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91.
Somatic cell nuclear transfer (SCNT) technology has recently been used to generate animals with a common genetic composition. In this study, we report the derivation of a pluripotent embryonic stem (ES) cell line (SCNT-hES-1) from a cloned human blastocyst. The SCNT-hES-1 cells displayed typical ES cell morphology and cell surface markers and were capable of differentiating into embryoid bodies in vitro and of forming teratomas in vivo containing cell derivatives from all three embryonic germ layers in severe combined immunodeficient mice. After continuous proliferation for more than 70 passages, SCNT-hES-1 cells maintained normal karyotypes and were genetically identical to the somatic nuclear donor cells. Although we cannot completely exclude the possibility that the cells had a parthenogenetic origin, imprinting analyses support a SCNT origin of the derived human ES cells.  相似文献   
92.
添加己酸和盐酸对玉米秸秆青贮饲料质量的影响   总被引:7,自引:0,他引:7  
通过测定盐酸、己酸处理的玉米秸秆青贮饲料的pH值、含水率、有机酸含量及组成、干物质消失率、NDF瘤胃降解率、干物质回收率和青贮饲料化学成分,研究了盐酸、己酸的处理对玉米秸秆青贮饲料质量的影响。试验结果表明:在玉米秸秆青贮饲料中添加盐酸,降低了青贮饲料中乳酸占总酸的比例和干物质回收率,并使青贮饲料的细胞壁物质含量显著增加,明显降低了玉米秸秆青贮饲料的质量;己酸的添加对青贮饲料质量无显著影响(P>0.05);盐酸和己酸的共同处理除了明显改善青贮饲料的色泽、气味和质地外,还可明显降低青贮饲料中OB,ADF和ADL的含量(P>0.05),显著提高了青贮饲料的营养价值。  相似文献   
93.
荔蝽中乙酰胆碱酯酶活性与自然抗药性的关系   总被引:2,自引:0,他引:2  
本文研究了荔蝽头部乙酰胆碱酯酶(AChE)活性的季节性变化与自然抗药性的关系,以及敌百虫对AChE的影响,同时运用聚丙烯酰胺凝胶电泳的方法,探讨了荔蝽酯酶同功酶的变动情况。结果表明:荔蝽正常成虫头部AChE活性在新羽化成虫中最高,比活力达3.5μmol min~(-1)mg~(-1)蛋白质,越冬期最低,仅1.17μmol min~(-1)mg~(-1)蛋白质,到生殖期又上升为2.67μmol min~(-1)mg~(-1)蛋白质。经敌百虫处理后,在新羽化成虫期和生殖期AChE活性有明显被抑制现象,其比活力分别为2.21μmol min~(-1)mg~(-1)蛋白质和2.04μmol min~(-1)mg~(-1)蛋白质,而在越冬期AChE活性几乎不受敌百虫影响,为1.24μmol min~(-1)mg~(-1)蛋白质,同功酶谱也显示AChE在不同季节中无明显变化。  相似文献   
94.
Cellulose carbonate was prepared by the reaction of cellulose pulp and CO2 with treatment reagents, such as aqueous ZnCl2 (20–40 wt%) solution, acetone or ethyl acetate, at −5–0°C and 30–40 bar (CO2) for 2 hr. Among the treatment reagents, ethyl acetate was the most effective. Cellulose carbonate was dissolved in 10% sodium hydroxide solution containing zinc oxide up to 3 wt% at −5–0°C. Intrinsic viscosities of raw cellulose and cellulose carbonate were measured with an Ubbelohde viscometer using 0.5 M cupriethylenediamine hydroxide (cuen) as a solvent at 20°C according to ASTM D1795 method. The molecular weight of cellulose was rarely changed by carbonation. Solubility of cellulose carbonate was tested by optical microscopic observation, UV absorbance and viscosity measurement. Phase diagram of cellulose carbonate was obtained by combining the results of solubility evaluation. Maximum concentration of cellulose carbonate for soluble zone was increased with increasing zinc oxide content. Cellulose carbonate solution in good soluble zone was transparent and showed the lowest absorbance and the highest viscosity. The cellulose carbonate and its solution were stable in refrigerator (−5°C and atmospheric pressure).  相似文献   
95.
In recent decades, tremendous research has focused on the production of nanoscale fibers using synthetic polymers, with the goal of fabricating nanofibrous scaffolds for wound healing. However, the hydrophobicity of such polymers typically hinders attachment and proliferation of the cells. In this study, we combined poly-d,l-lactide-co-glycolide (PLGA) and small intestine submucosa (SIS) to fabricate blended nanofibers for wound healing by electrospinning. PLGA and SIS were dissolved in 1,1,1,3,3,3-hexafluoro isopropanol to produce different weight ratios of PLGA/SIS-blended nanofibrous membranes (NFM). Physicochemical characterization of the electrospun NFM was performed by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy, water contact angle analysis, degradation test and tensile testing. The PLGA/SIS-blended NFM showed improved hydrophilicity and tensile strength. Better infiltration, attachment and proliferation of rat granulation fibroblasts of PLGA/SIS-blended NFMs compared to PLGA NFMs were identified by morphological differences determined by SEM and a water-soluble tetrazolium salt assay kit. Based on our results, the PLGA/SIS blended NFMs were found to be suitable for use as a potential material for wound dressing.  相似文献   
96.
