Glioma stem cell signature predicts the prognosis and the response to tumor treating fields treatment.
Glioma stem cell signature predicts the prognosis and the response to tumor treating fields treatment.
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DOI:
10.1111/cns.13956
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发表时间:
2022-12
影响因子:
5.5
通讯作者:
中科院分区:
文献类型:
--
作者:
Glioma stem cells (GSCs) play an important role in glioma recurrence and chemo‐radiotherapy (CRT) resistance. Currently, there is a lack of efficient treatment approaches targeting GSCs. This study aimed to explore the potential personalized treatment of patients with GSC‐enriched gliomas. Single‐cell RNA sequencing (scRNA‐seq) was used to identify the GSC‐related genes. Then, machine learning methods were applied for clustering and validation. The least absolute shrinkage and selection operator (LASSO) and COX regression were used to construct the risk scores. Survival analysis was performed. Additionally, the incidence of chemo‐radiotherapy resistance, immunotherapy status, and tumor treating field (TTF) therapy response were evaluated in high‐ and low‐risk scores groups. Two GSC clusters exhibited significantly different stemness indices, immune microenvironments, and genomic alterations. Based on GSC clusters, 11‐gene GSC risk scores were constructed, which exhibited a high predictive value for prognosis. In terms of therapy, patients with high GSC risk scores had a higher risk of resistance to chemotherapy. TTF therapy can comprehensively inhibit the malignant biological characteristics of the high GSC‐risk‐score gliomas. Our study constructed a GSC signature consisting of 11 GSC‐specific genes and identified its prognostic value in gliomas. TTF is a promising therapeutic approach for patients with GSC‐enriched glioma. We divided glioma patients into the high‐ and low‐glioma stem cell (GSC) groups. GSC‐enriched patients had higher chemo‐radiotherapy resistance and worse prognosis than low‐GSC patients. Tumor treating field (TTF) therapy can effectively inhibit malignant biological characteristics of GSC‐enriched gliomas, including mitosis, angiogenesis, migration and invasion potential. TTF also could break the original DNA balance in GSC‐enriched gliomas. Taken together, TTF is a promising therapeutic approach for GSC‐enriched glioma patients.
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DOI:
10.1158/1541-7786.mcr-13-0469
发表时间:
2014-04
期刊:
Molecular cancer research : MCR
影响因子:
--
作者:
Geary LA;Nash KA;Adisetiyo H;Liang M;Liao CP;Jeong JH;Zandi E;Roy-Burman P
通讯作者:
Roy-Burman P
影响因子:
5.6
作者:
Jo Y;Kim EH;Sai S;Kim JS;Cho JM;Kim H;Baek JH;Kim JY;Hwang SG;Yoon M
通讯作者:
Yoon M
影响因子:
4.6
作者:
Bonneville R;Krook MA;Kautto EA;Miya J;Wing MR;Chen HZ;Reeser JW;Yu L;Roychowdhury S
通讯作者:
Roychowdhury S
影响因子:
11.2
作者:
Emlet DR;Gupta P;Holgado-Madruga M;Del Vecchio CA;Mitra SS;Han SY;Li G;Jensen KC;Vogel H;Xu LW;Skirboll SS;Wong AJ
通讯作者:
Wong AJ
影响因子:
48
作者:
Korsunsky, Ilya;Millard, Nghia;Raychaudhuri, Soumya
通讯作者:
Raychaudhuri, Soumya