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Biomedical subjects

W Zhao

Publications and source records attributed to W Zhao.

At least 127 records · Page 7Linked to original sources

Congenital absence of permanent teeth in a six-generation Chinese kindred.

We report on rare, heritable, permanent tooth agenesis in a large Chinese kindred. The congenital absence of permanent teeth except the first and second accessory teeth was observed in 52 individuals through six successive generations in the kindred comprising 328 members. Clinical assessments were carried out, and inheritance mode and spousal influence of the anomaly on their offspring were analyzed. Consequently, the anomaly was transmitted in an autosomal dominant fashion with incomplete penetrance (P = 0.88), and no significant clinical manifestations other than the oligodontia were found. A geographical or environmental effect on the affected individuals was obviously eliminated, because any who are related to the kindred but live under the same conditions are fully healthy. The disorder we describe, therefore, differs from any previously reported oligodontia/anodontia syndromes. The oligodontia ranged from a few teeth to the whole set of teeth, and usually occurred at a period from age 7 or 8 years, the time when primary teeth are normally replaced by permanent teeth, to the forties. Roentgenography of the affected persons indicated that only the first and/or second accessory teeth with tooth buds developed as permanent teeth. In fact, the diphyodontic germination sometimes occurred in the oral cavity of the affected individuals.

China↗

Both smooth and skeletal muscle precursors are present in foetal mouse oesophagus and they follow different differentiation pathways.

Muscularis externa of mouse oesophagus is composed of two skeletal muscle layers in the adult. Unlike rest of skeletal muscle in the body, the oesophageal skeletal muscle in the mouse has been proposed to be derived from fully differentiated smooth muscle cells by transdifferentiation during later foetal and early postnatal development (Patapoutian et al. [1995] Science 270:1818-1821). Here we characterised the nature of cells in muscularis externa of the mouse oesophagus by ultrastructural and immunoctyochemical analyses. The presence of differentiated skeletal muscle cells identified by positive staining for skeletal muscle specific myosin heavy chain became first apparent in the outer layer of cranial oesophagus at 14 days gestation. The transient expression of smooth muscle type alpha-actin in mouse oesophageal muscle was also apparent during foetal development. This isoform, however, was not smooth muscle specific during early development as it was also detected in foetal skeletal muscles. Compared with oesophagus, the suppression of this smooth muscle type alpha-actin during foetal development was faster in non-oesophageal skeletal muscle cells. The development of skeletal muscle in oesophagus showed a cranial to caudal and an outer layer to inner layer progression. During early foetal development, mouse oesophagus is composed of undifferentiated mesenchymal cells that formed cell clusters. Two types of cells with different staining densities could be distinguished within these cell clusters by electron microscopy. The centrally located pale staining cells gave rise to skeletal muscle cells while the peripherally positioned dense staining cells gave rise to smooth muscle cells, indicating the existence of both skeletal and smooth muscle cell precursors in mouse oesophagus during early foetal development. Further development showed an increase in the proportion of skeletal muscle cells and a decrease in size and number of the smooth muscle type cells. Apart from decrease in cell size, some other morphological features of smooth muscle cell degeneration were also observed during later foetal and early neonatal development. No smooth muscle cells undergoing transdifferentiation were observed. Both immunochemical and ultrastructural observations, thus, demonstrated the presence of skeletal muscle cells in early foetal oesophagus. It is concluded that the transient appearance of smooth muscle cells may provide a scaffold for the laying down of skeletal muscle layers in mouse oesophagus, the final disappearance of which may be triggered by lack of smooth muscle innervation.

Actinin↗

Skeletal muscle precursors in mouse esophagus are determined during early fetal development.

Mouse esophageal muscle is composed of skeletal muscle in the adult, but it has been proposed to be derived from differentiated smooth muscle cells by transdifferentiation during late fetal and early postnatal development (Patapoutian et al. [1995] Science 270:1818-1821). We characterize skeletal muscle precursors in mouse esophagus by investigating the expression of four myogenic regulatory factor transcripts: MyoD, Myf-5, myogenin, and MRF4. Myf-5 was first detected at cranial region of esophageal muscle at 12-13 days of gestation, followed by coexpression of MyoD and MRF4 at 14 days of gestation, and myogenin at embryonic day 15. The expression of these myogenic factors showed outer to inner layer and cranial to caudal progression during fetal and early postnatal development of mouse esophagus. The early appearance of myogenic regulatory factors starting at 12-13 days of gestation indicates that the cells in the mouse esophageal wall are committed to become skeletal muscle-type cells before any differentiated smooth or skeletal muscle cells are observed at 14-15 days of gestation.

