Pashirova Tatiana N, Bogdanov Andrei V, Musin Lenar I, Voronina Julia K, Nizameev Irek R, Kadirov Marsil K, Mironov Vladimir F, Zakharova Lucia Ya, Latypov Shamil K, Sinyashin Oleg G
A.E. Arbuzov Institute of Organic and Physical Chemistry, Kazan Scientific Center, Russian Academy of Sciences, Arbuzov str. 8, Kazan, 420088, Russian Federation.
Beilstein J Nanotechnol. 2017 Feb 1;8:313-324. doi: 10.3762/bjnano.8.34. eCollection 2017.
Over the last decade isoindigo derivatives have attracted much attention due to their high potential in pharmacy and in the chemistry of materials. In addition, isoindigo derivatives can be modified to form supramolecular structures with tunable morphologies for the use in drug delivery. Amphiphilic long-chain dialkylated isoindigos have the ability to form stable solid nanoparticles via a simple nanoprecipitation technique. Their self-assembly was investigated using tensiometry, dynamic light scattering, spectrophotometry, and fluorometry. The critical association concentrations and aggregate sizes were measured. The hydrophilic-lipophilic balance of alkylated isoindigo derivatives strongly influences aggregate morphology. In the case of short-chain dialkylated isoindigo derivatives, supramolecular polymers of 200 to 700 nm were formed. For long-chain dialkylated isoindigo derivatives, micellar aggregates of 100 to 200 nm were observed. Using micellar surfactant water-soluble forms of monosubstituted 1-hexadecylisoindigo as well as 1,1'-dimethylisoindigo were prepared for the first time. The formation of mixed micellar structures of different types in micellar anionic surfactant solutions (sodium dodecyl sulfate) was determined. These findings are of practical importance and are of potential interest for the design of drug delivery systems and new nanomaterials.
在过去十年中,异靛蓝衍生物因其在药学和材料化学方面的巨大潜力而备受关注。此外,异靛蓝衍生物可以被修饰以形成具有可调节形态的超分子结构,用于药物递送。两亲性长链二烷基化异靛蓝能够通过简单的纳米沉淀技术形成稳定的固体纳米颗粒。使用表面张力测定法、动态光散射法、分光光度法和荧光测定法对它们的自组装进行了研究。测量了临界缔合浓度和聚集体尺寸。烷基化异靛蓝衍生物的亲水亲油平衡强烈影响聚集体形态。对于短链二烷基化异靛蓝衍生物,形成了200至700纳米的超分子聚合物。对于长链二烷基化异靛蓝衍生物,观察到100至200纳米的胶束聚集体。首次制备了单取代的1-十六烷基异靛蓝以及1,1'-二甲基异靛蓝的胶束表面活性剂水溶性形式。确定了在胶束阴离子表面活性剂溶液(十二烷基硫酸钠)中不同类型混合胶束结构的形成。这些发现具有实际重要性,并且对于药物递送系统和新型纳米材料的设计具有潜在的意义。