Castillo Cruz Betzaida, Flores Colón Marienid, Rabelo Fernandez Robert J, Vivas-Mejia Pablo E, Barletta Gabriel L
Department of Chemistry, University of Puerto Rico, Humacao Campus, Humacao 00791, Puerto Rico.
UPR Comprehensive Cancer Center, Medical Center Area, Ave. José Celso Barbosa, San Juan 00935, Puerto Rico.
ACS Omega. 2022 Jan 14;7(4):3731-3737. doi: 10.1021/acsomega.1c06436. eCollection 2022 Feb 1.
Liposomes are among the most effective vehicles to deliver siRNAs to cells, both and . However, despite numerous efforts to improve the potential of liposomes, siRNAs begin to leach out of liposomes as soon as they are formulated. This decreases the value of liposomes for drug delivery purposes significantly, masking their true potential. In this study, we examine the effect of β-cyclodextrins on the retention time and transfection efficiency of siRNAs formulated in a liposome. Cyclodextrins have been widely studied as solvating agents and drug delivery vectors mainly because these cyclic nontoxic glucose structures can bind several molecules of different physicochemical characteristics, through H-bonding or by forming inclusion complexes. These properties, although beneficial for most applications, have resulted in some contradictory results published in the literature, whereas cyclodextrins have been found to destabilize a liposome's membrane. Here, we present a systematic study, which shows that β-cyclodextrin binds, possibly via hydrogen bonding, with siRNA and DOPC liposomes, resulting in increased siRNA serum stability and in vitro siRNA's transfection efficiency when formulated together.
脂质体是将小干扰RNA(siRNA)递送至细胞的最有效载体之一。然而,尽管人们为提高脂质体的潜力付出了诸多努力,但siRNA一旦被制备出来,就会立即开始从脂质体中渗漏出来。这显著降低了脂质体用于药物递送的价值,掩盖了它们的真正潜力。在本研究中,我们研究了β-环糊精对脂质体制备的siRNA的保留时间和转染效率的影响。环糊精作为溶剂化剂和药物递送载体已被广泛研究,主要是因为这些环状无毒葡萄糖结构可以通过氢键或形成包合物结合几种具有不同物理化学特性的分子。这些特性虽然对大多数应用有益,但在文献中也产生了一些相互矛盾的结果,有人发现环糊精会使脂质体膜不稳定。在此,我们进行了一项系统研究,结果表明β-环糊精可能通过氢键与siRNA和二油酰磷脂酰胆碱(DOPC)脂质体结合,当它们一起制备时,可提高siRNA的血清稳定性和体外转染效率。