Mitra Rajendra Narayan, Das Debapratim, Roy Sangita, Das Prasanta Kumar
Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.
J Phys Chem B. 2007 Dec 27;111(51):14107-13. doi: 10.1021/jp076495x. Epub 2007 Dec 4.
The search for low molecular weight hydrogelators (LMWH) with varying structural motif is getting intense because of its potential application in the field of biomedicines as well as the diversified area of nano-biotechnology. In this paper, we have developed hydrogels of simple cationic dipeptide amphiphiles that have a wide range of minimum gelation concentration (MGC), 12-0.25% (w/v) in plain water. The self-aggregation behavior of these thermoreversible hydrogelators has been investigated through different spectroscopic and microscopic techniques. A balanced participation of hydrophilicity and hydrophobicity is the major driving force for gelation, which could be modulated by a minute change in the architecture of the amphiphile head. The prospective use of this material in controlled release suggests that this system could also be applied as the drug delivery vehicle. Moreover, the presence of a biodegradable amide linkage susceptible to base or enzyme-catalyzed hydrolysis increases its probable applications as biomaterials.
由于低分子量水凝胶因子(LMWH)在生物医药领域以及纳米生物技术的多样化领域具有潜在应用,对具有不同结构基序的低分子量水凝胶因子的研究正日益激烈。在本文中,我们制备了简单阳离子二肽两亲物水凝胶,其在纯水中具有广泛的最低凝胶化浓度(MGC),为12 - 0.25%(w/v)。通过不同的光谱和显微镜技术研究了这些热可逆水凝胶因子的自聚集行为。亲水性和疏水性的平衡参与是凝胶化的主要驱动力,这可以通过两亲物头部结构的微小变化来调节。这种材料在控释方面的潜在用途表明,该系统也可作为药物递送载体应用。此外,存在易受碱或酶催化水解的可生物降解酰胺键增加了其作为生物材料的可能应用。