Dual‐Targeting of ER Stress and the CD47‐SIRPα Axis via an In Situ Hydrogel Prevents Postoperative Glioblastoma Recurrence

The inevitable recurrence of glioblastoma multiforme post-resection is primarily driven by infiltrative residual cells and a profoundly immunosuppressive tumor microenvironment (TME) that evades innate immune surveillance. In the present study, an injectable, photo-crosslinkable carboxymethyl chitosan (CMCS)-based hydrogel (si-HAX1&Quercetin@Gel) was engineered to achieve localized, synergistic chemo-immunotherapy within the surgical cavity. The findings demonstrate that the localized release of si-HAX1 triggers robust endoplasmic reticulum stress-mediated immunogenic cell death, leading to significant CRT surface translocation. Concurrently, Quercetin acts as a small-molecule antagonist of the CD47-signal regulatory protein α axis, dismantling the "don't eat me" shield that protects glioma cells from macrophage-mediated phagocytosis. In an in vivo postoperative glioblastoma model, the si-HAX1&Quercetin@Gel effectively suppressed tumor regrowth, increased the M1/M2 macrophage ratio and recruited CD8+ T cells, thereby extending median survival time. Moreover, this localized intervention sensitized residual tumors to intratumorally administered anti-programmed cell death protein 1 therapy by upregulating IFN-γ and remodeling the TME. By integrating biomaterial engineering with deep molecular targeting of HAX1 and CD47, we provide a robust strategy to transform the post-surgical cavity into an active immunological zone, offering a potent solution to combat malignant glioma recurrence.

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Publication Details

Journal
Small
Published
2026-10-04
DOI
https://doi.org/10.1002/smll.76032
Primary Topic
Glioma Diagnosis and Treatment
Type
article
Field-Weighted Citation Impact
0.00

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article

Dual‐Targeting of ER Stress and the CD47‐SIRPα Axis via an In Situ Hydrogel Prevents Postoperative Glioblastoma Recurrence

Shouli Guo, Chenlong Li, Peng Liang, Xiaoyang Sun et al.
Small
Glioma Diagnosis and Treatment
article

Dual‐Targeting of ER Stress and the CD47‐SIRPα Axis via an In Situ Hydrogel Prevents Postoperative Glioblastoma Recurrence

Shouli Guo, Chenlong Li, Peng Liang, Xiaoyang Sun, Zhonghua Lv, Jianheng Gu, Xue Guan, Wei Zhang, Zengfu Li, Yujie Wang
article en

Abstract

The inevitable recurrence of glioblastoma multiforme post-resection is primarily driven by infiltrative residual cells and a profoundly immunosuppressive tumor microenvironment (TME) that evades innate immune surveillance. In the present study, an injectable, photo-crosslinkable carboxymethyl chitosan (CMCS)-based hydrogel (si-HAX1&Quercetin@Gel) was engineered to achieve localized, synergistic chemo-immunotherapy within the surgical cavity. The findings demonstrate that the localized release of si-HAX1 triggers robust endoplasmic reticulum stress-mediated immunogenic cell death, leading to significant CRT surface translocation. Concurrently, Quercetin acts as a small-molecule antagonist of the CD47-signal regulatory protein α axis, dismantling the "don't eat me" shield that protects glioma cells from macrophage-mediated phagocytosis. In an in vivo postoperative glioblastoma model, the si-HAX1&Quercetin@Gel effectively suppressed tumor regrowth, increased the M1/M2 macrophage ratio and recruited CD8+ T cells, thereby extending median survival time. Moreover, this localized intervention sensitized residual tumors to intratumorally administered anti-programmed cell death protein 1 therapy by upregulating IFN-γ and remodeling the TME. By integrating biomaterial engineering with deep molecular targeting of HAX1 and CD47, we provide a robust strategy to transform the post-surgical cavity into an active immunological zone, offering a potent solution to combat malignant glioma recurrence.

Small
Harbin Medical University (CN), Third Affiliated Hospital of Harbin Medical University (CN), Second Affiliated Hospital of Harbin Medical University (CN), Northeast Forestry University (CN)
Harbin Medical University Cancer Hospital, National Natural Science Foundation of China
Good health and well-being
Openalex Percentile: Top 13%
Glioma Diagnosis and Treatment
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