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Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy

Background: Accumulating evidences indicate that nanomedicines greatly decrease the side effects and enhance the efficacy of colorectal cancer (CRC) treatment. In particular, the use of rectal delivery of nanomedicines, with advantages such as fast therapeutic effects and a diminishing hepatic first...

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Autores principales: Zhao, Ran, Du, Sujuan, Liu, Ying, Lv, Cong, Song, Yongli, Chen, Xinchun, Zhang, Bing, Li, Dan, Gao, Shan, Cui, Wei, Plikus, Maksim V., Hou, Xiaohua, Wu, Kaichun, Liu, Zhanju, Liu, Zhihua, Cong, Yingzi, Li, Yuan, Yu, Zhengquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069075/
https://www.ncbi.nlm.nih.gov/pubmed/32206110
http://dx.doi.org/10.7150/thno.40318
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author Zhao, Ran
Du, Sujuan
Liu, Ying
Lv, Cong
Song, Yongli
Chen, Xinchun
Zhang, Bing
Li, Dan
Gao, Shan
Cui, Wei
Plikus, Maksim V.
Hou, Xiaohua
Wu, Kaichun
Liu, Zhanju
Liu, Zhihua
Cong, Yingzi
Li, Yuan
Yu, Zhengquan
author_facet Zhao, Ran
Du, Sujuan
Liu, Ying
Lv, Cong
Song, Yongli
Chen, Xinchun
Zhang, Bing
Li, Dan
Gao, Shan
Cui, Wei
Plikus, Maksim V.
Hou, Xiaohua
Wu, Kaichun
Liu, Zhanju
Liu, Zhihua
Cong, Yingzi
Li, Yuan
Yu, Zhengquan
author_sort Zhao, Ran
collection PubMed
description Background: Accumulating evidences indicate that nanomedicines greatly decrease the side effects and enhance the efficacy of colorectal cancer (CRC) treatment. In particular, the use of rectal delivery of nanomedicines, with advantages such as fast therapeutic effects and a diminishing hepatic first-pass effect, is currently emerging. Method: We established a CRC targeted delivery system, in which α-lactalbumin peptosomes (PSs) co-loaded with a microRNA (miR)-31 inhibitor (miR-31i) and curcumin (Cur) were encapsuslated in thiolated TEMPO oxidized Konjac glucomannan (sOKGM) microspheres, referred as sOKGM-PS-miR-31i/Cur. The CRC targeting capability, drug release profiles, mucoadhesive-to-penetrating properties and therapeutic efficacy of sOKGM-PS-miR-31i/Cur delivery system were evaluated in colorectal cancer cells and azoxymethane-dextran sodium (AOM-DSS) induced tumor models. Results: sOKGM-PS-miR-31i/Cur delivery system were stable in the harsh gastrointestinal environment after rectal or oral administration; and were also mucoadhesive due to disulfide bond interactions with the colonic mucus layer, resulting in an enhanced drug retention and local bioavailability in the colon. Concomitantly, the released PS-miR-31i/Cur PSs from the microsphere was mucus-penetrating, efficiently passing through the colonic mucus layer, and allowed Cur and miR-31i specifically target to colon tumor cells with the guide of CD133 targeting peptides. Consequently, rectal delivery of sOKGM-PS-miR-31i/Cur microspheres suppressed tumor growth in an azoxymethane-dextran sodium sulfate (AOM-DSS)-induced tumor model. Conclusion: sOKGM-PS-miR-31i/Cur microspheres are effective rectal delivery system with combined advantages of mucoadhesive and mucus-penetrating properties, representing a potent and viable therapeutic approach for CRC.
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spelling pubmed-70690752020-03-23 Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy Zhao, Ran Du, Sujuan Liu, Ying Lv, Cong Song, Yongli Chen, Xinchun Zhang, Bing Li, Dan Gao, Shan Cui, Wei Plikus, Maksim V. Hou, Xiaohua Wu, Kaichun Liu, Zhanju Liu, Zhihua Cong, Yingzi Li, Yuan Yu, Zhengquan Theranostics Research Paper Background: Accumulating evidences indicate that nanomedicines greatly decrease the side effects and enhance the efficacy of colorectal cancer (CRC) treatment. In particular, the use of rectal delivery of nanomedicines, with advantages such as fast therapeutic effects and a diminishing hepatic first-pass effect, is currently emerging. Method: We established a CRC targeted delivery system, in which α-lactalbumin peptosomes (PSs) co-loaded with a microRNA (miR)-31 inhibitor (miR-31i) and curcumin (Cur) were encapsuslated in thiolated TEMPO oxidized Konjac glucomannan (sOKGM) microspheres, referred as sOKGM-PS-miR-31i/Cur. The CRC targeting capability, drug release profiles, mucoadhesive-to-penetrating properties and therapeutic efficacy of sOKGM-PS-miR-31i/Cur delivery system were evaluated in colorectal cancer cells and azoxymethane-dextran sodium (AOM-DSS) induced tumor models. Results: sOKGM-PS-miR-31i/Cur delivery system were stable in the harsh gastrointestinal environment after rectal or oral administration; and were also mucoadhesive due to disulfide bond interactions with the colonic mucus layer, resulting in an enhanced drug retention and local bioavailability in the colon. Concomitantly, the released PS-miR-31i/Cur PSs from the microsphere was mucus-penetrating, efficiently passing through the colonic mucus layer, and allowed Cur and miR-31i specifically target to colon tumor cells with the guide of CD133 targeting peptides. Consequently, rectal delivery of sOKGM-PS-miR-31i/Cur microspheres suppressed tumor growth in an azoxymethane-dextran sodium sulfate (AOM-DSS)-induced tumor model. Conclusion: sOKGM-PS-miR-31i/Cur microspheres are effective rectal delivery system with combined advantages of mucoadhesive and mucus-penetrating properties, representing a potent and viable therapeutic approach for CRC. Ivyspring International Publisher 2020-02-18 /pmc/articles/PMC7069075/ /pubmed/32206110 http://dx.doi.org/10.7150/thno.40318 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Zhao, Ran
Du, Sujuan
Liu, Ying
Lv, Cong
Song, Yongli
Chen, Xinchun
Zhang, Bing
Li, Dan
Gao, Shan
Cui, Wei
Plikus, Maksim V.
Hou, Xiaohua
Wu, Kaichun
Liu, Zhanju
Liu, Zhihua
Cong, Yingzi
Li, Yuan
Yu, Zhengquan
Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title_full Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title_fullStr Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title_full_unstemmed Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title_short Mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-miR-31 oligonucleotide and Curcumin for targeted colorectal cancer therapy
title_sort mucoadhesive-to-penetrating controllable peptosomes-in-microspheres co-loaded with anti-mir-31 oligonucleotide and curcumin for targeted colorectal cancer therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069075/
https://www.ncbi.nlm.nih.gov/pubmed/32206110
http://dx.doi.org/10.7150/thno.40318
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