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Biomedical subjects

S Kwon

Publications and source records attributed to S Kwon.

At least 55 records · Page 3Linked to original sources

RNA trafficking in myelinating cells.

In the past year, several key molecular components of the RNA trafficking pathway in myelinating cells have been identified: distinct cis-acting elements for RNA transport and localization have been characterized in myelin basic protein mRNA; hnRNP A2 has been identified as a trans-acting factor in oligodendrocytes that binds specifically to the RNA transport sequence; and microtubules and kinesin have been identified as cytoskeletal elements required for RNA transport in oligodendrocytes.

Animals↗

Presurgical columellar elongation and primary retrograde nasal reconstruction in one-stage bilateral cleft lip and nose repair.

We present a new combined approach to primary bilateral cleft lip, nose, and alveolus repair using presurgical nasoalveolar molding combined with a one-stage lip, nose, and alveolus repair. Presurgical alveolar molding is used to bring the protruding premaxilla back into proper alignment with the lateral segments in the maxillary arch. Presurgical nasal molding produces tissue expansion of the short columella and nasal lining. A coordinated surgical approach involves a one-stage repair of the lip, nose, and alveolus. The nasal repair uses a retrograde approach in which the prolabial flap and columella are reflected over the nasal dorsum by continuing the dissection behind the prolabium up the membranous septum and over the septal angle. Tissues are dissected out from between the tip cartilages, and the domes are sutured together in the midline. This method joins a new class of bilateral cleft repairs that place the primary emphasis on correction of the deformity of the nasal tip cartilages.

Alveolar Process↗

Disaccharidase activity in rat cecum and colon with hyperplasia induced by maltitol or glucomannan.

The existence of disaccharidases and an enzyme that hydrolyzes maltitol were investigated in the large intestine of rats. In addition, the properties of disaccharidases were studied in the cecum and colon with hyperplasia induced by the ingestion of nondigestible carbohydrates such as maltitol and glucomannan. Maltase activity was detected in the cecal and colonic mucosa of rats fed a regular diet, although it was a very low level as compared with that in the small intestinal mucosa. Maltitol hydrolysis was notably lower in the cecum and colon than in the small intestine. The Km of maltose was 5.56 mM in the small intestine and 5.59 mM in the cecum, while that in the colon was 2.56 mM. The Vmax of maltose was at very low levels in the cecum (0.38 mumol/mg protein/h) and colon (0.37 mumol/mg protein/h) in comparison with that in the small intestine (30.3 mumol/mg protein/h). With regard to the maltitol hydrolyzing enzyme, Km and Vmax were 2.00 mM and 2.51 mumol/mg protein/h in the small intestine, respectively. Km and Vmax in the cecum and colon could not be measured because the level was too low. The tissue weights of the cecum and colon increased significantly in both the maltitol (p < 0.01, p < 0.05) and glucomannan (p < 0.01, p < 0.05) groups in comparison with that of the control group. The specific activity of maltase decreased significantly in the small intestine of the maltitol (p < 0.05) and glucomannan (p < 0.01) groups. However, maltase activity in the cecum and colon was not lowered by maltitol ingestion, although it decreased significantly in the cecum of the glucomannan group (p < 0.01). Sucrase activity in the small intestine and cecum was decreased significantly by maltitol (p < 0.05, p < 0.01) or glucomannan (p < 0.01, p < 0.01) ingestion, whereas it was not decreased in the colon. Maltitol hydrolyzing activity did not decrease significantly in the small intestine of the maltitol group, although that in the cecum and colon was not measured exactly by the methods used here. These results demonstrate that disaccharidases exist in the cecal and colonic mucosa of rat, and that they are not induced even in the tissue with hyperplasia, which is caused by maltitol ingestion.

Animals↗

Rooster testicular germ cells and epididymal sperm contain P450 aromatase.

We recently found that cytochrome P450 aromatase (P450arom) is present in germ cells of the mammalian testis and is capable of converting androgens to estrogens in the male reproductive tract. The objective of the present study was to determine whether testicular germ cells and epididymal sperm of an avian species are also capable of synthesizing estrogen. P450arom was localized in the rooster testis and epididymal region by immunocytochemistry, using an antiserum generated against purified human placental cytochrome P450arom. Immunostaining was present in pachytene spermatocytes, round spermatids, elongated spermatids, flagella of late spermatids, and sperm in the epididymal region. A positive reaction was also found in nonciliated cells of the epididymal region. However, the absence of mRNA for P450arom in the epididymal region indicated that the immunoreactive protein present in the epididymal region is not synthesized in this region. The immunoreactive P450arom found in epididymal sperm was shown to be active through use of a 3H2O assay. On the basis of these data, we conclude that rooster testicular germ cells and epididymal sperm are sites for the synthesis of estrogen, a potential regulator or modulator of germinal epithelium in the testis and the epithelium of the epididymal region of the avian species.

Animals↗

High affinity C10-Oeq ester derivatives of ryanodine. Activator-selective agonists of the sarcoplasmic reticulum calcium release channel.

