下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Tailored HER2 ECD mRNA-LNP vaccines boost CD8(+) T cell-mediated antitumor immunity for HER2-positive tumor suppression.
Tailored HER2 ECD mRNA-LNP vaccines boost CD8(+) T cell-mediated antitumor immunity for HER2-positive tumor suppression.
尽管靶向药物、化疗和免疫治疗取得了进展,HER2阳性肿瘤仍然是一个巨大的治疗挑战。
HER2阳性肿瘤尽管在靶向药物、化疗和免疫治疗方面取得了进展,仍然是一个巨大的治疗挑战。近年来,信使RNA(mRNA)疫苗已成为治疗晚期肿瘤及其复发的有前景的途径,尽管其临床应用仍面临挑战。在此,我们开发了脂质纳米颗粒(LNP)包裹的核苷修饰mRNA疫苗,编码来自大鼠HER2(rHER2 ECD mRNA-LNP)和人HER2(hHER2 ECD mRNA-LNP)的修饰胞外域(ECD)序列。虽然两种疫苗均能有效抑制肿瘤,但hHER2 ECD mRNA-LNP在体内表现出更优越的预防和治疗效果,并在体外成功诱导了针对人患者来源类器官(PDOs)的强效、抗原限制性细胞毒性。在机制上,它增强了体液免疫和T细胞反应,并通过减少耗竭、促进效应成熟和诱导记忆T细胞来重编程CD8+TIL(肿瘤浸润淋巴细胞)(TILs)。具体而言,初始样T细胞簇的减少伴随循环T细胞簇的增加,构成了疫苗疗效的基础。此外,HER2表位特异性T细胞受体β链可变/连接(Trbv/Trbj)组合和互补决定区3(CDR3)基序被鉴定为抗原特异性杀瘤活性的关键贡献者。至关重要的是,将hHER2 ECD mRNA-LNP疫苗与程序性细胞死亡-1(PD-1)免疫检查点阻断(ICB)联合使用,相比疫苗单药治疗实现了更优越的抗肿瘤疗效。此外,将hHER2 ECD mRNA-LNP疫苗与标准化放疗联合,有效增强了对HER2阳性肿瘤的治疗效果。这些发现突出了一种有前景的肿瘤学药物,并表明修饰的HER2 ECD mRNA-LNP代表了一种针对HER2阳性恶性肿瘤的可行且高效的治疗策略。
HER2-positive tumors persist as a formidable therapeutic challenge despite advances in targeted agents, chemotherapy, and immunotherapy. Recently, messenger RNA (mRNA) vaccines have emerged as promising avenues for the treatment of advanced tumors and their recurrence, although their clinical application remains challenging. Herein, we developed lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA vaccines encoding the modified extracellular domain (ECD) sequence from rat HER2 (rHER2 ECD mRNA-LNP) and human HER2 (hHER2 ECD mRNA-LNP). While both vaccines elicited effective tumor inhibition, the hHER2 ECD mRNA-LNP demonstrated superior prophylactic and therapeutic efficacy in vivo, and successfully induced potent, antigen-restricted cytotoxicity against human patient-derived organoids (PDOs) ex vivo. Mechanistically, it enhances both humoral and T cell responses, and reprograms CD8 + tumor-infiltrating lymphocytes (TILs) by reducing exhaustion, promoting effector maturation, and inducing memory T cells. Specifically, a reduction in naive-like T cell clusters coupled with an elevation in cycling T cell clusters underpins the vaccine's efficacy. Furthermore, HER2 epitope-specific T cell receptor β-chain variable/joining (Trbv/Trbj) combinations and complementarity-determining region 3 (CDR3) motifs were identified as key contributors to the antigen-specific tumoricidal activity. Crucially, combining the hHER2 ECD mRNA-LNP vaccine with programmed cell death-1 (PD-1) immune checkpoint blockade (ICB) achieves superior antitumor efficacy compared to vaccine monotherapy. Moreover, combining the hHER2 ECD mRNA-LNP vaccine with standard chemoradiotherapy effectively potentiates the therapeutic efficacy against HER2-positive tumors. These findings highlight a promising agent for oncology and suggest that modified HER2 ECD mRNA-LNPs represent a viable and highly effective therapeutic strategy against HER2-positive malignancies.
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