Search PubMed⌕ Search

Biomedical subjects

Y Hu

Publications and source records attributed to Y Hu.

At least 523 records · Page 29Linked to original sources

[A study on histochemistry and electron microscopy of corneal nerves in experimental diabetic rabbits].

OBJECTIVE: To observe the changes of corneal nerves in diabetes mellitus. METHODS: Alloxan-induced diabetes in rabbits was used as the experimental model. Histochemical techniques and electron microscopy were applied to examine the corneal nerves. RESULTS: In the diabetic rabbits, from 6 weeks, the density of nerve plexus became markedly sparser, the fibers thinner and the activity of nerves lower than those of the control group. Ultrastructural changes showed swelling of axons, irregular distribution of fibril and degeneration of mitochondria of varying degree; with the progress of disease the above changes became more marked gradually. CONCLUSION: The abnormal corneal nerve changes might be a pathologic basis for the reduction in corneal sensitivity in diabetes.

Acetylcholinesterase↗

[Effect of bone xenograft transplantation on total T lymphocyte and its subset counts in mouse blood and spleen].

Fresh calf cancellous bone xenograft (FX), antigen free cancellous bone carrier (BC) and reconstituted bone xenograft (RBX) were inplanted in the thigh muscle pouches of Balb/c mice. Histological examinations were done at 7, 14 and 28 days postoperation, and indirect immunofluorescence was used to determine the positive counts of Thy1, L3T4, Lyt2, and Tac T lymphocyte of the blood and spleen at the same time, with the normal mouse lymphocytes as control. There was no significant difference between the BC implanted group and the normal (control) group, while the FX group had a significant increase rates of Thy1, L3T4 and Lyt2, especially of Tac lymphocytes. The RBX implanted group had no increase of Tac but increase of Thy1 and Lyt2. Th-Ts ratio decreased, and it was probably caused by bovine bone morphogenetic protein (bBMP) in the RBX. Histologically, intense immune rejection was noted in FX implanted group but not in the other two groups. Heterotopic ossification was noted in the RBX implanted group. FX increased intense immunologic rejection in the host, bat RBX did not, that might be due to the decrease of Th/Ts caused by bBMP. Tac lymphocyte count may indicate the immunologic rejection of bone xenograft transplantation.

Animals↗

[A comparative study of ethylene oxide and ionizing radiation for sterilizing bone grafts].

To find a good way for sterilization and disinfection of bone grafts, we compared the sterilization capacity of gaseous ethylene oxide (EO) and cobalt-60 gamma radiation. The bone chips were contaminated with 10(7) bacteria per milliliter of Staphylococcus aureus ATCC 25923, Bacillus subtilis globigii 8017 and Bacillus cereus 4001, then sterilized with various doses of gaseous EO or cobalt- 60 gamma radiation. The sterilization effect of EO was more stronger and faster than that of 60Co gamma radiation. The application of moderate doses of EO for sterilizing particulate bone grafts was recommended.

Animals↗

[Immunological comparison of differently treated allografts of bone].

The immunnologic rejection induced by differently treated allografts of bone was compared. Methods Fresh bone (FB), autolyzed antigen-free bone (AAA), bone matrix gelatin (BMG), demineralized bone matrix (DBM) were implanted into the muscle pouch of mice, then, the immunological tests and alkaline phosphatase assay were conducted. Results Allogeneic FB induced the highest level of serum antibody in the host and stimulated lymphocytes proliferation remarkably in vitro; in contrast, AAA, BMG and DBM caused low titer of antibody and inhibited lymphocytes reproduction in vitro. Conclusions. Immunological rejection restrained osteogenesis of the bone implant, whereas the osteoinductive substance of bone suppressed immunological reaction.

Alkaline Phosphatase↗

[Experience of banking osteoarticular and bone allografts].

Banking massive osteoarticular and other bone allografts were performed in our institute. For safeguarding recipients, the guidelines of donor selection were formulated and quality control was applied during procurement, preparation and storage of the grafts. Osteoarticular and bone grafts were harvested under aseptic or clean conditions, then, the bone and joint were cut into different shapes and sizes according to clinical needs, followed by removal of bone marrow and surface demineralization. In addition, sterilization with ethylene oxide or irradiation was carried out if necessary, at last the grafts were stored by freezing or freeze-drying. From October, 1991 to February, 1994, altogether 210 osteoarticular and bone grafts were used in 20 hospitals across the country, among them 120 grafts were implanted into 84 patients in our hospital with short-term satisfactory results.

Adult↗

[Influence of HPD on immunological functions in patients with nasopharyngeal carcinoma treated by radiotherapy].

