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Biomedical subjects

D Kim

Publications and source records attributed to D Kim.

At least 289 records · Page 16Linked to original sources

ATP-dependent regulation of a G protein-coupled K+ channel (GIRK1/GIRK4) expressed in oocytes.

Recent studies suggest that activation of the atrial muscarinic K+ current by acetylcholine (ACh) involves an ATP-dependent process that is then inhibited by a cytosolic protein to result in the rapid desensitization. To obtain further evidence in support of such a dually regulated process, we studied the properties of GIRK1 and GIRK4, which, when coexpressed in oocytes, form a heteromultimer that closely resembles the muscarinic K+ channel. ACh activated an inwardly rectifying K+ current that desensitized slowly. In cell-attached patches with ACh in the pipette, the mean open times (tau zero) of GIRK1/GIRK4 were 1.2 +/- 0.1 (28%) and 6.7 +/- 0.8 ms (72%) and did not change significantly with time. However, in inside-out patches, the tau zero of GIRK1/GIRK4 activated with guanosine 5'-O-(3-thiotriphosphate) was 1.3 +/- 0.1 ms (100%), and the channel activity (NP0) was almost fivefold lower. These changes in channel kinetics did not occur in the presence of sodium orthovanadate (3 mM), an inhibitor of phosphatase. Addition of 1 mM ATP, but not adenylimidodiphosphate, to inside-out patches resulted in increases in NP zero (4.8-fold) and the open-time duration of GIRK1/GIRK4, such that tau zero were 1.2 +/- 0.2 (32%) and 6.2 +/- 0.6 ms (68%). Single channel conductances were unchanged (34 +/- 1 pS). Cytosolic extract from atria, but not oocytes, could reverse these effects of ATP. These results provide further evidence that the antagonistic modulation of G protein-gated K+ channels by ATP and the atrial cytosolic protein produces the early rapid desensitization in atrial cells. In oocytes the ATP-dependent step is dominant and thus provides a major component of the total GIRK1/GIRK4 current activated by ACh.

Acetylcholine↗

CNS innervation of the urinary bladder demonstrated by immunohistochemical study for c-fos and pseudorabies virus.

The aim of the present study is to verify the functional and anatomical neural pathways which innervate the urinary bladder in the central nervous system of the rat. To identify the functional neural pathway, the urinary bladder was stimulated by infusing formalin for 2 h. Then, brain and spinal cord were dissected out and immunohistochemistry was done by using anti-c-fos antibody. Many c-fos immunoreactive (IR) neurons were identified in the telencephalic cortical areas and in several brainstem nuclei, which are known mostly to be related with urinary bladder. In the spinal cord, a number of c-fos IR neurons were found in the lamina I, IIo, dorsal gray commissure, sacral parasympathetic nucleus. To identify the anatomical neural pathway of the urinary bladder, Pseudorabies virus (PRV) was injected into the wall of urinary bladder and was identified with anti-PRV by using immunohistochemistry. Most PRV labeled neurons were found where c-fos IR neurons were identified and few of them were also in the areas where c-fos IR neurons were not found, e.g., prefrontal cortex, agranular insular cortex, and subfornical organ. In the spinal cord, PRV labeled cells were found all over the gray matter. The present study presents morphological evidence demonstrating the supraspinal areas are related with the neural control of the urinary bladder and most functional neural pathway of the urinary bladder is well consistent with the anatomical neural pathway except in some telencephalic cortical areas.

Animals↗

The angiotensin converting enzyme genetic polymorphism in acute coronary syndrome--ACE polymorphism as a risk factor of acute coronary syndrome.

The deletion polymorphism of angiotensin converting enzyme (ACE) genotype has been reported as an independent risk factor for the development of myocardial infarction (MI). However there are conflicting data showing no relationship between the ACE genotype and coronary artery disease. The present study was performed to investigate the correlation between ACE genetic polymorphism and acute coronary syndrome by comparing the distribution of ACE genotypes and ACE activities in patients with acute MI and unstable angina with those in control group. The frequency of genotype DD was significantly higher in patients with acute coronary syndrome than in controls. Logistic regression analysis showed that ACE polymorphism affected the development of acute coronary syndrome in recessive pattern of D allele. When we divided the patients into MI and unstable angina groups, the frequencies of genotype DD and D allele were significantly higher in unstable angina group than in MI or control groups. In the patients with MI, the frequency of D allele was significantly higher in patients without previous angina than in those with previous angina. There was no significant difference in ACE genotype or allelic frequency according to the severity of coronary lesions. The ACE genotype was associated with marked differences of ACE activity, but there was no difference between the patient and control groups for each genotype. In conclusion, the genotype DD of ACE gene associated with acute coronary syndrome, but not with the severity of coronary artery lesion. These results showed that the genotype DD of ACE gene might be associated with acute coronary syndrome by another mechanism rather than the coronary atherosclerosis.

