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Biomedical subjects

S Xue

Publications and source records attributed to S Xue.

At least 55 records · Page 3Linked to original sources

Cytotoxic T-cell-resistant variants arise at early times after infection in C57BL/6 but not in SCID mice infected with a neurotropic coronavirus.

Under certain conditions, C57BL/6 mice persistently infected with mouse hepatitis virus strain JHM (MHV-JHM) develop clinical disease and histological evidence of demyelination several weeks after inoculation with virus. In a previous report, we showed that mutations in the RNA encoding an immunodominant CD8 T-cell epitope within the surface glycoprotein (epitope S-510-518) were present in all persistently infected animals and that these mutations abrogated recognition by virus-specific cytotoxic T cells (CTLs) in direct ex vivo cytotoxicity assays. To obtain further evidence that these mutations were necessary for the development of clinical disease, the temporal course of their appearance was determined. Mutations in the epitope were identified by 10 to 12 days after inoculation, and in some mice, virus containing mutated epitope was the dominant species detected by 15 days. In addition, most mice that remain asymptomatic at 80 days after inoculation, a time after which clinical disease almost never develops, were infected with only wild-type virus. Finally, analysis of virus isolated from mice with severe combined immunodeficiency (SCID) revealed the presence only of wild-type epitope S-510-518. These results, by showing that mutations are not selected in SCID mice and occur at early times after inoculation in C57BL/6 mice, support the view that they result from immune pressure and contribute to virus persistence and demyelination in mice infected persistently with MHV-JHM.

Amino Acid Sequence↗

[Transfer and expression of rh-SCF gene in human hematopoietic stem/progenitor cells].

OBJECTIVE: To explore the transfer and expression of recombinant human stem cell factor (rh-SCF) gene in human hematopoietic stem/progenitor cell. METHODS: pLXSN-SCF, a recombinant retrovirus vector of soluble human SCF gene, was constructed by recombinant gene technique. The recombinant plasmid was introduced into virus packaging cells psi2 and PA317 by lipofectin-mediated DNA transfection, and PA317/SCF, the recombinant virus producing cell, was obtained by G418 screening [the virus potency was (2.4-8.5) x 10(5) CFU/ml]. Then, human hematopoietic stem/progenitor cells were transfected with PA317/SCF. The transfer and expression of human SCF gene were assayed by PCR, APAAP immunohistochemical staining and chemoluminance-direct ELISA. RESULTS AND CONCLUSION: retrovirus-mediated rh-SCF gene was successfully transferred and expressed in human hematopoietic stem/progenitor cells.

Animals↗

Induction of both cytosolic phospholipase A2 and prostaglandin H synthase-2 by interleukin-1 beta in WISH cells in inhibited by dexamethasone.

In previous studies we have shown that IL-1 beta induced both PGE2 release and total cellular cPLA2 activity and cPLA2 protein synthesis in human amnion-derived WISH cells. In this study, the effect of IL-1 beta on cPLA2 and PGHS-2 mRNA expression was investigated. Using RT-PCR, we found that IL-1 beta (0.1 ng/ml) coordinately induced both cPLA2 and PGHS-2 mRNA expression within 2 hours. The synthetic glucocorticoid dexamethasone (10(-10)-10(-6)M) inhibited IL-1 beta-induced cPLA2 and PGHS-2 mRNA expression activity and protein synthesis and PGE2 release in a concentration dependent manner. In the absence of IL-1 beta, dexamethasone alone (10(-6)M) inhibited basal cPLA2 activity, mRNA expression and protein synthesis. In addition, cycloheximide (5 micrograms/ml) apparently superinduced, but actinomycin D (2 micrograms/ml) inhibited IL-1 beta-induced cPLA2 and PGHS-2 mRNA expression suggesting that both are immediate early genes and a transcriptional mechanism is involved in the induction of both cPLA2 and PGHS-2 mRNA by IL-1 beta.

Amnion↗

Effects of nitric oxide synthase blockade on esophageal peristalsis and the lower esophageal sphincter in the cat.

