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Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo

Photodynamic therapy (PDT) is considered an innovative and attractive modality to treat ovarian cancer. In the present study, a biodegradable polymer poly (ethylene glycol) (PEG)‐poly (lactic acid)(PLA)‐folate (FA‐PEG‐PLA) was prepared in order to synthesize an active‐targeting, water‐soluble and ph...

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Autores principales: Li, Jie, Yao, Shu, Wang, Kai, Lu, Zaijun, Su, Xuantao, Li, Li, Yuan, Cunzhong, Feng, Jinbo, Yan, Shi, Kong, Beihua, Song, Kun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5989858/
https://www.ncbi.nlm.nih.gov/pubmed/29617063
http://dx.doi.org/10.1111/cas.13605
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author Li, Jie
Yao, Shu
Wang, Kai
Lu, Zaijun
Su, Xuantao
Li, Li
Yuan, Cunzhong
Feng, Jinbo
Yan, Shi
Kong, Beihua
Song, Kun
author_facet Li, Jie
Yao, Shu
Wang, Kai
Lu, Zaijun
Su, Xuantao
Li, Li
Yuan, Cunzhong
Feng, Jinbo
Yan, Shi
Kong, Beihua
Song, Kun
author_sort Li, Jie
collection PubMed
description Photodynamic therapy (PDT) is considered an innovative and attractive modality to treat ovarian cancer. In the present study, a biodegradable polymer poly (ethylene glycol) (PEG)‐poly (lactic acid)(PLA)‐folate (FA‐PEG‐PLA) was prepared in order to synthesize an active‐targeting, water‐soluble and pharmacomodulated photosensitizer nanocarrier. Drug‐loading content, encapsulation efficiency, in vitro and in vivo release were characterized, in which hypocrellin B (HB)/FA‐PEG‐PLA micelles had a high encapsulation efficiency and much slower control release for drugs compared to free drugs (P < .05). To evaluate the targeting ability of the HB/FA‐PEG‐PLA micelles, a cellular uptake study in vitro was carried out, which showed significantly enhanced uptake of HB/FA‐PEG‐PLA micelles in SKOV3 (FR+) compared to A2780 cancer cells (FR−). The enhanced uptake of HB/FA‐PEG‐PLA micelles to cancer cells resulted in a more effective post‐PDT killing of SKOV3 cells compared to plain micelles and free drugs. Binding and uptake of HB/FA‐PEG‐PLA micelles by SKOV3 cells were also observed in vivo after ip injection of folate‐targeted micelles in tumor‐bearing ascitic ovarian cancer animals. Drug levels in ascitic tumor tissues were increased 20‐fold (P < .001), which underscored the effect of a regional therapy approach with folate targeting. Furthermore, the HB‐loaded micelles were mainly distributed in kidney and liver (the main clearance organs) in biodistribution. These results showed that our newly developed PDT photosensitizer HB/FA‐PEG‐PLA micelles have a high drug‐loading capacity, good biocompatibility, controlled drug release, and enhanced targeting and antitumor effect, which is a potential approach to future targeting ovarian cancer therapy.
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spelling pubmed-59898582018-06-20 Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo Li, Jie Yao, Shu Wang, Kai Lu, Zaijun Su, Xuantao Li, Li Yuan, Cunzhong Feng, Jinbo Yan, Shi Kong, Beihua Song, Kun Cancer Sci Original Articles Photodynamic therapy (PDT) is considered an innovative and attractive modality to treat ovarian cancer. In the present study, a biodegradable polymer poly (ethylene glycol) (PEG)‐poly (lactic acid)(PLA)‐folate (FA‐PEG‐PLA) was prepared in order to synthesize an active‐targeting, water‐soluble and pharmacomodulated photosensitizer nanocarrier. Drug‐loading content, encapsulation efficiency, in vitro and in vivo release were characterized, in which hypocrellin B (HB)/FA‐PEG‐PLA micelles had a high encapsulation efficiency and much slower control release for drugs compared to free drugs (P < .05). To evaluate the targeting ability of the HB/FA‐PEG‐PLA micelles, a cellular uptake study in vitro was carried out, which showed significantly enhanced uptake of HB/FA‐PEG‐PLA micelles in SKOV3 (FR+) compared to A2780 cancer cells (FR−). The enhanced uptake of HB/FA‐PEG‐PLA micelles to cancer cells resulted in a more effective post‐PDT killing of SKOV3 cells compared to plain micelles and free drugs. Binding and uptake of HB/FA‐PEG‐PLA micelles by SKOV3 cells were also observed in vivo after ip injection of folate‐targeted micelles in tumor‐bearing ascitic ovarian cancer animals. Drug levels in ascitic tumor tissues were increased 20‐fold (P < .001), which underscored the effect of a regional therapy approach with folate targeting. Furthermore, the HB‐loaded micelles were mainly distributed in kidney and liver (the main clearance organs) in biodistribution. These results showed that our newly developed PDT photosensitizer HB/FA‐PEG‐PLA micelles have a high drug‐loading capacity, good biocompatibility, controlled drug release, and enhanced targeting and antitumor effect, which is a potential approach to future targeting ovarian cancer therapy. John Wiley and Sons Inc. 2018-05-07 2018-06 /pmc/articles/PMC5989858/ /pubmed/29617063 http://dx.doi.org/10.1111/cas.13605 Text en © 2018 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Li, Jie
Yao, Shu
Wang, Kai
Lu, Zaijun
Su, Xuantao
Li, Li
Yuan, Cunzhong
Feng, Jinbo
Yan, Shi
Kong, Beihua
Song, Kun
Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title_full Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title_fullStr Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title_full_unstemmed Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title_short Hypocrellin B‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
title_sort hypocrellin b‐loaded, folate‐conjugated polymeric micelle for intraperitoneal targeting of ovarian cancer in vitro and in vivo
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5989858/
https://www.ncbi.nlm.nih.gov/pubmed/29617063
http://dx.doi.org/10.1111/cas.13605
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