[1] Xu Y, Bhargava G, Wu H, et al. Crystal structure of human mitochondrial NAD(P)+-dependent malic enzyme: a new class of oxidative decarboxylases[J]. Structure, 1999,7:R877-R889. [2] Ju HQ, Lin JF, Tian T, et al. NADPH homeostasis in cancer: functions, mechanisms and therapeutic implica-tions[J]. Signal Transduct Target Ther, 2020,5:231. doi:10.1038/s41392-020-00326-0. [3] Tedeschi PM, Bansal N, Kerrigan JE, et al. NAD+ kinase as a therapeutic target in cancer[J]. Clin Cancer Res, 2016,22:5189-5195. [4] Rather GM, Pramono AA, Szekely Z, et al. In cancer, all roads lead to NADPH[J]. Pharmacol Ther, 2021,226:107864. doi:10.1016/j.pharmthera.2021.107864. [5] Li W, Kou J, Qin J, et al. NADPH levels affect cellular epigenetic state by inhibiting HDAC3-Ncor complex[J]. Nat Metab, 2021,3:75-89. [6] Goodman RP, Calvo SE, Mootha VK. Spatiotemporal compartmentalization of hepatic NADH and NADPH metabolism[J]. J Biol Chem, 2018,293:7508-7516. [7] Lee JH, Lee ST, Nam YK, et al. Gene delivery into siberian sturgeon cell lines by commercial transfection reagents[J]. In Vitro Cell Dev Biol Anim, 2019,55:76-81. [8] Sun S, Wang M, Knupp SA, et al. Combinatorial library of lipidoids for in vitro DNA delivery[J]. Bioconjug Chem, 2012,23:135-140. [9] Berardo C, Siciliano V, Di Pasqua LG, et al. Comparison between lipofectamine RNAiMAX and GenMute transfection agents in two cellular models of human hepatoma[J]. Eur J Histochem, 2019,63. doi:10.4081/ejh.2019.3048. [10] Cardarelli F, Digiacomo L, Marchini C, et al. The intracellular trafficking mechanism of lipofectamine-based transfection reagents and its implication for gene delivery[J]. Sci Rep, 2016,6:25879.doi:10.1038/srep25879. [11] Jafarnejad A, Zandi M, Aminafshar M, et al. Evaluating bovine sperm transfection using a high-performance polymer reagent and assessing the fertilizing capacity of transfected spermatozoa using an in vitro fertilization technique[J]. Arch Anim Breed, 2018,61:351-358. [12] Simões S, Filipe A, Faneca H, et al. Cationic liposomes for gene delivery[J]. Expert Opin Drug Deliv, 2005,2:237-254. [13] Ickenstein LM, Garidel P. Lipid-based nanoparticle formulations for small molecules and RNA drugs[J]. Expert Opin Drug Deliv, 2019,16:1205-1226. [14] Zhang Y, Sun C, Wang C, et al. Lipids and lipid derivatives for RNA delivery[J]. Chem Rev, 2021,121:12181-12277. |