Acute Disease↗

Chemical suppression of gravitropic bending response in flower stalks of snapdragon (Antirrhinum majus L.).

Numbers of chemical agents which have been shown to inhibit either auxin signal transduction pathway or ethylene formation in plant cells were applied to cut flower stems of snapdragon (Antirrhinum majus L.) and their effects on the postharvest gravitropic response were studied. The chemical treatments were done by submerging either the stem base or the top part of cut flower, which involves the gravistimulus-sensitive region, for 1 h at 25 degrees C. When the chemicals were supplied from the cut stem base, the gravitropic upward bending of flower stalks kept horizontally after the treatments with 20 mM CDTA or 10 mM CoCl2 was comparable to that of the untreated control, but o-vanadate showed a certain degree of effectiveness for suppressing the bending response. In contrast, the direct application of those agents to the gravitropically sensitive region of cut flowers in the presence of 0.01% Triton X-100 resulted in a substantial reduction of the gravitropic response. In the case of 20 mM CoCl2 treatment, almost total elimination of gravitropism without any significant deterioration of flower quality was observed. The results indicate the possibility of preparation of a protocol involving CoCl2 and a proper surfactant for commercial use to suppress the gravitropic response of cut flowers during postharvest storage and transportation.

Chelating Agents↗

Portal vein thrombosis in the adult: surgical implications in an era of dynamic imaging.

Extrahepatic portal vein thrombosis (EHPVT) is the leading cause of variceal hemorrhage in patients with healthy livers; however, in an era of dynamic imaging, the incidental discovery of EHPVT places a special burden on the surgeon to understand the surgical implications of the disease in this setting. During the period 1989 to 1995, 23 patients (12 males and 11 females) were found to have EHPVT. In 20 (87%), this was an unexpected finding on ultrasound (11 of 23), abdominal CT scan (9 of 23), or both (9 of 23). In two patients, the diagnosis was suspected and confirmed with angiography, whereas in the other, the lesion was discovered at surgery. Only seven (30%) had hemorrhage as a presenting complaint. More typically (61%), abdominal pain alone or pain with sepsis was the indication for evaluation. In 20 patients (87%), there was an identifiable etiology for the EHPVT. A total of 15 operations were performed on 12 patients (52%), in 7 (4, variceal hemorrhage, and 3, bowel ischemia) as a direct consequence of the EHPVT and in five, for conditions not directly related to the EHPVT. Three of the 23 patients (13%) died, two (17%) following surgery and one (9%) from advanced malignant disease. No patients with hemorrhage (seven), even those who required a shunt for decompression (three) or devascularization (one), died. We found that the diagnosis of EHPVT is usually not related to variceal hemorrhage, but rather, abdominal symptoms that serve as an indication for the imaging study. Three subsets of patients emerged: (1) those requiring no surgery (11 patients), (2) those requiring surgery related to hemorrhage (4 patients), and (3) those requiring surgery for conditions other than varices (8 patients). In any of these circumstances, mortality (13%) was related to the underlying disease process rather than EHPVT. Given the earlier recognition of EHPVT, the natural history of the disease has been altered, with outcome reflecting the underlying disease rather than the sequelae of portal hypertension.

Abdominal Neoplasms↗

A cDNA encoding a putative 37 kDa leucine-rich repeat (LRR) protein, p37NB, isolated from S-type neuroblastoma cell has a differential tissue distribution.

In human neuroblastoma cells in culture, three morphologically distinct types of cells are observed: neuroblastic N-type cells, Schwannian S-type cells, and intermediate I-type cells. To investigate the differences in gene expression between N-type LA1-55N and S-type LA1-5S cells of the human neuroblastoma cell line LA-N-1, we constructed a subtractive cDNA library from LA1-5S cells. One of the genes that are expressed more in S-type cells than in N-type cells was identified as previously undescribed and is the focus of this report. We cloned a full-length cDNA of this gene, p37NB, and determined its sequence. A homology search against the GenBank database showed that this was from a novel gene encoding a putative 37 kDa leucine-rich repeat (LRR) protein. Northern blot hybridization and RT-PCR showed that the p37NB gene was differentially expressed in S-type compared to N-type cells of a few neuroblastoma cell lines.

Amino Acid Sequence↗

Down-regulation of gadd153 by c-myc in rat fibroblasts and its effect on cell growth and radiation-induced apoptosis.

