CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CD103(+) cDC1 Dendritic Cell Vaccine Therapy for Osteosarcoma Lung Metastases.
CD103(+) cDC1 Dendritic Cell Vaccine Therapy for Osteosarcoma Lung Metastases.
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肿瘤内 cDCV 产生了系统性免疫反应,抑制了治疗和未治疗肿瘤的生长,肿瘤和淋巴结中 T 细胞增加。系统性 cDCV 对已形成的肺转移有效。抗 CTLA4 增强了疗效。cDCV 可能为复发/转移性 OS 患者提供一种新的治疗方法。
我们使用K7M3 OS细胞裂解物制备了CD103+ DC疫苗(cDCV),并研究了其诱导原发肿瘤消退、已形成的肺转移灶消退以及系统性免疫应答的能力。
采用双侧肿瘤模型评估cDCV治疗的疗效及全身免疫诱导作用。将K7M3细胞双侧注射至小鼠体内。右侧肿瘤接受PBS(对照)或cDCV治疗。左侧肿瘤未治疗。比较疫苗治疗侧肿瘤与对侧未治疗肿瘤的生长情况,并与对照组进行比较。评估肿瘤、肿瘤引流淋巴结(TdLNs)和脾脏的免疫细胞谱。为确定全身性cDCV治疗对已形成肺转移灶的疗效,将K7M3细胞经胫骨内注射。5周后行截肢术。小鼠经静脉给予PBS或cDCV治疗,6周后安乐死。收集肺、TdLNs和脾脏。对肺结节的数量和大小进行定量。同时评估肿瘤、淋巴结和脾脏的免疫细胞谱。使用同一模型,我们评估了cDCV + anti-CTLA-4的效果。
与对照组小鼠相比,cDCV治疗抑制了治疗侧和未治疗侧的肿瘤,并增加了这些肿瘤及淋巴结中T细胞的数量。截肢后给予全身性cDCV治疗,减小了肺转移灶的大小和数量,并增加了肿瘤和淋巴结中T细胞的数量。将anti-CTLA-4与cDCV治疗联合使用,增强了cDCV对肺转移的疗效。
We generated a CD103 + DC vaccine using K7M3 OS cell lysates (cDCV) and investigated its ability to induce regression of primary tumors, established lung metastases, and a systemic immune response.
A bilateral tumor model was used to assess cDCV therapy efficacy and systemic immunity induction. K7M3 cells were injected into mice bilaterally. Right-sided tumors received PBS (control) or cDCV. Left-sided tumors were untreated. Tumor growth was compared between the vaccine-treated and untreated tumor on the contralateral side and compared to the control group. The immune cell profiles of the tumors, and tumor-draining lymph nodes (TdLNs) and spleen were evaluated. To determine the efficacy of systemic cDCV therapy against established lung metastases, K7M3 cells were injected intratibially. Leg amputation was performed 5 weeks later. Mice were treated intravenously with PBS or cDCV and euthanized 6 weeks later. Lungs, TdLNs and spleen were collected. The number and size of the lung nodules were quantified. The immune cell profile of tumor, and lymph nodes and spleen were also evaluated. Using this same model, we evaluated the effect of cDCV + anti-CTLA-4.
cDCV therapy inhibited the treated and untreated tumors and increased the number of T-cells in these tumors and the lymph nodes compared to control-treated mice. Systemic cDCV therapy administered following amputation decreased the size and number of lung metastases, and increased T-cell numbers in the tumor and lymph nodes. Combining anti-CTLA-4 with cDCV therapy increased cDCV efficacy against lung metastases.
Intratumor cDCV generated a systemic immune response inhibiting the growth of both the treated and untreated tumors, with increased T-cells in the tumor and lymph nodes. Systemic cDCV was effective against established lung metastases. Efficacy was increased by anti-CTLA4. cDCVs may provide a novel therapeutic approach for relapsed/metastatic OS patients.
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