Wang Weiwei, Li Wenzhong, Wang Jinlei, Hu Qinglian, Balk Maria, Bieback Karen, Stamm Christof, Jung Friedrich, Tang Guping, Lendlein Andreas, Ma Nan
Institute of Biomaterial Science and Berlin-Brandenburg Center for Regenerative Therapies, Helmholtz-Zentrum Geesthacht, Teltow, Germany.
Reference and Translation Center for Cardiac Stem Cell Therapy (RTC), Department of Cardiac Surgery, University of Rostock, Rostock, Germany.
Clin Hemorheol Microcirc. 2017;67(3-4):279-295. doi: 10.3233/CH-179209.
Mesenchymal stem cells (MSCs) are targeted as vehicles for cell mediated gene therapy. Here we report on a macromolecular carrier, which was designed aiming at successful targeted gene delivery into MSCs through the mediation of folate receptor and reduced cytotoxicity compared to established cationic polymer vector - polyethylenimine with a weight average molecular weight (Mw) of 25,000 Dalton (PEI25K). The carrier PHPA-PEI1800-FA was synthesized in a two-step procedure. PHPA-PEI1800 was prepared by grafting polyethylenimine with a Mw of 1800 Dalton (PEI1800) onto the α,β-poly(N-3-hydroxypropyl)-D,L-aspartamide (PHPA) backbone. PHPA-PEI1800-FA was obtained by chemically conjugating folic acid onto PHPA-PEI1800. The grafting degree of PEI1800 was 3.9±0.2% in relation to the CH groups of PHPA and the molar ratio of folic acid conjugated to PEI1800 (χFA) was 1.8±0.1 as calculated by NMR spectroscopy. The copolymers were biodegradable and exhibited lower cytotoxicity than PEI25K. Compared to PHPA-PEI1800, PHPA-PEI1800-FA led to a significantly higher transfection efficiency in human MSCs, which could be attributed to the mediation of folate receptor during the transfection process as confirmed by folic acid competition assay. Both marker gene (GFP) and therapeutic gene (VEGF) were delivered into human MSCs from multi-donors using PHPA-PEI1800-FA. The percentage of GFP+ MSCs showed an average value of 2.85±1.60% but a large variation for different samples. The VEGF expression level of the PHPA-PEI1800-FA transfected cells was significantly higher than that of either untransfected or naked DNA transfected cells. Conclusively, PHPA-PEI1800-FA is a suitable vector to deliver genes into human MSCs through the interaction with folate receptor.
间充质干细胞(MSCs)被视为细胞介导基因治疗的载体。在此,我们报告一种大分子载体,其设计目的是通过叶酸受体介导成功将基因靶向递送至MSCs,并与已确立的阳离子聚合物载体——重均分子量(Mw)为25,000道尔顿的聚乙烯亚胺(PEI25K)相比,降低细胞毒性。载体PHPA-PEI1800-FA通过两步法合成。PHPA-PEI1800是通过将Mw为1800道尔顿的聚乙烯亚胺(PEI1800)接枝到α,β-聚(N-3-羟丙基)-D,L-天冬酰胺(PHPA)主链上制备而成。PHPA-PEI1800-FA是通过将叶酸化学偶联到PHPA-PEI1800上获得的。相对于PHPA的CH基团,PEI1800的接枝度为3.9±0.2%,通过核磁共振光谱计算,偶联到PEI1800上的叶酸摩尔比(χFA)为1.8±0.1。这些共聚物是可生物降解的,并且表现出比PEI25K更低的细胞毒性。与PHPA-PEI1800相比,PHPA-PEI1800-FA在人MSCs中导致显著更高的转染效率,叶酸竞争试验证实这可归因于转染过程中叶酸受体的介导作用。使用PHPA-PEI1800-FA将标记基因(GFP)和治疗基因(VEGF)都递送至来自多个供体的人MSCs中。GFP+ MSCs的百分比显示平均值为2.85±1.60%,但不同样本间差异较大。PHPA-PEI1800-FA转染细胞的VEGF表达水平显著高于未转染或裸DNA转染细胞。总之,PHPA-PEI1800-FA是一种通过与叶酸受体相互作用将基因递送至人MSCs的合适载体。