Sharma Himanshu, Garg Nitika, Dhankhar Sanchit, MIttal Pooja, Chauhan Samrat, Saini Monika
Chitkara College of Pharmacy, Chitkara University, Rajpura 140401, Punjab, India.
MM College of Pharmacy, Maharishi Markandeshwar University, Mullana 133207, Ambala, Haryana, India.
Pharm Nanotechnol. 2024 Mar 18. doi: 10.2174/0122117385291530240305044703.
The purpose of this review article is to provide a complete overview of the fastdeveloping topic of biobased nanomaterials and the various uses that they have. An extensive study into the utilization of biological resources for nanotechnology has been motivated by the growing demand for materials that are both sustainable and favorable to the environment. In this review, the different uses of biobased nanomaterials across a variety of fields are investigated. When it comes to drug delivery systems, biosensors, nanocarriers, and catalysts, biobased nanomaterials are interesting choices because of their unique qualities. These properties include biocompatibility, programmable surface chemistry, and inherent functionality. Also, in the biomedical field, biobased nanomaterials offer promising prospects for revolutionizing medical diagnostics and therapies. Their biocompatibility, tunable surface chemistry, and inherent functionalities make them attractive candidates for applications such as targeted drug delivery, imaging contrast agents, and tissue engineering scaffolds. In addition, the study discusses the current difficulties and potential future developments in the industry, emphasizing the necessity of interdisciplinary collaboration and ongoing innovation. The incorporation of nanomaterials derived from biological sources into conventional applications holds tremendous potential for the advancement of sustainable development and provides solutions to global concerns. For the purpose of providing researchers, scientists, and professionals with a complete grasp of the synthesis, characterization, and applications of biobased nanomaterials, the purpose of this review is to serve as a helpful resource.
这篇综述文章的目的是全面概述快速发展的生物基纳米材料这一主题及其各种用途。对利用生物资源进行纳米技术的广泛研究,是由对可持续且环保材料日益增长的需求所推动的。在这篇综述中,研究了生物基纳米材料在各个领域的不同用途。在药物递送系统、生物传感器、纳米载体和催化剂方面,生物基纳米材料因其独特性质而成为有趣的选择。这些性质包括生物相容性、可编程表面化学和固有功能。此外,在生物医学领域,生物基纳米材料为革新医学诊断和治疗提供了广阔前景。它们的生物相容性、可调表面化学和固有功能使其成为靶向药物递送、成像造影剂和组织工程支架等应用的有吸引力的候选材料。此外,该研究讨论了该行业当前的困难和未来潜在的发展,强调了跨学科合作和持续创新的必要性。将源自生物源的纳米材料纳入传统应用对可持续发展的推进具有巨大潜力,并为全球关注的问题提供解决方案。为了让研究人员、科学家和专业人士全面掌握生物基纳米材料的合成、表征和应用,这篇综述旨在成为一个有用的资源。