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Fastehärmande diet samverkar med ferroptos mot vilande, kemoterapiresistenta celler

Xiaoxia Liu, Shaoyong Peng, Guannan Tang, Gaopo Xu, Yumo Xie, Dingcheng Shen, Mingxuan Zhu, Yaoyi Huang, Xiaolin Wang, Huichuan Yu, Meijin Huang, Yanxin Luo
Nyckelinsikter
  1. 01Fastehärmande kost bromsar tumörtillväxt men kan försätta cancerceller i ett viloläge
  2. 02Vilande cancerceller riskerar att utveckla tolerans mot traditionell kemoterapi
  3. 03Fasta påverkar ferroptos-vägen som är en specifik form av programmerad celldöd
  4. 04Kombinationen av fasta och ferroptos-inducerare kan eliminera svårbehandlade vilande celler
  5. 05Metoden erbjuder en möjlig strategi för att förhindra canceråterfall och metastasering

Kombinationen av fastehärmande kost och ferroptos-stimulering kan hjälpa till att utrota vilande cancerceller som annars orsakar återfall.

Abstract

Background: More than ten randomized clinical trials are being tested to evaluate the efficacy, effectiveness and safety of a fasting-mimicking diet (FMD) combined with different antitumor agents.

Methods: UMI-mRNA sequencing, Cell-cycle analysis, Label retention, metabolomics, Multilabeling et al. were used to explore mechanisms. A tandem mRFP-GFP-tagged LC3B, Annexin-V-FITC Apoptosis, TUNEL, H&E, Ki-67 and animal model was used to search for synergistic drugs.

Findings: Here we showed that fasting or FMD retards tumor growth more effectively but does not increase 5-fluorouracil/oxaliplatin (5-FU/OXA) sensitivity to apoptosis in vitro and in vivo. Mechanistically, we demonstrated that CRC cells would switch from an active proliferative to a slow-cycling state during fasting. Furthermore, metabolomics shows cell proliferation was decreased to survive nutrient stress in vivo, as evidenced by a low level of adenosine and deoxyadenosine monophosphate. CRC cells would decrease proliferation to achieve increased survival and relapse after chemotherapy. In addition, these fasting-induced quiescent cells were more prone to develop drug-tolerant persister (DTP) tumor cells postulated to be responsible for cancer relapse and metastasis. Then, UMI-mRNA sequencing uncovered the ferroptosis pathway as the pathway most influenced by fasting. Combining fasting with ferroptosis inducer treatment leads to tumor inhibition and eradication of quiescent cells by boosting autophagy.

Interpretation: Our results suggest that ferroptosis could improve the antitumor activity of FMD + chemotherapy and highlight a potential therapeutic opportunity to avoid DTP cells-driven tumor relapse and therapy failure.

Citera denna studie
APA
Xiaoxia Liu, Shaoyong Peng, Guannan Tang, Gaopo Xu, Yumo Xie, Dingcheng Shen, Mingxuan Zhu, Yaoyi Huang, Xiaolin Wang, Huichuan Yu, Meijin Huang, & Yanxin Luo (2023). Fastehärmande diet samverkar med ferroptos mot vilande, kemoterapiresistenta celler.
MLA
Xiaoxia Liu, et al. "Fastehärmande diet samverkar med ferroptos mot vilande, kemoterapiresistenta celler." 2023.
Chicago
Xiaoxia Liu et al. 2023. "Fastehärmande diet samverkar med ferroptos mot vilande, kemoterapiresistenta celler."