A tumor microenvironment-responsive micelle co-delivered radiosensitizer Dbait and doxorubicin for the collaborative chemo-radiotherapy of glioblastoma

Publication date

2022-08-16

Authors

Zhang, Shuyue
Jiao, Xiuxiu
Heger, MichalISNI 0000000390982433
Gao, Shen
He, Mei
Xu, Nan
Zhang, Jigang
Zhang, Mingjian
Yu, Yuan
Ding, Baoyue

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Glioblastoma is rather recalcitrant to existing therapies and effective interventions are needed. Here we report a novel microenvironment-responsive micellar system (ch-K5(s-s)R8-An) for the co-delivery of the radiosensitizer Dbait and the chemotherapeutic doxorubicin (DOX) to glioblastoma. Accordingly, the ch-K5(s-s)R8-An/(Dbait-DOX) micelles plus radiotherapy (RT) treatment resulted in a high degree of apoptosis and DNA damage, which significantly reduced cell viability and proliferation capacity of U251 cells to 64.0% and 16.3%, respectively. The angiopep-2-modified micelles exhibited substantial accumulation in brain-localized U251 glioblastoma xenografts in mice compared to angiopep-2-lacking micelles. The ch-K5(s-s)R8-An/(Dbait-DOX) + RT treatment group exhibited the smallest tumor size and most profound tumor tissue injury in orthotopic U251 tumors, leading to an increase in median survival time of U251 tumor-bearing mice from 26 days to 56 days. The ch-K5(s-s)R8-An/(Dbait-DOX) micelles can be targeted to brain-localized U251 tumor xenografts and sensitize the tumor to chemotherapy and radiotherapy, thereby overcoming the inherent therapeutic challenges associated with malignant glioblastoma.

Keywords

chemo-radiotherapy, Glioblastoma, mic-roenvironment-responsive, radiosensitization, targeted nanotherapeutics, Pharmaceutical Science

Citation

Zhang, S, Jiao, X, Heger, M, Gao, S, He, M, Xu, N, Zhang, J, Zhang, M, Yu, Y, Ding, B & Ding, X 2022, 'A tumor microenvironment-responsive micelle co-delivered radiosensitizer Dbait and doxorubicin for the collaborative chemo-radiotherapy of glioblastoma', Drug Delivery, vol. 29, no. 1, pp. 2658-2670. https://doi.org/10.1080/10717544.2022.2108937