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Biomedical subjects

W Jin

Publications and source records attributed to W Jin.

At least 109 records · Page 6Linked to original sources

Sequence requirements for regulated RNA splicing of the human fibroblast growth factor receptor-1 alpha exon.

Progression of astrocytes from a benign to a malignant phenotype is accompanied by a change in the RNA processing of the fibroblast growth factor receptor 1 (FGFR-1) gene. The level of a high affinity form of the FGFR-1 is dramatically elevated as a result of alpha-exon skipping during RNA splicing. In this paper we have been able to duplicate this tumor-specific RNA processing pathway by transfection of a chimeric minigene containing a 4-kilobase fragment of the human FGFR-1 gene (including the alpha-exon) into a variety of cell lines. In a transfected human astrocytoma cell line, alpha-exon skipping was consistently observed for RNA transcripts derived from both the chimeric minigene and endogenous gene expression. This exon skipping phenotype was dependent on the size of the flanking intron as deletions which reduced the introns to less than approximately 350 base pairs resulted in enhanced alpha-exon inclusion. Increased exon inclusion was not sequence-specific as exon skipping could be restored with insertion of nonspecific sequence. Cell-specific exon recognition was maintained with a 375-nucleotide sequence inclusive and flanking the alpha-exon, provided that intron size was maintained. These results identify the minimal cis-regulatory sequence requirements for exclusion of FGFR-1 alpha-exon in astrocytomas.

Base Sequence↗

Agonist-induced phosphorylation of the kappa-opioid receptor.

Antipeptide antibodies against the kappa-opioid receptor were used to test whether acute or chronic exposure to kappa agonists altered the phosphorylation state of the kappa-opioid receptor. Immunoprecipitation of the kappa receptor from guinea pig hippocampal slices preincubated in [32P]orthophosphoric acid revealed a basal phosphorylation of the kappa-opioid receptor. The amount of 32P incorporation into the receptor was increased following a 75-min treatment with the kappa agonist U50,488H. This effect was blocked by the selective kappa receptor antagonist norbinaltorphimine. The time course of this change in the phosphorylation state of the receptor correlated with a desensitization of the electrophysiological response to kappa agonists measured in the dentate gyrus of hippocampal slices. The phosphorylation state of the kappa-opioid receptor was also elevated in brain slices from guinea pigs made tolerant to U50,488H by 5 days of continuous exposure and then maintained in kappa agonist to avoid acute opiate withdrawal. The results of this study show that the kappa-opioid receptor was phosphorylated in an agonist-dependent manner in brain slices taken from untreated and U50,488H-tolerant animals.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

Glycine68 to histidine73 has an important role in the function of human tumor necrosis factor alpha.

Mutant human tumor necrosis factor alpha(hTNF alpha) genes have been constructed by in vitro mutagenesis and expressed in Escherichia coli. A deletion involving Gly68 to His73 in hTNF alpha remarkably decreased the solubility and biological activity of hTNF alpha. From the above and results of a molecular dynamics simulation it is proposed that the region of Gly68 to His73 in hTNF alpha has an important role in the maintenance of the 3-D structure and modulation of the biological activity of hTNF alpha.

Amino Acid Sequence↗

Extracellular Ca2+ directly regulates tight junctional permeability in the human cervical cell line CaSki.

Lowering extracellular calcium concentration ([Ca2+]o) increases acutely and reversibly the transepithelial electrical conductance (G(TE)) and the epithelial permeability to pyranine (Ppyr) across CaSki cultures. Effects were already observed after lowering calcium from 1.2 to 1.0 mM and were maximal at 0.1 mM. The dose-response curves were sigmoidal (calcium concentration that produces half-maximal effect = 0.3 mM), and the time courses indicated simple exponential trends (time constants of 4-5 min). The effect of calcium was not mediated by mobilization of cytosolic calcium or altering calcium influx, and manganese was found to be a partial agonist to [Ca2+]o. The effects of [Ca2+]o, on permeability were additive to those of hypertonic conditions, indicating that calcium modulates junctional permeability. The experimental data were fitted to theoretical models that relate changes in G(TE) to the probability of assembled/disassembled tight junctions. The results suggest that calcium interacts directly and cooperatively at extracellular sites with junctional elements that are arranged in parallel, and it shifts the probability state of the junctions from "open" to "closed" state. Changes in extracellular calcium may affect the permeability of tight junctions of the cervical epithelium and may play a role in regulating production of cervical mucus.

Calcium↗

Purinergic-mediated inhibition of Na+-K+-ATPase in proximal tubule cells: elevated cytosolic Ca2+ is not required.

