4.8 Article

Microenvironment-tailored micelles restrain carcinoma-astrocyte crosstalk for brain metastasis

期刊

JOURNAL OF CONTROLLED RELEASE
卷 349, 期 -, 页码 520-532

出版社

ELSEVIER
DOI: 10.1016/j.jconrel.2022.07.009

关键词

Breast -to -brain metastasis; Micelle; Microenvironment; Protocadherin 7; Paclitaxel

资金

  1. National Natural Science Foundation of China [32030059, 81872808, 82121002]
  2. Key Projects of Shanghai Science Foundation [19JC1410800]
  3. Shanghai Municipal Science and Technology Major Project [2018SHZDZX01]

向作者/读者索取更多资源

Breast-to-brain metastatic cells can interact with surrounding cells to create a favorable environment for tumor growth. Co-delivering therapeutic siRNA and paclitaxel to the metastasis site and normalizing the microenvironment can effectively treat breast-to-brain metastasis.
Breast-to-brain metastatic cells can interact with the surrounding cells, including astrocytes and microglia, to generate a pro-tumorigenic niche. Breast-to-brain metastasis can be treated using a dual strategy of eliminating metastatic tumor cells and normalizing their localized microenvironment. The effective accumulation of drugs at the action site of metastasis is crucial to realizing the above strategy, especially when dealing with the bloodbrain barrier (BBB)-penetrating and tumor-targeting tactics. Here, we establish an in-situ microenvironmenttailored micelle (T-M/siRNA) to co-deliver therapeutic siRNA and paclitaxel (PTX) into the breast-to-brain metastasis. Anchored with a D-type cyclic peptide, T-M/siRNA can penetrate the BBB and subsequently target the brain metastases. Upon internalization by metastatic tumor cells, T-M/siRNA can release PTX in the highlevel glutathione (GSH), resulting in killing cancer cells. Meanwhile, the micellar structure is dissociated, resulting in lowering the charge density to release the loaded siRNA that can targeted downregulate the expression of protocadherin 7 (PCDH7). Treatment of model mice revealed that T-M/siRNA can inhibit the abnormal activation of astrocytes and immunosuppressive activation of microglia, resulting in significantly enhanced synergistic anti-tumor efficacy. This study indicates that the micelle system can serve as a hopeful strategy to treat breast-to-brain metastasis.

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