The present study explores the role of nitric oxide (NO) in control of esophageal peristalsis and lower esophageal sphincter (LES) function in the cat. Studies were performed on 20 ketamine-anesthetized cats with manometric recording at the LES, 0, 2, 4, and 6 cm above the LES (smooth muscle section), and 12 and (or) 14 cm above the LES (striated muscle section). L-Ng-Nitro-arginine (L-NNA, 10(-6)-10(-4) mol/kg) was given intravenously, and the effects on swallow-induced esophageal peristalsis were assessed. (i) L-NNA increased the velocity of swallow-induced peristalsis in the smooth muscle esophagus; the effect was dose dependent, more prominent distally, and completely reversed by L-arginine (10(-3) mol/kg). (ii) L-NNA decreased the amplitude of peristaltic contraction in the very distal esophagus; the decrease also was dose dependent but not returned to normal by L-arginine. (iii) L-NNA inhibited LES relaxation (reversed by L-arginine) and decreased the LES "after-contraction" amplitude (unaffected by L-arginine). (iv) L-NNA was associated with the appearance of repetitive contractions. Basal LES tone was unaffected by L-NNA. In conclusion, NO is an important mediator for the timing of peristalsis in the distal smooth muscle esophagus and for LES relaxation in the cat, a species whose contraction amplitude is largely determined by cholinergic excitation. The role of NO in controlling esophageal body and LES contraction amplitude, and in preventing repetitive contractions, requires further study.

Animals↗

Cloning of the human erythropoietin exons and their expression in COS-7 cells.

Human erythropoietin exons (hEPO-E) were isolated from a Chinese fetal liver DNA library by using the PCR method with gene recombination. One nucleotide mutation was found in exon 3 leading to the Leu in position 62 being changed to Ser. The hEPO-E coding for the full-length mature protein was inserted into different clone sites of PSV-2-dhfr to create different transferring plasmids (pSV2-dhfr/F1, pSV2/F2, pSV2-dhfr/F3, pSV2-dhfr/F4, pSV2-dhfr/G1, and pSV2-dhfr/G3) which were transfected into COS-7 cells. Results obtained from the comparative experiments indicate that biological activity of hEPO was found in all culture supernatants and its expression level was higher than that of its genome.

Amino Acid Sequence↗

Identification of a CD4+ T cell epitope within the M protein of a neurotropic coronavirus.

A significant CD4+ T cell response against the transmembrane (M) protein can be detected in the spleens of C57Bl/6 mice infected intraperitoneally with a sublethal injection of the neurotropic JHM strain of mouse hepatitis virus (MHV-JHM), but not in those of mice with the chronic demyelinating encephalomyelitis caused by this virus. With the ultimate goal of determining the role of the M-specific response in the pathogenesis of MHV-JHM-induced neurological diseases, CD4+ T cell epitopes within the M protein were identified using vaccinia virus recombinants expressing truncated forms of the protein and peptides spanning most of the M protein in cell proliferation assays. Peptides covering residues 128-147 contain at least one CD4+ T cell epitope for MHV-JHM. Within this region is a sequence (residues 135-143) which matches the recently described MHC class II I-Ab binding motif. Delineation of this epitope should facilitate analysis of the role of the M-specific CD4+ T cell response in the development of acute and chronic neurological infections caused by MHV-JHM.

Animals↗

Interleukin-1 beta induces the synthesis and activity of cytosolic phospholipase A2 and the release of prostaglandin E2 in human amnion-derived WISH cells.