Seventy-eight patients with nasopharyngeal carcinoma were equally divided into two groups: 39 patients were treated by HPD plus radiation and 39 patients by radiation alone. Immunological functions were evaluated in each patient before and after radiation. The results showed that (1) in patients treated by RPD and radiation, no statistical difference was observed on immunological functions before and after treatment; (2) in patients treatd by radiation alone, the immunological functions, including OKT3, OKT4, OKT4/OKT8 ratio and lymphocyte transformation, were significantly decreased after treatment. These findings indicate that the immunological functions in patients with nasopharyngeal carcinoma could be protected by HPD during radiotherapy.

Adolescent↗

Evidence for synaptotagmin as an inhibitory clamp on synaptic vesicle release in Aplysia neurons.

While previous studies have demonstrated that synaptotagmin plays an essential role in evoked neurotransmitter release, it has been difficult to determine whether it acts to facilitate or inhibit release. To address this question, we used acute genetic manipulations to alter the expression of synaptotagmin in Aplysia neurons. Transient overexpression of synaptotagmin in acutely dissected cholinergic neurons and in cultured glutaminergic neurons decreased the amplitude of the excitatory postsynaptic potential (EPSP) by 32% and 26%, respectively. In contrast, treatment of cultured presynaptic neurons with synaptotagmin antisense oligonucleotides increased the amplitude of the EPSP by 50-75%. These results are consistent with a role of synaptotagmin as an inhibitor of release.

Amino Acid Sequence↗

Neurosteroid analogues. 3. The synthesis and electrophysiological evaluation of benz[e]indene congeners of neuroactive steroids having the 5 beta-configuration.

A series of 7-(2-hydroxyethyl)benz[e]indene analogues of 3 alpha-hydroxy-5 beta-pregnan-20-one (7), a neuroactive steroid known to be a positive allosteric modulator of GABAA receptor function, was prepared. Electrophysiological measurements carried out on cultured rat hippocampal neurons were used to evaluate the modulatory effects of the analogues on GABAA receptor function. Analogues were tested for their ability to potentiate 1 microM GABA-mediated chloride currents and for their ability to directly gate chloride currents at this ligand-gated ion channel. Active analogues typically enhanced GABA-mediated currents at concentrations below those required to directly gate chloride currents. The dose-response relationships for potentiation of 1 microM GABA-mediated chloride currents were studied for [3S-(3 alpha, 3a alpha, 5a beta, 7 beta, 9a alpha, 9b beta)]-1- [dodecahydro-7-(2-hydroxyethyl)-3a-methyl-1H-benz[e]inden-3- yl]ethanone (3), steroid 7, 3 alpha-hydroxy-5 alpha-pregnan-20-one (5), and the analogous 7 alpha-(2-hydroxyethyl)benz[e]indene analogue of steroid 5 (compound 1). Compound 3 was the most active potentiator (EC50 = 0.017 microM) of GABA-mediated current. The direct gating actions of compound 3 were not observed at a concentration of 1 microM, but were observed at a concentration of 10 microM.

Animals↗

Induction mechanisms of cytochrome P450 2E1 in liver: interplay between ethanol treatment and starvation.

Chronic ethanol exposure causes marked induction of the ethanol-inducible cytochrome P450 (CYP) 2E1 isozyme in the centrilobular liver region, where alcoholic damage commonly is initiated. In contrast to most other CYP forms, which are ligand-activated at the transcriptional level, ethanol induction of CYP2E1 has been found to be post-translational. However, transcriptional activation of the CYP2E1 gene was recently described in fed animals maintained at very high ethanol levels. To further evaluate mechanisms of ethanol-mediated CYP2E1 induction we compared the effect of short-term heavy-ethanol treatment and fasting on CYP2E1 mRNA, protein and catalytic activity. High blood-ethanol levels (20-70 mM) were maintained for 3 days by regular alcohol intubations to fed or fasted rats. During this period, the amount of liver CYP2E1 apoprotein increased a maximum of 20-fold and catalytic activity 16-fold, both in fed and fasted animals, whereas starvation alone caused only a 4- to 5-fold increase. By comparison, the amount of CYP2E1 mRNA, as assayed both by Northern blot and slot blot, was significantly increased (5- to 6-fold) by ethanol only in fasted rats; this increase was smaller than that observed after fasting alone (8- to 9-fold). Analysis of cell lysates isolated from the periportal and perivenous region revealed that the increase in CYP2E1 mRNA by fasting occurred in the perivenous region. Thus no evidence was obtained for an increased pretranslational CYP2E1 gene expression as a consequence of the continuous presence of ethanol at intoxicating levels for 3 days. CYP2E1 mRNA elevation seems to be strongly associated with starvation while alcohol treatment increases the amount of enzyme, primarily by ligand-dependent stabilization of the synthesized protein. Our results indicate that transcriptional activation of CYP2E1 requires the long-term presence of highly intoxicating ethanol levels. It is conceivable that such activation occurs via indirect physiological responses related to those triggered by starvation.

