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.
过继性自然杀伤(NK)细胞疗法是治疗三阴性乳腺癌的一种有前景的策略,但其疗效往往受到瘤内持久性差以及在免疫抑制性肿瘤微环境中功能耗竭的限制。
英文原题:Identification of Immunogenic MHC Class II Human HER3 Peptides that Mediate Anti-HER3 CD4(+) Th1 Responses and Potential Use as a Cancer Vaccine.
Identification of Immunogenic MHC Class II Human HER3 Peptides that Mediate Anti-HER3 CD4(+) Th1 Responses and Potential Use as a Cancer Vaccine.
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我们的数据表明,II 类 HER3 混杂肽可有效诱导 HER3 特异性 CD4+ Th1 反应,并提示其适用于人类 HER3 过表达肿瘤的免疫治疗。
HER3/ERBB3受体是一种致癌性受体酪氨酸激酶,可与EGFR家族成员形成异二聚体,并在多种癌症中过表达。HER3过表达与生存率降低及靶向治疗获得性耐药相关,使其成为多种癌症类型的潜在治疗靶点。在此,我们报道了具有免疫原性、可混杂结合MHC II类的HER3肽,其能够产生HER3特异性CD4+ Th1抗肿瘤免疫应答。采用重叠肽筛选方法,我们在健康供者和乳腺癌患者中鉴定出九条可引发特异性Th1免疫应答的MHC II类结合HER3表位。其中大多数肽未被现有结合算法识别。氨基酸序列BLAST同源性评估显示,人和小鼠HER3/ERBB3肽序列之间具有>90%的序列相似性。HER3肽脉冲树突状细胞疫苗接种可诱导抗HER3 CD4+ Th1应答,从而预防肿瘤发生,在预防模型中显著延迟肿瘤生长,并在多种表达HER3的小鼠肿瘤治疗模型中导致肿瘤消退,包括乳腺癌和黑色素瘤。肿瘤中被CD4+ T细胞大量浸润,提示其在肿瘤排斥中发挥关键作用。我们的数据表明,II类HER3混杂肽可有效诱导HER3特异性CD4+ Th1应答,并提示其适用于人类HER3过表达肿瘤的免疫治疗。
The HER3/ERBB3 receptor is an oncogenic receptor tyrosine kinase that forms heterodimers with EGFR family members and is overexpressed in numerous cancers. HER3 overexpression associates with reduced survival and acquired resistance to targeted therapies, making it a potential therapeutic target in multiple cancer types. Here, we report on immunogenic, promiscuous MHC class II-binding HER3 peptides, which can generate HER3-specific CD4 + Th1 antitumor immune responses. Using an overlapping peptide screening methodology, we identified nine MHC class II-binding HER3 epitopes that elicited specific Th1 immune response in both healthy donors and breast cancer patients. Most of these peptides were not identified by current binding algorithms. Homology assessment of amino acid sequence BLAST showed >90% sequence similarity between human and murine HER3/ERBB3 peptide sequences. HER3 peptide-pulsed dendritic cell vaccination resulted in anti-HER3 CD4 + Th1 responses that prevented tumor development, significantly delayed tumor growth in prevention models, and caused regression in multiple therapeutic models of HER3-expressing murine tumors, including mammary carcinoma and melanoma. Tumors were robustly infiltrated with CD4 + T cells, suggesting their key role in tumor rejection. Our data demonstrate that class II HER3 promiscuous peptides are effective at inducing HER3-specific CD4 + Th1 responses and suggest their applicability in immunotherapies for human HER3-overexpressing tumors.
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