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Biomedical subjects

M Shi

Publications and source records attributed to M Shi.

At least 109 records · Page 6Linked to original sources

[Studies on the early serodiagnosis of leptospirosis by dot-ELISA].

Thirty serum samples of patients with early leptospirosis from whom cultures of leptospira were positive were tested by dot-enzyme linked immunosorbent assay (dot-ELISA) and microscopical agglutination test (MAT). The results showed that the positive rate of dot-ELISA (40%) was higher than that of MAT (13.3%). One-hundred and ninety-eight serum samples from patients with clinical diagnosis of early leptospirosis were tested by dot-ELISA, MAT and blood culture. The results showed that the positive rate of dot-ELISA (64.6%) was higher than that of blood culture (15.2%) and MAT (14.1%). The longer the time of the illness, the lower the positive rate of the blood culture. However, the positive rate of dot-ELISA was stable in different stages of the illness.

Agglutination Tests↗

Growth of lactobacilli, Staphylococcus aureus and Escherichia coli in normal and mastitic milk and whey.

The growth of three lactobacilli (Lactobacillus acidophilus, L. bulgaricus and L. casei), Staphylococcus aureus and Escherichia coli was followed in normal and mastitic milk and whey using the standard plate count method. L. acidophilus, L. bulgaricus 6032 and L. casei 6028 grew well in normal milk, but had decreased growth in mastitic milk if not pre-adapted in mastitic whey. S. aureus 26003 and E. coli 44102 showed enhanced growth in mastitic milk as compared with their growth in normal milk. These mastitis pathogens grew faster than the lactobacilli in both the normal milk and the mastitic milk. Among the lactobacilli, L. acidophilus and L. bulgaricus grew faster than L. casei in both types of milk samples. All the bacteria tested grew well in the normal and mastitic whey samples. However, they seemed to have enhanced growth in mastitic whey with the exception of L. casei. Pre-adaptation of the bacteria in mastitic whey in subculture markedly improved the growth of both pathogenic and non-pathogenic bacteria in mastitic milk. All the bacteria showed decreased replication in mastitic milk as compared with mastitic whey.

Animals↗

Extracellular glutathione and gamma-glutamyl transpeptidase prevent H2O2-induced injury by 2,3-dimethoxy-1,4-naphthoquinone.

Quinones are intracellular H2O2 generators that have been used extensively in models of oxidant injury; however, their toxicity is mediated partially through direct conjugation with glutathione (GSH). To focus upon the action of extracellular GSH in preventing H2O2-mediated toxicity, we used 2,3-dimethoxy-1,4-naphthoquinone (DMNQ), which cannot conjugate with GSH but does continuously generate H2O2 through redox cycling. A eukaryotic cell line (3T3-GGT) stably overexpressing gamma-glutamyl transpeptidase (GGT) activity was used to study the role of GGT in utilizing extracellular GSH against DMNQ-induced oxidative stress. DMNQ (0 to 150 microM) caused a dose-dependent decrease of intracellular GSH and adenosine 5'-triphosphate (ATP) in both control and 3T3-GGT cells. The rate of H2O2 escape into the medium during DMNQ exposure was also the same in both cell lines. Administration of GSH helped to maintain intracellular GSH and supported resistance to ATP depletion caused by DMNQ in 3T3-GGT cells but not in control cells. The protective effect of extracellular GSH was completely prevented by acivicin, an inhibitor of GGT. Our results suggest that GGT-dependent breakdown of extracellular GSH for subsequent intracellular resynthesis helped to maintain cellular GSH levels and increased cellular resistance against DMNQ-induced oxidative injury.

3T3 Cells↗

Studies on antibiotic 230 as a molluscicide.

In the course of studying molluscicidal effects of microorganisms, a microorganism belonging to Streptomycetaceae, Streptomyces griseolus (Strain 230) was isolated from soil and a certain microbial ingredient proved to have a molluscicidal activity. The effective substance was named antibiotic 230. As a result of several investigations on the antibiotic, the following chemical features were made clear. The chemical substance was an indol-carbazole-heterocyclic compound, the molecular weight 446 and the molecular formula C28H26N4O3. The antibiotic demonstrated a molluscicidal effect against Oncomelania snails and their eggs both in the laboratory and in the field. The compound had a wide bacteriostasis spectrum and a slight toxicity to fish in addition to the above, but it was non-toxic to plants.

Animals↗

A fundus photographic method with narrow spectral band luminance.

We perfected the narrow spectral band fundus photographic system using interference filters at the wavelengths of 417, 478, 500, 530, 547, 570, 589, 607, 628 and 648 nm. Tests about the light penetration of filters and exposure of various brand films were made on this system. Studies of the contrast of fundal tissues and structures under the different narrow spectral band light were made on 43 Chinese fellow eyes. The results indicates that the interference filters of 570 nm have the highest light penetration. Kodak and Gongyuan films (make in China) are the optimal ones. Narrow spectral band fundus photography can eliminate the chromatic aberration and therefore improve the documentation of fundal details, enhance the contrast of pictures as compared with routine white light fundus photography.