The involvement of cytosolic Ca2+ concentration ([Ca2+]i) as messenger for the regulation of Na+-K+-ATPase activity was investigated in a renal cell line recently developed by immortalization of early proximal tubule primary cultures from the Wistar-Kyoto rat strain. Na+-K+-ATPase was measured as short-circuit current (Isc) in intact monolayers after permeabilization of the apical plasma membrane with amphotericin B. With symmetrical solutions, Isc quantitatively reflects Na+-K+-ATPase activity as judged by ouabain inhibition and dependence on Na+ and K+. Extracellular ATP (50% effective concentration = 0.32 mM) on the apical side produced acute inhibition of Na+-K+-ATPase-generated Isc of up to 50%. The inhibition peaked within 1 min and lasted approximately 5 min. The potency order was ATP > ADP >> beta,gamma-methyleneadenosine 5'-triphosphate = UTP, consistent with a P2y receptor. Extracellular ATP also stimulated a transient increase in [Ca2+]i. This increase had a similar time course as the inhibition of ATPase and reached a peak change of approximately 120 nM. However, the elevation of [Ca2+]i is not required in the purinergic inhibition of the Na+-K+-ATPase, since, first, increases in [Ca2+]i produced with a Ca2+ ionophore (ionomycin) failed to mimic the purinergic inhibition and, second, 1,2-bis(2-aminophenoxy)-ethane-N,N,N',N'-tetraacetic acid, which abolished the [Ca2+]i elevation, failed to block the purinergic inhibition.

Adenosine Triphosphate↗

Dipeptide-induced Cl- secretion in proximal tubule cells.

During a survey of dipeptides that might be transported by the renal PEPT2 transporter in proximal tubule cells, we discovered that acidic dipeptides could stimulate transient secretory anion current and conductance increases in intact cell monolayers. The stimulatory effect of acidic dipeptides was observed in several proximal tubule cell lines that have been recently developed by immortalization of early proximal tubule primary cultures from the Wistar-Kyoto and spontaneously hypertensive rat strains and humans, suggesting that this phenomenon is a characteristic of proximal tubule cells. The electrical current induced in intact monolayers by Ala-Asp, a representative of these acidic dipeptides, must represent Cl- secretion rather than Na+ or H+ absorption, because 1) it was Na+ independent, 2) it showed a pH dependence different from that of the PEPT2 cotransporter, and 3) it correlated with an Ala-Asp-induced increase in Cl- conductance of the apical membrane in basolaterally amphotericin B-permeabilized monolayers. The secretory current could be inhibited by stilbene disulfonates, but not diphenylamine-2-carboxylates, suggesting a non-cystic fibrosis transmembrane conductance regulator type of Cl- conductance. The effect of Ala-Asp was dose dependent, with an apparent 50% effective concentration of approximately 1 mM. Ala-Asp also produced intracellular acidification, suggesting that acidic dipeptides are also substrates for an H(+)-peptide cotransporter.

Animals↗

[Injectable bioerodible polymer with 5-fluorouracil used in filtration surgery in rabbits].

OBJECTIVE: A prospective randomized and placebo-controlled study was performed to evaluate the effect and toxicity of injectable bioerodible polymer with 5-fluorouracil (5-Fu) on the filtration surgery in rabbits. METHODS: Posterior lip sclerectomies were performed on both eyes of 23 rabbits. Injectable bioerodible polymer impregnated with 2.5% 5-Fu 10 mg was injected subconjunctivally in 16 eyes, and 2.5% 5-Fu 10 mg was injected subconjunctivally in 14 eyes every other day for three times in the first week and every two days for three times in the second week post-operatively. Another 16 eyes received the drug-free polymer after surgery and served as controls. RESULTS: The bleb in the eyes treated with drug-free polymer failed in the postoperative 7 days and the bleb in the eyes treated with 5-Fu injection failed in 20-30 days, while the bleb in the eyes treated with 5-Fu polymer remained successful throughout the experimental period. From 7 to 30 postoperative days, the rate of scleral fistula occlusion was 6.7% in the eyes treated with 5-Fu polymer, 41.7% in the eyes treated with 5-Fu injection and 100% in the eyes treated with drug-free polymer. Corneal epithelial defects appeared in 3 eyes treated with 5-Fu polymer, in 8 eyes treated with 5-Fu injection and in 2 eyes treated with drug-free polymer. CONCLUSION: Injectable bioerodible polymer with 5-Fu may significantly prevent bleb scarring and subsequent blockage of the filtering tract, enhance success rate of filtering surgery in rabbits and reduce the toxicity of 5-Fu. This drug delivery system has considerable value for clinical use.

Animals↗

[Expression of human 17 beta-hydroxysteroid dehydrogenase gene in BmNPV expression system].

