Nanoparticle Strategies to Improve the Delivery of Anticancer Drugs across the Blood-Brain Barrier to Treat Brain Tumors.

Nanoparticle Strategies to Improve the Delivery of Anticancer Drugs across the Blood-Brain Barrier to Treat Brain Tumors.
复制标题

改善抗癌药物穿过血脑屏障的递送以治疗脑肿瘤的纳米颗粒策略。

DOI:
10.3390/pharmaceutics15071804
复制
发表时间:
2023-06-23
期刊:
影响因子:
5.4
通讯作者:
Daniels, David J.
Daniels, David J.
中科院分区:
医学2区
文献类型:
--
作者:
Vanbilloen, Wouter J. F.;Rechberger, Julian S.;Anderson, Jacob B.;Nonnenbroich, Leo F.;Zhang, Liang;Daniels, David J.

文献摘要

参考文献

相似文献

原发性脑和中枢神经系统(CNS)肿瘤是发生在脑和脊髓内的一组不同的肿瘤。尽管我们在对CNS肿瘤发生和进展的复杂生物学基础的理解方面取得了重大进展,但这些发现转化为有效疗法一直受到这些肿瘤极其敏感的位置和身体自身防御机制(例如,脑-CSF屏障和血-脑屏障),其通常保护CNS免受毒性损伤。这些屏障有效地阻止治疗剂递送至疾病部位。为了克服这些障碍,正在开发用于治疗递送的新方法,其中一种方法是利用纳米颗粒。在这里,我们将介绍该领域的现状,特别关注BBB带来的挑战,正在开发的用于靶向CNS肿瘤治疗药物递送的不同纳米颗粒类别,以及已经开发的绕过BBB并将有效的治疗药物递送到疾病部位的策略。
Primary brain and central nervous system (CNS) tumors are a diverse group of neoplasms that occur within the brain and spinal cord. Although significant advances in our understanding of the intricate biological underpinnings of CNS neoplasm tumorigenesis and progression have been made, the translation of these discoveries into effective therapies has been stymied by the unique challenges presented by these tumors’ exquisitely sensitive location and the body’s own defense mechanisms (e.g., the brain–CSF barrier and blood–brain barrier), which normally protect the CNS from toxic insult. These barriers effectively prevent the delivery of therapeutics to the site of disease. To overcome these obstacles, new methods for therapeutic delivery are being developed, with one such approach being the utilization of nanoparticles. Here, we will cover the current state of the field with a particular focus on the challenges posed by the BBB, the different nanoparticle classes which are under development for targeted CNS tumor therapeutics delivery, and strategies which have been developed to bypass the BBB and enable effective therapeutics delivery to the site of disease.
DOI: 10.3171/2020.6.peds20280
发表时间: 2020-12-01
影响因子: 1.9
作者:
Bander, Evan D.;Ramos, Alexander D.;Souweidane, Mark M.
通讯作者: Souweidane, Mark M.
DOI: 10.2174/1570159x14666160223121002
发表时间: 2017
影响因子: 5.3
作者:
Bredlau AL;Dixit S;Chen C;Broome AM
通讯作者: Broome AM
DOI: 10.1186/1556-276x-8-102
发表时间: 2013-02-22
影响因子: --
作者:
Akbarzadeh A;Rezaei-Sadabady R;Davaran S;Joo SW;Zarghami N;Hanifehpour Y;Samiei M;Kouhi M;Nejati-Koshki K
通讯作者: Nejati-Koshki K
金纳米颗粒的几何形状和表面特征会影响其生物分布和巨噬细胞的吸收。
DOI: 10.1016/j.ejpb.2010.11.010
发表时间: 2011-04
期刊: European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V
影响因子: --
作者:
Arnida;Janát-Amsbury MM;Ray A;Peterson CM;Ghandehari H
通讯作者: Ghandehari H
DOI: 10.4103/2230-973x.160844
发表时间: 2015-07
影响因子: 0.5
作者:
Bharti C;Nagaich U;Pal AK;Gulati N
通讯作者: Gulati N