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    • 1. 发明申请
    • STABILIZING METHODS FOR COATING SEEDS WITH BIOLOGICAL MATERIALS
    • 用生物材料涂覆种子的稳定化方法
    • WO2017143130A1
    • 2017-08-24
    • PCT/US2017/018280
    • 2017-02-17
    • ADVANCED BIONUTRITION CORP.
    • REAP, James, J.ACKERSON, RobertTANG, QiongCANTOR, Stuart
    • A01C1/06C09D105/00C09D7/12
    • C09D105/00A01C1/06A01N63/00C09D7/40A01N25/10
    • The present invention provides a method for coating seeds with biological materials such as bacteria, fungi (e.g., yeasts and molds), parasites, recombinant vectors, and viruses. The method comprises (a) applying a moistening liquid to seeds to moisten seeds, wherein the moistening liquid comprises a moistening polymer, and (b) coating the moistened seeds with an effective amount of a dry composition, wherein the dry composition comprises biological materials, one or more disaccharides, one or more oligosaccharides, one or more polysaccharides, one or more carboxylic acid salts, and one or more hydrolyzed proteins. The coated seeds may have an initial water activity (Aw) below 0.4, and the microorganisms on the coated seeds have initial viability of at least 5 logs of colony forming units per gram of seeds (CFU/g seed). Also provided are coated seeds.
    • 本发明提供了用生物材料如细菌,真菌(例如酵母和霉菌),寄生虫,重组载体和病毒包衣种子的方法。 该方法包括:(a)将润湿液施用于种子以润湿种子,其中润湿液包含润湿聚合物,和(b)用有效量的干燥组合物涂布润湿的种子,其中干燥组合物包含生物材料, 一种或多种二糖,一种或多种低聚糖,一种或多种多糖,一种或多种羧酸盐和一种或多种水解蛋白。 包衣的种子可以具有低于0.4的初始水分活度(Aw),并且包衣种子上的微生物具有每克种子(CFU / g种子)至少5个对数形成单位的起始活力。 还提供了包衣种子。
    • 5. 发明申请
    • CONTINUOUS SPRAY-CAPTURE PRODUCTION SYSTEM
    • 连续喷雾生产系统
    • WO2007084500A3
    • 2007-11-15
    • PCT/US2007001126
    • 2007-01-16
    • ADVANCED BIONUTRITION CORPPIECHOCKI JOHNKYLE DAVID J
    • PIECHOCKI JOHNKYLE DAVID J
    • A01N43/04C08L3/00
    • C08J3/03C08B37/0084C08J3/075C08J3/122C08J3/24C08J2303/02C08J2305/04C08L3/02C08L5/04
    • The disclosure relates to novel microencapsulation processes based on the use of high viscosity fluids (e.g., gelatinized starch and alginate), which are mixed and then sprayed using a much gentler hydraulic pressure and, preferably gas-based atomization into a crosslinking solution (e.g.. of calcium chloride). To improve the efficiency of the system, the process can be performed in a continuous mode rather than by a conventional batch process. This involves continuous or intermittent harvest of the microparticles collected in the capture vessel followed by amendment and recycling of the CaCl 2 solution and its redeployment into the capture vessel. The process allows production of microencapsulated probiotic bacteria without major losses in viability, thereby providing a useful and efficient new manufacturing method for the stabilization of probiotic bacteria prior to their introduction into functional foods.
    • 本公开涉及基于使用高粘度流体(例如糊化淀粉和藻酸盐)的新型微胶囊化方法,所述新型微胶囊化方法被混合,然后使用较轻的液压进行喷雾,并且优选基于气体雾化进入交联溶液(例如, 的氯化钙)。 为了提高系统的效率,该过程可以以连续模式而不是常规的批处理进行。 这涉及收集在捕获容器中的微粒的连续或间歇收获,随后修复和回收CaCl 2 O 2溶液及其再次部署到捕获容器中。 该方法允许生产微胶囊化的益生菌,而不会在生存力方面造成重大损失,从而为在益生菌引入功能性食品之前稳定益生菌提供了有用和高效的新的制造方法。