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Poloxamer-based binary hydrogels for delivering tramadol hydrochloride: sol-gel transition studies, dissolution-release kinetics, in vitro toxicity, and pharmacological evaluation

机译:用于递送盐酸曲马多的基于泊洛沙姆的二元水凝胶:溶胶-凝胶转变研究,溶解释放动力学,体外毒性和药理学评估

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Abstract: In this work, poloxamer (PL)-based binary hydrogels, composed of PL 407 and PL 188, were studied with regard to the physicochemical aspects of sol-gel transition and pharmaceutical formulation issues such as dissolution-release profiles. In particular, we evaluated the cytotoxicity, genotoxicity, and in vivo pharmacological performance of PL 407 and PL 407–PL 188 hydrogels containing tramadol (TR) to analyze its potential treatment of acute pain. Drug–micelle interaction studies showed the formation of PL 407–PL 188 binary systems and the drug partitioning into the micelles. Characterization of the sol-gel transition phase showed an increase on enthalpy variation values that were induced by the presence of TR hydrochloride within the PL 407 or PL 407–PL 188 systems. Hydrogel dissolution occurred rapidly, with approximately 30%–45% of the gel dissolved, reaching ~80%–90% up to 24 hours. For in vitro release assays, formulations followed the diffusion Higuchi model and lower Krel values were observed for PL 407 (20%, Krel =112.9±10.6 μg·h-1/2) and its binary systems PL 407–PL 188 (25%–5% and 25%–10%, Krel =80.8±6.1 and 103.4±8.3 μg·h-1/2, respectively) in relation to TR solution (Krel =417.9±47.5 μg·h-1/2, P72 hours) pointed to PL-based hydrogels as a potential treatment, by subcutaneous injection, for acute pain.
机译:摘要:在这项工作中,研究了由PL 407和PL 188组成的基于泊洛沙姆(PL)的二元水凝胶,涉及溶胶-凝胶转变的物理化学方面以及药物制剂问题,例如溶出-释放曲线。特别是,我们评估了含有曲马多(TR)的PL 407和PL 407-PL 188水凝胶的细胞毒性,基因毒性和体内药理性能,以分析其对急性疼痛的潜在治疗作用。药物-胶束相互作用研究表明,PL 407-PL 188二元体系的形成和药物分配到胶束中。溶胶-凝胶转变相的表征表明,焓的变化值增加,这是由于PL 407或PL 407-PL 188系统中存在TR盐酸盐而引起的。水凝胶溶解迅速发生,大约30%–45%的凝胶溶解,直到24小时达到约80%–90%。对于体外释放测定,按照扩散Higuchi模型进行配制,PL 407(20%,Krel = 112.9±10.6μg·h-1 / 2)及其二元体系PL 407–PL 188(25%)观察到较低的Krel值相对于TR溶液(Krel = 417.9±47.5μg·h-1 / 2,P72小时)分别为–5%和25%–10%,Krel = 80.8±6.1和103.4±8.3μg·h-1 / 2 )指出,基于PL的水凝胶可通过皮下注射治疗急性疼痛。

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