitute for antibiotics in monogastric animals.

作者信息

Qadeer Abdul, Khan Aamir, Khan Noor Muhammad, Wajid Abdul, Ullah Kaleem, Skalickova Sylvie, Chilala Pompido, Slama Petr, Horky Pavel, Alqahtani Mohammed S, Alreshidi Maha Awjan

机构信息

Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.

Livestock and Dairy Development (Extension), Khyber Pakhtunkhwa, Peshawar, Pakistan.

出版信息

Heliyon. 2024 May 22;10(11):e31728. doi: 10.1016/j.heliyon.2024.e31728. eCollection 2024 Jun 15.

Abstract

Nanotechnology has emerged as a promising solution for tackling antibiotic resistance in monogastric animals, providing innovative methods to enhance animal health and well-being. This review explores the novel use of nanotechnology-based nanomaterials as substitutes for antibiotics in monogastric animals. With growing global concerns about antibiotic resistance and the need for sustainable practices in animal husbandry, nanotechnology offers a compelling avenue to address these challenges. The objectives of this review are to find out the potential of nanomaterials in improving animal health while reducing reliance on conventional antibiotics. We examine various forms of nanomaterials and their roles in promoting gut health and also emphasize fresh perspectives brought by integrating nanotechnology into animal healthcare. Additionally, we delve into the mechanisms underlying the antibacterial properties of nanomaterials and their effectiveness in combating microbial resistance. By shedding light on the transformative role of nanotechnology in animal production systems. This review contributes to our understanding of how nanotechnology can provide safer and more sustainable alternatives to antibiotics.

摘要

纳米技术已成为解决单胃动物抗生素耐药性问题的一种有前景的解决方案,提供了增强动物健康和福祉的创新方法。本综述探讨了基于纳米技术的纳米材料在单胃动物中作为抗生素替代品的新用途。随着全球对抗生素耐药性的日益关注以及畜牧业可持续发展的需求,纳米技术为应对这些挑战提供了一条引人注目的途径。本综述的目的是找出纳米材料在改善动物健康同时减少对传统抗生素依赖方面的潜力。我们研究了各种形式的纳米材料及其在促进肠道健康中的作用,并强调了将纳米技术整合到动物医疗保健中带来的新视角。此外,我们深入探讨了纳米材料抗菌特性的潜在机制及其在对抗微生物耐药性方面的有效性。通过揭示纳米技术在动物生产系统中的变革性作用,本综述有助于我们理解纳米技术如何能够提供比抗生素更安全、更可持续的替代品。

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