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    • 1. 发明申请
    • COMPOSITION FOR ENHANCING IMMUNITY CONTAINING PLANT STEM CELL LINE DERIVED FROM CAMBIUM OF PANAX GINSENG INCLUDING WILD GINSENG OR GINSENG AS AN ACTIVE INGREDIENT
    • 用于增强含人参的人参茎干细胞系(含野生人参或人参为活性成分)的免疫力的组合物
    • WO2010095911A2
    • 2010-08-26
    • PCT/KR2010001116
    • 2010-02-23
    • UNHWA CORPLEE DAE HEEJANG MI OKLIM MIN JUNGHONG SUN MIJIN YOUNG WOOLEE EUN KYONG
    • LEE DAE HEEJANG MI OKLIM MIN JUNGHONG SUN MIJIN YOUNG WOOLEE EUN KYONG
    • A61K36/258A61P37/00
    • A61K36/258A01H4/005A23L33/105A23V2002/00C12N5/04A23V2200/324A23V2250/2124
    • The present invention relates to a composition for enhancing immunity containing a cell line derived from the cambium of Panax ginseng including wild ginseng or ginseng, or the grounded substance, extract, or culture medium of the cell line as an active ingredient. The cell line and ground substance, extract, and culture medium of the cell line according to the present invention compose a natural product-derived composition. The cell line, ground substance, extract, and culture medium are safe to a human body by minimizing side effects of a conventional immunity booster, and also effectively increase activity of NK cells charging innate immunity. As well, the cell line, ground substance, extract, and culture medium appear to enhance acquired immunity by increasing proliferation rate of lymph node cells when re-exposing the cells to an antigen in a specific immune reaction, thus are useful as an immunity booster. Especially, the cell line, ground substance, extract, and culture medium also effectively increase the number of bone marrow cells, thus are not only used as an immune reaction adjuvant, but also used in preventing and treating anemia caused by hematopoiesis.
    • 本发明涉及用于增强免疫力的组合物,其含有来自人参形成层的细胞系,包括野山参或人参,或者细胞系的研磨物质,提取物或培养基作为活性成分。 根据本发明的细胞系的细胞系和基础物质,提取物和培养基构成天然产物衍生的组合物。 通过使常规免疫增强剂的副作用最小化,细胞系,基础物质,提取物和培养基对人体是安全的,并且还有效地增加NK细胞充电先天免疫的活性。 同样,细胞系,基础物质,提取物和培养基通过在特定的免疫反应中将细胞再次暴露于抗原时增加淋巴结细胞的增殖速率而增强获得性免疫,因此可用作免疫增强剂 。 特别是细胞系,粉碎物,提取物和培养基也有效地增加了骨髓细胞的数量,因此不仅可以用作免疫反应佐剂,而且还可以用于预防和治疗造血系统引起的贫血症。
    • 5. 发明申请
    • PLANT STEM CELL DERIVED FROM CAMBIUM OF FAMILY SALICACEAE AND METHOD FOR ISOLATING AND CULTURING SAME
    • 来自家蚕豆沙门氏菌的植物干细胞及​​其分离和培养方法
    • WO2010137879A2
    • 2010-12-02
    • PCT/KR2010003342
    • 2010-05-26
    • UNHWA CORPHONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • HONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • C12N5/04C12N5/02
    • A01H5/04A01H4/005
    • The present invention relates to a stem cell derived from the cambium of family Salicaceae and to a method for isolating and culturing the same. The stem cell derived from the cambium of family Salicaceae according to the present invention is advantageous as it is isolated in an undifferentiated state without undergoing a dedifferentiation process and stably maintained without causing a variation in the cellular growth rate and growth pattern even during long-term culture, thereby enabling large-scale culture. In addition, the stem cell derived from the cambium of family Salicaceae according to the present invention exhibits the effects of suppressing the generation of NO during the treatment of Lipopolysaccharide (LPS) and suppressing the expression of the genes of COX-2 proinflammatory cytokine, and thus can be valuably used as an excellent anti-inflammatory composition.
    • 本发明涉及源自柳叶科植物的形成层的干细胞及其分离培养方法。 根据本发明的衍生自柳科科的形成层的干细胞是有利的,因为它以未分化状态分离而不进行去分化过程并且即使在长期期间也不引起细胞生长速率和生长模式的变化而稳定地保持 文化,从而实现大规模文化。 此外,根据本发明的源自柳叶of科的形成层的干细胞表现出抑制脂多糖(LPS)处理期间产生NO并抑制COX-2促炎细胞因子基因表达的效果, 因此可以有价值地用作优异的抗炎组合物。
    • 6. 发明申请
    • PLANT STEM CELL DERIVED FROM CAMBIUM OF FAMILY SOLANACEAE, AND METHOD FOR ISOLATING AND CULTURING SAME
    • 来自家族林分系的植物干细胞及​​其分离和培养方法
    • WO2010137918A3
    • 2011-04-14
    • PCT/KR2010003424
    • 2010-05-28
    • UNHWA CORPYU YOUNG MIKIM SO YEONJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • YU YOUNG MIKIM SO YEONJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • C12N5/04C12N5/02
    • A01H4/005C12N5/04
    • The present invention relates to a plant stem cell derived from the cambium of family Solanaceae, and to a method for isolating and culturing the same. A stem cell derived from the cambium of family Solanaceae, according to the present invention, is useful as it can be isolated in an undifferentiated state without undergoing a dedifferentiation process and stably maintained without causing any variation in the cell growth rate and growth pattern even during long-term culture, thereby enabling large-scale culture. Moreover, the stem cell derived from the cambium of family Solanaceae and the culture thereof, according to the present invention, are useful for preventing and delaying aging as they have the effects of inducing biosynthesis of procollagen and more efficiently inhibiting the generation of enzymes related to aging than retinoic acid, which is known as having an excellent effect in skin wrinkle improvement.
