Süleymanoğlu Erhan
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Gazi University, 06330, Ankara, Turkey.
J Biol Inorg Chem. 2017 Dec;22(8):1165-1177. doi: 10.1007/s00775-017-1492-x. Epub 2017 Sep 18.
Despite the significant efforts towards applying improved non-destructive and label-free measurements of biomolecular structures of lipid-based gene delivery vectors, little is achieved in terms of their structural relevance in gene transfections. Better understanding of structure-activity relationships of lipid-DNA complexes and their gene expression efficiencies thus becomes an essential issue. Raman scattering offers a complimentary measurement technique for following the structural transitions of both DNA and lipid vesicles employed for their transfer. This work describes the use of SERS coupled with light scattering approaches for deciphering the bioelectrochemical phase formations between nucleic acids and lipid vesicles within lipoplexes and their surface parameters that could influence both the uptake of non-viral gene carriers and the endocytic routes of interacting cells. As promising non-viral alternatives of currently employed risky viral systems or highly cytotoxic cationic liposomes, complexations of both nucleic acids and zwitterionic lipids in the presence of Mg were studied applying colloidal Ag nanoparticles. It is shown that the results could be employed in further conformational characterizations of similar polyelectrolyte gene delivery systems.
尽管在应用改进的非破坏性和无标记方法测量基于脂质的基因传递载体的生物分子结构方面付出了巨大努力,但在其与基因转染的结构相关性方面进展甚微。因此,更好地理解脂质-DNA复合物的构效关系及其基因表达效率成为一个至关重要的问题。拉曼散射提供了一种补充测量技术,用于跟踪用于转移的DNA和脂质囊泡的结构转变。这项工作描述了使用表面增强拉曼散射(SERS)与光散射方法来破译脂质体复合物中核酸与脂质囊泡之间的生物电化学相形成及其表面参数,这些参数可能会影响非病毒基因载体的摄取以及相互作用细胞的内吞途径。作为当前使用的有风险的病毒系统或高细胞毒性阳离子脂质体的有前景的非病毒替代品,在Mg存在下研究了核酸与两性离子脂质的络合,应用了胶体银纳米颗粒。结果表明,这些结果可用于进一步表征类似的聚电解质基因传递系统的构象。