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Biomedical subjects

X Ma

Publications and source records attributed to X Ma.

At least 163 records · Page 9Linked to original sources

[A preliminary study on placenta hematopoiesis].

OBJECTIVE: To study the role of placenta on fetal hematopoiesis during embryo ontogeny, so as to find a new source of hematopoietic stem/progenitor cells (HSC/HPC) for clinical transplantation. METHODS: Cord blood was collected separately from cord vein and artery. CD(34)(+) cells were detected by FACS, CFU-GM semisolid agar culture, and hematopoietic growth factors (HGFs) by ELISA. The results of HE stain and CD(34) McAb immunohistochemistry stain of placenta chorionic villi were investigated. RESULTS: The CFU-GM yields and the percentage of CD(34)(+) and CD(34)(+)/CD(38)(minus sign) cells in cord vein were higher than that in artery. The cord vein contained larger amount of hematopoietic stimulating factors and similar level of hematopoietic inhibitory factors as compared with that in artery. Blood island, reticular cells and scattered CD(34)(+) cells were found in the mesenchyme of placenta chorionic villi. CONCLUSION: The placenta might be an another hematopoietic organ in ontogeny. It could be applied to clinical hematopoietic cell transplantation.

Antigens, CD34↗

[The development of immune-mediated aplastic anemia in mice can be blocked by cimetidine].

OBJECTIVE: To investigate the effect of H(2) receptor antagonist cimetidine on the development of immune-mediated aplastic anemia (AA) in mice. METHODS: The immune-mediated aplastic anemia mice model was induced by irradiation and half-matched allogeneic lymphocytes transfusion (ALT). The mice were divided into 3 groups: the irradiation alone control group, the irradiation + ALT group (AA group) and the irradiation + ALT + cimetidine group. In cimetidine group, each mouse was intraperitoneally injected cimetidine at different doses once a day for 8 days. On day 14, the bone marrow histology was examined. RESULTS: In 0.5 mg, 1.0 mg and 2.0 mg x (10g)(-1) x d(-1) cimetidine groups, the percentages of hematopoietic tissue volume in bone marrow were (46.58 +/- 20.41)%, (51.88 +/- 24.94)% and (59.12 +/- 32.48)%, respectively, and all much higher than that in AA group [(19.99 +/- 10.98)%, P < 0.01], but were not different from that in irradiated control group [(53.81 +/- 31.72)%, P > 0.05]. CONCLUSION: The development of immune-mediated aplastic anemia in irradiated mice by half-matched allogeneic lymphocytes transfusion was blocked by H(2) receptor antagonist cimetidine.

Anemia, Aplastic↗

[Fibronectin in adhesion, spreading and proliferation of mandibular condylar cartilage cells on cytodex-3 microcarrier].

OBJECTIVE: The purpose of this study was to investigate the effects of exogenous fibronectin on the attachment and growth of mandibular condylar cartilage (MCC) cells on DEAE-dextran micro-carrier. METHODS: MCC cells were harvested from newborn New Zealand white rabbits by sequential digestion with trypsin and collagenase. They were grown on the 20 mg/L fibronectin-coated and uncoated cytodex-3 micro-carrier. Samples were collected after 1, 3, 5, 7, 9, 11 days. The kinetics of adhesion and growth were observed with phase contrast microscope and environmental scanning electronic microscope (ESEM) and quantified by 0.1% crystal violet nuclear extrusion method. RESULTS: MCC cells could rapidly attach and spread onto the fibronectin-coated cytodex-3, and nearly 60 percent cells attached to the micro-carrier within 2 hours. Spreading cells were flat and lowly refractile observed under phase contrast microscope. While the attachment and spreading of the cells in the untreated group were slow, and only 36 percent cells attached to the uncoated micro-carrier. However, most cells attached to the micro-carrier in both groups after 24 hours. The MCC cells attaching to FN-coated cytodex-3 observed under ESEM were flatter and adhered tightly with more processes (pseudopodia) stretching out from cytoplasm. In contrast, cells on untreated cytodex-3 remained regularly round even 24 hours after being plated. Meanwhile, there was an accelerated growth rate of the MCC cells on the fibronectin treated cytodex-3. The cell density in the FN treated group was higher than that of the untreated group at the end of the culture. CONCLUSION: Fibronectin, one major glycoprotein of extracellular matrix, plays an important role in cell attachment and spreading. The better understanding of the extracellular matrix will be helpful in selecting the optimal substrate for cell growth in vitro.

