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Biosynthesized nanoparticles: a novel approach for cancer therapeutics.

作者信息

Chaturvedi Vivek K, Sharma Bhaskar, Tripathi Abhay Dev, Yadav Dawesh P, Singh Kshitij Rb, Singh Jay, Singh Ravindra Pratap

机构信息

Department of Gastroenterology, I.M.S., Banaras Hindu University, Varanasi, Uttar Pradesh, India.

Neurobiology Laboratory, Department of Anatomy, All India Institute of Medical Sciences, New Delhi, India.

出版信息

Front Med Technol. 2023 Jul 13;5:1236107. doi: 10.3389/fmedt.2023.1236107. eCollection 2023.


DOI:10.3389/fmedt.2023.1236107
PMID:37521721
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10374256/
Abstract

Nanotechnology has become one of the most rapid, innovative, and adaptable sciences in modern science and cancer therapy. Traditional chemotherapy has limits owing to its non-specific nature and adverse side effects on healthy cells, and it remains a serious worldwide health issue. Because of their capacity to specifically target cancer cells and deliver therapeutic chemicals directly to them, nanoparticles have emerged as a viable strategy for cancer therapies. Nanomaterials disclose novel properties based on size, distribution, and shape. Biosynthesized or biogenic nanoparticles are a novel technique with anti-cancer capabilities, such as triggering apoptosis in cancer cells and slowing tumour growth. They may be configured to deliver medications or other therapies to specific cancer cells or tumour markers. Despite their potential, biosynthesized nanoparticles confront development obstacles such as a lack of standardisation in their synthesis and characterization, the possibility of toxicity, and their efficiency against various forms of cancer. The effectiveness and safety of biosynthesized nanoparticles must be further investigated, as well as the types of cancer they are most successful against. This review discusses the promise of biosynthesized nanoparticles as a novel approach for cancer therapeutics, as well as their mode of action and present barriers to their development.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b45/10374256/a5593e5bda07/fmedt-05-1236107-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b45/10374256/e20e64b5ecbc/fmedt-05-1236107-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b45/10374256/a5593e5bda07/fmedt-05-1236107-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b45/10374256/e20e64b5ecbc/fmedt-05-1236107-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b45/10374256/a5593e5bda07/fmedt-05-1236107-g002.jpg

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本文引用的文献

[1]
Potential of Copper and Copper Compounds for Anticancer Applications.

Pharmaceuticals (Basel). 2023-2-3

[2]
Iron oxide nanoparticle targeting mechanism and its application in tumor magnetic resonance imaging and therapy.

Nanomedicine (Lond). 2022-9

[3]
Hyaluronic Acid within Self-Assembling Nanoparticles: Endless Possibilities for Targeted Cancer Therapy.

Nanomaterials (Basel). 2022-8-18

[4]
Immunomodulatory roles of selenium nanoparticles: Novel arts for potential immunotherapy strategy development.

Front Immunol. 2022

[5]
Hydroxyapatite Nanoparticles for Improved Cancer Theranostics.

J Funct Biomater. 2022-7-20

[6]
An Overview of the Importance of Transition-Metal Nanoparticles in Cancer Research.

Int J Mol Sci. 2022-6-15

[7]
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Cancers (Basel). 2022-5-28

[8]
Application of Dendrimers in Anticancer Diagnostics and Therapy.

Molecules. 2022-5-18

[9]
Plant Extracts Mediated Metal-Based Nanoparticles: Synthesis and Biological Applications.

Biomolecules. 2022-4-24

[10]
Synthesis of nanomaterials using various top-down and bottom-up approaches, influencing factors, advantages, and disadvantages: A review.

Adv Colloid Interface Sci. 2022-2

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