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靶向骨髓基质细胞中的自噬可克服慢性淋巴细胞白血病对伏立诺他的耐药性
Authors Ding L, Zhang W, Yang L, Pelicano H, Zhou K, Yin R, Huang R, Zeng J
Received 7 April 2018
Accepted for publication 23 June 2018
Published 24 August 2018 Volume 2018:11 Pages 5151—5170
DOI https://doi.org/10.2147/OTT.S170392
Checked for plagiarism Yes
Review by Single-blind
Peer reviewers approved by Dr Cristina Weinberg
Peer reviewer comments 2
Editor who approved publication: Dr Samir Farghaly
Background: The bone marrow microenvironment constitutes a sanctuary for leukemia cells. Recent evidence indicates that environment-mediated drug resistance arises from a reciprocal influence between tumor cells and the surrounding stroma. The present study aimed to investigate the effect of chronic lymphocytic leukemia (CLL) cells on the metabolism of bone marrow stroma, to determine the role of this metabolic change in the stroma in vorinostat resistance of CLL cells, and thus to assess a novel strategy to target stroma and achieve the maximum therapeutic effect of vorinostat.
Methods: To evaluate this issue, we used freshly isolated CLL cells from peripheral blood samples of patients with CLL, and co-cultured them with bone marrow stromal cell lines to examine autophagy activity and metabolic changes in both CLL cells and stromal cells after vorinostat treatment.
Results: The results demonstrated that CLL cells were under intrinsic oxidative stress which was further enhanced by vorinostat treatment, and released H2O2 outside the cells. The adjacent stromal cells took up H2O2 and drove autophagy, mitophagy and glycolysis, resulting in the local production of high-energy mitochondrial fuels, which were then taken up by CLL cells to be effectively utilized through mitochondrial oxidative phosphorylation to enable more ATP production. Notably, targeting autophagic stromal cells with autophagy inhibitor remarkably decreased stromal protection against vorinostat treatment in CLL cells.
Conclusion: This study demonstrated that the stroma in the CLL microenvironment is abnormal and undergoes autophagy, and manipulation of autophagic stromal cells could serve as a novel promising strategy to circumvent stroma-mediated drug resistance in CLL cells.
Keywords: autophagy, chronic lymphocytic leukemia, bone marrow stroma, drug resistance, reactive oxygen species, vorinostat