Cargando…

Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy

Background: Nonspecific tumor targeting, potential relapse and metastasis of tumor after treatment are the main barriers in clinical photodynamic therapy (PDT) for cancer, hence, inhibiting relapse and metastasis of tumor is significant issues in clinic. Purpose: In this work, chidamide as a histone...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Zhiqiang, Hu, Pengwei, Guo, Changyong, Wang, Dan, Zhang, Xingjie, Chen, Min, Wang, Qirong, Sun, Miao, Zeng, Peiyu, Lu, Fengkun, Sun, Linhong, She, Lan, Zhang, Hongtao, Yao, Jianzhong, Yang, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6661377/
https://www.ncbi.nlm.nih.gov/pubmed/31413561
http://dx.doi.org/10.2147/IJN.S208649
_version_ 1783439437198262272
author Ma, Zhiqiang
Hu, Pengwei
Guo, Changyong
Wang, Dan
Zhang, Xingjie
Chen, Min
Wang, Qirong
Sun, Miao
Zeng, Peiyu
Lu, Fengkun
Sun, Linhong
She, Lan
Zhang, Hongtao
Yao, Jianzhong
Yang, Feng
author_facet Ma, Zhiqiang
Hu, Pengwei
Guo, Changyong
Wang, Dan
Zhang, Xingjie
Chen, Min
Wang, Qirong
Sun, Miao
Zeng, Peiyu
Lu, Fengkun
Sun, Linhong
She, Lan
Zhang, Hongtao
Yao, Jianzhong
Yang, Feng
author_sort Ma, Zhiqiang
collection PubMed
description Background: Nonspecific tumor targeting, potential relapse and metastasis of tumor after treatment are the main barriers in clinical photodynamic therapy (PDT) for cancer, hence, inhibiting relapse and metastasis of tumor is significant issues in clinic. Purpose: In this work, chidamide as a histone deacetylases inhibitor (HADCi) was bound onto a pH-responsive block polymer folate polyethylene glycol-b-poly(aspartic acid) (PEG-b-PAsp) grafted folate (FA-PEG-b-PAsp) to obtain the block polymer folate polyethylene glycol-b-poly(asparaginyl-chidamide) (FA-PEG-b-PAsp-chidamide, FPPC) as multimodal tumor-targeting drug-delivery carrier to inhibiting tumor cell proliferation and tumor metastasis in mice. Methods: Model photosensitizer pyropheophorbide-a (Pha) was encapsulated by FPPC in PBS to form the polymer micelles Pha@FPPC [folate polyethylene glycol-b-poly(asparaginyl-chidamide) micelles encapsulating Pha]. Pha@FPPC was characterized by transmission electron microscope and dynamic light scattering; also, antitumor activity in vivo and in vitro were investigated by determination of cellular ROS level, detection of cell apoptosis and cell cycle arrest, PDT antitumor activity in vivo and histological analysis. Results: With favorable and stable sphere morphology under transmission electron microscope (TEM) (~93.0 nm), Pha@FPPC greatly enhanced the cellular uptake due to its folate-mediated effective endocytosis by mouse melanoma B16-F10 cells and the yield of ROS in tumor cells induced by PDT, and mainly caused necrocytosis and blocked cell growth cycle not only in G2 phase but also in G1/G0 phase after PDT. Pha@FPPC exhibited lower dark cytotoxicity in vitro and a better therapeutic index because of its higher dark cytotoxicity/photocytotoxicity ratio. Moreover, Pha@FPPC not only significantly inhibited the growth of implanted tumor and prolonged the survival time of melanoma-bearing mice due to both its folate-mediated tumor-targeting and selectively accumulation at tumor site by EPR (enhanced permeability and retention)effect as micelle nanoparticles but also remarkably prevented pulmonary metastasis of mice melanoma after PDT compared to free Pha, demonstrating its dual antitumor characteristics of PDT and HDACi. Conclusion: As a folate-mediated and acid-activated chidamide-grafted drug-delivery carrier, FPPC may have great potential to inhibit tumor metastasis in clinical photodynamic treatment for cancer because of its effective and multimodal tumor-targeting performance as photosensitizer vehicle.