Animals↗

Multiple, closely spaced alternative 5' exons in the DmCKIIbeta gene of Drosophila melanogaster.

Drosophila melanogaster casein kinase II (CKII) is composed of catalytic alpha and regulatory beta subunits. Using the two-hybrid system, we have isolated a number of cDNAs that are related to a previously published cDNA encoding the beta subunit, but exhibit divergent 5' sequences. To determine the source of this sequence variation, we have isolated the gene encoding the beta subunit of CKII. The beta gene contains five exons encompassing the complete open reading frame, as well as five alternative exons in the 5' untranslated region (UTR). Only one 5' UTR exon is contained in each cDNA, implying five distinct classes of transcript. In addition, the beta gene contains at least two poly(A) addition signals which generate additional complexity at the 3' end. The complex pattern of transcription may serve a role in the spatial and/or temporal expression of the beta subunit since, with one exception, all transcripts encode the full-length beta polypeptide. Phylogenetic comparison of the beta genes of Drosophila, C. elegans, and mammals reveals three invariant introns as well as evidence of recent intron gain/loss.

Amino Acid Sequence↗

Development and composition of skeletal muscle fibres in mouse oesophagus.

The development of skeletal muscle in mouse oesophagus was investigated by studying the expression of skeletal muscle type myosin heavy chain (MHC), troponin I (TnI) and tropoinin T (TnT) using immunocytochemical and immunoblotting procedures. Both slow and fast muscle fibres were first detected in outer layer muscularis externa of cranial oesophagus at 14 days gestation. The fast MHC was present in all skeletal muscle fibres of oesophagus while the slow MHC was restricted to only a subset of myotubes during foetal development, indicating that slow and fast fibres emerged during early stages of myogenesis. A small number of cells expressed both slow and fast MHCs in the caudal region of adult mouse oesophagus, suggesting that some muscle fibres did not differentiate fully even in the adult. The conversion of some muscle fibre types, from slow to fast, was apparent during postnatal development. This was indicated by a gradual reduction in the number of slow MHC positive fibres during postnatal growth. The complete suppression of slow MHC was observed in cranial oesophagus by 4 weeks of age. However, the persistence of some slow MHC in the caudal oesophagus was apparent even in the adult. The conversion of muscle fibres from slow to fast type was also evidenced by immunoblotting study of fast and slow TnI. The expression level of slow TnI decreased while that of fast TnI increased during neonatal growth period. Compared with the limb skeletal muscles, the onset of the adult fast TnT isoform expression was delayed in mouse oesophagus and its developmental isoforms were not completely suppressed in the adult, although their expression level was reduced.

Animals↗

Slow troponin T mRNA in striated muscles is expressed in both cell type and developmental stage specific manner.

We have cloned cDNA sequences of both rat and mouse slow troponin T gene. These sequences share a high level of homology with each other and with the human slow troponin T gene although we were unable to detect an alternatively spliced exon present at 3' end of human slow troponin T cDNA in either mouse or rat cDNAs. Northern blot analysis detected a high level expression of slow troponin T in adult mouse Soleus with a lower level expression in mixed postnatal skeletal muscles. Unlike late fetal and postnatal skeletal muscles in which slow troponin T expression is restricted to slow muscle fibre rich regions only, in situ hybridisation analysis detected this isoform to be highly expressed in somitic myotome and all muscle masses at 10-14 days of gestation after which its expression was rapidly downregulated. The unexpected expression of slow troponin T mRNA in fetal heart was apparent by both northern blotting and in situ hybridisation analyses. Slow troponin T mRNA in fetal heart was first detected at 10 day in utero reaching maximum levels of expression at 12-15 days gestation. The slow troponin T in the heart was mainly expressed in the ventral ventricles until day 15 after which low level expression was also observed in both atria. Slow troponin T mRNA in both atrium and ventricle was mainly expressed in outer wall of the myocardium although it was also expressed in interventricular septum. This study therefore shows that in addition to being a cell type specific marker during later fetal and postnatal skeletal muscle development, slow troponin T represented one of the major developmental isoforms expressed in embryonic and fetal skeletal muscle as well as in the cardiac muscle.