Adhesiveness↗

[Purification and identification of siderophore from Aeromonas hydrophila].

Siderophore of Aeromonas hydrophila(Ah) J-1 was purified from culture supernatant by polyamide column chromatography, eluted by double-distilled water, ethyl acetate precipitated, lyophilized, then the white powder was collected, and demonstrated by CAS and Arnow assay. The siderophore was phenolate, composed of 2,3-dihydroxybenzoic acid (2,3-DHB), lysine, glycine and tryptophan by HPLC. Being cultured iniron-deficient medium, the purified siderophore could stimulated the growth of Ah N9a which siderophore production is poorly positive and reverse the inhibition growth of EDDA. It suggested that siderophore could promote growth of bacteria and might play an important role in bacteria infection.

Aeromonas hydrophila↗

[Electrophoresis identification of four kinds of seed-fruit Chinese drugs and its adulterants].

OBJECTIVE: To identify four kinds of seed-fruit Chinese drugs and its adulterants by electrophoresis and to research the dyeing effect of Coomassie Brilliant Blue G-250. METHOD: Gel electrophoresis of soluble protein. RESULTS: The electrophoretograms of the four kinds of Chinese drugs and its adulterants are remarkably different. CONCLUSION: The electrophoretograms can be used to differentiate the four kinds of Chinese drugs and its adulterants. Coomassie Brilliant Blue G-250 can be used in the electrophoresis identification.

Canavalia↗

[Elimination of noise in ICP-AES signals using wavelet transform].

Wavelet transform was applied to the processing of noisy signal in ICP-AES. The noise was successfully eliminated and smooth spectra were obtained. The ratios of signal-to-noise were enhanced, the accuracies of analytical results and the detection limits were improved.

English Abstract↗

[Distinctive infrared spectral features in human breast cancer].

Substantial differences were found in the spectral properties of surgical samples from 20 women patients with histologically normal and cancerous breast tissue. The most striking changes in the spectra were observed in the symmetric and asymmetric stretching bands of phosphodiester groups, which shifted to short wavenumber about 3 cm-1 in nu s PO2-, and to long wavenumber about 2 cm-1 in nu s PO2-. The ratio of A1,173/A1,163 increased and that of A1,025/A1,082 decreased, the intensity of symmetric and asymmetric stretching bands of CH3 decreased and those of CH2 increased in all of breast cancer tissues. Our findings indicated that in breast cancer tissue, the degree of hydrogen-bonding of oxygen atoms in the backbone of nucleic acid increased; the content of glycogen decreased; the degree of hydrogen-bonding of OH groups in serine, tyrosine, and threonine residues of cell proteins decreased; and also there were changes in the packing and the conformational structure of the methylene chains of membrane lipids.

Breast Neoplasms↗

Electrophysiological evidence for a hyperpolarizing, galanin (1-15)-selective receptor on hippocampal CA3 pyramidal neurons.

The effects of the 29-amino acid neuropeptide galanin [GAL (1-29)], GAL(1-15), GAL(1-16), and the GAL subtype 2 receptor agonist D-tryptophan(2)-GAL(1-29) were studied in the dorsal hippocampus in vitro with intracellular recording techniques. GAL(1-15) induced, in the presence of tetrodotoxin, a dose-dependent hyperpolarization in hippocampal CA3 neurons. Most of the GAL(1-15)-sensitive neurons did not respond to GAL(1-29), GAL(1-16), or D-tryptophan(2)-GAL(1-29). These results indicate the presence of a distinct, yet-to-be cloned GAL(1-15)-selective receptor on CA3 neurons in the dorsal hippocampus.