Animals↗

Suppression of potato spindle tuber viroid replication and symptom expression by mutations which stabilize the pathogenicity domain.

Nucleotides within the pathogenicity domain of potato spindle tuber viroid (PSTVd) are known to play an important role in regulating symptom expression, but the underlying molecular mechanism is unknown. In order to determine more precisely how structural features within the pathogenicity domain regulate symptom expression, we have characterized a series of mutations that progressively stabilize premelting region 1 and the rest of the "virulence modulating" region. The structural effects of these mutations were monitored by temperature gradient gel electrophoresis of circularized RNA transcripts, and their biological effects were assessed by quantitative bioassays in tomato. Closure of a 4-nucleotide loop within the premelting region 1 virtually abolished PSTVd infectivity, especially when a nearby 2-nucleotide loop was also closed. Although RNA transcripts containing less stabilizing mutations were readily infectious, none of the four single and one double substitutions examined were stably maintained in vivo. The pattern of spontaneous, apparently compensatory sequence changes observed in the progeny suggests that PSTVd variants with less stable secondary structures enjoy a selective advantage. Mutations which stabilize the pathogenicity domain of PSTVd in vitro also suppressed symptom expression, but at least one other mutation having no obvious structural effects was associated with a similar phenotype. Conformational stability appears to be only one of several factors regulating PSTVd replication and pathogenicity.

Base Sequence↗

Susceptibility to hepatocellular carcinoma is associated with genetic variation in the enzymatic detoxification of aflatoxin B1.

Aflatoxin B1 (AFB1) has been postulated to be a hepatocarcinogen in humans, possibly by causing p53 mutations at codon 249. AFB1 is metabolized via the phase I and II detoxification pathways; hence, genetic variation at those loci may predict susceptibility to the effects of AFB1. To test this hypothesis, genetic variation in two AFB1 detoxification genes, epoxide hydrolase (EPHX) and glutathione S-transferase M1 (GSTM1), was contrasted with the presence of serum AFB1-albumin adducts, the presence of hepatocellular carcinoma (HCC), and with p53 codon 249 mutations. Mutant alleles at both loci were significantly overrepresented in individuals with serum AFB1-albumin adducts in a cross-sectional study. Mutant alleles of EPHX were significantly overrepresented in persons with HCC, also in a case-control study. The relationship of EPHX to HCC varied by hepatitis B surface antigen status and indicated that a synergistic effect may exist. p53 codon 249 mutations were observed only among HCC patients with one or both high-risk genotypes. These results indicate that individuals with mutant genotypes at EPHX and GSTM1 may be at greater risk of developing AFB1 adducts, p53 mutations, and HCC when exposed to AFB1. Hepatitis B carriers with the high-risk genotypes may be an even greater risk than carriers with low-risk genotypes. These findings support the existence of genetic susceptibility in humans to the environmental carcinogen AFB1 and indicate that there is a synergistic increase in risk of HCC with the combination of hepatitis B virus infection and susceptible genotype.

Aflatoxin B1↗

Additive activation of yeast LEU4 transcription by multiple cis elements.

The LEU4 gene of Saccharomyces cerevisiae and the enzyme encoded by LEU4, alpha-isopropylmalate synthase, occupy a special position in amino acid metabolism. alpha-Isopropylmalate synthase catalyzes the first committed step in leucine biosynthesis. However, the reaction product alpha-isopropylmalate is not only an intermediate in the leucine biosynthetic pathway, but also functions as co-activator of at least six genes, both within and outside of the leucine pathway. The metabolic importance of alpha-isopropylmalate appears to be reflected in the surprisingly multifaceted regulation of LEU4 expression. This report describes an analysis of functional cis elements in the LEU4 promoter. Five such elements were identified. Three distal elements, designated UASLEU, GCE-A, and GCE-B, are responsible for regulation by the regulatory proteins Leu3p and Gen4p, respectively. The incremental activation of LEU4 by these elements is additive and independent. In addition, two proximal elements were localized. One of these conforms to the TATA consensus sequence and exhibits high affinity for TATA binding protein. The other element shows strong sequence identity with the Bas2p binding site and appears to be involved in basal and phosphate-mediated regulation of LEU4.

2-Isopropylmalate Synthase↗

Receptor-mediated activation of recombinant Trpl expressed in Sf9 insect cells.

