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Biomedical subjects

M S Kim

Publications and source records attributed to M S Kim.

At least 19 recordsLinked to original sources

Oxytocin receptor couples to the 80 kDa Gh alpha family protein in human myometrium.

One of the primary functions of the oxytocin receptor is to modulate intracellular calcium levels in myometrium. The oxytocin receptor has been purified and cloned. Although it has been suggested that oxytocin receptor couples with a GTP-binding regulatory protein (G-protein), the identity of this G-protein remains unclear. To elucidate the mechanism of oxytocin receptor signalling, we used the oxytocin-receptor-G-protein ternary complex preparation from human myometrium, and evaluated oxytocin-mediated activation of [35S]guanosine 5'-[gamma-thio]triphosphate ([35S]GTP[S]) binding and [alpha-32P]GTP photoaffinity labelling to a G-protein. Binding of [35S]GTP[S] and the intensity of the [alpha-32P]GTP photoaffinity labelled protein resulting from activation of the oxytocin receptor were significantly attenuated by the selective oxytocin antagonist, desGlyNH2d(CH2)5[Tyr(Me)2,Thr4]OVT. Furthermore, the molecular mass of the specific GTP-binding protein was approximately 80 kDa; homologous with the Gh alpha family, the new class of GTP-binding proteins first identified in rat liver that couples to the alpha 1B-adrenoceptor. Consistent with these observations, in co-immunoprecipitation and co-immunoadsorption of the oxytocin receptor in the ternary complex preparation by anti-Gh7 alpha antibody, the Gh alpha family protein tightly coupled to the oxytocin receptor. These findings demonstrate that oxytocin receptor couples with approximately 80 kDa Gh alpha in signal mediation.

Affinity Labels

A novel antimicrobial peptide from Bufo bufo gargarizans.

A potent and structurally novel antimicrobial peptide was isolated and characterized from the stomach tissue of Bufo bufo gargarizans, an Asian toad. The 39-amino acid peptide, named buforin I, was purified to homogeneity by heparin-affinity column and reverse-phase HPLC. The amino acid sequence of buforin I was identical in 37 of 39 amino-terminal residues of Xenopus histone H2A. The buforin I showed strong antimicrobial activities in vitro against a broad-spectrum of microorganisms and was found to be more potent than magainin 2. In addition, a 21-amino acid peptide, named buforin II, which was derived from buforin I, showed more potent antimicrobial activities than buforin I.

Amino Acid Sequence

Nicotine effects on prostaglandin-dependent gastric slow wave rhythmicity and antral motility in nonsmokers and smokers.

BACKGROUND & AIMS: Mechanisms of antral hypomotility with smoking are unknown. Slow wave disruption, which may be prostaglandin dependent, inhibits gastric motility. This study tested if nicotine reproduces motor effects of smoking and assessed the role of slow wave disruption in inducing hypomotility and the prostaglandin dependence of dysrhythmic responses. METHODS: Electrogastrography and antroduodenal manometry were performed in 9 nonsmokers and 9 smokers during transdermal nicotine treatment (14 mg). Studies were repeated after administration of 150 mg indomethacin daily for 3 days to test prostaglandin requirements of nicotine responses. RESULTS: Antral migrating motor complex periodicity and fasting and fed motility indices, not different in the groups under control conditions, decreased similarly in nonsmokers and smokers with nicotine. Tachygastria (> 4.5 cycle/min) increased from 2% +/- 2% to 16% +/- 3% of recording time, and arrhythmias (frequency instability index) increased from 0.5 +/- 0.1 to 1.1 +/- 0.2 cycle/min with nicotine in nonsmokers (P < 0.05), which normalized with indomethacin. Electrogastrography results were unchanged in smokers. CONCLUSIONS: Nicotine evokes antral hypomotility in nonsmokers and smokers but evokes prostaglandin-dependent gastric dysrhythmias only in nonsmokers. Smokes show desensitization to nicotine-stimulated dysrhythmias. Thus, slow wave disruption is not essential to inhibit motor activity. This provides a model for the motor and myoelectric effects of smoking.

Adolescent

Hyperglycemia inhibits mechanoreceptor-mediated gastrocolonic responses and colonic peristaltic reflexes in healthy humans.