Animals↗

Component specificity for the thylakoidal Sec and Delta pH-dependent protein transport pathways.

Prokaryotes and prokaryote-derived thylakoid membranes of chloroplasts share multiple, evolutionarily conserved pathways for protein export. These include the Sec, signal recognition particle (SRP), and Delta pH/Tat systems. Little is known regarding the thylakoid membrane components involved in these pathways. We isolated a cDNA clone to a novel component of the Delta pH pathway, Tha4, and prepared antibodies against pea Tha4, against maize Hcf106, a protein implicated in Delta pH pathway transport by genetic studies, and against cpSecY, the thylakoid homologue of the bacterial SecY translocon protein. These components were localized to the nonappressed thylakoid membranes. Tha4 and Hcf106 were present in approximately 10-fold excess over active translocation sites. Antibodies to either Tha4 or Hcf106 inhibited translocation of four known Delta pH pathway substrate proteins, but not of Sec pathway or SRP pathway substrates. This suggests that Tha4 and Hcf106 operate either in series or as subunits of a heteromultimeric complex. cpSecY antibodies inhibited translocation of Sec pathway substrates but not of Delta pH or SRP pathway substrates. These studies provide the first biochemical evidence that Tha4 and Hcf106 are specific components of the Delta pH pathway and provide one line of evidence that cpSecY is used specifically by the Sec pathway.

Amino Acid Sequence↗

Nucleotide exchange in genomic DNA of rat hepatocytes using RNA/DNA oligonucleotides. Targeted delivery of liposomes and polyethyleneimine to the asialoglycoprotein receptor.

Chimeric RNA/DNA oligonucleotides have been shown to promote single nucleotide exchange in genomic DNA. A chimeric molecule was designed to introduce an A to C nucleotide conversion at the Ser365 position of the rat factor IX gene. The oligonucleotides were encapsulated in positive, neutral, and negatively charged liposomes containing galactocerebroside or complexed with lactosylated polyethyleneimine. The formulations were evaluated for stability and efficiency in targeting hepatocytes via the asialoglycoprotein receptor. Physical characterization and electron microscopy revealed that the oligonucleotides were efficiently encapsulated within the liposomes, with the positive and negative formulations remaining stable for at least 1 month. Transfection efficiencies in isolated rat hepatocytes approached 100% with each of the formulations. However, the negative liposomes and 25-kDa lactosylated polyethyleneimine provided the most intense nuclear fluorescence with the fluorescein-labeled oligonucleotides. The lactosylated polyethyleneimine and the three different liposomal formulations resulted in A to C conversion efficiencies of 19-24%. In addition, lactosylated polyethyleneimine was also highly effective in transfecting plasmid DNA into isolated hepatocytes. The results suggest that both the liposomal and polyethyleneimine formulations are simple to prepare and stable and give reliable, reproducible results. They provide efficient delivery systems to hepatocytes for the introduction or repair of genetic mutations by the chimeric RNA/DNA oligonucleotides.

Animals↗

Retinoids inhibit interleukin-12 production in macrophages through physical associations of retinoid X receptor and NFkappaB.

Lipopolysaccharide (LPS) increases the production of interleukin-12 (IL-12) from mouse macrophages via a kappaB site within the IL-12 p40 promoter. In this study, we found that retinoids inhibit this LPS-stimulated production of IL-12 in a dose-dependent manner. The NFkappaB components p50 and p65 bound retinoid X receptor (RXR) in a ligand-independent manner in vitro, and the interaction interfaces involved the p50 residues 1-245, the p65 residues 194-441, and the N-terminal A/B/C domains of RXR. Activation of macrophages by LPS resulted in markedly enhanced binding activities to the kappaB site, which significantly decreased upon addition of retinoids, as demonstrated by the electrophoretic mobility shift assays. In cotransfections of CV-1 and HeLa cells, RXR also inhibited the NFkappaB transactivation in a ligand-dependent manner, whereas a mutant RXR lacking the AF2 transactivation domain, which serves as ligand-dependent binding sites for transcription integrators SRC-1 and p300, was without any effect. In addition, coexpression of increasing amounts of SRC-1 or p300 relieved the retinoid-mediated inhibition of the NFkappaB transactivation. From these results, we propose that retinoid-mediated suppression of the IL-12 production from LPS-activated macrophages may involve both inhibition of the NFkappaB-DNA interactions and competitive recruitment of transcription integrators between NFkappaB and RXR.

