A Trojan‐Horse‐Like Biomimetic Nano‐NK to Elicit an Immunostimulatory Tumor Microenvironment for Enhanced GBM Chemo‐Immunotherapy

Author:

Zhang Long123ORCID,Zhang Yining123,Wang Xu123,Zhou Yi123,Qi Ji123,Gu Linbo123,Zhao Qiu4,Yu Rutong12,Zhou Xiuping12ORCID

Affiliation:

1. Institute of Nervous System Diseases Xuzhou Medical University Xuzhou Jiangsu 221002 China

2. Department of Neurosurgery the Affiliated Hospital of Xuzhou Medical University Xuzhou Jiangsu 2210002 China

3. The Graduate School Xuzhou Medical University Xuzhou Jiangsu 221004 China

4. Department of Anesthesiology The First Affiliated Hospital of University of Science and Technology of China (Anhui Provincial Hospital) Hefei Anhui 230001 China

Abstract

AbstractAlthough the chemo‐ and immuno‐therapies have obtained good responses for several solid tumors, including those with brain metastasis, their clinical efficacy in glioblastoma (GBM) is disappointing. The lack of safe and effective delivery systems across the blood‐brain barrier (BBB) and the immunosuppressive tumor microenvironment (TME) are two main hurdles for GBM therapy. Herein, a Trojan‐horse‐like nanoparticle system is designed, which encapsulates biocompatible PLGA‐coated temozolomide (TMZ) and IL‐15 nanoparticles (NPs) with cRGD‐decorated NK cell membrane (R‐NKm@NP), to elicit the immunostimulatory TME for GBM chemo‐immunotherapy. Taking advantage of the outer NK cell membrane cooperating with cRGD, the R‐NKm@NPs effectively traversed across the BBB and targeted GBM. In addition, the R‐NKm@NPs exhibited good antitumor ability and prolonged the median survival of GBM‐bearing mice. Notably, after R‐NKm@NPs treatment, the locally released TMZ and IL‐15 synergistically stimulated the proliferation and activation of NK cells, leading to the maturation of dendritic cells and infiltration of CD8+ cytotoxic T cells, eliciting an immunostimulatory TME. Lastly, the R‐NKm@NPs not only effectively prolonged the metabolic cycling time of the drugs in vivo, but also has no noticeable side effects. This study may offer valuable insights for developing biomimetic nanoparticles to potentiate GBM chemo‐ and immuno‐therapies in the future.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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