Anti-Cancer Effect of Chlorophyllin-Assisted Photodynamic Therapy to Induce Apoptosis through Oxidative Stress on Human Cervical Cancer SCIE SCOPUS

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Title
Anti-Cancer Effect of Chlorophyllin-Assisted Photodynamic Therapy to Induce Apoptosis through Oxidative Stress on Human Cervical Cancer
Author(s)
Heo, Seong Yeong; Lee, Yeachan; Kim, Tae-Hee; Heo, Soo Jin; Shin, Hwarang; Lee, Jiho; Yi, Myunggi; Kang, Hyun Wook; Jung, Won-Kyo
KIOST Author(s)
Heo, Seong Yeong(허성영)Heo, Soo Jin(허수진)
Alternative Author(s)
허성영; 허수진
Publication Year
2023-07
Abstract
Photodynamic therapy is an alternative approach to treating tumors that utilizes photochemical reactions between a photosensitizer and laser irradiation for the generation of reactive oxygen species. Currently, natural photosensitive compounds are being promised to replace synthetic photosensitizers used in photodynamic therapy because of their low toxicity, lesser side effects, and high solubility in water. Therefore, the present study investigated the anti-cancer efficacy of chlorophyllin-assisted photodynamic therapy on human cervical cancer by inducing apoptotic response through oxidative stress. The chlorophyllin-assisted photodynamic therapy significantly induced cytotoxicity, and the optimal conditions were determined based on the results, including laser irradiation time, laser power density, and chlorophyllin concentration. In addition, reactive oxygen species generation and Annexin V expression level were detected on the photodynamic reaction-treated HeLa cells under the optimized conditions to evaluate apoptosis using a fluorescence microscope. In the Western blotting analysis, the photodynamic therapy group showed the increased protein expression level of the cleaved caspase 8, caspase 9, Bax, and cytochrome C, and the suppressed protein expression level of Bcl-2, pro-caspase 8, and pro-caspase 9. Moreover, the proposed photodynamic therapy downregulated the phosphorylation of AKT1 in the HeLa cells. Therefore, our results suggest that the chlorophyllin-assisted photodynamic therapy has potential as an antitumor therapy for cervical cancer.
ISSN
1661-6596
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/44471
DOI
10.3390/ijms241411565
Bibliographic Citation
International Journal of Molecular Sciences, v.24, no.14, 2023
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Keywords
chlorophyllin; photodynamic therapy; reactive oxygen species; apoptosis
Type
Article
Language
English
Document Type
Article
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