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Bigels双凝胶制备的影响因素及其在食品中的应用 被引量:2
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作者 程传森 刘艳庆 +3 位作者 卞苗苗 刘军 涂亦娴 敬思群 《食品科学》 EI CAS CSCD 北大核心 2024年第1期281-288,共8页
Bigels双凝胶是由水凝胶和有机(油)凝胶结合而产生的一种新型双相体系,兼具水相和有机相的特点,表现出比单一凝胶更好的性能,具有既能递送亲水性物质又能递送疏水性物质、易于制备、良好的铺展性、良好的物理稳定性、较长的保质期等优... Bigels双凝胶是由水凝胶和有机(油)凝胶结合而产生的一种新型双相体系,兼具水相和有机相的特点,表现出比单一凝胶更好的性能,具有既能递送亲水性物质又能递送疏水性物质、易于制备、良好的铺展性、良好的物理稳定性、较长的保质期等优点。近些年,Bigels双凝胶得到了广泛关注,越来越多的研究表明Bigels在食品领域具有广泛的应用前景。本文简要概括了Bigels的结构,以及Bigels双凝胶制备过程中凝胶剂种类及浓度、水相和有机相比例、均质条件等几种主要因素对双凝胶理化性质的影响,并探讨了食品领域中Bigels在生物活性物质的递送、3D食品打印、脂肪替代等方面的应用,有助于双凝胶Bigels在食品行业中的深入研究与应用。 展开更多
关键词 bigels双凝胶 水凝胶 油凝胶 生物活性物质的递送 3D食品打印 脂肪替代
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Bigels调控鱼糜油墨3D打印性能 被引量:1
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作者 吴嘉婕 田韩 +5 位作者 钟长秀 蔡茜茜 黄建联 万硕 陈旭 汪少芸 《食品科学》 EI CAS CSCD 北大核心 2024年第23期194-204,共11页
旨在探讨不同配比Bigels对鱼糜油墨的流变性能、3D打印效果及质构特性的影响。结果表明,当蜂蜡添加量为9.0%、油凝胶(9%蜂蜡)与水凝胶(4%黄原胶)质量比为6∶4、Bigels与鱼糜质量比为3∶7、鱼糜水分质量分数为86%时,Bigels鱼糜油墨表现... 旨在探讨不同配比Bigels对鱼糜油墨的流变性能、3D打印效果及质构特性的影响。结果表明,当蜂蜡添加量为9.0%、油凝胶(9%蜂蜡)与水凝胶(4%黄原胶)质量比为6∶4、Bigels与鱼糜质量比为3∶7、鱼糜水分质量分数为86%时,Bigels鱼糜油墨表现出最佳的流变性能,其屈服应力(τ_(0))为44.44 Pa,稠度指数(K)为7.972×10^(4)Pa·s^(n),流动指数(n)为0.265,恢复率为86.75%。Bigels鱼糜油墨能连续打印高达40层的20.00 mm×20.00 mm×40.00 mm的矩形结构以及各类复杂结构。并且打印后的结构硬度为204.91 g,弹性为0.28,内聚力为0.26,胶着性为52.68 g,断裂强度为31.65 g。该研究为Bigels在食品3D打印中的研发与应用提供了思路。 展开更多
关键词 bigels 鱼糜 3D打印 流变学特性 质构特性
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Organogels, hydrogels and bigels as transdermal delivery systems for diltiazem hydrochloride 被引量:1
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作者 Mahmoud Mokhtar Ibrahim Salma A.Hafez Mahmoud M.Mahdy 《Asian Journal of Pharmaceutical Sciences》 SCIE CAS 2013年第1期48-57,共10页
In the present study,gel formulations of organogels,hydrogels,and oleo-hydrogel(bigels)were evaluated as transdermal drug delivery systems for diltiazem HCL(DH).Organogels were prepared using soya-bean oil(SO)as a sol... In the present study,gel formulations of organogels,hydrogels,and oleo-hydrogel(bigels)were evaluated as transdermal drug delivery systems for diltiazem HCL(DH).Organogels were prepared using soya-bean oil(SO)as a solvent and span 60(Sp 60),cetyl alcohol(CA)or lecithinpluronic(PLO)as organogelators without and with different surfactants(2%w/w)namely span 80(Sp80),tween 20(T20)and tween 80(T80).On the other hand,hydrogels were formulated using Hydroxypropyl-methylcellulose(HPMC)polymer and bigels were prepared by mixing organogels with HPMC hydrogels.The prepared gels were analyzed microscopically,thermally by DTA and for pH,and viscosity.The effect of gelator used,surfactant types and pH of the sink on DH release from cellophane membrane was investigated.In addition,the DH permeability across the rabbit skin was evaluated.Finally,the in vivo performance of various gel formulationswas assessed based on the hypotensive effects of the drug using hypertensive albino male rat models.The microscopical analysis indicated that the solid fibers formed by gelator particles form the backbone of the organogels while bigels appeared as emulsion like.The addition of surfactants showed an increase in organogel viscosity.The thermal analysis of organogels indicated that the drug present in amorphous not in crystalline form.The release studies indicated that DH release from organogels,hydrogels and bigels could be controlled.The included surfactants decreased the DH release and permeation from organogels compared to those without surfactants using either Sp60 or CA.HPMC hydrogel and Bigels showed higher DH release and permeation rates when compared to organogels.The percent DH released in different pH values was in the following descending order:pH5.5>pH1.2>pH6.8>pH7.4.The in vivo antihypertensive activity of DH using different transdermal gels is arranged as following:hydrogels>PLO organogel>bigel>Sp 60 organogel. 展开更多
关键词 ORGANOGELS HYDROGELS bigels LECITHIN SPAN
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