首页> 外文期刊>Food Hydrocolloids >Structural, physicochemical, and in-vitro release properties of hydrogel beads produced by oligochitosan and de-esterified pectin from yuzu (Citrus junos) peel as a quercetin delivery system for colon target
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Structural, physicochemical, and in-vitro release properties of hydrogel beads produced by oligochitosan and de-esterified pectin from yuzu (Citrus junos) peel as a quercetin delivery system for colon target

机译:由Oligochitosan和De-Esterized果胶制备的水凝胶珠的结构,物理化学和体外释放性能从Yuzu(柑橘Junos)剥落作为结肠靶的槲皮素递送系统

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The aims of this study were to produce de-esterified pectin from yuzu (Citrus junos) peel by enzymatic treatment, to use de-esterified yuzu peel pectin (DEYPP) to prepare hydrogel beads as quercetin delivery systems for colon target, and to estimate the structural, physicochemical, and in-vitro release properties of the hydrogel beads. Yuzu peel pectin was de-esterified by pectin methylesterase (DE: 34.64%), and oligochitosan-DEYPP hydrogel beads were produced by an ionic gelation method with different concentrations of DEYPP (1, 1.5, and 2%). The new formations of cross-linking (between the -COO- of DEYPP and Ca2+) and a polyelectrolyte complex (between the -COO- of DEYPP and the -NH3- of oligochitosan) in all the beads were confirmed by Fourier Transform Infrared analysis. The results of X-ray diffraction and differential scanning calorimetry analysis showed that the crystalline quercetin was converted into an amorphous state during the preparation of hydrogel beads. Both the mean particle diameter and the quercetin entrapment efficiency of the beads were significantly increased with increasing DEYPP concentration. For all beads, the cumulative quercetin release after exposure to simulated gastric fluid (SGF) and simulated intestinal fluid (SIF) was below 1%, because both the cross-linking and the polyelectrolyte complex occurred in the beads were stable in the SGF and SIF. However, when the hydrogel beads were exposed to simulated colonic fluid for 12 h, quercetin was greatly released from the hydrogel beads (65.37-99.54%). These results revealed that oligochitosan-DEYPP hydrogel beads can be effectively used as quercetin delivery systems for colon target.
机译:本研究的目的是通过酶处理产生来自yuzu(柑橘junos)剥离的脱盐果胶,用于使用De-酯化的yuzu peel果胶(deypp)来制备水凝胶珠作为结肠靶的槲皮素递送系统,并估计水凝胶珠粒的结构,物理化学和体外释放性能。由果胶甲基酯酶(DE:34.64%)进行余珠果胶蛋白,通过离子凝胶化方法制备oligochitosan-deypp水凝胶珠,其具有不同浓度的Deypp(1,1.5和2%)。通过傅里叶变换红外分析确认所有珠子中的交联(在DEYPP和CA2 +之间的COO-CO2 +)和聚电解质复合物(在Oligochitosan的-NH3-的-NH3-之间)的新形成。 X射线衍射和差示扫描量热法分析的结果表明,在制备水凝胶珠粒期间将结晶槲皮素转化为无定形状态。随着较高型浓度的增加,珠粒的平均粒径和槲皮素夹带效率显着增加。对于所有珠子,暴露于模拟胃液(SGF)和模拟肠液(SIF)后累积槲皮素释放低于1%,因为在珠粒中发生交联和聚电解质复合物在SGF和SIF中均稳定。然而,当水凝胶珠暴露于模拟的结肠液中12小时时,从水凝胶珠(65.37-99.54%)大大释放槲皮素。这些结果表明,寡核苷酸 - Deypp水凝胶珠子可以有效地用作结肠靶的槲皮素递送系统。

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