The objective of this study was to examine the expression and activity of cytosolic phospholipase A2 (cPLA2) in relation to prostaglandin E2 (PGE2) synthesis in human amnion-derived WISH cells in response to stimulation by interleukin-1 beta (IL-1 beta). cPLA2 activity was characterized by sensitivity to heat and acid treatment, stability to dithiothreitol, and inhibition by the specific inhibitor, arachidonyl trifluoromethyl ketone (AACOCF3). Treatment of WISH cells with IL-1 beta (0.01-1 ng/mL) for up to 24 h resulted in a significant increase in PGE2 release in a concentration- and time-dependent manner accompanied by increases both in total cellular cPLA2 activity and in cPLA2 protein levels detected by Western blot analysis. The parallel increase in total cellular cPLA2 activity and cPLA2 protein level indicates that IL-1 beta may induce the synthesis of cPLA2. Incubation of the cells with 10 microM AACOCF3 for 24 h significantly inhibited IL-1 beta-induced PGE2 production strongly suggesting that cPLA2 mediates IL-1 beta-induced PGE2 formation. In unstimulated cells, there is appreciable total cellular cPLA2 activity and protein, but these cells produce low amounts of PGE2 until stimulated by IL-1 beta, suggesting that cPLA2 translocation from cytosol to the membrane is necessary for its bioactivity. In contrast to IL-1 beta, treatment with phorbol ester (12-O-tetradecanoyl phorbol-13-acetate, TPA, 10(-10)-10(-6)M) for 24 h significantly inhibited total cellular cPLA2 activity in a concentration-dependent manner. The amount of total cellular cPLA2 protein seen on Western blot remained unchanged following TPA treatment. These data suggest that in WISH cells, IL-1 beta induces both translocation to the membrane and de novo synthesis of cPLA2 protein to sustain prostaglandin (PG) synthesis. In contrast, TPA may only cause cPLA2 translocation but no increase in cPLA2 protein synthesis, resulting in limited PG synthesis. Our results provide a mechanism for the effect of IL-1 beta on prostaglandin synthesis in human amnion cells and provide support for a role of cPLA2 in the mechanism initiating human parturition.

Amnion↗

Acoustic enhancement of electrically evoked otoacoustic emissions reflects basilar membrane tuning: a model.

A simple model for the acoustic enhancement of electrically evoked otoacoustic emissions (EEOEs) is presented in this paper. The model is based on the assumption that the enhancement is a result of the local interaction between the electrical current spreading in the scala media and the basilar membrane (BM) response to acoustic input. The analytical, steady-state response of the 1-dimensional linear cable to sinusoidal current injection is derived and is used to predict the current spreading in the cochlea. Acoustic enhancement at an emission generator is modeled as a magnitude change that is a sigmoid function of the local BM motion. The model results are in good agreement with the experimental findings and support our interpretation that the acoustic enhancement of EEOEs reflects BM tuning.

Acoustic Stimulation↗

Electrical slow wave activity of the cat stomach: its frequency gradient and the effect of indomethacin.

The present study was performed to establish the intrinsic frequency of the slow waves in different regions of the cat stomach, to define the propagation velocity of the slow wave along the stomach, and to determine whether endogenous prostaglandins can affect the slow wave frequency. In 20 cats, electrical activity was recorded from the anterior wall of the intact stomach in vivo and in vitro, and in vitro after cutting the stomach into 16 pieces to isolate each pair of electrodes. In vivo, slow waves (4.1 +/- 0.5 cpm) were seen only from mid corpus to pylorus, the apparent propagation velocity decreasing towards the antrum. In vitro: (a) after cutting, the slow wave frequency increased, to a maximum in 1 h (12 +/- 1.8 cpm; range 10.2-17.3), with the highest frequency always in the mid or orad corpus, usually on the greater curvature (GC), (b) with indomethacin (10(-5) M) the increase in slow wave frequency was prevented or reversed, and there was a frequency gradient with the highest frequency (4.4 +/- 1.2 cpm) uniformly located in the most proximal active site on the GC, and (c) slow waves on the GC were more stable, regular and continuous than on the lesser curvature (LC), the difference being most evident in the corpus. The results suggest that the cat stomach behaves as a system of electrically coupled oscillators of different frequencies. The dominant oscillator of highest frequency is situated in the proximal corpus of the GC, with the remainder of the distal stomach entrained at this frequency. All gastric slow wave oscillators can be driven to higher frequencies by endogenous prostaglandins. The decreasing velocity of slow wave propagation distally suggests that oscillator properties and/or coupling among oscillators differs in the cat.

Animals↗

Electrically evoked basilar membrane motion.

