,Process optimization for microencapsulation of probiotic yeasts

来源 :生物学前沿 | 被引量 : 0次 | 上传用户:yuexianglian
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
BACKGROUND:Microencapsulation is a technique which improves the survival and viability of probiotics.We demonstrate encapsulation of five potential probiotic yeasts with alginate and gum as encapsulation matrices to improve their gastrointestinal transit.METHODS:Gum extracted from various cereals viz.rice,oats,barley,finger millet and pearl millet along with alginate have been used to encapsulate five potential probiotic yeasts.Screening was carried out by measuring swelling index,encapsulation efficiency and nutritional value of microcapsules encapsulated with alginate and gum.The concentration of OBG,sodium alginate and inoculum dosage of probiotic yeasts was optimized using response surface methodology (RSM).Efficiency of alginate OBG microcapsules with or without coating materials viz.whey protein and chitosan also tested.The mucoadhesion ability and storage stability of alginate OBG microcapsules with coating materials were tested.RESULTS:Highest encapsulation efficiency of probiotic yeasts was noted using oats bran gum (OBG) microcapsules along with alginate in all the five probiotic yeasts.Notably whey protein coated microcapsules showed maximum GIT tolerance (95%) and mucoadhesion (90%) for L.starkeyi VIT-MN03.The minimum loss of viability was observed in L.starkeyi VIT-MN03 microcapsules on 60th day of storage.CONCLUSIONS:This is the first report on optimization and survival of microencapsulated probiotic yeasts under simulated GIT conditions using natural gum and alginate as encapsulation matrices and whey protein as coating material.
其他文献
在今年“两会”总理工作报告中,对2009年全面加强“三农”工作的措施中提出:要稳定完善农村基本经营制度,现有土地承包关系要保持稳定并长久不变,赋予农民包括离乡农民工更加
棉花是我国重要的经济作物,其纤维是重要的工业原料。在我国的主要产棉区,棉花生殖发育阶段时常有持续高温天气的出现。棉花的雄性生殖器官对高温相对敏感,持续高温天气会造成棉花的雄性败育。棉花花药不开裂是雄性败育的表型之一,而生长素在调控花药开裂方面起着重要作用;PIF4(phytochrome interacting factor 4)是调控生长素途径的关键转录因子,同时课题组前期的研究表明GhPIF4
学位
BACKGROUND:Metabolic networks are complex and system of highly connected chemical reactions and hence it needs a system level computational approach to identify
玉米是我国重要粮食和饲料生产作物,我国玉米种植面积仅次于美国。研究我国玉米单交种及其亲本自交系秸秆纤维品质性状的发展变化规律,对指导玉米秸秆纤维品质的改良、应用及玉米茎秆抗倒性研究方面具有重要的意义。本文利用种质基础背景广泛的32个玉米自交系及其组配的我国不同年代广泛推广的20个代表性单交种建立了相应的近红外光谱分析(NIRS)校正模型,分析其在不同生育时期、不同种植密度下地上2至4节秸秆纤维品质
BACKGROUND:Bacteria endogenously residing within the plant tissues have attracted significant attention for production of biopolyester,polyhydroxyalkanoates (PH
中国传统美学所渗透的几个具有代表性的传统美学思想,“中和”观、“气韵”说、“意境”论,肖邦在创作夜曲时,其创作的审美要求逮到了前所未有的高峰,从中国传统美学的“意境
INTRODUCTION:Cancer and chemotherapy-induced malnutrition increase death,reduce the response to treatment,and increase multiple kinds of side effects.The aim of
渍害是影响玉米产量的重要非生物逆境之一。本研究以耐渍性差异明显的重组自交系A3237及A3239为试验材料,运用简化基因组测序(SLAF-Sequence)方法对两个重组自交系进行了分析,