Age Factors↗

Inhibition of experimental allergic encephalomyelitis with an antibody that recognizes a novel antigen expressed on lymphocytes, endothelial cells, and microglia.

Experimental allergic encephalomyelitis (EAE) is a frequently employed animal model of the human disease multiple sclerosis. EAE can be induced by adoptive transfer of CD4+ T cells that are specific for central nervous system (CNS) antigens, typically myelin proteins. Although the pathogenic mechanism or mechanisms responsible for the clinical signs and histological changes in EAE and multiple sclerosis are not fully defined, the entry of T lymphocytes and antigen recognition within the CNS are required. The present study describes the participation of a novel cell surface molecule with properties suggesting a role in cell-cell adhesion or co-stimulation, or both, in the development of EAE in the rat. The molecule is defined by the unique monoclonal antibody (mAb) TLD-4A2. The TLD-4A2 antigen is present on resting and activated T lymphocytes, activated CNS endothelial cells, and microglia. The antigen is normally distributed in many tissues including lymph node, thymus, and spleen, as well as in the inflamed CNS. Both its pattern of tissue distribution and immunoprecipitation and immunoblotting studies suggest that the TLD-4A2 antigen is a novel molecule. Treatment of rats with the purified 4A2 mAb resulted in the inhibition of the clinical signs of EAE and also decreased the number T cells and macrophages accumulating in the CNS parenchyma. TLD-4A2 antibody did not seem to directly interfere with T cell viability in vivo, as demonstrated by the ability to recover and stimulate CD4+ encephalitogenic T cells from cervical lymph nodes of 4A2-treated animals. In vitro, the antibody partially blocked T cell proliferation assays. These data suggest that the TLD-4A2 mAb recognizes a novel molecule expressed on lymphocytes, endothelial cells, and macrophages that may play a role in hematogenous cell traffic and the initiation of CNS inflammation.

Animals↗

Expressions of leptin and insulin-like growth factor-I are highly correlated and region-specific in adipose tissue of growing rats.

OBJECTIVE: Anatomically distinct adipose tissue regions differ in their predominant modality of growth (i.e., cellular hypertrophy vs. hyperplasia). We examined site-specific patterns of expression of two genes whose products, leptin and insulin-like growth factor-I (IGF-I), could be involved in mediating differential growth and metabolism of white adipose tissue. We also related these patterns of expression to measures of adipose depot cellularity. RESEARCH METHODS AND PROCEDURES: Male Wistar rats were fed ad libitum and studied from ages 7 weeks to approximately 12 months. Terminal measures of body weights; weights, composition, and cellularity of four white adipose depots; circulating leptin and IGF-I; and adipose depot-specific expression levels of leptin and IGF-I were measured in subsets of rats at 7, 12, 22, 42, and 46 weeks of age. RESULTS: Both leptin and IGF-I mRNAs are quantitatively expressed in a depot-specific manner, in the following order: retroperitoneal approximately equals epididymal > mesenteric > subcutaneous inguinal. Furthermore, there is a marked correlation between the expressions of these hormones in the various regions of adipose tissue of rats during the first year of life. The mechanisms that underlie the parallel expressions of leptin and IGF-I appear to be related to fat-cell volume. DISCUSSION: Because both leptin and IGF-I have been implicated in the regulation of energy homeostasis and are both expressed in adipose tissue, the depot-specific linkage between the two genes suggests interaction at the autocrine level. This interaction may have an important role in determining functional properties particular to individual adipose depots.

Adipose Tissue↗

Diabetes-induced biochemical changes in rat lens: attenuation of cataractogenesis by pyruvate.

