PO.CL05.13 · 临床研究
HER2多表位疫苗联合T-DM1治疗残留HER2阳性乳腺癌的安全性导入阶段的安全性、耐受性及早期免疫应答
Safety, tolerability, and early immune responses in the safety run-in of an HER2 multi-epitope vaccine combined with T-DM1 in residual HER2-positive breast cancer
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摘要 Abstract
中文摘要
背景:HER2阳性乳腺癌患者在接受新辅助化疗(NAC)后仍有浸润性残留病灶,即使采用标准辅助曲妥珠单抗美坦新偶联物(T-DM1),复发风险依然很高。H2NVAC是一种多表位HER2肽疫苗,此前已证明能够引发强健且持久的免疫应答。在此,我们评估了H2NVAC联合T-DM1在这一高危人群中的安全性和早期免疫原性。
方法:II-III期HER2阳性乳腺癌且在NAC及HER2导向治疗后有浸润性残留病灶的患者,在接受标准辅助T-DM1的同时,每3周接受一次H2NVAC诱导剂量,共六剂。主要终点是首次接种后21天内发生剂量限制性毒性(DLT),不良事件按CTCAE v5.0分级。免疫原性评估包括通过IFNgamma ELISpot测量的HER2特异性T细胞应答,以及在基线和第六剂诱导剂量后30天通过ELISA测量的HER特异性血清抗体。
结果:共入组20例患者。H2NVAC联合T-DM1耐受性良好,未观察到DLT。所有治疗中出现的不良事件均为1-2级,最常见的为疲乏(1级60%,2级5%)、周围感觉神经病变(1级35%,2级10%)、碱性磷酸酶升高(1级40%)、恶心(1级35%,2级5%)、关节痛(1级30%)和注射部位反应(1级50%)。在94%的可评估患者中通过ELISpot观察到强健的疫苗特异性T细胞应答,这些患者在第六剂诱导剂量后30天产生了HER2特异性T细胞应答,较基线平均增加197倍。进一步的CYTOF分析显示耗竭T细胞表型显著减少,CD4+和CD8+ T细胞上的LAG3和TIM3表达均降低。就ELISA检测的抗体应答而言,26%的患者在该时间点产生了HER2蛋白特异性抗体应答。在第六剂疫苗后30天,针对H2NVAC肽或无关肿瘤抗原(p53、IGFBP2、TERT、肌红蛋白)的抗体未见显著升高(p未给出)。正在进行的相关性分析将评估在完成T-DM1治疗后更晚时间点免疫应答的演变。
结论:H2NVAC与T-DM1同期给药是安全的,未使毒性超过单药T-DM1。据我们所知,这是首个证明癌症疫苗能够与抗体药物偶联物同期递送而不增加不良反应、同时仍能引发强健T细胞应答的研究。正在进行的分析将进一步明确疫苗诱导的抗体和T细胞应答在更晚时间点的动力学和持久性,并在随机II期试验中评估H2NVAC在降低复发风险方面的疗效。
查看英文原文 English abstract
Background: Patients with residual invasive disease after neoadjuvant chemotherapy (NAC) for HER2-positive breast cancer remain at high risk for recurrence even with standard adjuvant trastuzumab emtansine (T-DM1). H2NVAC, a multi-epitope HER2 peptide vaccine, has previously demonstrated the ability to elicit robust and durable immune responses. Here, we assessed the safety and early immunogenicity of H2NVAC in combination with T-DM1 in this high-risk population.
Methods: Patients with stage II-III HER2-positive breast cancer and residual invasive disease following NAC and HER2-directed therapy received standard adjuvant T-DM1 alongside six priming doses of H2NVAC administered every 3 weeks. The primary endpoint was the occurrence of dose-limiting toxicity (DLT) within 21 days of the first vaccination, with adverse events graded per CTCAE v5.0. Immunogenicity assessments included HER2-specific T-cell responses measured by IFNgamma ELISpot and HER-specific serum antibodies measured by ELISA at baseline and 30 days after the sixth priming dose.
Results: 20 patients were enrolled. H2NVAC plus T-DM1 was well tolerated with no DLTs observed. All treatment-emergent AEs were grade 1-2, with fatigue (grade 1 60%, grade 2 5%), peripheral sensory neuropathy (grade 1 35%, grade 2 10%), elevated alkaline phosphatase (grade 1 40%), nausea (grade 1 35%, grade 2 5%), arthralgia (grade 1 30%), and injection-site reactions (grade 1 50%) being most common. Robust vaccine-specific T-cell responses by ELISpot were observed in 94% of evaluable patients, who mounted HER2-specific T-cell responses at 30 days after the sixth priming dose, with a mean 197-fold increase over baseline. Further CYTOF analysis showed a significant decrease in exhausted T-cell phenotypes, with reduced LAG3 and TIM3 expression on both CD4 + and CD8 + T cells. For antibody responses by ELISA, 26% of patients developed HER2 protein-specific antibody responses at this time point. There was no significant increase in antibodies to H2NVAC peptides or to unrelated tumor antigens (p53, IGFBP2, TERT, myoglobin) at 30 days after the sixth vaccine. Ongoing correlative analyses will assess the evolution of immune responses at later time points following completion of T-DM1 therapy.
Conclusions: Concurrent administration of H2NVAC with T-DM1 was safe and did not increase toxicity beyond single-agent T-DM1. To our knowledge, this is the first study to demonstrate that a cancer vaccine can be delivered concurrently with an antibody-drug conjugate without increasing adverse effects while still eliciting robust T-cell responses. Ongoing analyses will further define the kinetics and durability of vaccine-induced antibody and T-cell responses at later time points, as well as evaluate the efficacy of H2NVAC in reducing recurrence risk in the randomized phase 2 trial.
利益披露 Disclosure
S. Chumsri,
Novartis Travel.
Pfizer Travel.
AstraZeneca Travel.
Merck ).
Genentech?Roche ).
S. Giri, None..
A. J. Ness, None..
D. W. Hillman, None..
D. Cogen, None..
B. M. Necela, None..
A. Nassar, None..
D. W. Northfelt, None..
P. Advani, None..
R. Rao, None..
A. Mareno-Aspitia, None..
B. Ernst, None..
M. P. Goetz, None..
K. L. Knutson, None.