The blood-prostate barrier: an obstacle to drug delivery into the prostate.

IF 2.8 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Yixuan Mou, Min Cao, Dahong Zhang
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Abstract

The blood-prostate barrier (BPB), a non-static physical barrier, stands as an obstacle between the prostate stroma and the lumen of the prostate gland tube. The barrier has the ability to dynamically regulate and strictly control the mass exchange between the blood and the prostate, thereby limiting drug penetration into the prostate. The basement membrane, fibrous stromal layer, capillary endothelial cell, prostatic ductal epithelial cell, lipid layer, etc., have been confirmed to be involved in the composition of the barrier structure and altered membrane permeability mainly by regulating the size of paracellular ion pores. Various studies have been conducted to improve the efficiency of drug therapy for prostate diseases by changing the administration approaches, improving barrier permeability and increasing drug penetration. To gain a full understanding of BPB, the composition of BPB, the methodology for evaluating the permeability of BPB and alterations in barrier function under pathological conditions are summarized in this review. To find a shortcut for drug delivery across BPB, the biodistribution of drugs in the prostate and different methods of improving drug penetration across BPB are outlined. This review offers an applied perspective on recent advances in drug delivery across BPB.

血-前列腺屏障:药物进入前列腺的障碍。
血前列腺屏障(BPB)是一种非静态的物理屏障,是前列腺间质和前列腺管管腔之间的屏障。该屏障具有动态调节和严格控制血液与前列腺之间的物质交换的能力,从而限制药物渗入前列腺。基底膜、纤维间质层、毛细血管内皮细胞、前列腺导管上皮细胞、脂质层等已被证实主要通过调节细胞旁离子孔的大小参与屏障结构的组成和膜通透性的改变。通过改变给药方式、改善屏障渗透性和增加药物渗透来提高前列腺疾病药物治疗的效率,已经进行了各种研究。本文就脑屏障通透性的评价方法以及病理条件下脑屏障功能的变化进行综述。本文概述了药物在前列腺内的生物分布以及改善药物在前列腺内渗透的不同方法,以寻找药物通过前列腺外壁的捷径。本文综述了跨BPB给药的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current drug delivery
Current drug delivery PHARMACOLOGY & PHARMACY-
CiteScore
5.10
自引率
4.20%
发文量
170
期刊介绍: Current Drug Delivery aims to publish peer-reviewed articles, research articles, short and in-depth reviews, and drug clinical trials studies in the rapidly developing field of drug delivery. Modern drug research aims to build delivery properties of a drug at the design phase, however in many cases this idea cannot be met and the development of delivery systems becomes as important as the development of the drugs themselves. The journal aims to cover the latest outstanding developments in drug and vaccine delivery employing physical, physico-chemical and chemical methods. The drugs include a wide range of bioactive compounds from simple pharmaceuticals to peptides, proteins, nucleotides, nucleosides and sugars. The journal will also report progress in the fields of transport routes and mechanisms including efflux proteins and multi-drug resistance. The journal is essential for all pharmaceutical scientists involved in drug design, development and delivery.
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