研究了海藻酸钙微胶囊的制备条件和影响因素。
The preparation conditions of calcium alginate microcapsule and influence factors were studied.
研究了海藻酸钙固定化技术在酿酒酵母上的应用。
The application of calcium alginate immobilized method in brewing yeast cell.
目的观察可吸收性海藻酸钙膜引导骨再生过程中哈弗氏管的再建及意义。
Objective To research the effect of bioabsorbable calcium alginate film in guided bone regeneration by the study of Haversian remodeling.
海藻酸钙是我公司研制开发的新产品,质量达到国际同类产品先进水平。
Calcium Alginate is a new product that we developed. Its quality reached the domestic advanced standard in this field.
本文报道采用海藻酸钙作载体固定酵母活细胞用于糖蜜酒精连续发酵的研究。
This article deals with studies on continuous fermentation of molasses into alcohol by immobilized yeast cell with calcium alginate.
本文考察了海藻酸钙固定化酵母与聚乙烯醇固定化酵母的连续乙醇发酵行为。
The behavior of Ca alginate immobilized yeast and polyvinyl alcohol immobilized yeast for continuous production of ethanol is studied.
目的探讨海藻酸钙-多聚赖氨酸-海藻酸钙(APA)微囊低温保存的降温方法。
ObjectiveTo explore the methods of low temperature preservation for alginate-polylysine-alginate (APA) microcapsules.
研究了制备固定化细胞最佳条件,而且与戊二醛交联法、 海藻酸钙包埋法作了比较。
The optimum conditions of preparation for immobilized were studied and the results were compared with that of valeric dialdehyde crosslink and calcium alginate embedment methods.
以海藻酸钙为载体包埋黑曲霉AS0 0 2 3孢子,培养后得到固定化增殖细胞。
The spores of Aspergillus niger AS0023 were entrapped in calcium alginate gels for growth to form immobilized growth cells(IGC).
结论含液体石蜡的海藻酸钙小丸经包衣处理可以达到胃内漂浮和局部缓释药物的目的。
Conclusion Coating floating beads made by Alginate-Na and liquid paraffin can be considered as a gastro-floating formulation releasing drug consistently and locally.
在海藻酸钙胶囊干燥过程中,用常规分析方法确定干燥机理和硬化反应关键点等比较困难。
It is very difficult to detect the drying mechanism, and determine the critical point of stiffening reaction by normal analysis methods.
目的建立一种方法测定海藻酸钙凝胶小球中醋酸地塞米松的含量,考察小球在不同介质中的溶出性能。
OBJECTIVE a method was developed for the determination of Dxamethasone Acetate in calcium alginate gel beads and observed the release properties of gel beads in different media.
目前,海藻酸钠与二价钙离子交联反应形成的海藻酸钙凝胶小球作为药物的载体日益受到广泛的应用。
Calcium alginate gel beads were widely used as drug carriers, which were obtained by the gelation of sodium alginate with divalent cation as Ca2 +.
黑曲霉as·3.4309的孢子用海藻酸钙凝胶固定化,制成固定化细胞胶粒,用于生产糖化酶的研究。
The spores of Aspergillus Niger as 3.4309 were immobilized with calcium alginate ia bead form. Sach immobilized cells was applied to glucoamylase production.
本实验的目的就是探讨以海藻酸钙为万古霉素载体的可生物降解的抗生素缓释系统对慢性骨髓炎的治疗效果。
The purpose of this study is to explore the calcium alginate effect in the treatment of chronic osteomyelitis, as a vancomycin carrier of biodegradable delivery system of antibiotics.
我们已观察到其他非水溶性化合物(如海藻酸钙、丁二酮肟、碳酸锌、碳酸钡及1-氨基蒽醌)也有类似的保护和生存能力。
We have observed similar protection and viability with other water-insoluble compounds such as calciumalginate, dimethylglyoxime, zinc carbonate , barium carbonate , and 1-aminoanthraquinone.
海藻酸作为天然物与钙离子结合形成的海藻酸钙凝胶作为近年来新型可生物降解的抗生素缓控释载体在国外已受到广泛关注。
Calium alginate gel as a new type of biodegradable controlled release of antibiotics ease carrier has been abroad wide concern in recent years.
方法:以磷酸化的PVA 海藻酸钙为载体包埋黑曲霉细胞,与固定化的葡萄糖异构酶协同反应,以蔗糖为原料转化生产低聚果糖。
Methods: Aspergillus niger cells entrapped by modified phosphorylated polyvinyl alcohol(PVA) alginate gel co react with immobilized glucose isomerase to transfer sucrose to FOS.
海藻酸钙Calcium Alginate海藻酸钙是从海带中提取的天然多糖碳水化合物,可作为钙质添加剂,用于保健食品业。
Calcium Alginate is a natural carbohydrate extracted from kelp. It is often used in healthy food industry as a Calcium additive.
采用海藻酸钙包埋异常汉逊酵母,将自行设计的简易流动注射式系统,结合溶氧电极,构成BOD 生物探针仪,对污水进行快速测定。
A microbial sensor consisting of an immobilized cell column and an oxygen electrode with FIA system was made for estimation of BOD.
钙锌离子交换试验表明钙离子与锌离子在海藻酸古洛糖醛酸片段的离子交换会影响锌离子与甘露糖醛酸片段的结合。
The ions exchange between calcium ions and zinc ions in L-guluronic acid units would influence the binding ability of zinc ion in D-mannuronic acid units.
钙锌离子交换试验表明钙离子与锌离子在海藻酸古洛糖醛酸片段的离子交换会影响锌离子与甘露糖醛酸片段的结合。
The ions exchange between calcium ions and zinc ions in L-guluronic acid units would influence the binding ability of zinc ion in D-mannuronic acid units.
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