药物输送
体内分布
肾
肾脏疾病
医学
药理学
药品
肾小球
急性肾损伤
靶向给药
肾功能
纳米技术
内科学
材料科学
生物
生物技术
体内
作者
Fatemeh Oroojalian,Fahimeh Charbgoo,Maryam Hashemi,Amir Amani,Rezvan Yazdian‐Robati,Ahad Mokhtarzadeh,Mohammad Ramezani,Michael R. Hamblin
标识
DOI:10.1016/j.jconrel.2020.02.027
摘要
The application of nanotechnology in medicine has the potential to make a great impact on human health, ranging from prevention to diagnosis and treatment of disease. The kidneys are the main organ of the human urinary system, responsible for filtering the blood, and concentrating metabolic waste into urine by means of the renal glomerulus. The glomerular filtration apparatus presents a barrier against therapeutic agents based on charge and/or molecular size. Therefore, drug delivery to the kidneys faces significant difficulties resulting in treatment failure in several renal disorders. Accordingly, different strategies have recently being explored for enhancing the delivery of therapeutic agents across the filtration barrier of the glomerulus. Nanosystems with different physicochemical properties, including size, shape, surface, charge, and possessing biological features such as high cellular internalization, low cytotoxicity, controllable pharmacokinetics and biodistribution, have shown promising results for renal therapy. Different types of nanoparticles (NPs) have been used to deliver drugs to the kidney. In this review, we discuss nanotechnology-based drug delivery approaches for acute kidney injury, chronic kidney disease, renal fibrosis, renovascular hypertension and kidney cancer.
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