基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:NGR-modified curcumin nanovesicles reverse immunotherapy resistance in triple-negative breast cancer via TLR9 and mTOR pathway modulation.
NGR-modified curcumin nanovesicles reverse immunotherapy resistance in triple-negative breast cancer via TLR9 and mTOR pathway modulation.
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姜黄素(Cur)是一种从姜黄中提取的天然生物活性化合物,因其对炎症、抗氧化和抗肿瘤特性的调节作用而受到广泛关注。然而,其治疗转化仍受限于有限的全身生物利用度。三阴性乳腺癌(TNBC)是乳腺恶性肿瘤的一种侵袭性亚型,对常规治疗表现出强烈耐药性且预后不良。
本研究旨在阐明负载Cur的NGR修饰纳米囊泡(NGR-NVs@Cur)逆转TNBC免疫治疗耐药性的机制。通过转录组学和网络药理学分析,我们确定了参与TNBC发生和免疫治疗耐药的关键基因,以确定Cur的靶点。体外实验,包括SA-β-gal染色、流式细胞术和糖酵解分析,验证了TNBC细胞诱导糖酵解和CD8 + T细胞衰老。NGR-NVs@Cur成功构建,并通过透射电子显微镜(TEM)、动态光散射(DLS)、pH响应释放和细胞摄取实验进行了表征。
进一步的细胞研究表明,NGR-NVs@Cur抑制TNBC细胞增殖、迁移、糖酵解,并逆转CD8 + T细胞衰老。在体内,建立了皮下异种移植和过继性T细胞转移模型,以评估NGR-NVs@Cur联合免疫检查点抑制剂(ICIs,如J43)的治疗效果。
结果显示,Cur通过激活TLR9和抑制mTOR通路抑制TNBC细胞糖酵解和T细胞衰老,且NGR-NVs@Cur增强了Cur的靶向递送并有效逆转了免疫治疗耐药性。
本研究展示了一种新策略,即通过肿瘤靶向纳米囊泡递送Cur,经TLR9-mTOR轴调控糖酵解和CD8+ T细胞衰老,为克服TNBC免疫抵抗提供了有前景的见解。
Curcumin (Cur), a natural bioactive compound extracted from Curcuma longa, has garnered extensive interest due to its modulation of inflammation, antioxidant, and anti-tumor properties.
However, its therapeutic translation remains constrained by limited systemic bioavailability. Triple-negative breast cancer (TNBC), an aggressive variant of breast malignancies, exhibits strong resistance to conventional therapies and poor prognosis. The present study was designed to clarify the mechanism through which NGR-modified nanovesicles loaded with Cur (NGR-NVs@Cur) reverse immunotherapy resistance in TNBC.
Using transcriptomic and network pharmacology analysis, we identified key genes involved in TNBC development and immunotherapy resistance to determine the targets of Cur. In vitro experiments, including SA-β-gal staining, flow cytometry, and glycolysis analysis, validated that TNBC cells induce glycolysis and CD8 + T cell senescence. NGR-NVs@Cur were successfully constructed and marked by transmission electron microscopy (TEM), dynamic light scattering (DLS), pH-responsive release, and cellular uptake assays.
Further cell-based studies demonstrated that NGR-NVs@Cur suppressed TNBC cell proliferation, migration, glycolysis, and reversed CD8 + T cell senescence. In vivo, both subcutaneous xenograft and adoptive T cell transfer models were developed to evaluate the therapeutic effects of NGR-NVs@Cur in combination with immune checkpoint inhibitors (ICIs, e.
g. , J43). The results revealed that Cur inhibited TNBC cell glycolysis and T cell senescence by activating TLR9 and suppressing the mTOR pathway, and that NGR-NVs@Cur enhanced targeted Cur delivery and effectively reversed immunotherapy resistance.
This study demonstrated a novel strategy by which Cur, delivered via tumor-targeted nanovesicles, modulates glycolysis and CD8 + T cell senescence through the TLR9-mTOR axis, offering promising insights into overcoming immune resistance in TNBC.
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