format Online
Article
Text
id pubmed-6661377
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Dove
record_format MEDLINE/PubMed
spelling pubmed-66613772019-08-14 Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy Ma, Zhiqiang Hu, Pengwei Guo, Changyong Wang, Dan Zhang, Xingjie Chen, Min Wang, Qirong Sun, Miao Zeng, Peiyu Lu, Fengkun Sun, Linhong She, Lan Zhang, Hongtao Yao, Jianzhong Yang, Feng Int J Nanomedicine Original Research Background: Nonspecific tumor targeting, potential relapse and metastasis of tumor after treatment are the main barriers in clinical photodynamic therapy (PDT) for cancer, hence, inhibiting relapse and metastasis of tumor is significant issues in clinic. Purpose: In this work, chidamide as a histone deacetylases inhibitor (HADCi) was bound onto a pH-responsive block polymer folate polyethylene glycol-b-poly(aspartic acid) (PEG-b-PAsp) grafted folate (FA-PEG-b-PAsp) to obtain the block polymer folate polyethylene glycol-b-poly(asparaginyl-chidamide) (FA-PEG-b-PAsp-chidamide, FPPC) as multimodal tumor-targeting drug-delivery carrier to inhibiting tumor cell proliferation and tumor metastasis in mice. Methods: Model photosensitizer pyropheophorbide-a (Pha) was encapsulated by FPPC in PBS to form the polymer micelles Pha@FPPC [folate polyethylene glycol-b-poly(asparaginyl-chidamide) micelles encapsulating Pha]. Pha@FPPC was characterized by transmission electron microscope and dynamic light scattering; also, antitumor activity in vivo and in vitro were investigated by determination of cellular ROS level, detection of cell apoptosis and cell cycle arrest, PDT antitumor activity in vivo and histological analysis. Results: With favorable and stable sphere morphology under transmission electron microscope (TEM) (~93.0 nm), Pha@FPPC greatly enhanced the cellular uptake due to its folate-mediated effective endocytosis by mouse melanoma B16-F10 cells and the yield of ROS in tumor cells induced by PDT, and mainly caused necrocytosis and blocked cell growth cycle not only in G2 phase but also in G1/G0 phase after PDT. Pha@FPPC exhibited lower dark cytotoxicity in vitro and a better therapeutic index because of its higher dark cytotoxicity/photocytotoxicity ratio. Moreover, Pha@FPPC not only significantly inhibited the growth of implanted tumor and prolonged the survival time of melanoma-bearing mice due to both its folate-mediated tumor-targeting and selectively accumulation at tumor site by EPR (enhanced permeability and retention)effect as micelle nanoparticles but also remarkably prevented pulmonary metastasis of mice melanoma after PDT compared to free Pha, demonstrating its dual antitumor characteristics of PDT and HDACi. Conclusion: As a folate-mediated and acid-activated chidamide-grafted drug-delivery carrier, FPPC may have great potential to inhibit tumor metastasis in clinical photodynamic treatment for cancer because of its effective and multimodal tumor-targeting performance as photosensitizer vehicle. Dove 2019-07-22 /pmc/articles/PMC6661377/ /pubmed/31413561 http://dx.doi.org/10.2147/IJN.S208649 Text en © 2019 Ma et al. http://creativecommons.org/licenses/by-nc/3.0/ This work is published and licensed by Dove Medical Press Limited. The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms (https://www.dovepress.com/terms.php).
spellingShingle Original Research
Ma, Zhiqiang
Hu, Pengwei
Guo, Changyong
Wang, Dan
Zhang, Xingjie
Chen, Min
Wang, Qirong
Sun, Miao
Zeng, Peiyu
Lu, Fengkun
Sun, Linhong
She, Lan
Zhang, Hongtao
Yao, Jianzhong
Yang, Feng
Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title_full Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title_fullStr Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title_full_unstemmed Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title_short Folate-mediated and pH-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
title_sort folate-mediated and ph-responsive chidamide-bound micelles encapsulating photosensitizers for tumor-targeting photodynamic therapy
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6661377/
https://www.ncbi.nlm.nih.gov/pubmed/31413561
http://dx.doi.org/10.2147/IJN.S208649
work_keys_str_mv AT mazhiqiang folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT hupengwei folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT guochangyong folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT wangdan folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT zhangxingjie folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT chenmin folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT wangqirong folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT sunmiao folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT zengpeiyu folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT lufengkun folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT sunlinhong folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT shelan folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT zhanghongtao folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT yaojianzhong folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy
AT yangfeng folatemediatedandphresponsivechidamideboundmicellesencapsulatingphotosensitizersfortumortargetingphotodynamictherapy