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标记的埃洛石纳米管作为脑微血管内皮细胞间递送的载体

Tagged Halloysite Nanotubes as a Carrier for Intercellular Delivery in Brain Microvascular Endothelium.

作者信息

Saleh Mahdi Yar, Prajapati Neela, DeCoster Mark A, Lvov Yuri

机构信息

Institute for Micromanufacturing and Biomedical Engineering Program, Louisiana Tech University, Ruston, LA, United States.

出版信息

Front Bioeng Biotechnol. 2020 May 14;8:451. doi: 10.3389/fbioe.2020.00451. eCollection 2020.


DOI:10.3389/fbioe.2020.00451
PMID:32478061
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7240041/
Abstract

Neurological disorders that are characterized by unpredictable seizures affect people of all ages. We proposed the use of nanocarriers such as halloysite nanotubes to penetrate the blood-brain barrier and effectively deliver the payload over an extended time period. These 50-nm diameter tubes are a natural biocompatible nanomaterial available in large quantities. We proved a prolonged gradual drug delivery mechanism by the nanotube encapsulating rhodamine isothiocyanate and then ionomycin into brain microvascular endothelial cells (BMVECs). Through delayed diffusion, the nanotubes effectively delivered the drug to the primary BMVECs without killing them, by binding and penetration in time periods of 1 to 24 h.

摘要

以不可预测的癫痫发作为特征的神经系统疾病影响着所有年龄段的人。我们提议使用诸如埃洛石纳米管之类的纳米载体穿透血脑屏障,并在较长时间内有效地递送有效载荷。这些直径为50纳米的管子是一种大量可得的天然生物相容性纳米材料。我们通过将异硫氰酸罗丹明和离子霉素封装在纳米管中,然后将其导入脑微血管内皮细胞(BMVECs),证明了一种延长的渐进性药物递送机制。通过延迟扩散,纳米管在1至24小时的时间段内通过结合和穿透,有效地将药物递送至原代BMVECs,而不会杀死它们。

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本文引用的文献

[1]
Differential Expression of CD31 and Von Willebrand Factor on Endothelial Cells in Different Regions of the Human Brain: Potential Implications for Cerebral Malaria Pathogenesis.

Brain Sci. 2020-1-6

[2]
Biomedical potential of clay nanotube formulations and their toxicity assessment.

Expert Opin Drug Deliv. 2019-9-12

[3]
Selective Antimicrobial Effects of Curcumin@Halloysite Nanoformulation: A Caenorhabditis elegans Study.

ACS Appl Mater Interfaces. 2019-6-21

[4]
Rod in Tube: A Novel Nanoplatform for Highly Effective Chemo-Photothermal Combination Therapy toward Breast Cancer.

ACS Appl Mater Interfaces. 2019-1-18

[5]
Tubule Nanoclay-Organic Heterostructures for Biomedical Applications.

Macromol Biosci. 2018-12-19

[6]
Ionophores: Potential Use as Anticancer Drugs and Chemosensitizers.

Cancers (Basel). 2018-9-27

[7]
Functionalization of Halloysite Nanotubes via Grafting of Dendrimer for Efficient Intracellular Delivery of siRNA.

Bioconjug Chem. 2018-7-10

[8]
Preparation of multifunctional PEG-graft-Halloysite Nanotubes for Controlled Drug Release, Tumor Cell Targeting, and Bio-imaging.

Colloids Surf B Biointerfaces. 2018-6-19

[9]
Halloysite nanotubes-induced Al accumulation and oxidative damage in liver of mice after 30-day repeated oral administration.

Environ Toxicol. 2018-2-19

[10]
Multifunctional halloysite nanotubes for targeted delivery and controlled release of doxorubicin in-vitro and in-vivo studies.

Nanotechnology. 2017-8-2

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