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111.
遗传学实验(十五)两倍体细胞株培养 总被引:2,自引:1,他引:1
实验原理
组织培养是把动物或植物细胞自机体取出放在玻
璃器皿里,选择和控制某些外界条件,使细胞继续分裂
生长的一种基础性实验技术;现在已广泛应用于生理
学、免疫学、病毒学、遗传学等方面,对细胞分化、发育、
肿瘤发生以及染色体研究等领域起着很大的作用。 相似文献
112.
Johan U. Grobbelaar 《Journal of applied phycology》2003,15(2-3):209-215
The chemical and nutritional properties of microalgae are well known, which has led to an ever expanding industry for foods and dietary supplements both in terms of quantity and products. Little has been done to regulate or control quality and assurance in the applied phycology industry and it is known that it varies considerably. Nutritional aspects of produced biomass and consumption as dietary supplements have become issues of concern, especially since the industry is lucrative and fast growing. Various claims are made regarding dietary and food supplements that include health, nutrition, structure and functioning, many often unsubstantiated. Although quality is a subjective term many organisations are involved in testing, controlling and determining criteria. Today quality is more than just standards where it is an "integrated quality management approach" involving amongst others "hazard analyses and critical control points" (HACCP) practices. Microalgae are not recognised as a food or food supplement and they are also not categorised under herbals or botanicals, but as "other supplements". Produced microalgal biomass is subject to contamination from the entire range of contaminants and pathogens. Contamination of products by algal toxins in mixed culture populations also occurs. The industry has largely regulated itself, but there is considerable scope for improvement. There is a need for support and dissemination of information in the industry. 相似文献
113.
Cortizo M.C. Fernández Lorenzo de Mele M. 《World journal of microbiology & biotechnology》2003,19(8):805-810
The combination of a conventional optical microscope with a specially designed glass flow cell was used to visualize in situ biofilms formed on opaque thin biomaterials through a simple non-invasive way (optical microscopy of thin biofilms, OMTB). Comparisons of OMTB with scanning electron microscopy (SEM) images were made. Thin metallic dental biomaterials were used as substrata. They were immersed in a synthetic saliva and in a modified Mitis–Salivarius medium inoculated with a consortium of oral microorganisms. To study the effect of bacterial motility, Pseudomonas fluorescens cultures were also used. The processes which give rise to the formation of the biofilm were monitored through OMTB. Biofilm microstructures like pores, water channels, streamers and chains of Streptococci, attached to the surface or floating in the viscous interfacial environment, could be distinguished. Thickness and roughness of the biofilms formed on thin substrata could also be evaluated. Distortions introduced by pretreatments carried out to prepare biological materials for SEM observations could be detected by comparing OMTB and SEM images. SEM images (obtained at high magnification but ex situ, not in real time and with pretreatment of the samples) and OMTB images (obtained in situ, without pretreatments, in real time but at low magnification) in combination provided complementary information to study biofilm processes on thin substrata. 相似文献
114.
Dimeric proteins can arise by the swapping of structural domains between monomers. The prevalence of this occurrence is unknown. Ribonuclease A (RNase A) is assumed to be a monomer near physiological conditions. Here, this hypothesis is tested and found to be imprecise. The two histidine residues (His12 and His119) in the active site of RNase A arise from two domains (S-peptide and S-protein) of the protein. The H12A and H119A variants have 10(5)-fold less ribonucleolytic activity than does the wild-type enzyme. Incubating a 1:1 mixture of the H12A and H119A variants at pH 6.5 and 65 degrees C results in a 10(3)-fold increase in ribonucleolytic activity. A large quantity of active dimer can be produced by lyophilizing a 1:1 mixture of the H12A and H119A variants from acetic acid. At pH 6.5 and 65 degrees C, the ribonucleolytic activity of this dimer converges to that of the dimer formed by simply incubating the monomers, as expected for a monomer-dimer equilibrium. The equilibrium dissociation constant for the dimer is near 2 mM at both 65 and 37 degrees C. This value of Kd is only 20-fold greater than the concentration of RNase A in the cow pancreas, suggesting that RNase A dimers exist in vivo. The intrinsic ability of RNase A to form dimers under physiological conditions is consistent with a detailed model for the evolution of homodimeric proteins. Dimers of "monomeric" proteins could be more prevalent than is usually appreciated. 相似文献
115.
