癌症治疗中的纳米医学:推进精准治疗

Abdullahi Tunde Aborode , Ayomide Samson Oluwajoba , Aminat Modupe Ibrahim , Shahzaib Ahmad , Aashna Mehta , Osasere Jude-Kelly Osayawe , Damilola Oyebode , Oluwaseun Akinsola , Abraham Osinuga , Isreal Ayobami Onifade , Ibrahim O. Adelakun , Ridwan Olamilekan Adesola , Taiwo Bakare Abidola , Adedeji Daniel Ogunyemi , Oluwaseun Adeolu Ogundijo , Olamilekan Gabriel Banwo , Chibuzo H. Obiechefu
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引用次数: 0

摘要

纳米技术领域取得的进展导致了纳米医药制剂的开发,这些制剂已经证明了其作为抗击不同类型癌症的临床工具的有效性。此外,纳米药物产品还具有实现复杂靶向策略和多功能性的潜力。目前,纳米粒子在各个科学领域都有不同的应用,是当代医疗实践中的重要组成部分。这些标本已被用于不同的临床目的,包括作为药物载体、传递肿瘤基因和在成像中作为造影剂。除合成聚合物外,从有机、无机、脂质或糖类化合物中提取的各种纳米材料已被用于推进和加强新型癌症疗法。本综述的重点是纳米粒子在癌症诊断和治疗中的临床应用,特别强调其作为药物载体和靶向治疗药物的功能。
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Nanomedicine in cancer therapy: Advancing precision treatments

The progress made in the field of nanotechnology has resulted in the development of nanomedicine agents, which have demonstrated their efficacy as a promising clinical tool in the fight against different types of cancers. Furthermore, Nanomedicine products possess the potential to achieve intricate targeting strategies and multifunctionality. Currently, nanoparticles possess diverse applications across various scientific disciplines and serve as a crucial component in contemporary medical practices. The specimens have undergone analysis for diverse clinical purposes, including serving as drug carriers, delivering tumor genes, and functioning as contrast compounds in imaging. Diverse nanomaterials derived from organic, inorganic, lipid, or glycan compounds, in addition to synthetic polymers, have been employed to advance and enhance novel cancer therapeutics. The present review centers on the utilization of nanoparticles in clinical settings for the purposes of cancer diagnosis and treatment, with a particular emphasis on their function as drug carriers and targeted therapy agents.

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Advances in biomarker sciences and technology
Advances in biomarker sciences and technology Biotechnology, Clinical Biochemistry, Molecular Medicine, Public Health and Health Policy
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