Biologically synthesized nanoparticles: barley-mediated silver and gold nanoparticles and caged gold nanoplatform for advanced drug delivery system engineering in medicine

IF 5.5 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanoscale Research Letters Pub Date : 2024-10-07 DOI:10.1186/s11671-024-04097-3
Muhammad Talaat
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Abstract

The integration of green synthesis methods and advanced nanostructure designs holds significant promise for the development of innovative nanomaterials with diverse biomedical applications. This commentary delves into the use of barley grains for the eco-friendly synthesis of silver and gold nanoparticles, highlighting their potential as biocompatible agents with potent antibacterial properties. The barley-mediated synthesis approach not only offers a sustainable and cost-effective method for producing these nanoparticles but also underscores their remarkable efficacy against pathogenic bacteria. The barley-mediated approach not only offers a sustainable and cost-effective method for producing biocompatible nanoparticles but also demonstrates remarkable antibacterial efficacy against pathogenic bacteria. By critically evaluating the strengths and potential gaps in this synthesis approach, this commentary emphasizes the importance of integrating green synthesis techniques with advanced nanoparticle applications. Future research directions should aim at optimizing synthesis processes, ensuring enhanced stability and biocompatibility, and exploring the full potential of biologically synthesized nanoparticles in medical treatments and environmental sustainability. This focus on sustainable synthesis and application could pave the way for the next generation of nanomaterials, offering significant advancements in both healthcare and ecological preservation. By examining the strengths, gaps, and potential synergies between these two approaches, this commentary underscores the importance of sustainable synthesis techniques and the development of multifunctional nanoparticles. This integrated approach could lead to the creation of next-generation nanomaterials, offering significant advancements in medical treatments and environmental sustainability.

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生物合成纳米粒子:大麦介导的银纳米粒子、金纳米粒子和笼状金纳米平台,用于先进的药物输送系统工程。
绿色合成方法与先进的纳米结构设计相结合,为开发具有多种生物医学应用的创新纳米材料带来了巨大希望。这篇评论深入探讨了利用大麦粒以生态友好的方式合成银和金纳米粒子,强调了它们作为具有强大抗菌特性的生物相容性制剂的潜力。以大麦为媒介的合成方法不仅为生产这些纳米粒子提供了一种可持续的、具有成本效益的方法,还强调了它们对病原菌的显著功效。以大麦为媒介的合成方法不仅为生产生物相容性纳米粒子提供了一种可持续的、具有成本效益的方法,而且对病原菌具有显著的抗菌功效。通过批判性地评估这种合成方法的优势和潜在差距,本评论强调了将绿色合成技术与先进的纳米粒子应用相结合的重要性。未来的研究方向应着眼于优化合成工艺,确保增强稳定性和生物相容性,并探索生物合成纳米粒子在医疗和环境可持续性方面的全部潜力。对可持续合成和应用的关注可为下一代纳米材料铺平道路,在医疗保健和生态保护方面取得重大进展。通过研究这两种方法的优势、差距和潜在协同作用,本评论强调了可持续合成技术和多功能纳米粒子开发的重要性。这种综合方法可创造出下一代纳米材料,在医疗和环境可持续性方面取得重大进展。
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来源期刊
Nanoscale Research Letters
Nanoscale Research Letters 工程技术-材料科学:综合
CiteScore
11.30
自引率
0.00%
发文量
110
审稿时长
48 days
期刊介绍: Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.
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