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In vitro digestion of edible nanostructured lipid carriers: Impact of a Candelilla wax gelator on performance

机译:食用纳米结构脂质载体的体外消化:Candelilla蜡凝胶剂对性能的影响

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In this study, food-grade nanostructured lipid carriers (NLCs) were used as delivery systems to overcome some of the limitations of solid lipid nanoparticles (SLNs) and liquid lipid nanoparticles (LLNs). Organogel NLCs were prepared using an oil phase consisting of a hydrophobic gelator (Candelilla wax) dispersed in liquid corn oil. The oil phase undergoes a gel-to-sol transition when heated, which means that oil-in-water nanoemulsions can be used as templates to form the NLCs. The impact of lipid phase composition on the gastrointestinal fate of the NLCs was determined using a simulated gastrointestinal tract (GIT). The particle size, zeta-potential, and microstructure of the LLNs, NLCs and SLNs were characterized when they were exposed to model oral, gastric, and small intestine conditions. The oil phase in the LLNs and SLNs consisted of pure corn oil and pure Candelilla wax, respectively. Initially, all samples contained small lipid particles (d(43) = 150-202 nm) with negative surface potentials (zeta = -26 to -47 mV). The LLNs, SLNs and NLCs behaved similarly in the simulated GIT in terms of their particle properties: there was a large increase in particle size and decrease in charge magnitude in the mouth, stomach, and intestine. The Candelilla wax in the SLNs and NLCs was not digested by lipase, but the corn oil in the LLNs and NLCs was fully digested. This phenomenon may be used to create colloidal delivery systems that can control the release of encapsulated bioactive agents within the GIT.
机译:在该研究中,使用食品级纳米结构脂质载体(NLC)作为递送系统,以克服固体脂质纳米颗粒(SLNS)和液体脂质纳米颗粒(LLN)的一些限制。使用由分散在液体玉米油中的疏水胶凝胶(Candelilla蜡)组成的油相制备有机凝胶NLC。加热时,油相经历凝胶至溶溶胶过渡,这意味着水纳米乳液可用作模板以形成NLC。利用模拟的胃肠道(Git)测定脂质相组合物对NLC的胃肠道命运的影响。当它们暴露于模型口腔,胃和小肠条件时,表征了LLN,NLC和SLN的粒度,ζ电位和微观结构。 LLNS和SLN中的油相分别由纯玉米油和纯Candelilla蜡组成。最初,所有样品含有阴性表面电位(Zeta = -26至-47mV)的小脂质颗粒(D(43)= 150-202nm)。在其颗粒性质方面,LLNS,SLNS和NLC在模拟的Git中表现出类似的粒度:口腔,胃和肠道中的粒度大幅增加并降低电荷幅度。 SLNS和NLCS中的Candelilla蜡未被脂肪酶消化,但LLNS和NLC中的玉米油被完全消化。这种现象可用于产生胶体递送系统,该递送系统可以控制Git内包封的生物活性剂的释放。

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