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“NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention

Posterior capsular opacification (PCO) is the leading cause of vision loss after cataract, mainly caused by the adhesion, proliferation and trans-differentiation of post-operative residual lens epithelial cells (LECs). Effective PCO prevention remains a huge challenge to ophthalmologists and researc...

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Autores principales: Huang, Yanjuan, Zhang, Tao, Wei, Qin, Zeng, Zishan, Gong, Yujun, Xu, Xiaoyu, Chen, Meixu, Zhao, Chunshun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shenyang Pharmaceutical University 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800949/
https://www.ncbi.nlm.nih.gov/pubmed/36600895
http://dx.doi.org/10.1016/j.ajps.2022.10.004
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author Huang, Yanjuan
Zhang, Tao
Wei, Qin
Zeng, Zishan
Gong, Yujun
Xu, Xiaoyu
Chen, Meixu
Zhao, Chunshun
author_facet Huang, Yanjuan
Zhang, Tao
Wei, Qin
Zeng, Zishan
Gong, Yujun
Xu, Xiaoyu
Chen, Meixu
Zhao, Chunshun
author_sort Huang, Yanjuan
collection PubMed
description Posterior capsular opacification (PCO) is the leading cause of vision loss after cataract, mainly caused by the adhesion, proliferation and trans-differentiation of post-operative residual lens epithelial cells (LECs). Effective PCO prevention remains a huge challenge to ophthalmologists and researches for decades. Herein, we developed a “NIR-triggered ROS storage” intraocular implant (CTR-Py-PpIX) based on capsular tension ring (CTR), which is concurrently linked with photosensitizer protophorphyrin IX (PpIX) and energy storage 2-pyridone derivative (Py), to guarantee instantaneous and sustainable ROS generation for LECs killing, aiming to achieve more efficient and safer photodynamic therapy (PDT) to effectively prevent PCO. The silylated PpIX-Si and Py-Si were covalently conjugated to the plasma activated CTR surface to obtain CTR-Py-PpIX. Results demonstrated that CTR-Py-PpIX had dual functions of PDT and battery, in which PpIX could generate ROS extracellularly under irradiation, with one part directly inhibiting LECs by lipid peroxidation (LPO) induction of cell membranes. Meanwhile, the excess ROS stored in Py could be continuously released to amplify LPO levels after the irradiation was removed. Ultimately, the proliferation of LECs in capsular bag was completely inhibited under mild irradiation conditions, achieving a sustainable and controlled PDT effect for effective PCO prevention with good biocompatibility. This NIR-triggered ROS storage intraocular implant would provide a more efficient and safer approach for long-term PCO prevention.
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spelling pubmed-98009492023-01-03 “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention Huang, Yanjuan Zhang, Tao Wei, Qin Zeng, Zishan Gong, Yujun Xu, Xiaoyu Chen, Meixu Zhao, Chunshun Asian J Pharm Sci Original Research Paper Posterior capsular opacification (PCO) is the leading cause of vision loss after cataract, mainly caused by the adhesion, proliferation and trans-differentiation of post-operative residual lens epithelial cells (LECs). Effective PCO prevention remains a huge challenge to ophthalmologists and researches for decades. Herein, we developed a “NIR-triggered ROS storage” intraocular implant (CTR-Py-PpIX) based on capsular tension ring (CTR), which is concurrently linked with photosensitizer protophorphyrin IX (PpIX) and energy storage 2-pyridone derivative (Py), to guarantee instantaneous and sustainable ROS generation for LECs killing, aiming to achieve more efficient and safer photodynamic therapy (PDT) to effectively prevent PCO. The silylated PpIX-Si and Py-Si were covalently conjugated to the plasma activated CTR surface to obtain CTR-Py-PpIX. Results demonstrated that CTR-Py-PpIX had dual functions of PDT and battery, in which PpIX could generate ROS extracellularly under irradiation, with one part directly inhibiting LECs by lipid peroxidation (LPO) induction of cell membranes. Meanwhile, the excess ROS stored in Py could be continuously released to amplify LPO levels after the irradiation was removed. Ultimately, the proliferation of LECs in capsular bag was completely inhibited under mild irradiation conditions, achieving a sustainable and controlled PDT effect for effective PCO prevention with good biocompatibility. This NIR-triggered ROS storage intraocular implant would provide a more efficient and safer approach for long-term PCO prevention. Shenyang Pharmaceutical University 2022-11 2022-11-05 /pmc/articles/PMC9800949/ /pubmed/36600895 http://dx.doi.org/10.1016/j.ajps.2022.10.004 Text en © 2022 Shenyang Pharmaceutical University. Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research Paper
Huang, Yanjuan
Zhang, Tao
Wei, Qin
Zeng, Zishan
Gong, Yujun
Xu, Xiaoyu
Chen, Meixu
Zhao, Chunshun
“NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title_full “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title_fullStr “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title_full_unstemmed “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title_short “NIR-triggered ROS storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
title_sort “nir-triggered ros storage” photodynamic intraocular implant for high-efficient and safe posterior capsular opacification prevention
topic Original Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800949/
https://www.ncbi.nlm.nih.gov/pubmed/36600895
http://dx.doi.org/10.1016/j.ajps.2022.10.004
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