The Drosophila proteins, Trp and Trpl, are suggested to be cation channels responsible for depolarization of the receptor potential associated with stimulation of insect photoreceptor cells by light. Consistent with this hypothesis, we recently showed that recombinant Trpl forms Ca(2+)- and Ba(2+)-permeable non-selective cation channels when expressed in Sf9 cells using the baculovirus expression vector. As Trpl may be activated in the photoreceptor cell after stimulation of phospholipase C, we hypothesized that a similar regulation of recombinant Trpl may be observed in the Sf9 cell after activation of heterologous membrane receptors linked to Ca(2+)-signal-transduction pathways. To test this hypothesis, Ca2+ signalling was examined in Fura-2-loaded Sf9 cells infected with baculovirus containing cDNA for the M5 muscarinic receptor alone (M5 cells) or in cells co-infected with both M5 and Trpl-containing baculoviruses (M5-Trpl cells). Addition of carbachol (100 microM) to M5 cells produced an increase in cytosolic free Ca2+ concentration ([Ca2+]i) (mean +/- S.D.; n = 17) from 101 +/- 20 to 762 +/- 178 nM which declined to a sustained elevated level of 384 +/- 102 nM after 3 min. The sustained component was eliminated by removal of extracellular Ca2+ or by addition of La3+ or Gd3+ (10 microM). In M5-Trpl cells, basal [Ca2+]i increased as a function of time after infection. To evaluate the contribution of Ca2+ influx to the overall profile observed, Ba2+, a Ca2+ surrogate that is not a substrate for the Ca2+ pump, was used. The increase in basal [Ca2+]i seen in M5-Trpl cells was associated with an increase in basal Ba2+ influx. Addition of carbachol to M5-Trpl cells at 30-36 h after infection produced a large increase in [Ca2+]i to a sustained value of 677 +/- 143 nM. This change in [Ca2+]i was (1) blocked by atropine, (2) attenuated in the absence of extracellular Ca2+, and (3) relatively insensitive to La3+, but blocked by Gd3+ in the 0.1-1 mM range. In the presence of 10 microM Gd3+ to block the endogenous-receptor-mediated Ca(2+)-influx in M5-Trpl cells. In sharp contrast increase in Ba2+ influx in M5-Trpl cells. In sharp contrast, neither Ca2+ nor Ba2+ influx through Trpl was affected by thapsigargin, a selective inhibitor of the endoplasmic reticulum Ca(2+)-ATPase pump.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

rHox: a homeobox gene expressed in osteoblastic cells.

Homeodomain proteins are characterized by a conserved domain with a helix-turn-helix motif. These proteins act as regulatory factors in tissue differentiation and proliferation. However, their role in the regulation of osteoblast differentiation is unknown. In this study we have identified and characterized a homeobox gene in osteoblast-like cells. This gene, termed rHox, was isolated from a cDNA library derived from rat osteoblast-like cells. The nucleotide sequence of the 1,375 base pair (bp) cDNA contains a noncoding leader sequence of 329 bp, a 735 bp open reading frame, and 312 bp of 3' noncoding sequence. Sequence comparison demonstrates that rHox is identical to the mouse Pmx gene (also called MHox) at the amino acid level and 90% homologous at the nucleotide level. Both Southwestern blotting and gel shift analyses indicate that rHox has potential to bind both the collagen I alpha 1 and the osteocalcin promoters. Transfection experiments using an rHox expression vector showed a strong repression of target promoter activity, regardless of whether the target promoters contained homeodomain binding response elements. These data suggest that rHox is a potent negative regulator of gene expression, although the specific role of rHox in bone gene regulation remains to be determined.

3T3 Cells↗

Regulation of prostaglandin H synthase 1 and 2 in MyoD transfected cells.

Exponentially growing DD-1 cells (differentiation-defective cells) synthesize prostaglandins, while exponentially growing MyoDD-1 cells (differentiation-competent cells; DD-1 cells transfected with the myogenic regulatory gene MyoD) synthesize little or no prostaglandins and have reduced levels of prostaglandin H synthase-1 RNA [J. R. Wolf et al., 1993, Exp. Cell Res. 207, 439]. However, MyoDD-1 cells have the capability of synthesizing prostaglandins in response to serum stimulation of serum-deprived cells. The serum stimulation of prostaglandin biosynthesis is associated with transient increases in both prostaglandin H synthase-2 RNA and protein. DD-1 cells and MyoDD-1 cells are similar with respect to prostaglandin biosynthesis and expression of prostaglandin H synthase-2 following serum stimulation of serum-deprived cells. In contrast, the expression of prostaglandin H synthase-1 is higher in DD-1 cells as compared to MyoDD-1 cells under all culture conditions. Thus, expression of myogenic regulatory genes is associated with the differential regulation of prostaglandin H synthase-1 and prostaglandin H synthase-2.

Animals↗