Electrically induced outer hair cell (OHC) motility, demonstrated by a number of investigators in isolated OHC preparations, has been considered to be a key mechanism in the active process which brings about the excellent sensitivity and frequency selectivity of the mammalian cochlea. In this study, electrical-to-mechanical transduction in the gerbil cochlea was demonstrated in vivo by direct measurement of basilar membrane motion evoked by sinusoidal electrical current injected into the scala media. The characteristic frequency (CF) of the measurement place was approximately 40 kHz as determined by the basilar membrane (BM) responses to acoustic stimulation. The results showed that basilar membrane motion could be evoked by electrical current of frequencies from below 10 Hz to exceeding 40 kHz. The magnitude and phase of the BM velocity response to constant current stimulation, from 100 Hz to 10,000 Hz, were similar to the acoustically driven BM velocity for constant umbo velocity. For frequencies in this range, the BM motion evoked by a current of 50 microA was comparable to the BM motion evoked by a 60 dB SPL acoustic stimulus. The phase of the electrically evoked BM motion indicates that positive current injected into the scala media caused the BM to move toward scala vestibuli for frequencies between 100 and 10 kHz. This result is consistent with the hypothesis that the electrically evoked BM motion is due to electrically evoked OHC length changes.

Animals↗

The relationships between erythroblast denucleation and the nuclear matrix--intermediate filaments.

We present a novel approach for making cybrids. By introducing neo gene expression plasmids into rabbit reticulocytes, fusing the gene transferred reticulocytes with K562 cells and selecting in G418 selection medium, a cybrid strain K-RRneo was established. Whole mount TEM study demonstrated that after cybridization, there was a reorganization of the intermediate filaments which showed a tendency to differentiate towards reticulocytes. SDS-PAGE and western blot analysis verified the above observation, in which the vimentin blot pattern of the cybrids was similar to that of reticulocytes, but totally different from that of K562 cells. Using this model, we reaffirmed the hypothesis that the erythroid differentiation factor (EDF) might be responsible for erythroid differentiation as well as the initiation of denucleation.

Animals↗

Effects of electrical biasing on electrically-evoked otoacoustic emissions.

Electrically-evoked otoacoustic emissions were produced using a 10 microA, 750 Hz AC current plus a biasing DC current in the range of +/- 10 microA. Concurrently, a 1643 Hz tonal stimulation was delivered to the eardrum. At low sound levels, negative DC current increased the emission while positive DC current reduced the emission. Such findings are reasonably explained by a negative-feedback model of cochlear function. At high sound levels, negative DC current reduces the emission, while positive current has little effect. These data can be accounted for by voltage-dependent length changes shown to occur in isolated outer hair cells, with the additional requirement that voltage-dependent K+ channels in outer hair cells reduce the effectiveness of positive DC current in changing membrane potential.

Acoustic Stimulation↗

[Experimental gene transfer study using anucleated reticulocytes as target cells].

We report here a novel approach to introduce reporter beta-galactosidase genes into anucleated rabbit reticulocytes. The results indicate that the beta-galactosidase gene was expressed to certain degree in the cytoplasm of the reticulocytes. Our study has provided a useful model system for gene expression studies in anucleated eukaryotic cells.

Animals↗

[A practical method of whole mount TEM sample preparation and the study of nuclear matrix-intermediate filament scaffolds in K562 cells].

We applied culture plates with bored holes covered with FORMVAR and coated with carbon, to replace the gold grids used in conventional whole mount TEM study. Human erythroleukemia cell line K562 cells plated on the plate surface were extracted using a modified protocol to study scaffolds of nuclear matrix (NM) and intermediate filament (IF). The NM of the K562 cells was found to be composed of interweaving filaments of different diameters, while the cytoplasmic IF were mainly distributed in a radialized pattern. Compared with other techniques of whole mount TEM sample preparations, this one is much more practical and economical, yielding clear NM-IF structures with few artifacts. Study of NM-IF scaffolds in K562 cells might provide a basis for further elucidation of the involvement of NM-IF in the denucleation of mammalian erythroblasts.

Humans↗

Antispermatogenic effect of Tripterygium wilfordii and tripchlorolide (T4) on rat gametogenesis and spermatozoa.