AIM: Studies have been conducted to determine the effect of pyruvate administration on the biochemistry of rat lens and the status of its transparency as affected by diabetic conditions. METHODS: Sprague-Dawley rats were rendered diabetic by intravenous (i.v.) injection of streptozotocin (55 mg/kg body weight (b.w.)) and treated with sodium pyruvate (2%) in drinking water. The levels of glucose, fructose, sorbitol, ATP, GSH, MDA as well as glycated proteins in the lenses were determined at various intervals after the onset of diabetes and the values compared with untreated diabetic controls. The progress of cataract formation and associated histological changes in the tissue were also monitored. RESULTS: Studies show that the pyruvate treatment decreased the extent of several biochemical changes known to be associated with cataract formation, such as the elevation in the levels of glycated proteins, sorbitol, lipid peroxidation (MDA) and inhibition of the cation pump. The progress of cataract was also significantly delayed. CONCLUSION: Exogenous administration of this compound hence was found to exert an overall protective effect against cataract formation induced by the diabetic conditions.

Adenosine Triphosphate↗

Variable expression of cathepsin B and D correlates with highly invasive and metastatic phenotype of oral cancer.

The expression levels of cathepsins B, D, and L in oral cancer surgical specimens were determined using immunocytochemical analysis. Cathepsins B and D are frequently overexpressed in squamous cell carcinomas, whereas their overexpression was less frequent in verrucous carcinoma and basaloid squamous cell carcinomas. Elevated level of cathepsin B in oral carcinomas was significantly associated with advanced tumor stage (P < .05) and poor histologic malignancy grade (P < .001). Increased expression of cathepsin D correlated significantly with the presence of metastasis (P < .05), poor histologic malignancy grade (P < .001), and high proliferation rate (P < .05). Cathepsin L was less frequently overexpressed in oral cancers than cathepsin B and D. These findings indicate that there is a strong cause/effect relationship between the expression levels of cathepsin B and D in oral cancers and their local invasive and metastatic growth patterns. Thus, cathepsins B and D are useful prognostic markers as well as promising gene therapy targets for oral cancer.

Adult↗

Irradiation of rat tubule epithelial cells alters the expression of gene products associated with the synthesis and degradation of extracellular matrix.

PURPOSE: To determine the ability of radiation to modulate kidney tubule epithelial cell expression of various molecules involved in regulating extracellular matrix accumulation (collagen types I and III, fibronectin, plasminogen activator-inhibitor 1 (PAI-1), TGF-beta and tissue inhibitor of metalloproteinases-2 (TIMP-2)) and degradation (plasminogen activators u-PA or t-PA, MMP-2 and MMP-9). MATERIALS AND METHODS: NRK52E rat tubule epithelial cells were placed in serum-free medium 24 h prior to irradiation with single doses of 1.0-10.0 Gy 137Cs gamma-rays. After irradiation, cells were maintained in serum-free medium for up to 48 h. RESULTS: Irradiation of NRK52E cells was associated with significant dose-dependent increases in collagen I (p<0.05) and PAI-1 (p< or =0.002) mRNA. Collagen III mRNA levels also exhibited a dose-dependent increase; however, this increase failed to reach levels that were statistically significant. Fibronectin mRNA levels were unaltered following irradiation. Radiation also led to an isoform-specific alteration in TGF-beta expression; TGF-beta1 mRNA increased, TGF-beta3 mRNA decreased. The amount of TGF-beta protein secreted into the medium was unchanged following irradiation; however, there was a fivefold increase in the relative amount of active TGF-beta. Irradiation was also associated with differential changes in MMP expression: active MMP-2 levels increased, while MMP-9 levels were unaltered; PA secretion into the medium was unchanged following irradiation. CONCLUSIONS: Irradiation of rat kidney tubule epithelial cells leads to altered production of various molecules associated with extracellular matrix accumulation and degradation.

Animals↗

Blood-pressure lowering, positive chronotropy and inotropy by the Veratrum alkaloids germidine and germerine but negative chronotropy by veratridine in mice.

