Department of Chemistry, University of Massachusetts Amherst, 710 North Pleasant Street, Amherst, Massachusetts 01003, United States.
Molecular and Cellular Biology Graduate Program, University of Massachusetts Amherst, 710 North Pleasant Street, Amherst, Massachusetts 01003, United States.
J Am Chem Soc. 2020 Mar 4;142(9):4349-4355. doi: 10.1021/jacs.9b12759. Epub 2020 Feb 25.
Nanocarrier-mediated protein delivery is a promising strategy for fundamental research and therapeutic applications. However, the efficacy of the current platforms for delivery into cells is limited by endosomal entrapment of delivered protein cargo with concomitantly inefficient access to the cytosol and other organelles, including the nucleus. We report here a robust, versatile polymeric-protein nanocomposite (PPNC) platform capable of efficient (≥90%) delivery of proteins to the cytosol. We synthesized a library of guanidinium-functionalized poly(oxanorborneneimide) (PONI) homopolymers with varying molecular weights to stabilize and deliver engineered proteins featuring terminal oligoglutamate "E-tags". The polymers were screened for cytosolic delivery efficiency using imaging flow cytometry with cytosolic delivery validated using confocal microscopy and activity of the delivered proteins demonstrated through functional assays. These studies indicate that the PPNC platform provides highly effective and tunable cytosolic delivery over a wide range of formulations, making them robust agents for therapeutic protein delivery.
纳米载体介导的蛋白质递送是基础研究和治疗应用的一种很有前途的策略。然而,目前用于细胞内递送的平台的功效受到递送到细胞内的蛋白质货物被内体捕获的限制,同时也无法有效地进入细胞质和其他细胞器,包括细胞核。我们在这里报告了一种强大的、多功能的聚合物-蛋白质纳米复合物(PPNC)平台,能够有效地(≥90%)将蛋白质递送到细胞质中。我们合成了一系列具有不同分子量的胍基功能化聚(降冰片烯亚胺)(PONI)均聚物,以稳定和递送电工程蛋白质,这些蛋白质具有末端寡谷氨酸“E-标签”。使用成像流式细胞术筛选具有细胞质递送效率的聚合物,通过共聚焦显微镜验证细胞质递送,通过功能测定证明递送到蛋白质的活性。这些研究表明,PPNC 平台在广泛的制剂范围内提供了高效和可调节的细胞质递送,使其成为治疗性蛋白质递送的强大试剂。