Department of Pharmacology, Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, 6000 Harry Hines Blvd., Dallas, TX 75390, USA.
Department of Pharmacology, Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, 6000 Harry Hines Blvd., Dallas, TX 75390, USA.
J Control Release. 2021 Jan 10;329:353-360. doi: 10.1016/j.jconrel.2020.11.056. Epub 2020 Dec 7.
Cancer vaccines hold great promise to produce antigen-specific T cell immunity for personalized therapy of cancer. Previously, we reported an ultra-pH-sensitive nanoparticle, PC7A, capable of priming an efficacious immune response without significant systemic toxicity. Despite the early success, the relationship between antigen properties and encapsulation efficiency for downstream immune activation remains poorly understood. In this study, we investigated a small library of melanoma antigens and the effects of several formulation methods on the efficiency of peptide loading inside PC7A nanoparticles. Results show loading efficiency is not highly dependent on the formulation methods, but instead mainly driven by the peptide antigen properties. In particular, we identified a phase transition event, namely the folding of antigenic peptides from random coils to α-helical structure, is important for antigen loading inside PC7A nanoparticles. Mutation of a peptide that abrogates the formation of helical structure resulted in poor loading efficiency. Antitumor efficacy studies in melanoma-bearing mice demonstrate the importance of peptide loading in vaccine-induced antitumor immunity. This study highlights the contribution of phase transition of peptide antigens on vaccine formulation in order to make widespread use of personalized nanoparticle vaccines feasible.
癌症疫苗为癌症的个性化治疗带来了产生抗原特异性 T 细胞免疫的巨大希望。此前,我们报道了一种超 pH 敏感的纳米颗粒 PC7A,它能够在没有明显全身毒性的情况下引发有效的免疫反应。尽管早期取得了成功,但抗原特性与下游免疫激活的封装效率之间的关系仍知之甚少。在这项研究中,我们研究了一小部分黑色素瘤抗原,并研究了几种制剂方法对 PC7A 纳米颗粒内部肽负载效率的影响。结果表明,加载效率不太依赖于制剂方法,而是主要取决于肽抗原的特性。特别是,我们确定了一个相变事件,即抗原肽从无规卷曲到α-螺旋结构的折叠,对于 PC7A 纳米颗粒内部的抗原加载很重要。突变使肽形成螺旋结构的能力丧失,导致负载效率差。在荷黑色素瘤小鼠中的抗肿瘤功效研究表明了肽负载在疫苗诱导抗肿瘤免疫中的重要性。这项研究强调了相变在疫苗制剂中对肽抗原的贡献,以实现广泛使用个性化纳米疫苗的可行性。