Animals↗

Contributions to gene activation by multiple functions of Bicoid.

Bicoid is a Drosophila morphogenetic protein required for the development of anterior structures in the embryo. To gain a better understanding of how Bicoid works as a transcriptional activator, we systematically analysed various functions of Bicoid required for gene activation. We provide evidence suggesting that Bicoid is an intrinsically weak activator. First, our biochemical experiments demonstrate that the Bicoid-DNA complexes are very unstable, suggesting a weak DNA-binding function of Bicoid. This idea is further supported by our experiments demonstrating that the same number of LexA-Bicoid fusion molecules can activate transcription more effectively from LexA sites than from Bicoid sites. Secondly, we demonstrate that transcriptional activation by the weak activator Bicoid is readily influenced by the local enhancer environment. These influences are decreased when the Bicoid function is enforced by attaching to it either a known dimerization domain or the strong activation domain VP16. VP16 can also compensate for the loss of some Bicoid sites in an enhancer element. Our experiments demonstrate that the outcome of transcriptional activation by Bicoid is determined by multiple weak functions that are interconnected, a finding that can further help us to understand how this morphogenetic protein achieves its molecular functions.

Base Sequence↗

Downregulation of interleukin-12 (IL-12) responsiveness in human T cells by transforming growth factor-beta: relationship with IL-12 signaling.

Interleukin-12 (IL-12) is a cytokine that plays a central role in the control of cell-mediated immunity. We have previously shown that transforming growth factor-beta1 (TGF-beta) inhibitory effects on human primary allogeneic cytotoxicity and proliferative responses interfere with IL-12 pathway. The present study was undertaken to further elucidate the biochemical basis of the functional interaction between these two cytokines and to define the site of TGF-beta action on the signaling pathway activated by IL-12. Our data indicate that TGF-beta induced an inhibition of interferon-gamma (IFN-gamma) production without affecting the IL-12Rbeta1 and IL-12Rbeta2 subunits mRNA expression by activated T cells. We further show that TGF-beta has a significant inhibitory effect on the early signal transduction events following interaction of IL-12 with its receptor on activated T cells, resulting in the inhibition of both JAK2 and Tyk2 phosphorylation. In addition, TGF-beta was found to significantly inhibit IL-12-induced phosphorylation of the STAT4 transcription factor. Electrophoretic mobility shift assay indicated that TGF-beta induced a decrease in IL-12-induced STAT4 DNA binding activity in T lymphocytes. This study suggests that TGF-beta influences IL-12 responsiveness at least in part by inhibiting early signaling events essential to gene induction in IL-12-activated T cells.

Cells, Cultured↗

Suppression of transforming growth factor-beta isoforms, TGF-beta receptor type II, and myofibroblast differentiation in cultured human corneal and limbal fibroblasts by amniotic membrane matrix.

Down-regulation of the transforming growth factor-beta (TGF-beta) signaling system is a strategy for preventing scarring during wound healing. Human corneal and limbal fibroblasts were cultured on the stromal matrix side of preserved human amniotic membrane. The levels of TGF-beta1, beta2, and beta3 and TGF-beta type II receptor transcripts and TGF-beta1 and beta2 proteins were suppressed as early as 8 hr and more dramatically at 24 hr after contact with an amniotic membrane. This suppressive effect was accompanied by down-regulation of alpha-smooth muscle actin, EDA spliced form of fibronectin, and integrin alpha5. It persisted even when challenged by 10 ng/ml TGF-beta1. In contrast with their counterparts grown on plastic or in collagen gel, such suppression in amniotic membrane cultures remained complete after 1 week of culturing. Cells cultured on amniotic membrane showed significantly reduced [3H]-thymidine incorporation compared to cells cultured on plastic and displayed no DNA fragmentation. These results reveal a novel mechanism by which the TGF-beta signaling system, DNA synthesis, and subsequent myofibroblast differentiation can be suppressed by an amnionic membrane matrix. This action explains in part the antiscarring results of amniotic membrane transplantation used for ocular surface reconstruction, a surgical technique applicable to other subspecialties. It may also explain in part why fetal wound healing is scarless.