Estrogenic 17 beta-hydroxysteroid dehydrogenase (17 beta-HSD) plays a crucial role in the synthesis of estrogens, but it also produces negative action of estrogens in promoting the growth of hormone-sensitive cancers, especially in breast and prostate. The high specific activity can be taken as an important signal for the diagnosis of cancers. Recombinant rAcBm-NPV/17 beta-HSD virus which contains the human 17 beta-HSD cDNA under the control of polyhedron gene promoter is generated by cotransfection of the BmN cells with the transfer plasmid pVL/17 beta-HSD and wild BmNPV genomic DNA. 17 beta-HSD is maximally expressed 72 h and 120 h post infection in BmN cells and the 5th instar silkworm larvae respectively. At those time interval, intracellular and hemolymphic enzymatic activity reach 0.12 U/mg and 0.15 U/mg of protein which produced total activity of 0.97 U/1.5 x 10(6) cells and 4.7 U/larva. The expressed quantities in female larvae are a little higher than that in male larvae. The present data shows that Silkworm/BmNPV expression system can express 3-5 times higher than that of the richest human placenta. It also indicates that there is an apparent band with a molecular mass of 35 kDa using SDS-PAGE method, the size of which is similar to that of the crude enzyme from placenta.

17-Hydroxysteroid Dehydrogenases↗

[Chemical constituents of Isodon pharicus (Prain) Murata].

Two compounds were isolated from Isodon pharicus. Their structures were elucidated as 11 beta, 13 alpha, 15 alpha-trihydroxy-entkaur-16-en-3 alpha-(beta-D-glucoside) (named isodopharicin F) and eugenyl-beta-D-glucopyranoside by spectral data and chemical evidence.

Drugs, Chinese Herbal↗

Anatomic dissociation between HIV-1 and its endogenous inhibitor in mucosal tissues.

The rarity of oral transmission of human immunodeficiency virus (HIV)-1 by saliva suggests the absence of HIV-1 in the oral cavity and/or the presence of viral inhibitory molecules. We analyzed salivary gland tissues from 55 individuals with acquired immune deficiency syndrome (AIDS) for the presence of HIV-1 by in situ hybridization and detected the virus in more than 30% of these salivary glands. These data, together with previous demonstrations of HIV-1 in oral secretions, implicate a key role for an anti-viral molecule(s) in suppressing transmission. Thus, we focused on the characterization and localization of the endogenous antiviral molecule secretory leukocyte protease inhibitor (SLPI), which inhibits HIV-1 infection in vitro. Expression of SLPI transcripts was evident in submandibular, parotid, and minor salivary glands from both HIV-1-infected and seronegative subjects. Gene expression was reflected by similar levels of SLPI protein by immunohistochemical analysis in the tissues and by enzyme-linked immunosorbent assay in the saliva. However, although SLPI accumulated in acinar cells or ductal epithelium, HIV-1 transcripts did not, and these viral transcripts were identified only in mononuclear cells within the salivary gland stroma. By in situ hybridization, we found no evidence of productive HIV-1 infection of salivary gland epithelium. Thus, HIV-1 was frequently identified in salivary gland tissue, but the virus was found in interstitial mononuclear cells only and did not co-localize with SLPI. Once within the oral cavity, HIV-1 exposure to antiviral levels of SLPI may impede infection of additional target cells, contributing to the virtual absence of oral transmission of HIV-1 by saliva. These studies emphasize the importance of innate, endogenous inhibitors of HIV-1, particularly SLPI, as effective inhibitors of HIV-1 transmission.

Acquired Immunodeficiency Syndrome↗

Kappa opioid receptor tolerance in the guinea pig hippocampus.

We investigated whether chronic, in vivo administration of U50,488H, a kappa-1 opioid agonist, caused the development of tolerance to both the electrophysiological effects of applied kappa opioids and endogenously released dynorphins. In hippocampal slices from drug-naive guinea pigs, application of U69,593, a kappa-1 agonist, produced a concentration-dependent inhibition (EC50 = 20 nM) of the amplitude of the granule cell population response in the dentate gyrus. In slices from chronically U50,488H-treated animals, the concentration-response curve for U69,593 was shifted 3-fold to the right (EC50 = 59 nM), with a significant decrease in the maximal effect of U69,593. We also found that the effects of endogenously released dynorphins were significantly attenuated by chronic U50,488H treatment. There was no cross-tolerance between kappa and mu opioid receptor agonists as measured with the in vitro electrophysiological assay, and the noncompetitive N-methyl-D-aspartate receptor antagonist MK801 did not prevent the development of tolerance to either the electrophysiological effects or the hypothermic effects of kappa opioids. Our study demonstrates that receptor-selective tolerance to the kappa opioid actions in the guinea pig hippocampus does develop after chronic U50,488H treatment; but, unlike the mechanisms reported to underlie tolerance to kappa opioid analgesia, the inhibitory effects in the hippocampus did not depend on activation of N-methyl-D-aspartate receptors.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

Ceramide selectively inhibits early events in the response of human neutrophils to tumor necrosis factor.

