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Macromolecular Drug Carriers for Targeted Glioblastoma Therapy: Preclinical Studies, Challenges, and Future Perspectives.用于靶向胶质母细胞瘤治疗的大分子药物载体:临床前研究、挑战与未来展望
Front Oncol. 2018 Dec 17;8:624. doi: 10.3389/fonc.2018.00624. eCollection 2018.
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Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein.脂质插入使肿瘤穿透双特异性重组蛋白靶向功能化紫杉醇负载红细胞膜纳米系统。
Int J Nanomedicine. 2018 Sep 11;13:5347-5359. doi: 10.2147/IJN.S165109. eCollection 2018.
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Drug Delivery Nanosystems for the Localized Treatment of Glioblastoma Multiforme.用于多形性胶质母细胞瘤局部治疗的药物递送纳米系统
Materials (Basel). 2018 May 11;11(5):779. doi: 10.3390/ma11050779.
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Optogenetics: A Primer for Chemists.光遗传学:化学工作者入门
Chembiochem. 2018 Jun 18;19(12):1201-1216. doi: 10.1002/cbic.201800013. Epub 2018 May 14.
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Cellular Cyborgs: On the Precipice of a Drug Delivery Revolution.细胞半机械人:药物输送革命的前夕。
Cell Chem Biol. 2018 Jun 21;25(6):648-658. doi: 10.1016/j.chembiol.2018.03.003. Epub 2018 Apr 5.
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细胞介导光疗的按需药物输送

On Command Drug Delivery via Cell-Conveyed Phototherapeutics.

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill, NC, 27599, USA.

Division of Chemical Biology and Medicinal Chemistry, University of North Carolina, Chapel Hill, NC, 27599, USA.

出版信息

Small. 2019 Sep;15(37):e1901442. doi: 10.1002/smll.201901442. Epub 2019 Jul 28.

DOI:10.1002/smll.201901442
PMID:31353802
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6739139/
Abstract

Herein, the use of red blood cells (RBCs) as carriers of cytoplasmically interned phototherapeutic agents is described. Photolysis promotes drug release from the RBC carrier thereby providing the means to target specific diseased sites. This strategy is realized with a vitamin B12-taxane conjugate (B12-TAX), in which the drug is linked to the vitamin via a photolabile CoC bond. The conjugate is introduced into mouse RBCs (mRBCs) via a pore-forming/pore-resealing procedure and is cytoplasmically retained due to the membrane impermeability of B12. Photolysis separates the taxane from the B12 cytoplasmic anchor, enabling the drug to exit the RBC carrier. A covalently appended Cy5 antenna sensitizes the conjugate (Cy5-B12-TAX) to far red light, thereby circumventing the intense light absorbing properties of hemoglobin (350-600 nm). Microscopy and imaging flow cytometry reveal that Cy5-B12-TAX-loaded mRBCs act as drug carriers. Furthermore, intravital imaging of mice furnish a real time assessment of circulating phototherapeutic-loaded mRBCs as well as evidence of the targeted photorelease of the taxane upon photolysis. Histopathology confirms that drug release occurs in a well resolved spatiotemporal fashion. Finally, acoustic angiography is employed to assess the consequences of taxane release at the tumor site in Nu/Nu-tumor-bearing mice.

摘要

本文描述了将红细胞(RBC)作为细胞内光疗药物载体的用途。光解作用促进药物从 RBC 载体中释放,从而为靶向特定病变部位提供了手段。该策略是通过维生素 B12-紫杉醇偶联物(B12-TAX)实现的,其中药物通过光不稳定的 CoC 键与维生素连接。该偶联物通过形成孔/再封闭过程被引入小鼠 RBC(mRBC)中,并且由于 B12 的膜不可渗透性而在细胞质中保留。光解将紫杉醇与 B12 细胞质锚分离,使药物能够从 RBC 载体中逸出。共价附加的 Cy5 天线使偶联物(Cy5-B12-TAX)对远红光敏感,从而避免了血红蛋白(350-600nm)的强烈光吸收特性。显微镜和成像流式细胞术显示,Cy5-B12-TAX 负载的 mRBC 作为药物载体。此外,对小鼠的活体成像提供了循环光疗负载 mRBC 的实时评估,以及光解时 Taxane 靶向光释放的证据。组织病理学证实,药物释放以良好解析的时空方式发生。最后,声纳血管造影用于评估在 Nu/Nu-荷瘤小鼠肿瘤部位 Taxane 释放的后果。