Efficacy of the new therapeutic approach in curing malignant neoplasms on the model of human glioblastoma

新治疗方法对人胶质母细胞瘤模型治疗恶性肿瘤的疗效

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作者:Evgeniya V Dolgova, Oleg M Andrushkevich, Polina E Kisaretova, Anastasia S Proskurina, Genrikh S Ritter, Tatyana D Dubatolova, Margarita V Romanenko, Oleg S Taranov, Yaroslav R Efremov, Evgeniy L Zavyalov, Alexandr V Romaschenko, Sergey V Mishinov, Svetlana S Kirikovich, Evgeniy V Levites, Ekaterina

Conclusions

The effectiveness of the Karanahan approach has been demonstrated both in vitro and in vivo in treating developed subcutaneous grafts as well as orthotopic grafts after surgical excision of the tumor.

Methods

In the current report, a new therapeutic approach in curing malignant neoplasms has been performed on the U87 human glioblastoma model. This approach, termed "Karanahan", is aimed at the eradication of cancer stem cells (CSCs), which were recently shown to be capable of internalizing fragments of extracellular double-stranded DNA. After being internalized, these fragments interfere in the process of repairing interstrand cross-links caused by exposure to appropriate cytostatics, and such an interference

Objective

Glioma is a highly invasive tumor, frequently disposed in essential areas of the brain, which makes its surgical excision extremely difficult; meanwhile adjuvant therapy remains quite ineffective.

Results

U87 cells treated in vitro in accordance with the Karanahan approach completely lost their tumorigenicity and produced no grafts upon intracerebral transplantation into immunodeficient mice. In SCID mice with developed subcutaneous grafts, the treatment resulted in reliable slowing down of tumor growth rate (P < 0.05). In the experiment with intracerebral transplantation of U87 cells followed by surgical excision of the developed graft and subsequent therapeutic treatment, the Karanahan approach was shown to reliably slow down the tumor growth rate and increase the median survival of the mice twofold relative to the control. Conclusions: The effectiveness of the Karanahan approach has been demonstrated both in vitro and in vivo in treating developed subcutaneous grafts as well as orthotopic grafts after surgical excision of the tumor.

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