储藏中药材孳生粉螨的调查 总被引:4,自引:0,他引:4
采用清水漂浮法和塔氏电热集螨器分离法,共分离中药材样品129种,1290份,从中分离出粉螨44种,隶属7科25属。得出结论:中药材粉螨的污染严重,应加强对中药材螨类的防治,以保护中药材及预防人体螨病。 相似文献
116.
The pre-irradiation combustion (PC) of samples to liberate iodine, followed by trapping the iodine on charcoal and quantifying
the element by neutron activation analysis (NAA), has been used at the National Institute of Standards and Technology for
the determination of iodine in biological materials. The applicability of this technique to numerous environmental and dietary
matrices is illustrated by analysis of a range of certified reference materials (CRMs) and a powdered grass material that
was prepared as an in-house reference material (RM). Because of the combustion step involved, samples with low or no fat content
(e.g., cereal products, selected botanical specimens, and nonfat milk powder) and inorganic materials (e.g., coal fly ash
and dried sediments) are more suited for analysis by this method. In general, the results for several types of samples obtained
by this method agreed with those obtained by a second radiochemical (R) NAA, as well as by a third method using inductively
coupled plasma mass spectrometry (ICP-MS). PC-NAA is a useful technique for determining iodine in biological and environmental
samples, especially for verification of iodine results obtained from other methods. 相似文献
117.
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119.
Benjamin Kupfer Koushik Majhi David A. Keller Yaniv Bouhadana Sven Rühle Hannah Noa Barad Assaf Y. Anderson Arie Zaban 《Liver Transplantation》2015,5(1)
Co3O4 is investigated as a light absorber for all‐oxide thin‐film photovoltaic cells because of its nearly ideal optical bandgap of around 1.5 eV. Thin film TiO2/Co3O4 heterojunctions are produced by spray pyrolysis of TiO2 as a window layer, followed by pulsed laser deposition of Co3O4 as a light absorbing layer. The photovoltaic performance is investigated as a function of the Co3O4 deposition temperature and a direct correlation is found. The deposition temperature seems to affect both the crystallinity and the morphology of the absorber, which affects device performance. A maximum power of 22.7 μW cm?2 is obtained at the highest deposition temperature (600 °C) with an open circuit photovoltage of 430 mV and a short circuit photocurrent density of 0.2 mA cm?2. Performing deposition at 600 °C instead of room temperature improves power by an order of magnitude and reduces the tail states (Urbach edge energy). These phenomena can be explained by larger grains that grows at high temperature, as opposed to many nucleation events that occur at lower temperature. 相似文献
120.
Low‐Temperature Micro‐Solid Oxide Fuel Cells with Partially Amorphous La0.6Sr0.4CoO3‐δ Cathodes 下载免费PDF全文
Anna Evans Julia Martynczuk Dieter Stender Christof W. Schneider Thomas Lippert Michel Prestat 《Liver Transplantation》2015,5(1)
Partially amorphous La0.6Sr0.4CoO3‐δ (LSC) thin‐film cathodes are fabricated using pulsed laser deposition and are integrated in free‐standing micro‐solid oxide fuel cells (micro‐SOFC) with a 3YSZ electrolyte and a Pt anode. A low degree of crystallinity of the LSC layers is achieved by taking advantage of the miniaturization of the cells, which permits low‐temperature operation (300–450 °C). Thermomechanically stable micro‐SOFC are obtained with strongly buckled electrolyte membranes. The nanoporous columnar microstructure of the LSC layers provides a large surface area for oxygen incorporation and is also believed to reduce the amount of stress at the cathode/electrolyte interface. With a high rate of failure‐free micro‐SOFC membranes, it is possible to avoid gas cross‐over and open‐circuit voltages of 1.06 V are attained. First power densities as high as 200–262 mW cm?2 at 400–450 °C are achieved. The area‐specific resistance of the oxygen reduction reaction is lower than 0.3 Ω cm2 at 400 °C around the peak power density. These outstanding findings demonstrate that partially amorphous oxides are promising electrode candidates for the next‐generation of solid oxide fuel cells working at low‐temperatures. 相似文献