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纳米药物的药代动力学、代谢、分布及渗透性

Pharmacokinetics, Metabolism, Distribution and Permeability of Nanomedicine.

作者信息

Ravindran Selvan, Suthar Jitendra Kumar, Rokade Rutuja, Deshpande Pooja, Singh Pooja, Pratinidhi Ashutosh, Khambadkhar Rajeshree, Utekar Srushti

机构信息

Symbiosis School of Biological Sciences, Symbiosis International (Deemed University), Pune, India.

出版信息

Curr Drug Metab. 2018;19(4):327-334. doi: 10.2174/1389200219666180305154119.

Abstract

BACKGROUND

Medical application of nanotechnology is termed as Nanomedicine and is widely used in healthcare industries. Nanotechnology has helped Physicians, Scientists and Technologists to understand the changes in cellular levels to develop nanomedicines and address the challenges faced by the healthcare sectors. Nanoparticles with less than 1nm in size have been used as drug delivery and gene delivery systems to accelerate the drug action in humans. Size of nanomaterials is akin to that of biomolecules and expected to have better interactions. Hence, its utility for various biomedical applications is explored.

OBJECTIVE

Pharmacokinetics, metabolism, permeability, distribution and elimination studies of nanoparticles are essential to understand its potency, toxicity threshold and confirm its safe use in humans. Reports were available for toxicity studies on nanoparticles, but work on metabolism, pharmacokinetics, distribution and permeability of nanomedicine is limited. Hence, the main focus of this review article is about metabolism, pharmacokinetics, permeability and biodistribution of nanomaterials used in nanomedicine.

CONCLUSION

Nanomedicine is increasingly becoming important in the treatment of diseases and diagnosis. Size of the particle plays an important role. As the particle size decreases its effect to cure the disease increases. Pharmacokinetics, bioavailability, half-life, metabolism, biodistribution and permeability of nanomedicine were found to be better than that of microsized drugs. In vitro and In vivo ADME (Absorption, Distribution, Metabolism and Excretion) studies are mandatory for pharmaceutical organic drugs. Similarly, nanomaterials should be subjected to both in vitro and in vivo ADME studies. Thus, nanomedicine can assist in the development of safe personalized medicine in humans.

摘要

背景

纳米技术在医学上的应用被称为纳米医学,在医疗保健行业中广泛使用。纳米技术帮助医生、科学家和技术专家了解细胞水平的变化,以开发纳米药物并应对医疗保健部门面临的挑战。尺寸小于1纳米的纳米颗粒已被用作药物递送和基因递送系统,以加速药物在人体内的作用。纳米材料的尺寸与生物分子相似,预计会有更好的相互作用。因此,人们探索了其在各种生物医学应用中的效用。

目的

纳米颗粒的药代动力学、代谢、渗透性、分布和消除研究对于了解其效力、毒性阈值并确认其在人体中的安全使用至关重要。关于纳米颗粒毒性研究的报告已有,但关于纳米药物代谢、药代动力学、分布和渗透性的研究有限。因此,这篇综述文章的主要重点是纳米医学中使用的纳米材料的代谢、药代动力学、渗透性和生物分布。

结论

纳米医学在疾病治疗和诊断中越来越重要。颗粒大小起着重要作用。随着颗粒尺寸减小,其治疗疾病的效果增加。发现纳米药物的药代动力学、生物利用度、半衰期、代谢、生物分布和渗透性优于微米级药物。对于药用有机药物,体外和体内ADME(吸收、分布、代谢和排泄)研究是必不可少的。同样,纳米材料也应进行体外和体内ADME研究。因此,纳米医学可以帮助开发安全的个性化人类药物。

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