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[Gene and Cell Technologies for Treatment of Brain Malignancies].

[Gene and Cell Technologies for Treatment of Brain Malignancies].

期刊: Molekuliarnaia biologiia 日期: 2026-03-01 PMID: 42227121 DOI: 10.7868/S3034555326020018 浏览: 53
作者: Abdrakhmanova II, Kitaeva KV, Gorodilova AV, Saidgaraeva MG, Rizvanov AA, Solovyeva VV
II, A., KV, K., AV, G., MG, S., AA, R., & VV, S. (2026). [Gene and Cell Technologies for Treatment of Brain Malignancies].. Molekuliarnaia biologiia. https://doi.org/10.7868/S3034555326020018
II A, KV K, AV G, MG S, AA R, VV S. [Gene and Cell Technologies for Treatment of Brain Malignancies].. Molekuliarnaia biologiia. 2026; doi: 10.7868/S3034555326020018
II A, KV K, AV G, et al. [Gene and Cell Technologies for Treatment of Brain Malignancies].[J]. Molekuliarnaia biologiia. 2026. DOI: 10.7868/S3034555326020018.
@article{ii2026,
  author = {Abdrakhmanova II and Kitaeva KV and Gorodilova AV and Saidgaraeva MG and Rizvanov AA and Solovyeva VV},
  title = {[Gene and Cell Technologies for Treatment of Brain Malignancies].},
  journal = {Molekuliarnaia biologiia},
  year = {2026},
  doi = {10.7868/S3034555326020018},
  note = {PMID: 42227121},
}
TY  - JOUR
AU  - Abdrakhmanova II
AU  - Kitaeva KV
AU  - Gorodilova AV
AU  - Saidgaraeva MG
AU  - Rizvanov AA
AU  - Solovyeva VV
TI  - [Gene and Cell Technologies for Treatment of Brain Malignancies].
T2  - Molekuliarnaia biologiia
PY  - 2026
DO  - 10.7868/S3034555326020018
AN  - PMID:42227121
ER  - 

摘要

Brain malignancies, such as glioblastoma, remain one of the most aggressive and difficult-to-treat cancers because of their heterogeneity, invasive growth, and resistance to conventional therapy. Significant recent progress in the treatment of these diseases has been associated with the development of gene and cell technologies, which open up new possibilities for targeted therapy, immunotherapy, and personalized approaches. The review systematically summarizes the data on current treatment strategies, including gene therapy, cell therapy, and combined approaches. Particular attention is paid to preclinical and clinical studies, as well as the prospects for overcoming major limitations, such as the blood-brain barrier, the immunosuppressive tumor microenvironment, and toxicity. Analysis of the literature demonstrates that integration of gene and cell technologies could provide a basis for developing effective treatments aimed at improving the survival of patients with central nervous system tumors.

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