The multiglycosides of Tripterygium wilfordii (TII), a ready-made Chinese herbal medicine used for the treatment of rheumatoid arthritis, have been shown to cause oligospermia in patients. In the present study, the antifertility effects of TII and tripchlorolide (T4, isolated from TII) were observed in male rats. In rats fed with TII at a dose of 10 mg.kg.d for 7 weeks, the seminiferous tubules were essentially not influenced. However, most of the sperm heads along the surface of the tubular lumen were transformed from the normal sickle-shaped to round shaped, suggesting a possible mutagenic action. There was minimal testicular change but prominent epididymal spermatozoa damage in all rats treated with T4 (0.05 mg.kg.d) for 7 weeks. The epididymal spermatozoa showed various structural abnormalities, including disrupted connecting pieces and cracked midpieces, and more than 80% of the spermatozoa were decapitated. No significant changes were seen in the main visceral organs. The data suggest that T4 may have good prospects as a male contraceptive.

Animals↗

Acoustic enhancement of electrically-evoked otoacoustic emissions reflects basilar membrane tuning: experiment results.

Acoustic enhancement of the electrically-evoked otoacoustic emissions (EEOEs) was investigated by systematically varying acoustic frequency and intensity. The results demonstrated that simultaneous acoustic stimulation at frequencies around the characteristic frequency of the electrical current injection place was most effective in enhancing low-frequency EEOEs. Moreover, it was demonstrated that the enhancement was tuned and graded. The enhancement threshold tuning curves (defined as sound pressure level needed to achieve 1 dB of enhancement) resembled basilar membrane tuning at high sound pressure levels. The data suggest that the emissions were generated from a cochlear region near the electrode place, and the magnitude of the enhancement depends on the magnitude of the basilar membrane response to the acoustic stimulus.

Acoustic Stimulation↗

Effect of intra-vas deferens injection of gossypol-polylactic acid on fertility and spermatogenesis in rats.

In order to reduce gossypol's side effects, we applied a controlled drug release system. In this system gossypol is carried on a polymer of polylactic acid which controls drug release and can also be injected into the vas deferens so that the drug can act continuously and directly on spermatogenesis. We used a single dose of gossypol-polylactic acid (0.35 mg/0.1 ml for each vas deferens) which is only 0.2% of the usual antifertility dose. Fertility tests showed that male rats became infertile 4 weeks after intravasal injection of gossypol-polylactic acid. Gross and microscopic findings in the heart, liver, kidneys and lungs revealed no evidence of pathologic change. Treated rats gained body weight as fast as did the controls. The majority of spermatozoa showed breakage of the axial fibers, indicating that gossypol had diffused into the testes. The fertility of the treated rats recovered four to eight months after treatment. Gossypol-polylactic acid injected into the vas deferens exhibited a low degree of toxic side effects and a high antifertility activity, and is therefore an important approach to decreasing the side effects while enhancing the antifertility specificity of gossypol.

Animals↗

Changes of calmodulin contents in single vascular smooth muscle cells from the tail arteries of spontaneously hypertensive rats.

By combining immunohistochemistry and fluorocytometry techniques, total calmodulin (total CaM), Ca(2+)-bound calmodulin (Ca.CaM) and total protein contents in single vascular smooth muscle cells (VSMC) enzymatically dispersed from the tail arteries of young (5-7 weeks old, prehypertensive) and adult (20-24 weeks old, established hypertensive) stroke-prone spontaneously hypertensive rats (SHRsp) were studied and compared with those of age-matched Wistar-Kyoto rats (WKY). No significant difference was found in total CaM, Ca.CaM and protein contents between young SHRsp and WKY. Total CaM and protein contents in adult SHRsp were increased by similar degrees (30.7% and 27.5%, respectively) as in age-matched WKY, suggesting that increased total CaM content may be a consequence of increased synthesis of cellular protein during hypertension. However, Ca.CaM contents in adult SHRsp were significantly increased over those in age-matched WKY by a much higher degree (86.2%), reflecting an abnormal Ca2+ homeostasis in single VSMCs during hypertension.

Age Factors↗