Cell spreading and the respiratory burst of neutrophils responding to soluble, physiological agents and adherent to model biological surfaces are typically delayed in onset by 15 min or more. The lag period may be a physiologically important feature of the action of such agents on neutrophils in that it may allow for migration before secretion. However, the mechanism that interposes such a long delay between stimulus and response is unknown. Tumor necrosis factor alpha (TNF-alpha) mediates some of its actions by triggering sphingomyelinase to generate ceramide. In adherent human neutrophils, however, exogenous ceramide did not mimic TNF-alpha's ability to stimulate cell spreading, paxillin tyrosine phosphorylation, or the respiratory burst. On the contrary, ceramide suppressed each such response. Ceramide did so by extending the lag period in the cells' response to TNF-alpha. Ceramide extended the lag period whether it was added exogenously or generated endogenously by sphingomyelinase, and the effect was reversible. Remarkably, however, ceramide inhibited cell spreading or the respiratory burst only if added together with TNF-alpha or within the next few minutes. Neutrophils ignored ceramide if it was added later, even if the TNF-alpha-triggered respiratory burst had not yet commenced. These features suggest that an early, brief elevation of ceramide in response to TNF-alpha could mediate the lag period. By temporarily inhibiting tyrosine phosphorylation, cell spreading, and the respiratory burst, ceramide or a functionally similar mediator could serve as a phase coordinator of the neutrophil's response to soluble agonists.

Adult↗

Immortalization and characterization of proximal tubule cells derived from kidneys of spontaneously hypertensive and normotensive rats.

Epithelial cell lines from the proximal tubule of SHR and WKY rats were generated by microdissection, cell growth on 3T3 cell feeder layers, and transduction of the SV40 large T-antigen gene. The cell lines that formed confluent, electrically-resistive monolayers (basal conductance 1 to 20 mS/cm2) were selected for further study. Of these, cell lines generated from one rat did not show evidence of T-antigen expression or integration, and apparently immortalized spontaneously. Cell lines from three other rats expressed high levels of T-antigen, and showed evidence of integration of one or more copies of T-antigen. All cell lines formed polarized monolayers with apical microvilli, tight junctional complexes, and convolutions of the basolateral plasma membrane. Most cell lines grew in the absence of extracellular glucose indicating a capacity for gluconeogenesis. Sodium succinate cotransport and P2-purinergic receptor mediated signaling were demonstrated in all lines tested. The cell lines also showed that Na/H exchanger activity is regulated by angiotensin II. The results indicate that these cell lines express a proximal tubular phenotype, and are morphologically and functionally similar to primary cultures. These rat cell lines represent a new, potentially useful cell model for elucidating the cellular and molecular mechanisms of genetic differences in proximal tubule Na+ reabsorption.

3T3 Cells↗

[Clinical trial of an anti-fertility method with testosterone enanthate in normal men].

OBJECTIVE: To establish the feasibility of anti-fertility by ultraphysiological-dosage testosterone in male. METHODS: Ten healthy, fertile men received 200 mg testosterone enanthate weekly by intramuscular injection based on international standard protocol. RESULTS: After 3-month injection, severe oligospermia was achieved. After 6-month injection, azoospermia was achieved. The total consecutive administration lasted for 12 months. During the period of severe oligospermia and azoospermia no partner was pregnant. After stopping injection, the sperm output returned to normal (20 x 10(8)/ml) in 2-3 months up to individual's own level before administration in 6 months. CONCLUSION: Severe oligospermia and azoospermia can be induced by ultra-pathological-dosage tesosterone through inhibiting FSH, LH to cause spermatogenesis inhibition. The sperm output would recover to its previous level in 6 months after stopping injection. It is suggested that there is a strong possibility that high-dosage testosterone may act as a male contraceptive.

Adult↗

Biosensor based on an enzyme modified electrode for highly-sensitive measurement of polyphenols.

The use of glucose dehydrogenase from Acinetobacter calcoaceticus for highly sensitive measurement of polyphenols, based on bioelectrocatalytic analyte recycling, has been demonstrated. A polyphenol (analyte) is oxidized on the surface of a glassy carbon electrode at an anodic potential and is regenerated by immobilized glucose dehydrogenase (GDH) in the presence of glucose, resulting in an amplified response. The dynamic properties of the enzyme-modified glassy carbon electrode allow the convenient monitoring of subnanomolar analyte concentration. The detection limits for p-aminophenol and norepinephrine are 0.2 nM and 0.5 nM, respectively.

Acinetobacter↗