Targeted Enrichment of Engineered Bacteria on Triple‐Negative Breast Cancer Turns Immunologically Cold Tumors Hot

光热治疗 癌症研究 免疫原性细胞死亡 免疫系统 免疫疗法 肿瘤微环境 癌症免疫疗法 微生物学 癌细胞 转移 乳腺癌 细胞 癌症 细菌 化学 医学 生物 细胞外 免疫学 靶向治疗 肿瘤进展 大肠杆菌 免疫佐剂 免疫监视 恶性转化 材料科学
作者
Xuanxiang Zhai,Xiaoyi Shi,Xiao Liu,Xiaotong Gu,Wenting Li,Xiangjun Chen,Wei Hong
出处
期刊:Advanced Science [Wiley]
卷期号:12 (47): e10171-e10171 被引量:1
标识
DOI:10.1002/advs.202510171
摘要

Tumor immunotherapy has garnered significant attention, however, several notable challenges remain to be addressed, including: 1) enhancing active targeting, 2) effectively shielding immune checkpoints, and 3) inducing the transformation of "cold" tumor into "hot". In this study, an "all-in-one" extracellular anaerobic bacterial nanocomposite system is constructed. Escherichia coli Nissle 1917 (EcN) is enveloped with polydopamine via self-polymerization (PDAEcN), subsequently conjugated with a chitosan oligosaccharide (COS) nanoparticle immunostimulant backpack, denoted as PDAEcN/COS. The PDA coating is capable of concealing EcN polysaccharides, masking the immunogenic bacterial surface antigens, and inducing a mild photothermal therapy (PTT) effect. Moreover, PDAEcN/COS exhibits targeted accumulation in hypoxic regions of solid tumors and demonstrates pronounced enrichment on tumor cell surfaces, attributed to the bacterial hypoxic region targeting ability and adhesive properties of PDA, physically obstructing the immune checkpoint. Simultaneously, both EcN and COS markedly enhanced the transformation of M2 macrophages into the M1 phenotype, whereas mild PTT-induced immunogenic cell death (ICD) further mitigated the immunosuppressive nature of the hypoxic tumor microenvironments (TMEs). This integrated therapeutic approach eradicated tumors without eliciting metastasis or discernible side effects following a single injection and laser irradiation in a murine 4T1 cancer model. Ultimately, the immunostimulatory capacity of PDAEcN/COS is considered to hold significant potential for developing novel and efficacious therapies for immunologically "cold" triple-negative breast cancer (TNBC).
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