Author:
Wang Li,Huang Xiaojia,You Xinru,Yi Tianqi,Lu Bing,Liu Jiali,Lu Guohao,Ma Minglin,Zou Changye,Wu Jun,Zhao Wei
Abstract
AbstractThe adaptation of osteosarcoma cells to therapeutic pressure impedes the efficacy of chemotherapy for osteosarcoma. However, the characteristics and cellular organization of therapy-resistant cells in osteosarcoma tumors remain elusive. Here, we utilized single-cell transcriptomics to systematically map the cell-type-specific gene expression in a chemotherapy-resistant osteosarcoma tumor. Our data demonstrated the VEGFR2-JMJD3-abundant subsets as quiescent stem-like cells, thereby establishing the hierarchy of therapy-resistant actively cycling progenitor pools (JMJD3-abundant) in osteosarcoma. VEGFR2 inhibitor and JMJD3 inhibitor synergistically impeded osteosarcoma cell propagation and tumor growth. Although osteosarcoma cells are predisposed to apoptosis induced by the synergistic therapy through activation of the CHOP pro-apoptotic factor via the endoplasmic reticulum (ER) stress, the stem-like/progenitor cells exhibit an adaptive response, leading to their survival. Reduction in cellular glutathione levels in stem-like/progenitor cells caused by the treatment with a glutathione synthesis inhibitor increases ER stress-induced apoptosis. Importantly, the marked therapeutic improvement of synergistic therapy against stem-like/progenitor cells was achieved by using glutathione-scavenging nanoparticles, which can load and release the drug pair effectively. Overall, our study provides a framework for understanding glutathione signaling as one of the therapeutic vulnerabilities of stem-like/progenitor cells. Broadly, these findings revealed a promising arsenal by encapsulating glutathione-scavenging nanoparticles with co-targeting VEGFR2 and JMJD3 to eradicate chemotherapy-resistant osteosarcoma.
Publisher
Springer Science and Business Media LLC
Reference41 articles.
1. Tiram, G. et al. Identification of dormancy-associated microRNAs for the design of osteosarcoma-targeted dendritic polyglycerol nanopolyplexes. ACS Nano 10, 2028–2045 (2016).
2. Bielack, S. S., Hecker-Nolting, S., Blattmann, C. & Kager, L. Advances in the management of osteosarcoma. F1000Res. 5, 2767 (2016).
3. Liu, B., Ma, W., Jha, R. K. & Gurung, K. Cancer stem cells in osteosarcoma: recent progress and perspective. Acta Oncol. 50, 1142–1150 (2011).
4. Mesiano, G. et al. Cytokine induced killer cells are effective against sarcoma cancer stem cells spared by chemotherapy and target therapy. Oncoimmunology 7, e1465161 (2018).
5. Kovac, M. et al. Exome sequencing of osteosarcoma reveals mutation signatures reminiscent of BRCA deficiency. Nat. Commun. 6, 8940 (2015).
Cited by
34 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献