Adult↗

Repeat exposure to incremental doses of acetaminophen provides protection against acetaminophen-induced lethality in mice: an explanation for high acetaminophen dosage in humans without hepatic injury.

In studies designed to simulate a clinical observation in which an individual became tolerant to normally lethal doses of acetaminophen (APAP), mice were pretreated with increasing doses of APAP for 8 days and challenged on day 9 with normally supralethal doses of APAP. These animals developed minimal hepatotoxicity after a challenge dose with a fourfold increase in LD50 to 1,350 mg/kg. The pretreatment regimen resulted in hepatic changes including: centrilobular localization of 3-(cysteine-S-yl)APAP protein adducts, selective down-regulation of cytochrome P4502E1 (CYP2E1) and CYP1A2 that produced the toxic metabolite, N-acetyl-p-benzoquinone imine, higher levels of reduced glutathione (GSH), centrilobular inflammation, and a fourfold increase in hepatocellular proliferation. The protection against the lethal APAP doses afforded by pretreatment is secondary to these changes and to the associated regional shift in the bioactivation of the APAP challenge dose from centrilobular to periportal regions where CYP2E1 is not found, protective GSH is more abundant, and where cell-proliferative responses are better able to sustain repair. This shift in APAP bioactivation results in less-intense covalent binding that is more diffuse and spread uniformly throughout the hepatic lobe, most likely contributing to protection by delaying the early onset of liver injury that has been generally associated with centrilobular localization of the adducts. Intervention of APAP pretreatment-induced cell division in mice with colchicine left them resistant to a 500-mg/kg (normally lethal) dose of APAP, but unable to survive a 1,000-mg/kg APAP challenge dose. The data demonstrate multiple mechanistic components to the protection afforded by APAP pretreatment. Whereas metabolic and physiological changes not dependent on cell proliferation are adequate to protect against 500 mg/kg APAP, these changes plus a potentiated cell-proliferative response are necessary for protection against the supralethal 1,000-mg/kg APAP dose. Furthermore, the data document an uncoupling of the traditional association between covalent binding and toxicity, and suggest that the assessment of toxicity following repeated or chronic APAP exposure must consider altered drug interactions and parameters besides those historically used to assess acute APAP overdose.

Acetaminophen↗

Gender differences in medium-chain dicarboxylic aciduria in alcoholic men and women.

PURPOSE: Women appear to be more vulnerable to developing alcoholic liver disease than men. In rats, we previously found that the response of certain pathways of fatty acid metabolism to alcohol feeding was less efficient in females than in males, resulting in striking accumulation of fatty acids in the liver of the female rats. We sought to determine whether similar differences occurred in humans. PATIENTS AND METHODS: Urinary excretion of medium chain (C6-C10) dicarboxylic acids (final products of fatty acid omega-oxidation) was determined in 40 recently drinking alcoholic subjects (24 men and 16 women) and 21 nonalcoholic subjects (12 men and nine women). Sebacic (C10), suberic (C8), and adipic (C6) acids were measured in urine by gas chromatography/mass spectrometry, and their excretion was expressed per mg of creatinine. RESULTS: In nonalcoholic subjects, there was no gender difference in dicarboxylic aciduria. By contrast, alcoholic men (but not alcoholic women) developed dicarboxylic hyperaciduria. Alcoholic men had a marked increase in adipic acid excretion and in the adipic/sebacic (C6/C10) ratio (an index of peroxisomal beta-oxidation), whereas the values in alcoholic women did not differ from those in nonalcoholic women. CONCLUSIONS: The lack of response in alcoholic women could contribute to an aggravation of liver injury by promoting deleterious accumulation of fatty acids.

Adult↗