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Updated: Feb 13, 2026

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
HSPB1を標的とすることが腫瘍増殖を阻害し、Tregを介した腫瘍免疫抑制を無効化すること
Qi Hu1, Yang Lu2, Xiaolan Zhong1
1Huadu Institute of Medicine, Guangzhou, Huadu District People's Hospital of Guangzhou, 510800, China.
Background:
Colorectal cancer exhibits limited responsiveness to immune-checkpoint blockade, primarily because an elevated intratumoral Treg/CD8+ T-cell ratio extinguishes antitumor immunity. The molecular determinants that lock this immunosuppressive balance are unknown.
Methods:
We integrated single-cell RNA-seq, TCGA WGCNA, and spatial transcriptomics to nominate candidate regulators of the Treg/CD8+ ratio. CRISPR-Cas9 was used to generate HSPB1-knockout MC38 and SW480 cell lines. Subcutaneous models were employed to assess tumor growth. Immune profiling was performed by multiparametric flow cytometry; mechanistic dissection combined bulk RNA-seq, Transwell assays, western blot and in vitro T-cell polarization systems.
Results:
Single-cell profiling and TCGA WGCNA analyze identified HSPB1 as a putative determinant of the intratumoral Treg/CD8+ T-cell ratio, and survival analysis showed its prognostic relevance in CRC. Spatial transcriptomics revealed colocalization of HSPB1-expressing tumor cells with Tregs. Subcutaneous tumor models demonstrated that HSPB1 genetic deletion or pharmacological inhibition markedly suppressed tumor growth and abolish the Treg-dominated microenvironment. In vitro polarization assays confirmed that targeting HSPB1 selectively restrains Treg differentiation without affecting Th17. Integrated transcriptomic and functional assays further elucidated that HSPB1 orchestrates Treg recruitment via the CCL20-CCR6 axis, thereby shaping the immunosuppressive milieu within colorectal tumors.
Conclusions:
Targeting HSPB1 exerts dual anti-tumor effects: it directly suppresses neoplastic proliferation and simultaneously alleviates Treg-mediated immunosuppression within the tumor microenvironment.
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