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首页> 外文期刊>Probiotics and Antimicrobial Proteins >Characterisation of the Poly-(Vinylpyrrolidone)-Poly-(Vinylacetate-Co-Crotonic Acid) (PVP:PVAc-CA) Interpolymer Complex Matrix Microparticles Encapsulating a Bifidobacterium lactis Bb12 Probiotic Strain
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Characterisation of the Poly-(Vinylpyrrolidone)-Poly-(Vinylacetate-Co-Crotonic Acid) (PVP:PVAc-CA) Interpolymer Complex Matrix Microparticles Encapsulating a Bifidobacterium lactis Bb12 Probiotic Strain

机译:封装双歧杆菌乳酸双歧杆菌Bb12益生菌菌株的聚(乙烯基吡咯烷酮)-聚(乙酸乙烯基酯-巴豆酸)(PVP:PVAc-CA)互聚物复合物基质微粒的表征

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摘要

The method of producing poly-(vinylpyrrolidone)-poly-(vinylacetate-co-crotonic acid) (PVP:PVAc-CA) interpolymer complex matrix microparticles in supercritical carbon dioxide (scCO2), encapsulating bacteria, has recently been developed. This study was aimed at probing the external and internal structure of these microparticles, which can be used in food. The encapsulation efficiency and distribution of encapsulated Bifidobacterium lactis Bb12 within these microparticles were also investigated. Scanning electron microscopy (SEM) revealed irregular, mostly small, smooth microparticles with no visible bacterial cells on the surface. However, some of the microparticles appeared to have porous surfaces. The results of a Microtrac S3500 particle size analyzer showed that the PVP:PVAc-CA interpolymer complex matrix microparticles encapsulating B. lactis Bb12 had an average particle size of 166.1 μm (<350 μm designated standard size for microparticles). The D 10, D 50 and D 90 values for these microparticles were 48.16, 166.06 and 382.55 μm, respectively. Both SEM and confocal laser scanning microscopy showed a high density of bacterial cells within the microparticles. An average encapsulation efficiency of 96% was achieved. Consequently, the microparticles have the potential to be evenly distributed in foods, deliver adequate amounts of probiotics and produce minimal adverse effects on the texture and mouth feel of the foods into which they are incorporated.
机译:在超临界二氧化碳(scCO 2 )中制备聚(乙烯基吡咯烷酮)-聚(乙酸乙烯酯-巴豆酸)(PVP:PVAc-CA)互聚物复合基质微粒的方法,将细菌包封,最近已开发。这项研究旨在探查可用于食品中的这些微粒的外部和内部结构。还研究了在这些微粒中包封的乳酸双歧杆菌Bb12的包封效率和分布。扫描电子显微镜(SEM)显示不规则的,大部分是小的,光滑的微粒,表面没有可见的细菌细胞。但是,一些微粒似乎具有多孔表面。 Microtrac S3500粒度分析仪的结果表明,包封乳杆菌Bb12的PVP:PVAc-CA共聚复合物基质微粒的平均粒度为166.1μm(<350μm,指定为微粒的标准尺寸)。这些微粒的D 10 ,D 50 和D 90 值分别为48.16、166.06和382.55μm。 SEM和共聚焦激光扫描显微镜均显示出微粒内细菌细胞的高密度。平均封装效率达到96%。因此,微粒具有潜在地均匀分布在食物中,传递足够量的益生菌并对所掺入食物的质地和口感产生最小不利影响的可能性。

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