    • 本发明涉及源自茄科的形成层的植物干细胞及​​其分离培养方法。 根据本发明,衍生自茄科的形成层的干细胞是有用的,因为它可以以未分化状态分离而不进行去分化过程并且在不引起细胞生长速率和生长模式的任何变化的情况下即使在 长期文化,从而实现大规模文化。 此外,根据本发明,衍生自茄科科植物的形成层的干细胞及其培养物可用于预防和延缓衰老,因为它们具有诱导前胶原的生物合成的效果,并且更有效地抑制与 老化比视黄酸,其被认为具有优异的皮肤皱纹改善效果。
    • 8. 发明申请
    • PLANT STEM CELL DERIVED FROM CAMBIUM OF FAMILY GINGKOACEAE AND METHOD FOR THE ISOLATION THEREOF
    • 家蝇科植物CAM植物干细胞及​​其分离方法
    • WO2010137878A9
    • 2011-02-03
    • PCT/KR2010003341
    • 2010-05-26
    • UNHWA CORPHONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • HONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • C12N5/04C12N5/02
    • A01H4/005A01H7/00
    • The present invention relates to a stem cell derived from cambium of family Gingkoaceae and to method for the isolated culturing thereof. The stem cell derived from cambium of family Gingkoaceae according to the present invention is advantageous as it is isolated at a non-differentiated state without passing through a dedifferentiation process and stably maintained without causing a variation in the cellular growth rate and growth pattern even during a long-term culture, thereby enabling a mass culture. In addition, the stem cell derived from cambium of family Gingkoaceae according to the present invention showed an antioxidant effect similar to or higher than that of existing synthetic antioxidants when the radical-scavenging activity for scavenging radicals generated by the treatment of an oxidant is measured, and thus can be valuably used as an excellent anti-inflammatory composition.
    • 本发明涉及来源于银杏科的形成层的干细胞及其分离培养方法。 根据本发明的来自银杏科的形成层的干细胞是有利的,因为它在非分化状态下分离而不经过去分化过程,并且即使在细胞生长速率和生长模式期间也不会引起细胞生长速率和生长模式的变化而稳定地保持 长期文化,从而实现大众文化。 此外,根据本发明的来自银杏科的形成层的干细胞当测量由氧化剂处理产生的清除自由基的自由基清除活性时,显示出与现有合成抗氧化剂相似或更高的抗氧化效果, 因此可以有价值地用作优异的抗炎组合物。
    • 9. 发明申请
    • PLANT STEM CELL DERIVED FROM CAMBIUM OF FAMILY GINGKOACEAE AND METHOD FOR THE ISOLATION THEREOF
    • 来自家族金银花的植物干细胞及​​其分离方法
    • WO2010137878A3
    • 2011-04-14
    • PCT/KR2010003341
    • 2010-05-26
    • UNHWA CORPHONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • HONG NAM JUJIN YOUNG WOOLEE EUN KYONGHONG SUN MI
    • C12N5/04C12N5/02
    • A01H4/005A01H7/00
    • The present invention relates to a stem cell derived from cambium of family Gingkoaceae and to method for the isolated culturing thereof. The stem cell derived from cambium of family Gingkoaceae according to the present invention is advantageous as it is isolated at a non-differentiated state without passing through a dedifferentiation process and stably maintained without causing a variation in the cellular growth rate and growth pattern even during a long-term culture, thereby enabling a mass culture. In addition, the stem cell derived from cambium of family Gingkoaceae according to the present invention showed an antioxidant effect similar to or higher than that of existing synthetic antioxidants when the radical-scavenging activity for scavenging radicals generated by the treatment of an oxidant is measured, and thus can be valuably used as an excellent anti-inflammatory composition.
    • 本发明涉及源自银杏科植物的形成层的干细胞及其分离培养方法。 根据本发明的源自金丝桃科的形成层的干细胞是有利的,因为它以非分化状态分离而不通过去分化过程并稳定地保持,而不会引起细胞生长速率和生长模式的变化,即使在 长期文化,从而实现群众文化。 此外,根据本发明的衍生自银杏科科植物科的形成层的干细胞,当测量通过处理氧化剂产生的清除自由基的自由基清除活性时,显示出与现有的合成抗氧化剂相似或更高的抗氧化作用, 因此可以有价值地用作优异的抗炎组合物。