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一种基于氨基酸的两亲分子的水凝胶化

Water gelation of an amino acid-based amphiphile.

作者信息

Das Debapratim, Dasgupta Antara, Roy Sangita, Mitra Rajendra Narayan, Debnath Sisir, Das Prasanta Kumar

机构信息

Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.

出版信息

Chemistry. 2006 Jun 23;12(19):5068-74. doi: 10.1002/chem.200501638.

DOI:10.1002/chem.200501638
PMID:16622886
Abstract

The water immobilization by a simple amino acid-containing cationic surfactant was investigated. A variety of techniques, such as (1)H NMR spectroscopy, circular dichroism (CD), steady-state fluorescence spectroscopy, and field-emission scanning electron microscopy (FESEM) were applied to determine the formation and architecture of the hydrogel. The new gelator with a minimum gelation concentration (MGC) of 0.3 % w/v shows prolonged stability and a low melting temperature (39 degrees C). (1)H NMR experiments revealed that intermolecular hydrogen bonding between the amide groups and pi-pi stacking of the indole rings are the two regulating parameters for gelation. Furthermore, fluorescence studies with 8-anilino-1-naphthalenesulfonic acid (ANS) as the probe indicate the participation of hydrophobicity during gelation. The luminescence study using both ANS and pyrene, along with FESEM results, indicate a critical concentration, well below the MGC, at which fibres begin to form. These cross-link further to give thicker fibers, leading to the formation of a hydrogel (0.3 % w/v). This new hydrogelator expresses high supramolecular chirality, as evidenced by the CD spectra. In addition, the gelator molecule was found to be nontoxic up to a concentration of 4 mM (0.2 % w/v). The high supramolecular chirality, prolonged stability, low melting point, and biocompatibility of the molecule make it a focus of chemical and biological interest.

摘要

研究了一种简单的含氨基酸阳离子表面活性剂对水的固定作用。应用了多种技术,如核磁共振氢谱(¹H NMR)、圆二色性(CD)、稳态荧光光谱和场发射扫描电子显微镜(FESEM)来确定水凝胶的形成和结构。这种最低凝胶化浓度(MGC)为0.3% w/v的新型凝胶剂表现出延长的稳定性和较低的熔点(39℃)。¹H NMR实验表明,酰胺基团之间的分子间氢键和吲哚环的π-π堆积是凝胶化的两个调节参数。此外,以8-苯胺基-1-萘磺酸(ANS)为探针的荧光研究表明,凝胶化过程中有疏水性参与。使用ANS和芘的发光研究以及FESEM结果表明,在远低于MGC的临界浓度下,纤维开始形成。这些纤维进一步交联形成更粗的纤维,从而形成水凝胶(0.3% w/v)。如CD光谱所示,这种新型水凝胶剂表现出高的超分子手性。此外,发现凝胶剂分子在浓度高达4 mM(0.2% w/v)时无毒。该分子的高超分子手性、延长的稳定性、低熔点和生物相容性使其成为化学和生物学领域关注的焦点。

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