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21.
AIMS: To develop a non-competitive direct immunoassay method for quantifying nisin in solution or adsorbed to surfaces. METHODS AND RESULTS: The developed method differs from traditional ELISA in pre-forming a complex of the nisin antibodies and the secondary antibody conjugate before addition to the nisin-coated solid phase. The modifications may help decrease interference from the nisin degradation molecules and reduce non-specific adsorption of secondary antibody conjugate. The new method has a detection limit of 65 ng nisin and correlates well (r=0.982) with the agar diffusion bioassay. CONCLUSIONS: A new sensitivity method was developed to determine the amounts of nisin adsorbed to a polymeric surface. SIGNIFICANCE AND IMPACT OF THE STUDY: The new technique can provide a reproducible and accurate method to quantitate nisin molecules in solutions and those bound on polymeric surfaces, and it is free of the limitations of the traditional agar diffusion bioassay. 相似文献
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The expanded human kallikrein gene family: locus characterization and molecular cloning of a new member, KLK-L3 (KLK9) 总被引:3,自引:0,他引:3
In rodents, kallikreins are encoded by a large multigene family but in humans, only three kallikrein genes were thought to exist. Based on the homology between the human and the rodent kallikrein loci, we defined a 300-kb human kallikrein gene region on chromosome 19q13. 3-q13.4. By using linear sequence information, restriction analysis, PCR, and blotting techniques, we were able to construct the first detailed map of the human kallikrein gene locus. Comparative analysis of genes located in this area enabled us to expand the human kallikrein multigene family with some recently identified serine proteases and establish common structural features. We further identified a new kallikrein-like gene, named kallikrein-like gene 3 (KLK-L3; HGMW-approved symbol KLK9). We describe the structural characterization of the KLK-L3 gene, together with its precise chromosomal localization in relation to other kallikreins and its tissue expression pattern and hormonal regulation. 相似文献
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Foussias G Yousef GM Diamandis EP 《Biochemical and biophysical research communications》2000,278(3):775-781
Through efforts to investigate the CD33-like subgroup of sialic acid binding immunoglobulin-like lectins (Siglecs), which are believed to be located on chromosome 19q13.4, we have identified the precise genomic region containing the Siglec8 gene. It is located on chromosome 19q13.4, approximately 330 kb downstream of the Siglec9 gene. Further, we have identified a novel Siglec8 variant, named Siglec8-Long (Siglec8-L), which differs in its last two exons from the previously published mRNA sequence of Siglec8 (GenBank Accession No. AF195092). Both Siglec8 and Siglec8-L are comprised of seven exons, of which the first five are identical, followed by marked differences in exon usage and mRNA splicing. The 499 amino acid protein encoded by the Siglec8-L open reading frame has a molecular weight of 54 kDa. Like the other members of the CD33-like subgroup of Siglecs, except for the previously published Siglec8, Siglec8-L also contains the two tyrosine-based motifs that have been found to recruit both SH2 domain-containing tyrosine and inositol phosphatases. 相似文献
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啤酒多倍体酵母菌原生质体已成功地与单倍体原生质体进行融合。经细胞壁再生后,稳定的融合重组体被分离出来。这些融合体的基因分析表明,融合体中含有双亲的基因型。孢子形成良好,且每个子囊中含有四个孢子,每个孢子确实是二倍体。这样原生质体融合就提供了一个对啤酒酿造酵母进行遗传分析的方法。但是如果没有一个方便的杂交技术,这个方法将是很困难的。 相似文献
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Amitava Dasgupta Omar Yousef 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》1998,705(2):1289
Mexiletine is an antiarrhythmic agent used in the treatment of ventricular arrhythmia. The drug has a narrow therapeutic window which necessitates monitoring its serum concentrations. We describe a gas chromatographic–mass spectrometric analysis of mexiletine using selected ion monitoring. Mexiletine was extracted from alkaline serum with dichloromethane and then derivatized with perfluorooctanoyl chloride. The derivatization reaction was completed in 20 min at 80°C. We used N-propylamphetamine as the internal standard. The ions monitored were m/z 122, 454 and 575 for the derivatized mexiletine and m/z 91, 118, 440 and 452 for the derivatized internal standard. The within-run precision at a serum mexiletine concentration of 1 mg/l was 1.9% (mean=0.98, S.D.=0.019 mg/l, n=7) and the between-run precision was 2.5% (mean=0.99, S.D.=0.025 mg/l, n=7). The assay was linear for serum mexiletine concentrations of 0.2 to 4 mg/l. The detection limit was 0.1 mg/l. The average recoveries of mexiletine and the internal standard were 80% and 84%, respectively at a mexiletine concentration of 1 mg/l. There was no carry over problem in our assay. We observed a good correlation between mexiletine concentrations measured by a reference laboratory (GC) and by our new GC–MS assay. 相似文献
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