Zinc oxide (ZnO) and silicon carbide (SiC) nanoparticles were compounded with polyethylene terephthalate (PET) by using a twin screw extruder, and their effect on the UV absorption and heat transfer in PET/ZnO and PET/SiC composite films was investigated. The presence of ZnO and SiC in the PET matrix was verified by X-ray diffraction. The UV absorbance of both PET/ZnO and PET/SiC composite films increased with increasing particle content. The UV absorbance of PET/SiC was higher than that of PET/ZnO under the same particle content. A thermal imaging camera was used to analyze the heat transfer in PET/ZnO and PET/SiC composite films after heating them to 40 °C. As the content of ZnO and SiC particles increased, the temperature decreased more rapidly. PET/SiC showed faster cooling than PET/ZnO because of the higher thermal conductivity of SiC compared to that of ZnO. Response temperature surfaces for PET/ZnO and PET/SiC were obtained by using an exponential decay function and a second order equation, and the elapsed times to cool to room temperature were estimated.  相似文献   
97.
Phytoncides are volatile organic compounds released from trees and plants and are well known for their natural antibacterial activity. In this study, emulsion electrospinning was used to encapsulate phytoncide in the core of nanofibers, with the aim of developing environmentally friendly, functional nanofibers with a sustained release of the encapsulated component. Core/sheath structured phytoncide/poly(vinyl alcohol) nanofibers were successfully prepared by emulsion electrospinning using an ordinary single-nozzle electrospinning setup. An oil-in-water emulsion of an aqueous solution of poly(vinyl alcohol) (as the aqueous phase) and phytoncide (as the oil phase) was used to prepare the core/sheath structured nanofibers. Nanocomposite fibers were electrospun under various spinning conditions and emulsion formulations to find the suitable processing conditions for fabricating nanofibers with core/sheath structures. The resulting nanofibers exhibited a well-aligned core/sheath structure with fiber diameters of 250-350 nm. The release profile of phytoncide from the core of nanofibers over a 21 day period showed that phytoncide was released in a sustained manner over 14 days. The core/sheath structured phytoncide/poly(vinyl alcohol) nanofibers exhibited 99.9 % bacterial reduction against both Staphylococcus aureus and Escherichia coli, indicating that the encapsulated phytoncide in the fiber provided strong antimicrobial effects.  相似文献   
98.
Alterations in microbial culture conditions may trigger the production of diverse bioactive secondary metabolites. While applying various culture conditions and monitoring secondary metabolite profiles using LC/MS, hormaomycins B and C (1 and 2) were discovered from a marine mudflat-derived actinomycete, Streptomyces sp., collected in Mohang, Korea. The planar structures of the hormaomycins, which bear structurally-unique units, such as 4-(Z)-propenylproline, 3-(2-nitrocyclopropyl)alanine, 5-chloro-1-hydroxypyrrol-2-carboxylic acid and β-methylphenylalanine, were established as the first natural analogues belonging to the hormaomycin peptide class. The absolute configurations of 1 and 2 were deduced by comparing their CD spectra with that of hormaomycin. These hormaomycins exhibited significant inhibitory effects against various pathogenic Gram-positive and Gram-negative bacteria.  相似文献   
99.
用非注山毛豆叶丙酮提取物或鱼藤酮点滴处理菜粉蝶幼虫,出现畸形幼虫和畸形蛹,对畸形幼虫和畸形蛹的真皮细胞和内外表皮分别进行了超显微结构观察,发现鱼藤酮及其类似物影响昆虫旧表皮的分解和新表皮的合成是导致虫体畸形的主要原因,并对畸形蛹体壁的几丁质,粗脂肪,粗蛋白的含量进行测定,结果表明处理组与对照组存在明显的差异。  相似文献   
100.
苦楝果实中化学成分进一步研究及生物活性测定   总被引:19,自引:0,他引:19  
采用生物活性追踪法,从苦楝果实中分离得苦楝新醇(Ⅰ)、苦楝酮(Ⅱ)、苦楝醇(Ⅲ)、苦楝二醇(Ⅳ)、苦楝三醇(Ⅴ)、香草酸(Ⅵ)、香草醛(Ⅶ)和川楝素(Ⅷ),并根据波谱(1R,MS,′H—NMR,~(13)C—NMR)分析和理化常数测定确定其结构.其中Ⅱ、Ⅲ、Ⅳ和Ⅴ的21—H存在差向异构现象.生测结果表明,Ⅱ~Ⅴ和Ⅷ对菜青虫(Pieris rapae)有明显的拒食活性,Ⅷ还表现出明显的胃毒活性;Ⅰ、Ⅳ和Ⅶ仅表现出一定的拒食活性.  相似文献   
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