Using differential display reverse transcription PCR (DDRT - PCR), we found that a 360 bp cDNA fragment was absent in several c-myc transfected rat fibroblasts: REC:myc, REC:myc + ras and rat1-myc. These cells also showed enhanced sensitivity to gamma ray-induced apoptosis. This cDNA fragment was present in the parental REC (Rat Embryo Cells) and rat1 cells, and in c-Ha-ras transfected REC (REC:ras), all of which were relatively resistant to gamma ray-induced apoptosis. The cDNA fragment was subsequently cloned and used as a probe to screen a rat1 cDNA library, and identified as one of the growth arrest and DNA damaging-inducible genes, gadd153. In addition to the down-regulation of rat gadd153 in all the c-myc transfectants, methyl methanesulfonate (MMS)-induced transcription of the gadd153 was attenuated. The rat1-myc cells, when successfully transfected with and stably expressing the rat gadd153, showed a significantly longer doubling time compared to the parental cells. However, overexpression of gadd153 in rat1-myc cells did not affect gamma ray-induced apoptosis. Thus, the suppression of gadd153 appears to be inversely correlated with that of myc, but not involved in the myc-dependent apoptotic pathway.

Animals↗

Accuracy and reproducibility of brain and tissue volumes using a magnetic resonance segmentation method.

Magnetic resonance (MR) imaging now allows the qualitative and quantitative assessment of the human brain in vivo. As MR imaging resolution has improved, precise measurement of small brain structures has become possible. Methods of measuring brain regions from MR images include both manual and semiautomated methods. Despite the development of numerous volumetric methods, there have been only limited attempts so far to evaluate the accuracy and reproducibility of these methods. In this study we used phantoms to assess the accuracy of the segmentation process. Our results with simple and complex phantoms indicate an error of 3-5% using either manual or semiautomated techniques. We subsequently used manual and semiautomated volumetric methodologies to study human brain structures in vivo in five normal subjects. Supervised segmentation is a semiautomated method that accomplishes the division of MR images into several tissue types based on differences in signal intensity. This technique requires the operator to manually identify points on the MR images that characterize each tissue type, a process known as seeding. However, the use of supervised segmentation to assess the volumes of gray and white matter is subject to pitfalls. Inhomogeneities of the radiofrequency or magnetic fields can result in misclassification of tissue points during the tissue seeding process, limiting the accuracy and reliability of the segmentation process. We used a structured seeding protocol that allowed for field inhomogeneity that produced reduced variation in measured tissue volumes. We used repeated segmentations to assess intra- and inter-rater reliability, and were able to measure small and large regions of interest with a small degree of variation. In addition, we demonstrated that measurements are reproducible with repeat MR acquisitions, with minimal interscan variability. Segmentation methods can accurately and reliably measure subtle morphometric changes, and will prove a boon to the study of neuropsychiatric disorders.

Adult↗

IL-12 p40 messenger RNA expression in target organs during acute graft-versus-host disease. Possible involvement of IFN-gamma.

The onset of acute graft-vs-host disease (aGVHD) is accompanied by macrophage (M phi) priming and the presence of bacteria-derived LPS in the sera of transplanted animals. Priming of M phi occurs during aGVHD despite the suppression of T cell function. We have investigated whether IL-12 mediates the continued production of IFN-gamma during the state of T cell immunosuppression that accompanies aGVHD. Acute GVHD was induced in nonirradiated AxC57BL/6F1 mice by the injection of C57BL/6 lymphoid cells. Despite T cell immunosuppression, M phi became primed, as shown by their expression of inducible nitric oxide synthase mRNA and their production of nitric oxide in response to LPS. Continual exposure to IFN-gamma was required to maintain a primed state in M phi during aGVHD. IL-12 p40 peptide mRNA was increased in M phi purified from animals undergoing aGVHD 14 days after transplantation. Target organs of aGVHD, including thymus, salivary gland, and lung, showed increased IFN-gamma mRNA between days 7 and 14 after transplantation. The increase was accompanied by an induction of mRNA for the p40 peptide of IL-12 and inducible nitric oxide synthase within the target organs. These results provide evidence for localized production of IFN-gamma within aGVHD target organs and suggest that it is mediated by LPS-induced production of IL-12 by M phi. Our data elucidate the mechanism of activation of M phi during aGVHD that results in TNF-alpha and nitric oxide production and delineates the effector role of M phi in the pathology of aGVHD.

Acute Disease↗

Folding pathway of human alpha 1-antitrypsin: characterization of an intermediate that is active but prone to aggregation.