Chromosome Aberrations↗

Transfection with gamma-glutamyl transpeptidase enhances recovery from glutathione depletion using extracellular glutathione.

Glutathione (L-gamma-glutamyl-L-cysteinylglycine) is an important constituent of the antioxidant and detoxifying mechanisms of cells. The plasma membrane bound enzyme, gamma-glutamyl transpeptidase (GGT), catalyzes the first step in the degradation of extracellular glutathione, the components of which are then used for de novo glutathione synthesis. We tested the hypothesis that an increase in GGT activity would enhance the utilization of extracellular glutathione by cells challenged with a glutathione-depleting agent. A eukaryotic system stably overexpressing GGT (nearly 200-fold) was developed by transfection of NIH-3T3 fibroblasts with a human placental GGT cDNA. These cells and controls were incubated for 30 min with 1 mM diethyl maleate, which caused approximately 80% intracellular glutathione depletion. Glutathione was added to the medium and cells were allowed to resynthesize intracellular glutathione. The transfected cells used extracellular glutathione much more efficiently than controls in terms of both the concentration dependence and the rate of glutathione resynthesis. Serine-borate, a competitive inhibitor of GGT, blocked the restoration of intracellular glutathione. The results support the hypothesis that the increase in GGT activity that occurs in some toxicologic or pathologic conditions could provide protection against glutathione depletion.

Animals↗

Exogenous glutathione protects endothelial cells from menadione toxicity.

Administration of menadione (vitamin K3; 2-methyl-1,4-naphthoquinone) to cultured bovine pulmonary artery endothelial cells caused a dose- and time-dependent depletion of cellular ATP and depletion of intracellular glutathione (GSH). The toxicity of menadione was correlated with an increase of menadione-glutathione conjugate in the medium and with an increase in H2O2 generation. Recent studies have suggested that GSH may be useful as a pharmacological agent to prevent oxidant injury. In the present study, treatment with exogenous GSH prevented the loss of cellular GSH and ATP caused by menadione. Protection by extracellular GSH involved two mechanisms. In one mechanism, extracellular GSH was degraded by gamma-glutamyl transpeptidase, producing substrates for subsequent intracellular de novo GSH synthesis. We found that the protective effect of extracellular GSH was decreased by inhibiting gamma-glutamyl transpeptidase. In the other mechanism, GSH reacted in the medium with menadione to form a conjugate. Although formation of the menadione-glutathione conjugate within cells may contribute to menadione toxicity, addition of menadione-glutathione conjugate to the medium was found to be nontoxic to endothelial cells. Thus exogenous GSH protected endothelial cells by two mechanisms: maintenance of intracellular GSH and prevention of menadione entrance into cells.

Adenosine Triphosphate↗

Different patterns of rDNA organization at interphase in nuclei of wheat and rye.

The physical location of the rDNA repeating units (25 S, 18 S and 5.8 S rRNA genes and the intergenic spacer sequences) was investigated in rye (Secale cereale L.) and wheat (Triticum aestivum L.) root tip meristematic cells by in situ hybridization using light and electron microscopy. The rDNA sequences are organized differently in the two related and intercrossable species. In rye (2n = 14, one pair of chromosomes with nucleolar organizing regions, NORs), two condensed blocks of rDNA-containing chromatin occurred in each interphase nucleus. The blocks were associated with the periphery of nucleoli and a single-labelled, decondensed rDNA fibre extended into the nucleolus from the block. We term this expression pattern terminal decondensation. In wheat (2n = 6x = 42, five pairs of chromosomes with NORs), inactive condensed labelled chromatin was found unassociated with nucleoli. Active NORs had some condensed rDNA associated with the nucleolar periphery, but, in contrast to rye, condensed rDNA was also found within the nucleolus. The condensed labelled rDNA in wheat nucleoli was visible as fluorescent foci in the light microscope and labelled condensed chromatin in the electron microscope. Its absence in rye shows that condensed rDNA need not be present in active plant nucleoli. Diffuse labelled sites of rDNA, likely to represent actively transcribed rDNA, were found in both rye and wheat. Active rDNA loci in wheat have many expressed segments separated by unexpressed, condensed, rDNA-fragmented decondensation-while each locus in rye has a single, unexpressed perinucleolar condensed block of rRNA genes. Thus the positions of actively transcribed genes within the tandem arrays of rDNA at each locus are fundamentally different in the two cereals. The NOR chromosome appeared to extend through the nucleolus, and active rDNA sequences did not loop out from chromatin into the nucleolus as is frequently described in nucleolar models.

Cell Nucleolus↗

[A quick method for the diagnosis of leptospirosis].

Seventy-nine sero-samples from patients with leptospirosis were tested by dot-ELISA and microscopical agglutination test (MAT). Results showed that the accordance rate was 96.19%. 20 sero-samples obtained from healthy people, 4 from hepatitis B(HBV) and 4 from epidemic hemorrhage fever (EHF) were negative by dot-ELISA. We believe dot-ELISA is a simple, rapid method which can be used to diagnose those patients with leptospirosis.

Antigens, Bacterial↗