番茄红素在聚己内酯与聚乳酸共乙醇酸中包封率的比较研究

Q2 Arts and Humanities
Mohammad Anwar Ul Alam, L. Kassama
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引用次数: 2

摘要

摘要番茄红素有助于水果和蔬菜的红色色素沉着,它是一种具有抗氧化特性的脂溶性类胡萝卜素。流行病学研究表明,食用富含番茄红素的食物具有显著的健康益处,因为它具有抗癌特性。番茄红素在加工过程中的降解损失是一个严重的问题,因此封装提供了一种补救措施。本研究的目的是评价两种可生物降解聚合物(PLGA和PCL)对番茄红素在胃肠道(GI)系统中的控释的包封效率。采用乳液蒸发法制备了纳米颗粒,并用动态光散射光谱测定了纳米颗粒的理化性质。结果表明:在PCL (200 mg)和3500 mg表面活性剂条件下,超声作用15 min后合成的番茄红素NP的水动力直径最小为79.23±0.85 nm;PLGA (500 mg)和表面活性剂(500 mg)经15 min超声处理后的NP直径最小(108.2±2.66 nm)。当200mg PCL溶于3500mg表面活性剂时,PDI值有显著差异(0.12±0.07)。另一方面,在PCL NP范围为-1.3±0.046 ~ -4.21±0.08 mV时,zeta电位值明显小于PLGA NP范围为-72.36±2.17 ~ 107.66±3.15 mV时。因此,用PCL和表面活性剂合成的NP提供了比PLGA和表面活性剂更小的纳米溶液。由于PCL的降解率低于PLGA,因此PCL可以被认为是一种比PLGA更有潜力的生物可降解聚合物来包封番茄红素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Lycopene Encapsulation Efficiency in Polycapprolactone Vs Poly Lactic Co-glycolic Acid
Abstract. Lycopene contributes to the red-colored pigmentation of fruits and vegetables, and it is a fat-soluble carotenoid with antioxidant properties. Epidemiological studies have shown the significant health benefits associated to the consumption of lycopene rich foods, because of the anti-cancer properties. Degradative losses of lycopene during processing is a grave concern, hence encapsulation provides a remedy. The objective of this study is to evaluate the encapsulation efficiency of two biodegradable polymers (PLGA and PCL) as for controlled release of lycopene in the gastrointestinal (GI) system. The nanoparticles (NP) were synthesized by emulsion evaporation method and physicochemical properties was determined using a Dynamic Light Scattering spectroscopy. The results show the hydrodynamic diameter of the lycopene NP synthesized in PCL (200 mg) and 3500 mg surfactant and sonicated for 15 min was 79.23±0.85 nm (Lowest). PLGA (500 mg) and 500 mg surfactant with 15 min sonication was observed to have the lowest NP diameter (108.2±2.66 nm) among the others. Significant difference result found in PDI value (0.12±0.07) when PCL of 200mg dissolve in 3500 mg of surfactant. On the other hands the zeta potential values were much smaller in case of PCL NP ranged between -1.3±0.046 and -4.21±0.08 mV compared to the PLGA NP -72.36±2.17 to 107.66±3.15 mV in all experiments. Thus, NP synthesized with PCL and surfactant provide a smaller sized nano-solution than PLGA and surfactant. As the degradation rate for PCL is lower than PLGA so PCL can be considered as a potential biodegradable polymer than PLGA to encapsulate lycopene. .
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来源期刊
Platonic Investigations
Platonic Investigations Arts and Humanities-Philosophy
CiteScore
0.30
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