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Biomedical subjects

M. Zhang

Publications and source records attributed to M. Zhang.

4 recordsLinked to original sources

Rebound hepatitis following withdrawal of immunosuppressive therapy in patients with chronic Hepatitis B viral infections.

Background: Rebound hepatitis is a potentially life-threatening complication of withdrawal from immunosuppressive therapy in patients with chronic Hepatitis B viral (HBV) infections. Objectives: To document the incidence of rebound hepatitis and determine whether the hepatitis is associated with serologic evidence of immunological rebound or the appearance of specific mutations in the HBV genome. Methods: Serum cytokines (IL-6, IL-10, TNF-alpha and INF-gamma) were documented by enzyme linked immunoassays and previously described HBV mutants (surface, core, pre-core and basal core promoter) by signal probe hybridization analysis in chronic HBV carriers treated with either 6 weeks of prednisone followed by 6 weeks of acyclovir (PR/AC, n = 20) or placebo/placebo (PL/PL, n = 20). Results: Rebound hepatitis (serum ALT > 2X baseline) occurred in 6/20 (30%) PR/AC patients versus 2/20 (10%) PL/PL recipients (P = 0.24). Serum cytokine levels were similar in those who developed rebound hepatitis compared to those who did not. HBV mutants were absent prior to and during treatment but developed in the follow-up period in three patients. All three patients were PR/AC recipients and in each case, the HBV mutation was in the basal core promoter gene. In two of the three patients, the mutant appeared just prior to the onset of rebound hepatitis while in the third, rebound hepatitis did not occur. Conclusions: The results of this study indicate an association exists between some cases of rebound hepatitis and the development of HBV mutants.

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A Competitive Enzyme-Linked Immunosorbent Assay to Quantify Acetaldehyde-Protein Adducts That Accumulate in Dry Seeds during Aging.

A competitive enzyme-linked immunosorbent assay (ELISA) was developed to quantify endogenous acetaldehyde-protein adducts (APAs) produced in plant seeds at low acetaldehyde concentrations without exogenous reducing agents. The key point of this technique is the use of a gelatin-acetaldehyde adduct, which is synthesized under 1 mM acetaldehyde and 10 mM NaCNBH3, to pre-coat plate wells to obtain the proper binding parameters for the quantification of APA in seed proteins. Compared with the traditional, direct ELISA method, the competitive one has higher sensitivity and less background. Using competitive ELISA, we determined the accumulation of endogenous APAs in seeds in relation to the loss of seed viability. Lettuce seeds were exposed to 2 mM gaseous acetaldehyde during storage for 30 or 45 d; the relative humidity and temperature of storage were studied independently. Viability decreased only in acetaldehyde-treated seeds, as either the temperature or the relative humidity increased. A loss in viability was accompanied by an increase in the accumulation of APA. The APA content also increased as viability decreased in five species of seeds, which were aged naturally without exposure to acetaldehyde. It is suggested that the modification of functional seed proteins with endogenously evolved acetaldehyde may be an important cause of seed aging.

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Cell-Specific Expression of Mitochondrial Transcripts in Maize Seedlings.

Although mitochondria are thought to assume crucial and possibly novel physiological functions during male gametogenesis, it is not known to what extent mitochondrial function is necessary for other aspects of plant development or to what degree the expression of plant mitochondrial genes is subject to cell-specific regulation, particularly during vegetative growth. We have used in situ hybridization to show that extensive differences exist in the levels of mitochondrial RNAs (mtRNAs) among different tissues and among different individual cell types within the same organ of maize seedlings. The expression of all examined mtRNAs is enhanced in vascular bundles, particularly in procambium- and xylem-forming cells. Mitochondrial transcript levels correlated highly with cell division activity. For example, in roots, the transcripts are abundant in the dividing cells of the meristem but drop to very low levels in the nondividing cells of the root cap and the meristem quiescent center. By comparison, levels of functional mitochondria, as assessed by rhodamine-123 fluorescence, did not vary greatly among the same group of cells. In shoots, in situ hybridization and blot hybridization revealed differences in the patterns of localization among different mtRNAs. The results indicate that during vegetative growth, mitochondrial gene expression at the transcript level is subject to an unexpected degree of cell-specific regulation and that different controls may operate on different trancripts.

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Isolation of a 90-kD Microtubule-Associated Protein from Tobacco Membranes.

The organization and function of microtubules in plant cells are important in key developmental events, including the regulation of directional cellulose deposition. Bridges connecting microtubules to each other and to membranes and other organelles have been documented by electron microscopy; however, the biochemical and molecular nature of these linkages is not known. We have partitioned proteins from a suspension culture of tobacco into cytosolic and membrane fractions, solubilized the membrane fraction with a zwitterionic detergent, and then used affinity chromatography and salt elution to isolate tubulin binding proteins. Dark-field microscopy of in vitro-assembled microtubules showed that the eluted proteins from both fractions induce microtubule bundling and, in the presence of purified tubulin, promote microtubule elongation. Gel electrophoresis of the eluted proteins revealed two distinct sets of polypeptides. Those in the membrane eluate included unique bands with apparent molecular masses of 98, 90, and 75 kD in addition to bands present in both eluates. The cytosolic eluate, in contrast, typically included relatively smaller proteins. The eluted proteins also bound to taxol-stabilized microtubules. Initial immunological characterization using monoclonal antibodies raised against the 90-kD polypeptide showed that it is colocalized in situ with cortical microtubules in tobacco protoplast ghosts.

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