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Interaction of metformin hydrochloride with ionic surfactants in aqueous and NaCl solution: Effect of temperatures and compositions

机译:盐酸二甲双胍与离子表面活性剂在水性和NaCl溶液中的相互作用:温度和组合物的影响

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Herein, the interaction of metformin hydrochloride (MNH) with cetyltrimethylammonium bromide (CTAB) and sodium dodecyl sulfate (SDS) has been investigated by the conductometric technique in aqueous medium as well as in the existence of NaCl over a range of temperatures. MNH, an antidiabetic drug that belongs to the biguanide group, is generally prescribed for the patients to manage type II diabetes. The micellar parameters such as critical micelle concentration (CMC), the extent of counterion binding (beta), and different thermodynamic properties for MNH + surfactant systems were estimated and discussed elaborately. The CMC values of CTAB + MNH and SDS + MNH systems are dependent on the concentrations of NaCl at different temperatures. The significant decrease of CMC values in NaCl solution indicates that NaCl stabilizes MNH-mediated surfactant micelles. The CMC values versus T plots show a nonlinear pattern for the CTAB + MNH system, whereas the CMC values almost monotonically decrease with increasing temperature for the SDS + MNH system. The values of increment G(m)(0) were negative for both systems in all cases. Both increment G(m)(0) and increment G(m,t)(0) values indicate that the aggregation processes of MNH + surfactants mixture are spontaneous, which is also manifested in NaCl solution and with the change of temperatures in most of the cases. The obtained results proposed that surfactants may assist as a proficient drug delivery agent for antidiabetic drug, enhancing their bioavailability.
机译:本文采用电导法研究了盐酸二甲双胍(MNH)与十六烷基三甲基溴化铵(CTAB)和十二烷基硫酸钠(SDS)在水介质中以及在一定温度范围内存在NaCl时的相互作用。MNH是一种属于双胍类的抗糖尿病药物,通常用于治疗II型糖尿病。对MNH+表面活性剂体系的临界胶束浓度(CMC)、反离子结合程度(β)和不同热力学性质等胶束参数进行了估算和详细讨论。CTAB+MNH和SDS+MNH体系的CMC值取决于不同温度下的NaCl浓度。NaCl溶液中CMC值的显著降低表明NaCl稳定了MNH介导的表面活性剂胶束。对于CTAB+MNH体系,CMC值与T图显示出非线性模式,而对于SDS+MNH体系,CMC值几乎随温度升高而单调降低。在所有情况下,两种系统的增量G(m)(0)均为负值。增量G(m)(0)和增量G(m,t)(0)都表明MNH+表面活性剂混合物的聚集过程是自发的,这也表现在NaCl溶液中,并且在大多数情况下随温度的变化而变化。所得结果表明,表面活性剂可以作为抗糖尿病药物的有效给药剂,提高其生物利用度。

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