BACKGROUND/AIMS: The effects of hyperglycemia on colonic motor function are unknown. Therefore, colonic neuromuscular function was tested in normal volunteers as a model for constipation in diabetes. METHODS: Extended (gastrocolonic response) and local (peristaltic reflex) neural responses and colonic muscle contractility were tested under control, hyperglycemic clamp, and euglycemic, hyperinsulinemic clamp conditions with placement of barostat-regulated balloons in the descending colon to measure changes in tone as differences in balloon volume. RESULTS: Hyperglycemic clamping to 274 +/- 3 mg/dL blunted increases in colon tone evoked by gastric distention (gastrocolonic response) (100-300 mL) but did not affect gastric tone. Three descending colonic balloons in series assessed the peristaltic reflex. Inflation of the middle stimulus balloon increased proximal tone, an increase that was blunted by hyperglycemia, but produced distal relaxation followed by increases in tone that were unaffected by hyperglycemia. Euglycemic, hyperinsulinemic clamping had no effect on the gastrocolonic response or peristaltic reflex. Tonic increases evoked by bethanechol (5 mg administered subcutaneously) were unaffected by hyperglycemic clamping. CONCLUSIONS: Hyperglycemia blunts mechanoreceptor-mediated gastrocolonic responses and ascending contractions but not descending components of the peristaltic reflex in humans, effects not caused by hyperinsulinemia or direct muscle actions. These inhibitory effects on long and short neural reflexes that modulate colonic motility may contribute to constipation in diabetes.

Adult

Central cholinergic and alpha-adrenergic mediation of gastric slow wave dysrhythmias evoked during motion sickness.

Motion sickness is associated with gastric slow wave disruption. Animal models of slow wave disturbances show dependence on neural and prostaglandin pathways. Roles of these pathways in circular vection-evoked gastric dysrhythmias and nausea were tested. Eight volunteers with histories of motion sickness underwent vection (60 degrees/s), during which nausea (0 = none to 3 = severe) and electrogastrographic parameters were assessed. Tachygastric activity was expressed as the signal percentage at frequencies of > 4.5 cycles/min. Circular vection induced a maximal nausea score of 2.8 +/- 0 at 513 +/- 66 s. Tachygastric activity increased from 18 +/- 2 to 37 +/- 4% (P < 0.05) and peaked before maximal nausea. Atropine reduced nausea scores to 0 +/- 0 (P < 0.01) with no increase in tachygastric activity (14 +/- 6%). In contrast, the peripheral muscarinic antagonist methscopolamine did not reduce tachygastric activity (46 +/- 4%), nausea (1.8 +/- 0.5), or time to maximal tachygastric activity (504 +/- 80 s) with vection. Phentolamine reduced nausea (1.5 +/- 0.3, P < 0.01) and tachygastric activity, and delayed their onset, whereas propranolol and naloxone had no effect. Pretreatment with oral indomethacin (50 mg) three times daily for 3 days had no effect on vection-evoked tachygastric activity or nausea. To conclude, circular vection evokes gastric dysrhythmias that correlate temporally with maximal nausea and are suppressed by atropine, but not methscopolamine, and are reduced by phentolamine. In contrast to other models of slow wave disruption, endogenous prostaglandins play no role. Thus central cholinergic pathways mediate vection-evoked dysrhythmias with additional modulation by alpha-adrenergic pathways.

Adult

Effect of sensory deprivation or electrical stimulation on acute vestibular symptoms following unilateral labyrinthectomy in rabbit.

The effect of sensory deprivation or electrical stimulation on vestibular compensation was investigated for 7 days after unilateral labyrinthectomy (ULX) in 50 rabbits. Eye movements induced by sinusoidal rotation of the whole body and spontaneous nystagmus were measured for vestibulo-ocular compensation, and head deviation was measured for vestibulospinal compensation. The rabbits were divided into 4 groups: one with ULX only (LX only), ULX with bilateral tarsorrhaphy (LX+TX), ULX with cervical dorsal root ganglionectomy (LX+GX), and a group stimulated electrically on the lesion-sided vestibular system with square pulse for 8 h/day (LX+ES). In LX only, the frequency of spontaneous nystagmus was 2.93 +/- 0.19 beats/sec just after ULX, declining to zero in 4 days. In eye movements induced by sinusoidal rotation on the 7th day after ULX, directional preponderance was 24-43% and gain decreased to 32-48% by rotation toward the intact side and 17-29% by rotation toward the lesion side, compared with that before ULX. Roll head tilt and yaw head tilt were 82 +/- 9 degrees, 45 +/- 6 degrees, respectively, on the 7th day. Recovery of vestibulo-ocular reflex and head deviation was delayed in LX+TX and LX+GX compared with that in ULX only, but recovery was enhanced in LX+ES. Therefore, in this study, electrical stimulation of the lesion side seemed to have a favorable effect on suppression of acute vestibular symptoms induced by unilateral vestibular lesion.

Acute Disease

Gas chromatographic-electron-impact chemical ionization mass spectrometric identification of cinmetacin and its metabolites in human urine.

Cinmetacin and its three metabolites were identified by gas chromatography-electron-impact positive-ion chemical ionization-negative chemical ionization mass spectrometry. After a single oral dose of 30 mg of cinmetacin to a healthy man, urine was collected and hydrolysed. The three metabolites were identified as O-desmethylated, N-descinnamoyl and C-C double bond reduced cinmetacins. The identification of cinmetacin metabolites in human urine was established by comparison of their GC retention times and electron impact and methane chemical ionization mass spectra with those of the synthesized authentic standards.