The folding-unfolding kinetics of human alpha 1-antitrypsin (alpha 1-AT) were examined by monitoring intrinsic Trp fluorescence and extrinsic ANS fluorescence. While the unfolding of alpha 1-AT followed a single exponential phase, refolding exhibited three exponential phases. The fast phase (tau 1r < 40 sec). which was independent of urea concentration, appears to be hydrophobic collapse that may be limited by cis-trans isomerization of prolyl residue. The medium phase (tau 2s = 200 sec) yielded an intermediate (IN), which is capable of elastase binding. The slowest (tau 3r = 1000 sec) phase completes refolding to the native protein, which intersects with the unfolding kinetics at the same urea concentration (1.9 M) as the equilibrium midpoint. Concentration-dependence of the amplitude of major refolding phases indicated that IN is prone to kinetic competition between the on-pathway to native protein and aggregation.

Anilino Naphthalenesulfonates↗

Effects of subtype-selective and balanced angiotensin II receptor antagonists in a porcine coronary artery model of vascular restenosis.

BACKGROUND: Numerous studies have demonstrated the ability of angiotensin II (Ang II) receptor antagonists and angiotensin-converting enzyme (ACE) inhibitors to inhibit intimal hyperplasia after balloon dilation of noncoronary arteries in small-animal models, suggesting an important role for Ang II in the response to injury. Although ACE inhibitors have not been similarly effective in nonhuman coronary models or in human restenosis trials, questions remain regarding the efficacy ACE inhibitors against tissue ACE and the contributions of ACE-independent pathways of Ang II generation. Unlike ACE inhibitors, Ang II receptor antagonists have the potential to inhibit responses to Ang II independent of its biosynthetic origin. METHODS AND RESULTS: In separate studies, three Ang II receptor antagonists, including AT1 selective (L-158,809), balanced AT1/AT2 (L-163,082), and AT2 selective (L-164,282) agents, were evaluated for their ability to inhibit vascular intimal thickening in a porcine coronary artery model of vascular injury. Preliminary studies in a rat carotid artery model revealed that constant infusion of L-158,809 (0.3 or 1.0 mg X kg-1 X d-1) reduced the neointimal cross-sectional area by up to 37% measured 14 days after balloon dilatation. In the porcine studies, animals were treated with vehicle or test compound beginning 2 days before and extending 28 days after experimental angioplasty. Left anterior descending, left circumflex, and/or right coronary arteries were injured by inflation of commercially available angioplasty balloons with placement of coiled metallic stents. Infusion of L-158,809 (1 mg X kg-1 X d-1), L-163,082 (1 mg X kg-1 X d-1), or L-164,282 (1.5 mg X kg-1 X d-1) in the study animals yielded plasma drug levels sufficient either to chronically block or, for L-164,282, to spare pressor responses to exogenous Ang II. Neither L-158,809, L-163,082, nor L-164,282 had statistically significant effects (P=.12, P=.75, and P=.48, respectively, compared with vehicle-treated controls) on neointimal thickness (normalized for degree of injury) measured by morphometric analysis at day 28 after angioplasty. CONCLUSIONS: These findings indicate that chronic blockade of Ang II receptors by either site-selective or balanced AT1/AT2 antagonists is insufficient to inhibit intimal hyperplasia after experimental coronary vascular injury in the pig. The results further suggest that, unlike in the rat carotid artery, Ang II is not a major mediator of intimal thickening in the pig coronary artery.

Angiotensin II↗

Capsaicin activates a nonselective cation channel in cultured neonatal rat dorsal root ganglion neurons.

Capsaicin (CAP), a neurotoxin, has been reported to activate a nonselective cation current in dorsal root ganglion (DRG) neurons. In this paper, we identify and describe the properties of CAP-activated single channels in cultured neonatal rat DRG neurons. We first identified CAP-sensitive whole-cell currents that reversed near 0 mV in physiological solution. In solution containing 140 mM Na+, extracellular application of CAP to outside-out patches caused activation of an ion channel in a concentration-dependent manner (EC50 = 1.1 microM). The channel was blocked by the CAP antagonist capsazepine (10 microM). The channel was also activated by 2-10 nM resiniferatoxin, a potent analog of CAP. In symmetrical 140 mM Na+, the single-channel slope conductances were 45.3 +/- 1.0 and 80.0 +/- 4.2 pS at -60 and +60 mV, respectively, showing outward rectification (n = 9). The reversal potential did not shift significantly when Na+ was replaced by K+, Cs+, Rb+, or Li+, showing that the channel discriminated poorly among cations. The channel was also permeable to Ca2+. Although acid (pH < 6.2) was suggested to be an endogenous activator of the CAP receptor, an acid solution (pH 5.9-6.0) failed to activate the channels in outside-out patches. This is the first clear demonstration of the presence of the CAP-activated ion channel in DRG neuron. Opening of these ligand-gated, cation-selective channels gives rise to the whole-cell CAP-activated current in DRG neurons and may underlie the neurotoxic effects of CAP.

Acids↗