LBPO.ET04 · 实验与分子治疗 · Late-Breaking
利用靶向LNP平台共递送p53 siRNA和mRNA以完全恢复p53突变型癌症中的p53
Complete restoration of p53 in p53 mutant cancers through co-delivery of p53 siRNA and mRNA using a targeted LNP platform
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
p53被称为"基因组卫士",通过诱导细胞周期停滞或凋亡来维持细胞完整性。虽然p53 mRNA递送是一种新兴的治疗方法,但其疗效通常仅限于p53缺失背景。在p53突变型癌症中,单独使用野生型mRNA的有效性因内源性突变体的显性负性和功能获得性(GOF)效应而严重受限。因此,主动清除各种突变体对成功恢复至关重要。尽管存在小分子重折叠剂,但它们仅靶向特定热点,无法应对临床p53突变的巨大多样性。为克服这些挑战,我们开发了RePair53(通过配对干扰[siRNA]和替换[mRNA]恢复p53),这是一个"删除并替换"平台,旨在通过pan-p53 siRNA与密码子优化的p53 mRNA的协同共递送实现广谱p53恢复。此外,利用我们此前的研究,脂质纳米颗粒(LNP)表面用肿瘤相关抗原(TAA)靶向的ApoA1融合抗体进行功能化,以实现对癌细胞的精确和选择性递送。我们设计了一种能够清除多个热点突变的pan-p53 siRNA,以及一种密码子优化的p53 mRNA,后者可恢复功能性p53同时逃避siRNA介导的降解。这些RNA被共封装入脂质纳米颗粒(LNP)并用Panitumumab-ApoA1功能化以实现精确的EGFR靶向。通过qPCR和Western blot验证了各自的功能独立性。在CAL-27异种移植小鼠模型中评估了抗肿瘤疗效和靶向效率。qPCR分析证实,pan-p53 siRNA实现了对内源性突变型p53超过80%的敲低,且在mRNA共递送期间该效率仍保持一致。Western blot验证了密码子优化的mRNA成功恢复了p53蛋白表达而不受干扰。体外实验显示,与单独mRNA治疗相比,抗肿瘤疗效提高了60%。在CAL-27异种移植模型中,RePair53表现出显著增强的肿瘤抑制作用。RePair53平台通过克服局限于p53缺失背景或特定突变类型的传统方法的关键局限,确立了p53靶向治疗的新范式。通过将pan突变沉默与强大的功能恢复相结合,这种"删除并替换"策略有效应对了临床中遇到的p53突变的巨大多样性和异质性。因此,RePair53为靶向基因治疗提供了一个通用且多功能的基础,为由各种p53突变驱动的广泛恶性肿瘤提供了变革性的解决方案。
查看英文原文 English abstract
p53, the "Guardian of the Genome," maintains cellular integrity by inducing cell cycle arrest or apoptosis. While p53 mRNA delivery is an emerging therapeutic approach, its efficacy is often limited to p53-null backgrounds. In p53-mutant cancers, the effectiveness of wild-type mRNA alone is severely restricted by the dominant-negative and gain-of-function (GOF) effects of endogenous mutants. Consequently, active elimination of diverse mutants is essential for successful restoration. Although small-molecule refolding agents exist, they target only specific hotspots and fail to address the vast diversity of clinical p53 mutations. To overcome these challenges, we developed RePair53(Restoration of p53 via Paired interference [siRNA] and replacement [mRNA]), a "Delete-and-Replace" platform designed for broad-spectrum p53 restoration through the synergistic co-delivery of a pan-p53 siRNA and a codon-optimized p53 mRNA. Furthermore, leveraging our previous research, the lipid nanoparticle (LNP) surface was functionalized with tumor-associated antigen (TAA)-targeted ApoA1 fusion antibodies to achieve precise and selective delivery to cancer cells. We designed a pan-p53 siRNA capable of eliminating multiple hotspot mutations and a codon-optimized p53 mRNA that restores functional p53 while evading siRNA-mediated degradation. The RNAs were co-encapsulated into lipid nanoparticles (LNPs) and functionalized with Panitumumab-ApoA1 for precise EGFR targeting. Independent functionality was validated via qPCR and Western blot. Antitumor efficacy and targeting efficiency were evaluated in a CAL-27 xenograft mouse model. qPCR analysis confirmed that the pan-p53 siRNA achieved over 80% knockdown of endogenous mutant p53, an efficiency that remained consistent even during mRNA co-delivery. Western blot verified that the codon-optimized mRNA successfully restored p53 protein expression without interference. In vitro assays showed a 60% increase in antitumor efficacy compared to mRNA treatment alone. In the CAL-27 xenograft model, RePair53 demonstrated significantly enhanced tumor suppression. The RePair53 platform establishes a new paradigm in p53-targeted therapy by overcoming the critical limitations of conventional approaches restricted to p53-null backgrounds or specific mutation types. By integrating pan-mutant silencing with robust functional restoration, this "Delete-and-Replace" strategy effectively addresses the vast diversity and heterogeneity of p53 mutations encountered in clinical settings. Consequently, RePair53 provides a universal and versatile foundation for targeted gene therapy, offering a transformative solution for a wide spectrum of malignancies driven by diverse p53 mutations.
利益披露 Disclosure
H. Song, None..
S. Lee, None..
S. Lee, None..
D. Oh, None..
C. Choi, None..
D. Kweon, None.