CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Synergistic cancer immunotherapy utilizing programmed Salmonella typhimurium secreting heterologous flagellin B conjugated to interleukin-15 proteins.
Synergistic cancer immunotherapy utilizing programmed Salmonella typhimurium secreting heterologous flagellin B conjugated to interleukin-15 proteins.
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使用经过适当设计的免疫治疗细菌是一种有吸引力的肿瘤治疗方法,因为细菌能特异性靶向肿瘤组织并递送治疗性载荷。本研究描述了一种减毒鼠伤寒沙门菌株的工程化改造,该菌株缺乏ppGpp生物合成(SAM),可在L-阿拉伯糖(L-ara)存在下分泌与人类(hIL15/FlaB)和小鼠(mIL15/FlaB)白细胞介素-15蛋白偶联的创伤弧菌鞭毛蛋白B(FlaB)。这些菌株分别命名为SAMphIF和SAMpmIF,其分泌的融合蛋白保留了FlaB和IL15两者的生物活性。SAMphIF和SAMpmIF抑制了小鼠MC38和CT26皮下(sc)肿瘤的生长,并比仅表达FlaB的SAM(SAMpFlaB)或仅表达IL15的SAM(SAMpmIL15和SAMphIL15)更有效地提高了小鼠生存率,尽管SAMpmIF的抗肿瘤活性略高于SAMphIF。用这些细菌治疗的小鼠显示出巨噬细胞表型从M2样向M1样的增强转变,以及肿瘤组织中CD4+ T、CD8+ T、NK和NKT细胞更强的增殖和活化。在这些细菌根除肿瘤后,≥50%的小鼠在用相同肿瘤细胞再次攻击时未显示肿瘤复发的证据,表明它们已获得长期免疫记忆。用这些细菌与免疫检查点抑制剂抗PD-L1抗体联合治疗4T1和B16F10高度恶性皮下肿瘤小鼠,显著抑制了肿瘤转移并提高了小鼠生存率。
综上所述,这些发现表明,分泌IL15/FlaB的SAM是细菌介导的癌症免疫治疗的一种新型治疗候选物,并且其抗肿瘤活性通过与抗PD-L1抗体联合而增强。
The use of appropriately designed immunotherapeutic bacteria is an appealing approach to tumor therapy because the bacteria specifically target tumor tissue and deliver therapeutic payloads. The present study describes the engineering of an attenuated strain of Salmonella typhimurium deficient in ppGpp biosynthesis (SAM) that could secrete Vibrio vulnificus flagellin B (FlaB) conjugated to human (hIL15/FlaB) and mouse (mIL15/FlaB) interleukin-15 proteins in the presence of L-arabinose (L-ara). These strains, named SAMphIF and SAMpmIF, respectively, secreted fusion proteins that retained bioactivity of both FlaB and IL15. SAMphIF and SAMpmIF inhibited the growth of MC38 and CT26 subcutaneous (sc) tumors in mice and increased mouse survival rate more efficiently than SAM expressing FlaB alone (SAMpFlaB) or IL15 alone (SAMpmIL15 and SAMphIL15), although SAMpmIF had slightly greater antitumor activity than SAMphIF.
The mice treated with these bacteria showed enhanced macrophage phenotype shift, from M2-like to M1-like, as well as greater proliferation and activation of CD4 + T, CD8 + T, NK, and NKT cells in tumor tissues. After tumor eradication by these bacteria, ≥50% of the mice show no evidence of tumor recurrence upon rechallenge with the same tumor cells, indicating that they had acquired long-term immune memory.
Treatment of mice of 4T1 and B16F10 highly malignant sc tumors with a combination of these bacteria and an immune checkpoint inhibitor, anti-PD-L1 antibody, significantly suppressed tumor metastasis and increased mouse survival rate. Taken together, these findings suggest that SAM secreting IL15/FlaB is a novel therapeutic candidate for bacterial-mediated cancer immunotherapy and that its antitumor activity is enhanced by combination with anti-PD-L1 antibody.
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