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纳米科学在共轭药物开发中的进展,以增强疾病预防。

Advancement of nanoscience in development of conjugated drugs for enhanced disease prevention.

机构信息

Department of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida, Uttar Pradesh, India.

Department of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida, Uttar Pradesh, India.

出版信息

Life Sci. 2021 Mar 1;268:118859. doi: 10.1016/j.lfs.2020.118859. Epub 2021 Jan 30.

Abstract

Nanoscience and nanotechnology is a recently emerging and rapid developing field of science and has also been explored in the fields of Biotechnology and Medicine. Nanoparticles are being used as tools for diagnostic purposes and as a medium for the delivery of therapeutic agents to the specific targeted sites under controlled conditions. The physicochemical properties of these nanoparticles give them the ability to treat various chronic human diseases by site specific drug delivery and to use in diagnosis, biosensing and bioimaging devices, and implants. According to the type of materials used nanoparticles can be classified as organic (micelles, liposomes, nanogels and dendrimers) and inorganic (including gold nanoparticles (GNPs), super-paramagnetic iron oxide nanomaterials (SPIONs), quantum dots (QDs), and paramagnetic lanthanide ions). Different types of nanoparticle are being used in conjugation with various types of biomoities (such as peptide, lipids, antibodies, nucleotides, plasmids, ligands and polysaccharides) to form nanoparticle-drug conjugates which has enhanced capacity of drug delivery at targeted sites and hence improved disease treatment and diagnosis. In this study, the summary of various types of nanoparticle-drug conjugates that are being used along with their mechanism and applications are included. In addition, the various nanoparticle-drug conjugates which are being used and which are under clinical studies along with their future opportunities and challenges are also discussed in this review.

摘要

纳米科学和纳米技术是一个新兴的快速发展的科学领域,也在生物技术和医学领域得到了探索。纳米粒子被用作诊断工具,并作为治疗剂在受控条件下递送到特定靶向部位的媒介。这些纳米粒子的物理化学性质使它们能够通过靶向药物递送治疗各种慢性人类疾病,并用于诊断、生物传感和生物成像设备以及植入物。根据所使用的材料类型,纳米粒子可分为有机(胶束、脂质体、纳米凝胶和树枝状大分子)和无机(包括金纳米粒子(GNPs)、超顺磁性氧化铁纳米材料(SPIONs)、量子点(QDs)和顺磁镧系离子)。不同类型的纳米粒子与各种类型的生物分子(如肽、脂质、抗体、核苷酸、质粒、配体和多糖)结合使用,形成纳米粒子-药物缀合物,从而增强了在靶向部位的药物递送能力,从而改善了疾病的治疗和诊断。在本研究中,包括了正在使用的各种类型的纳米粒子-药物缀合物的摘要及其机制和应用。此外,还讨论了正在使用和正在临床研究中的各种纳米粒子-药物缀合物及其未来的机遇和挑战。

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