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Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes

BACKGROUND: A novel brain drug delivery system using cationic bovine serum albumin (CBSA)-conjugated biodegradable polymersomes (CBSA-PO) was prepared, and its intracellular delivery mechanism and brain delivery kinetics were evaluated. METHODS AND RESULTS: Biodegradable poly(ethylene glycol)-poly(ɛ...

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Autores principales: Pang, Zhiqing, Gao, Huile, Chen, Jun, Shen, Shun, Zhang, Bo, Ren, Jinfeng, Guo, Liangran, Qian, Yong, Jiang, Xinguo, Mei, Heng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3405875/
https://www.ncbi.nlm.nih.gov/pubmed/22848168
http://dx.doi.org/10.2147/IJN.S32514
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author Pang, Zhiqing
Gao, Huile
Chen, Jun
Shen, Shun
Zhang, Bo
Ren, Jinfeng
Guo, Liangran
Qian, Yong
Jiang, Xinguo
Mei, Heng
author_facet Pang, Zhiqing
Gao, Huile
Chen, Jun
Shen, Shun
Zhang, Bo
Ren, Jinfeng
Guo, Liangran
Qian, Yong
Jiang, Xinguo
Mei, Heng
author_sort Pang, Zhiqing
collection PubMed
description BACKGROUND: A novel brain drug delivery system using cationic bovine serum albumin (CBSA)-conjugated biodegradable polymersomes (CBSA-PO) was prepared, and its intracellular delivery mechanism and brain delivery kinetics were evaluated. METHODS AND RESULTS: Biodegradable poly(ethylene glycol)-poly(ɛ-caprolactone) (PEG-PCL) was used to prepare the polymersomes, and thiolated CBSA was conjugated with the surface of the polymersome. Transmission electron microscopy and dynamic light scattering showed that the CBSA-PO had a round and vesicle-like shape, with a mean diameter of around 100 nm. Coupling of CBSA with polymersomes was confirmed by X-ray photoelectron spectroscopy. Uptake of CBSA-PO by bEnd.3 cells was significantly higher than that of unconjugated polymersomes, but was inhibited by low temperature, free CBSA, and poly-L-lysine, indicating that endocytosis was energy-driven and absorptive-mediated. Cell viability assays confirmed the good safety profile of biodegradable CBSA-PO. Pharmacokinetic results demonstrated that the polymersomes had long circulation times, and CBSA conjugation on the polymersomes significantly increased the blood–brain barrier permeability surface area product by 3.6-fold and the percentage of injected dose per gram brain (% ID/g brain) by 2.1-fold. Capillary depletion experiments showed that CBSA-PO was distributed into the brain parenchyma in a time-dependent manner, with few polymersomes detected, indicating that conjugation of polymersomes with CBSA significantly improved their transcytosis across the brain–blood barrier. CONCLUSION: These results suggest that CBSA-PO is a promising drug brain delivery carrier with low toxicity.
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spelling pubmed-34058752012-07-30 Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes Pang, Zhiqing Gao, Huile Chen, Jun Shen, Shun Zhang, Bo Ren, Jinfeng Guo, Liangran Qian, Yong Jiang, Xinguo Mei, Heng Int J Nanomedicine Original Research BACKGROUND: A novel brain drug delivery system using cationic bovine serum albumin (CBSA)-conjugated biodegradable polymersomes (CBSA-PO) was prepared, and its intracellular delivery mechanism and brain delivery kinetics were evaluated. METHODS AND RESULTS: Biodegradable poly(ethylene glycol)-poly(ɛ-caprolactone) (PEG-PCL) was used to prepare the polymersomes, and thiolated CBSA was conjugated with the surface of the polymersome. Transmission electron microscopy and dynamic light scattering showed that the CBSA-PO had a round and vesicle-like shape, with a mean diameter of around 100 nm. Coupling of CBSA with polymersomes was confirmed by X-ray photoelectron spectroscopy. Uptake of CBSA-PO by bEnd.3 cells was significantly higher than that of unconjugated polymersomes, but was inhibited by low temperature, free CBSA, and poly-L-lysine, indicating that endocytosis was energy-driven and absorptive-mediated. Cell viability assays confirmed the good safety profile of biodegradable CBSA-PO. Pharmacokinetic results demonstrated that the polymersomes had long circulation times, and CBSA conjugation on the polymersomes significantly increased the blood–brain barrier permeability surface area product by 3.6-fold and the percentage of injected dose per gram brain (% ID/g brain) by 2.1-fold. Capillary depletion experiments showed that CBSA-PO was distributed into the brain parenchyma in a time-dependent manner, with few polymersomes detected, indicating that conjugation of polymersomes with CBSA significantly improved their transcytosis across the brain–blood barrier. CONCLUSION: These results suggest that CBSA-PO is a promising drug brain delivery carrier with low toxicity. Dove Medical Press 2012 2012-07-06 /pmc/articles/PMC3405875/ /pubmed/22848168 http://dx.doi.org/10.2147/IJN.S32514 Text en © 2012 Pang et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Pang, Zhiqing
Gao, Huile
Chen, Jun
Shen, Shun
Zhang, Bo
Ren, Jinfeng
Guo, Liangran
Qian, Yong
Jiang, Xinguo
Mei, Heng
Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title_full Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title_fullStr Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title_full_unstemmed Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title_short Intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
title_sort intracellular delivery mechanism and brain delivery kinetics of biodegradable cationic bovine serum albumin-conjugated polymersomes
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3405875/
https://www.ncbi.nlm.nih.gov/pubmed/22848168
http://dx.doi.org/10.2147/IJN.S32514
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