Yen Jonathan, Ying Hanze, Wang Hua, Yin Lichen, Uckun Fatih, Cheng Jianjun
Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Institute of Functional Nano & Soft Materials, Collaborative Innovation Center of Suzhou, Nano Science and Technology, Soochow University, Suzhou 215123, PROC.
Developmental Therapeutics Program, Children's Hospital Los Angeles, Children's Center for Cancer and Blood Diseases, Los Angeles, California 90027, United States.
ACS Biomater Sci Eng. 2016 Mar 14;2(3):326-335. doi: 10.1021/acsbiomaterials.5b00393. Epub 2016 Feb 23.
Gene delivery is an important tool to study and manipulate human pluripotent stem cells for regenerative medicine purposes. Yet current methods of transient gene delivery to stem cells are still inefficient. Through the combination of biologically based concepts and material design, we aim to develop new methods to enhance the efficiency of gene delivery to stem cells. Specifically, we use poly(γ-4-(((2-(piperidin-1-yl)ethyl)amino)methyl)benzyl-l-glutamate) (PVBLG-8), a membrane-active helical, cationic polypeptide, to condense plasmid DNA to form stable nanocomplexes, which are further coated with hyaluronic acid (HA). HA not only shields the positive charges of PVBLG-8 to reduce toxicity, but also acts as a targeting moiety for cell surface receptor CD44, which binds HA and facilitates the internalization of the nanocomplexes. Upon entering cells, HA is degraded by hyaluronidase in endosomes and PVBLG-8 is exposed, facilitating the endosomal escape of DNA/polypeptide complex. Our studies show that the coating of HA significantly increases gene transfection efficiency of DNA/PVBLG-8 nanocomplexes from about 28 to 36% with largely reduced toxicity.
基因递送是用于再生医学目的研究和操控人类多能干细胞的一项重要工具。然而,目前将基因短暂递送至干细胞的方法效率仍然较低。通过结合基于生物学的概念和材料设计,我们旨在开发新方法以提高基因递送至干细胞的效率。具体而言,我们使用聚(γ-4-(((2-(哌啶-1-基)乙基)氨基)甲基)苄基-L-谷氨酸)(PVBLG-8),一种具有膜活性的螺旋阳离子多肽,来浓缩质粒DNA以形成稳定的纳米复合物,该复合物进一步用透明质酸(HA)包被。HA不仅屏蔽PVBLG-8的正电荷以降低毒性,还作为细胞表面受体CD44的靶向部分,CD44与HA结合并促进纳米复合物的内化。进入细胞后,HA在内体中被透明质酸酶降解,PVBLG-8暴露,促进DNA/多肽复合物的内体逃逸。我们的研究表明,HA包被显著提高了DNA/PVBLG-8纳米复合物的基因转染效率,从约28%提高到36%,同时毒性大大降低。