Germidine and germerine, the Veratrum alkaloids lowered blood pressure accompanied with positive chronotropy and inotropy in mice. Germerine was more potent than germidine in both blood-pressure lowering and positive inotropy, whereas veratridine produced negative chronotropy and positive inotropy. An acyl group (an acetyl or a 2-methylbutyroyl group) at 3-O-R1 position and a 2-methylbutyroyl group at 15-O-R2 position in germine were important to produce the positive inotropy and chronotropy. The presence of a veratroyl group at 3-O-R1 position and a free hydroxyl group at 15-O-R2 position may be essential to produce the negative chronotropy by veratridine. The positive inotropy by germidine and veratridine may be due to TTX-resistant Na+ channel activation.

Animals↗

Fructose induced deactivation of antioxidant enzymes: preventive effect of pyruvate.

Glycation initiated changes in tissue proteins, which are triggered by the Schiff base formation between the sugar carbonyl and the protein -NH2, have been suggested to play an important role in the development of diabetes-related pathological changes such as the formation of cataracts. While the initial reaction takes place by the interaction of >C=O of the parent sugars with the -NH2 of proteins, reactive oxygen species (ROS) dependent generation of more reactive dicarbonyl derivatives from the oxidation of sugars also plays a significant role in these changes, altering the structural as well as functional properties of proteins. The purpose of this study was to examine whether the activities of glyceraldehyde-3-phosphate dehydrogenase (GAPDH), catalase and superoxide dismutase (SOD) could be affected by the high levels of fructose prevalent in diabetic lenses. Incubation of the enzymes with this sugar led to a significant loss of their activities. GAPDH was inactivated within a day. This was followed by the inactivation of catalase (3-4 days) and SOD (6 days). The loss of the activities was prevented significantly by incorporation of pyruvate in the incubation mixture. The protective effect is ascribable to its ability to competitively inhibit glycation as well as to its ROS scavenging activity. Hence, it could play a significant role in the maintenance of lens physiology and cataract prevention.

Animals↗

Spatial learning induced changes in expression of the ryanodine type II receptor in the rat hippocampus.

Calcium signaling critical to neural functions is mediated through Ca(2+) channels localized on both the plasma membrane and intracellular organelles such as endoplasmic reticulum. Whereas Ca(2+) influx occurs via the voltage- or/and ligand-sensitive Ca(2+) channels, Ca(2+) release from intracellular stores that amplifies further the Ca(2+) signal is thought to be involved in more profound and lasting changes in neurons. The ryanodine receptor, one of the two major intracellular Ca(2+) channels, has been an important target for studying Ca(2+) signaling in brain functions, including learning and memory, due to its characteristic Ca(2+)-induced Ca(2+) release. In this study, we report regional and cellular distributions of the type-2 ryanodine receptor (RyR2) mRNA in the rat brain, and effects of spatial learning on RyR2 gene expression at mRNA and protein levels in the rat hippocampus. Using in situ hybridization, reverse transcription polymerase chain reaction, and ribonuclease protection assays, significant increases in RyR2 mRNA were found in the hippocampus of rats trained in an intensive water maze task. With immunoprecipitation and immunoblotting, protein levels of RyR2 were also demonstrated to be increased in the microsomal fractions prepared from hippocampi of trained rats. These results suggest that RyR2, and hence the RyR2-mediated Ca(2+) signals, may be involved in memory processing after spatial learning. The increases in RyR2 mRNA and protein at 12 and 24 h after training could contribute to more permanent changes such as structural modifications during long-term memory storage. Zhao, W., Meiri, N., Xu, H., Cavallaro, S., Quattrone, A., Zhang, L., Alkon, D. A. Spatial learning induced changes in expression of the ryanodine type II receptor in the rat hippocampus.

Animals↗

Thromboembolic events lead to cortical spreading depression and expression of c-fos, brain-derived neurotrophic factor, glial fibrillary acidic protein, and heat shock protein 70 mRNA in rats.

