Modulating mitochondrial morphology enhances antitumor effect of 5-ALA-mediated photodynamic therapy both in vitro and in vivo

Hongyou Zhao, Rong Yin, Ying Wang, Yuan Hao Lee, Ting Luo, Jiaying Zhang, Haixia Qiu, Stephen Ambrose, Lijie Wang, Jie Ren, Jie Yao, Defu Chen, Yucheng Wang, Zhipin Liang, Jie Zhen, Sumin Wu, Zulin Ye, Jing Zeng, Naiyan Huang, Ying Gu*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

13 Citations (Scopus)

Abstract

5-aminolevulinic acid mediated PDT (5-ALA-PDT) is an approved therapeutic procedure for treating carcinomas of the cervix. However, when employed as a monotherapy, 5-ALA-PDT could not produce satisfactory results toward large and deep tumors. Therefore, developing a method to improve the efficacy of 5-ALA-PDT becomes important. In this study, we demonstrate an enhanced antitumor effect of 5-ALA-PDT by the modulation of mitochondrial morphology. The mitochondria in the cells were regulated into tubular mitochondria or fragmented mitochondria through over expression of Drp1 or Mfn2. Then these cells were treated with identical dose of 5-ALA-PDT. Our results suggest that HeLa cells predominantly containing fragmented mitochondria were more sensitive to 5-ALA-PDT than the cells predominantly containing tubular mitochondria. The morphology of mitochondria changed as the cell cycle progressed, with tubular mitochondria predominantly exhibited in the S phase and uniformly fragmented mitochondria predominantly displayed in the M phase. Paclitaxel significantly increased the population of M-phase cells, while 5-fluorouracil significantly increased the population of S-phase cells in xenograft tumors. Furthermore, low-dose paclitaxel significantly increased the antitumor effects of PDT. However, 5-fluorouracil didn't improve the antitumor effects of PDT. These results demonstrated an enhanced antitumor effect of 5-ALA-PDT from the modulation of mitochondrial morphology. We anticipate that our results will provide an insight for selecting potential chemotherapeutic agents to combine with PDT for tumor treatment.

Original languageEnglish
Pages (from-to)81-91
Number of pages11
JournalJournal of Photochemistry and Photobiology B: Biology
Volume176
DOIs
Publication statusPublished - Nov 2017
Externally publishedYes

Keywords

  • Antitumor
  • Cell cycle
  • Mitochondrial morphology
  • Photodynamic therapy (PDT)
  • Sensitivity

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