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生物活性物质
    Studies on the new bioactive compounds from Aspergillus versicolor SIPI 17 SIPI 1 2,3 and 4
    杂色曲霉产生的新生物活性物质——SIPI-1-2,3和4的研究
    Structural Modification and Photosensitization of New Photoinduced Bioactive Compounds
    新型光致生物活性物质的结构修饰与光敏活性
    Porcine colostrum and milk contain not only highly digestible nutrients but also numerous bioactive compounds,including various types of growth factors,including EGF,IGF Ⅰ,IGF Ⅱ,insulin and TGF β.
    猪乳不仅营养丰富 ,而且含有众多生物活性物质 ,包括各种生长因子 ,如 EGF、IGF- 、IGF- 、胰岛素与 TGF-β等。
    Bioactive Compounds from Marine Sponges and Cell Culture of Marine Sponges
    海绵生物活性物质及海绵细胞离体培养
    RECENT ADVANCES ON BIOACTIVE COMPOUNDS PRODUCING ENDOPHYTES
    产生物活性物质植物内生菌的研究进展
    The Electrochemiluminescent Detection of Bioactive Compounds
    生物活性物质的电致化学发光检测
    Advances on Pseudoalteromonas Species and Their Extracellular Bioactive Compounds
    假交替单胞菌及其胞外生物活性物质研究进展
    Advances on bioactive compounds produced by plant endophytic fungi
    植物内生真菌产生生物活性物质的研究进展
    Bioactive compounds from insects and its development perspective
    昆虫源生物活性物质及其开发前景
    Metagenome Cloning—A New Approach for Novel Microbial Bioactive Compounds Discovery
    宏基因组克隆——微生物活性物质筛选的新途径
    Study and utilization of acridone alkaloids, the natural bioactive compounds from citrus
    柑橘天然生物活性物质吖啶酮的研究与利用
    This paper studies on bioactive compounds from marine algae, and can be divided into two sections, one is studies on synthesis and biological properties of Martefragin A derivatives, and the other is studies on paralytic shellfish toxins-Gonyautoxins preparation and detection.
    本论文研究海藻生物活性物质,分为两个部分:第一部分为天然海藻抗氧化剂-吲哚噁唑生物碱Martefragin A衍生物的合成及其生物活性研究,以从大型海藻—脆红网藻中分离得到的具有吲哚噁唑结构的新型抗氧化剂Martefragin A为先导化合物,设计合成了一系列新型的吲哚噁唑生物碱,并对所合成的化合物进行多靶点的生物活性筛选;
    The aim of this paper is to illuminate the biological property and multipotentials of the goat bone marrow MSCs, so as to apply MSCs to diseases therapy and bioactive compounds production in future, and subsequently to establish the goat bone marrow MSCs line.
    本研究目的在于阐明山羊骨髓间充质干细胞的生物学性能及其分化潜能,以便未来利用该类细胞作为疾病细胞/基因治疗的模型,以及利用该类细胞作为细胞生物反应器体外生产生物活性物质,进而建立山羊骨髓间充质干细胞细胞系。
    In addition, the bacteria are able to produce a variety of bioactive compounds with novel structures, and are an important source for the R & D of new drugs.
    另一方面,粘细菌能够合成结构新颖、丰富多样的生物活性物质,是具有巨大开发潜力的药源菌。
    BCEF0083 is a new type of bioactive compounds from Entomogenous fungi, which acts both as an inhibitor of monoamine oxidase and an effctive free radical scavenger.
    BCEF0083是从一种虫生真菌白僵菌代谢产物中提取的新型生物活性物质,具有一定的抗单胺氧化酶作用及较强的清除自由基活性。
    Modern Nutriology considers that there are many kinds of bioactive compounds being called phytochemicals in plant food, excepting the traditional nutritional ingredients such as protein, fat, carbohydrate, vitamin and mineral.
    现代营养学认为,植物性食品中除了传统的营养成分蛋白质、脂肪、碳水化合物、维生素及矿物质外,还包括了多种生物活性物质。 这些物质被称为植物化学物或植物化学素。
    Whereas the “Supply Problems” were identified to hinder the clinical tests and commercial applications of most of the sponge bioactive compounds.
    强调海绵生物活性物质的商业化和临床应用所面临的“供给短缺问题”。
    Schwann cells are main functional cells in the peripheral nervous system which are engaged in migrating, adhering and secreting extracellular matrix molecules as well as forming myelin sheath. After the peripheral nerve injury they are able to perform repairing function and produce a number of factors or bioactive compounds that promote neurons and glial cells survival meanwhile inhibit them from apoptosis.
    Schwann细胞是周围神经系统的主要功能细胞 ,兼有迁移、粘着、产生细胞外基质、形成髓鞘 ,参与周围神经修复的功能和分泌多种神经因子、生物活性物质 ,促进神经元、神经胶质细胞存活、抑制其凋亡的功能。
    Many bioactive compounds in living body are electroactive, therefore, the investigation of their electrochemical behaviors using the modern electrochemical technique are very significative of theory and application.
    生物体中很多生物活性物质具有电活性 ,因此用现代电化学技术研究其电化学行为具有重要的理论意义和实际应用价值。
    In general, the concentration of the bioactive compounds in living body is very low and suffered from serious interferences, hence it is very difficult to separate and detect the bioactive compounds in living body.
    生物体中的生物活性物质通常浓度很低 ,并且成分复杂 ,因此分离检测生物体中生物活性物质非常困难。
 

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