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双特异性溶瘤麻疹病毒通过同时使用 HER2/neu 或 EpCAM 作为靶受体增强裂解。

Enhanced lysis by bispecific oncolytic measles viruses simultaneously using HER2/neu or EpCAM as target receptors.

机构信息

Oncolytic Measles Viruses and Vaccine Vectors, Paul-Ehrlich-Institut , Langen, Germany.

Molecular Biotechnology and Gene Therapy, Paul-Ehrlich-Institut , Langen, Germany.

出版信息

Mol Ther Oncolytics. 2016 Feb 24;3:16003. doi: 10.1038/mto.2016.3. eCollection 2016.

Abstract

To target oncolytic measles viruses (MV) to tumors, we exploit the binding specificity of designed ankyrin repeat proteins (DARPins). These DARPin-MVs have high tumor selectivity while maintaining excellent oncolytic potency. Stability, small size, and efficacy of DARPins allowed the generation of MVs simultaneously targeted to tumor marker HER2/neu and cancer stem cell (CSC) marker EpCAM. For optimization, the linker connecting both DARPins was varied in flexibility and length. Flexibility had no impact on fusion helper activity whereas length had. MVs with bispecific MV-H are genetically stable and revealed the desired double-target specificity. In vitro, the cytolytic activity of bispecific MVs was superior or comparable to mono-targeted viruses depending on the target cells. In vivo, therapeutic efficacy of the bispecific viruses was validated in an orthotopic ovarian carcinoma model revealing an effective reduction of tumor mass. Finally, the power of bispecific targeting was demonstrated on cocultures of different tumor cells thereby mimicking tumor heterogeneity in vitro, more closely reflecting real tumors. Here, bispecific excelled monospecific viruses in efficacy. DARPin-based targeting domains thus allow the generation of efficacious oncolytic viruses with double specificity, with the potential to handle intratumoral variation of antigen expression and to simultaneously target CSCs and the bulk tumor mass.

摘要

为了将溶瘤麻疹病毒(MV)靶向肿瘤,我们利用设计的锚蛋白重复蛋白(DARPins)的结合特异性。这些 DARPin-MV 具有高肿瘤选择性,同时保持优异的溶瘤效力。DARPin 的稳定性、小尺寸和功效允许同时靶向肿瘤标志物 HER2/neu 和癌症干细胞(CSC)标志物 EpCAM 的 MV 的生成。为了优化,连接两个 DARPins 的接头在灵活性和长度上有所不同。灵活性对融合辅助活性没有影响,而长度有影响。具有双特异性 MV-H 的 MV 具有遗传稳定性,并表现出所需的双重靶向特异性。在体外,双特异性 MV 的细胞溶解性活性优于或可与单靶向病毒相媲美,具体取决于靶细胞。在体内,在原位卵巢癌模型中验证了双特异性病毒的治疗效果,证实了肿瘤质量的有效减少。最后,在不同肿瘤细胞的共培养物上证明了双特异性靶向的效力,从而在体外更紧密地模拟肿瘤异质性,更真实地反映真实肿瘤。在这里,双特异性靶向在功效上优于单特异性病毒。基于 DARPin 的靶向结构域因此允许生成具有双重特异性的有效溶瘤病毒,具有处理肿瘤内抗原表达变化的潜力,并能够同时靶向 CSCs 和肿瘤团块。

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