Anti-Inflammatory Agents, Non-Steroidal

Results one year after using the 193-nm excimer laser for photorefractive keratectomy in mild to moderate myopia.

As part of a clinical trial, photorefractive keratectomy using the VISX 2015 193-nm excimer laser was performed on 91 healthy eyes of 91 patients. Preoperative refractive errors (spherical equivalent) ranged from -1.00 to -7.50 diopters (mean, -4.16 +/- 1.41 diopters). No patient had more than 1 diopter of refractive astigmatism. Six months postoperatively, the average residual refractive error was +0.09 +/- 0.63 diopters (range, -2.13 to +1.63 diopters). Correction within 1 diopter of that attempted was attained in 85 eyes (93%). Uncorrected visual acuity of 20/40 or better was attained in 86 eyes (95%) and was 20/25 or better in 67 eyes (74%). At one year, follow-up information was available on 85 eyes of 85 patients. The average residual refractive error was -0.15 +/- 0.65 diopters (range, -2.50 to +1.63 diopters). Correction within 1 diopter of that attempted was attained in 85 eyes (93%). Uncorrected visual acuity was 20/40 or better in 83 eyes (98%) and was 20/25 or better in 68 eyes (80%). One patient lost three lines of best-corrected visual acuity because of corneal haze, dropping from 20/15 to 20/30, whereas all other patients returned to best-corrected visual acuity within one line of their preoperative best-corrected visual acuity. Photorefractive keratectomy with the 193-nm excimer laser appears to be a useful treatment modality for the reduction of mild to moderate myopia.

Adolescent

Stimulatory effects of the central amygdaloid nucleus on pancreatic exocrine secretion in rats.

The effects of electrical stimulation of the central (CE) and basolateral (BL) amygdaloid nuclei on pancreatic exocrine secretion were tested in urethane-anesthetized rats. Electrical stimulation (0.1 mA, 1 ms, 40 Hz) of the CE significantly increased basal and hormone (secretin+cholecystokinin-8)-infused pancreatic exocrine secretion. These increases in pancreatic secretion were abolished by bilateral vagotomy. Electrical stimulation of the BL had no significant effect on basal and hormone-infused secretion. We conclude that the CE plays a stimulatory role in pancreatic exocrine secretion via the vagus nerve but the BL does not affect pancreatic secretion.

Amygdala

Changes in the antioxidative defensive system during open heart operations in humans.

It is known that reperfusion of the ischemic myocardium may intensify damage and increase the extent of myocardial necrosis. Oxygen free radicals and their metabolites have been implicated as possible elements in myocardial ischemia-reperfusion injury. In this study in cyanotic patients undergoing open heart operation for tetralogy of Fallot, the myocardial tissue activities of catalase, superoxide dismutase, glutathione peroxidase, and lactate dehydrogenase were determined together with the tissue contents of malondialdehyde, oxidized glutathione, and total glutathione using the spectrophotometric assay method. The tissue activities of catalase, superoxide dismutase, and glutathione peroxidase increased significantly after myocardial reperfusion (p < 0.05) when compared with the tissue activities of the control group (myocardial tissue taken immediately after aortic cross-clamping). The tissue content of malondialdehyde increased significantly after reperfusion (p < 0.05), but the tissue activity of lactate dehydrogenase and the ratio of oxidized glutathione to total glutathione showed an insignificant difference after reperfusion. These data suggest that peroxidation of the cardiac lipids was triggered by the reperfusion of the hypoxic heart, but the myocardial cellular damage was not significant enough to decrease the myocardial lactate dehydrogenase and total glutathione levels. These results also suggest that oxygen free radicals may play an important role in in-vivo myocardial reperfusion stress, but endogenous self-defensive enzyme systems to protect the cell against the cytotoxic oxygen metabolites also were triggered, and the resulting myocardial cellular damage was insignificant.

Catalase

Use of the 193 nm excimer laser for photorefractive keratectomy in low to moderate myopia.

As part of a Phase III clinical trial, photorefractive keratectomy using the VISX 2015 193 nm excimer laser was performed on 91 sighted eyes of 91 patients. Preoperative refractive errors (spherical equivalent) ranged from -1.00 diopters (D) to -7.50 D (mean -4.11 D +/- 1.43 D). At six months, average residual refractive error was 0.02 D +/- 0.64 D (range -2.21 D to +1.38 D). Ninety-three percent of eyes were within 1.00 D of attempted correction, 93% had uncorrected visual acuity of 20/40 or better, and 72% achieved uncorrected visual acuity of 20/25 or better. All patients returned to their best corrected visual acuity within one line of their preoperative best corrected visual acuity. Photorefractive keratectomy with the 193 nm excimer laser appears to be useful in reducing low to moderate myopia.

Adolescent