Design of a novel integration-deficient lentivector technology that incorporates genetic and posttranslational elements to target human dendritic cells

设计一种新型整合缺陷型慢病毒载体技术,该技术结合了遗传和翻译后元件,用于靶向人类树突状细胞

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作者:Semih U Tareen, Brenna Kelley-Clarke, Christopher J Nicolai, Linda A Cassiano, Lisa T Nelson, Megan M Slough, Chintan D Vin, Jared M Odegard, Derek D Sloan, Neal Van Hoeven, James M Allen, Thomas W Dubensky Jr, Scott H Robbins

Abstract

As sentinels of the immune system, dendritic cells (DCs) play an essential role in regulating cellular immune responses. One of the main challenges of developing DC-targeted therapies includes the delivery of antigen to DCs in order to promote the activation of antigen-specific effector CD8 T cells. With the goal of creating antigen-directed immunotherapeutics that can be safely administered directly to patients, Immune Design has developed a platform of novel integration-deficient lentiviral vectors that target and deliver antigen-encoding nucleic acids to human DCs. This platform, termed ID-VP02, utilizes a novel genetic variant of a Sindbis virus envelope glycoprotein with posttranslational carbohydrate modifications in combination with Vpx, a SIVmac viral accessory protein, to achieve efficient targeting and transduction of human DCs. In addition, ID-VP02 incorporates safety features in its design that include two redundant mechanisms to render ID-VP02 integration-deficient. Here, we describe the characteristics that allow ID-VP02 to specifically transduce human DCs, and the advances that ID-VP02 brings to conventional third-generation lentiviral vector design as well as demonstrate upstream production yields that will enable manufacturing feasibility studies to be conducted.

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