The hypotheses that cerebral embolic events lead to repetitive episodes of cortical spreading depression (CSD) and that these propagating waves trigger the expression of c-fos, brain-derived neurotrophic factor (BDNF), glial fibrillary acidic protein (GFAP), and heat shock protein 70 (HSP70) mRNA were tested. Wistar rats underwent photochemically induced right common carotid artery thrombosis (CCAT) (n = 18) or sham (n = 8) procedures. In a subgroup of rats (n = 5), laser-Doppler flowmetry probes were placed overlying the right parietal cortex to record CSD-like changes in cortical blood flow during the initial 2-hour postinjury period. Rats were killed by decapitation at 2 or 24 hours after CCAT, and brains were processed for in situ localization of the gene expression. Two to five intermittent transient hyperemic episodes lasting 1 to 2 minutes were recorded ipsilaterally after CCAT. At 2 hours after CCAT, the widespread expression of c-fos and BDNF mRNAs was observed throughout the ipsilateral cerebral cortex. Pretreatment with the N-methyl-D-aspartate receptor blocker MK-801 (2 mg/kg) 1 hour before CCAT reduced the expression of BDNF mRNA expression at 2 hours. At 24 hours after CCAT, increased expression of GFAP mRNA was present in cortical and subcortical regions. In contrast, multifocal regions of HSP70 expression scattered throughout the thrombosed hemisphere were apparent at both 2 and 24 hours after injury. These data indicate that thromboembolic events lead to episodes of CSD and time-dependent alterations in gene expression. The ability of embolic processes to induce widespread molecular responses in neurons and glia may be important in the pathogenesis of transient ischemic attacks and may influence the susceptibility of the postembolic brain to subsequent insults including stroke.

Animals↗

Interleukin-6 signal transduction in human intestinal epithelial cells.

The gut is an important source of inflammatory cytokines, but there is scant information on the mechanisms of cytokine action in gut epithelium. We hypothesized that in human Caco-2 cells, IL-6 acts directly through stimulation of Stat phosphorylation and that bacterial lipopolysaccharide (LPS) causes Stat activation indirectly because of its ability to cause the autocrine secretion and action of interleukin (IL)-6. Stat1, Stat5a, and Stat5b, but not Stat3, were detected in Caco-2 cells. DNA-binding activity corresponding to activated Stat5 was stimulated in a biphasic manner by IL-6, with a transient early phase, followed by sustained activation between 8 and 48 h. LPS also stimulated Stat5-like binding, but there was no early phase of activation. Functional tests of Stat5 activation showed that IL-6 stimulated Stat5-dependent reporter gene transcription but had no effect on Stat1-dependent transcription. LPS did not stimulate Stat-dependent transcription, nor did it alter the transcriptional response to IL-6. Tyrosine phosphorylation of both Stat5a and Stat5b was induced by IL-6. We infer from these data that IL-6 acts on intestinal epithelia through a Stat5-mediated transcriptional mechanism, whereas LPS does not induce gene expression through autocrine activation of enterocyte Stat signaling. These data provide a basis for testing the in vivo regulation of gut signaling and the interaction of gut reticuloendothelial cells with epithelial signal transduction.

Chloramphenicol O-Acetyltransferase↗

Analysis of compression-induced chiral phase separation in Langmuir monolayers.

We analyze the compression-induced chiral phase separation (CPS) in Langmuir films, taking into account the elastic theory of liquid crystals and the mixing energy of the two constituent enantiomers. The difference between the Selinger-Wang-Bruinsma-Knobler theory [J. V. Selinger et al., Phys. Rev. Lett. 70, 1139 (1993)] and our treatment is that we do not introduce the concentration-square-gradient term in the free energy, but alternatively take into account a line tension at CPS boundaries. Our model predicts that a two-domain pattern with opposite chiralities is energy minimized, but a multistripe pattern with two alternate constant chiralities is also possible, though metastable. This offers a tentative explanation for the CPS pattern consisting of homogeneously oriented stripes with diverse widths observed by Eckhardt et al. [Nature (London) 362, 614 (1993)].

Journal Article↗

Analysis of weak-anchoring effect in nematic liquid crystals

A generalized Rapini-Papoular-type anchoring energy formula [J. Phys. (Paris) Colloq. 30, C4-54 (1969)] with two coupling constants is established through a second-order spherical-harmonic expansion. Using this formula, we analyze the threshold and saturation properties of twisted nematic devices with unidirectional planar anchorage, assuming that the azimuthal and polar anchoring strengths are both finite and distinct from each other. We also discuss the voltage-controlled-twist effect [G. P. Bryan-Brown et al., Nature (London) 392, 365 (1998)]. It is shown that the predicted behavior is consistent with the experimental observations.

Journal Article↗