Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy
Тип публикации: Journal Article
Дата публикации: 2024-04-17
SCImago Q1
WOS Q2
БС1
SJR: 1.1
CiteScore: 11.6
Impact factor: 6.1
ISSN: 20474830, 20474849
PubMed ID:
38683541
General Materials Science
Biomedical Engineering
Краткое описание
Photodynamic therapy (PDT) is a minimally invasive therapeutic modality employed for the treatment of various types of cancers, localized infections, and other diseases. Upon illumination, the photo-excited photosensitizer generates singlet oxygen and other reactive species, thereby inducing cytotoxicity in the target cells. The hypoxic tumour microenvironment (TME), however, poses a limitation on the supply of oxygen in tumour tissues. Moreover, under such conditions, tumour metastasis and drug resistance frequently occur, further compromising the efficacy of PDT in combating tumours. Traditionally, type I photosensitizers with lower oxygen consumption demonstrate significant potential in overcoming hypoxic environments and play a crucial role in determining the therapeutic efficacy of PDT because type I photosensitizers can generate highly cytotoxic free radicals. In comparison, type II photosensitizers exhibit high oxygen dependence. The rate of reactive oxygen species (ROS) generation in the type II process is significantly higher than that in the type I process. Thus, the efficiency and selectivity of PDT depend on the properties of the photosensitizer. Here, the recent development and application of type I and type II photosensitizers, mainly in the past year, are summarized. The design methods, electronic structures, photophysical properties, lipophilic properties, electric charge, and other molecular characteristics of these photosensitizers are discussed in detail. These modifications alter the microstructure of photosensitizers and directly impact the results of PDT. The main content of this paper will have a positive promoting and inspiring effect on the future development of PDT.
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ГОСТ
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Ju M. et al. Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy // Biomaterials Science. 2024. Vol. 12. No. 11. pp. 2831-2840.
ГОСТ со всеми авторами (до 50)
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Ju M., Yang L., Wang G., ZONG F., Shen Yu., Wu S., Tang X., Yu D. Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy // Biomaterials Science. 2024. Vol. 12. No. 11. pp. 2831-2840.
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RIS
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TY - JOUR
DO - 10.1039/d4bm00319e
UR - https://xlink.rsc.org/?DOI=D4BM00319E
TI - Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy
T2 - Biomaterials Science
AU - Ju, Minzi
AU - Yang, Lu
AU - Wang, Guowei
AU - ZONG, FENG
AU - Shen, Yu
AU - Wu, Shuangshuang
AU - Tang, Xuna
AU - Yu, Decai
PY - 2024
DA - 2024/04/17
PB - Royal Society of Chemistry (RSC)
SP - 2831-2840
IS - 11
VL - 12
PMID - 38683541
SN - 2047-4830
SN - 2047-4849
ER -
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BibTex (до 50 авторов)
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@article{2024_Ju,
author = {Minzi Ju and Lu Yang and Guowei Wang and FENG ZONG and Yu Shen and Shuangshuang Wu and Xuna Tang and Decai Yu},
title = {Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy},
journal = {Biomaterials Science},
year = {2024},
volume = {12},
publisher = {Royal Society of Chemistry (RSC)},
month = {apr},
url = {https://xlink.rsc.org/?DOI=D4BM00319E},
number = {11},
pages = {2831--2840},
doi = {10.1039/d4bm00319e}
}
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Ju, Minzi, et al. “Type I and Type II Chemical Biology Toolbox to Overcome the Hypoxic Tumour Microenvironment for Photodynamic Therapy.” Biomaterials Science, vol. 12, no. 11, Apr. 2024, pp. 2831-2840. https://xlink.rsc.org/?DOI=D4BM00319E.
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