The plant alkaloids ryanodine and dehydroryanodine are specific and potent modulators of the sarcoplasmic reticulum calcium release channel. In the present study, acidic, basic, and neutral side chains esters of these diterpene compounds were prepared and their pharmacologic activities were assessed. Binding affinities of the novel C10-Oeq ester derivatives for the sarcoplasmic reticulum Ca2+ release channel were evaluated with sarcoplasmic reticular vesicles prepared from rabbit skeletal muscle. Kd values of the derivatives varied 500-fold, ranging from 0.5 to 244 nM. In comparison, Kd values for ryanodine and dehydroryanodine were 4.4 nM and 5.4 nM, respectively. Basic substituents at the C10-Oeq side chain terminus produced the highest affinity derivatives (Kd values from 0.5 to 1.3 nM). Neutral and/or hydrophobic side chain derivatives exhibited intermediate affinities for the high affinity ryanodine receptor site (Kd values from 2.5 to 39 nM), whereas a derivative with a terminal acidic group had the lowest affinity (Kd value > 100 nM). Certain of the higher affinity C10-Oeq derivatives were evaluated more extensively for their pharmacologic activity on the sarcoplasmic reticular Ca2+ release channel. Both channel activating (opening) and deactivating (closing) actions were assessed from the ability of the ryanoids to alter Ca2+ efflux rates from skeletal junctional sarcoplasmic reticular vesicles that had been passively loaded with Ca2+. The natural Ryania secondary metabolites ryanodine, dehydroryanodine and esters E and F, all exhibit antithetical concentration-effect curves, indicating both activator and deactivator actions. In contrast, the semi-synthetic C10-Oeq esters selectively activate the Ca2+ release channel. Half-maximal concentrations for such activation (EC50 act) ranged from 0.87 microM to 4.2 microM, compared with an EC50 act of 1.3 microM for ryanodine. These derivatives were also evaluated for their ability to augment ATP-dependent CA2+ accumulation by cardiac junctional sarcoplasmic reticular vesicles, an effect that results from deactivation of the Ca2+ release channels. None of the derivatives tested was able to significantly augment Ca2+ accumulation, further substantiating their inability to deactivate the sarcoplasmic reticular Ca2+ release channel. Additionally, these derivatives functionally antagonized the action of ryanodine to close the Ca2+ release channel. The results presented demonstrate that these C10-Oeq ester derivatives of ryanodine and dehydroryanodine bind specifically to the SR Ca2+ release channel, selectively activate the channel, and, although they fail to effect channel closure, they nevertheless functionally compete with ryanodine at its low affinity (deactivator) site(s).

Adenosine Triphosphate↗

Isoform-specific induction of nuclear free calcium oscillations by platelet-derived growth factor.

Confocal laser scanning microscopy was used to analyze alterations in nuclear free calcium (Ca2+n) levels induced by platelet-derived growth factor (PDGF) isoforms in BALB/c3T3 fibroblasts loaded with the calcium-sensitive fluorescent indicator Fluo-3. Both AA-PDGF and BB-PDGF caused a transient increase in Ca2+n. Analysis of PDGF-induced Ca2+n alterations as a function of time revealed that BB-PDGF stimulation resulted in the generation of Ca2+n oscillations that diminished over time. The frequency of BB-PDGF-stimulated oscillations was modulated by extracellular Ca2+ and could not be mimicked by increasing intracellular inositol 1,4,5-trisphosphate levels in the absence of growth factor stimulation. Caffeine alone had no effect on Ca2+n levels, but exposure of cells to caffeine after BB-PDGF stimulation augmented Ca2+n oscillations, either by increasing the frequency or reinitiating preexisting oscillations. The genesis of these oscillations in Ca2+n appears to be in the region just outside of the nucleus, as perinuclear cytoplasmic free calcium (Ca2+i) increased just prior to Ca2+n. In contrast, AA-PDGF stimulation resulted in the generation of one or two irregular, transient Ca2+n spikes. Caffeine pretreatment followed by AA-PDGF stimulation resulted in Ca2+n oscillations very similar to those produced by BB-PDGF alone. Additionally, the AA-PDGF and BB-PDGF isoforms appeared to modulate distinct pools of cellular Ca2+, as BB-PDGF was still capable of inducing Ca2+n oscillations subsequent to prior induction of oscillations by AA-PDGF/caffeine. These PDGF isoform-specific changes in nuclear free Ca2+ could serve as a mechanism by which isoform-specific cellular signaling pathways may be manifested by the growth factors.

3T3 Cells↗

Dual effect of suramin on calcium fluxes across sarcoplasmic reticulum vesicle membranes.

Suramin is a polysulfonated naphthylurea developed originally to treat trypanosomiasis. This drug has gained considerable attention recently as an effective anticancer agent. Previous studies have demonstrated that suramin also is an antagonist of ATP at P2x purinergic receptors. In the present study suramin was shown to evoke Ca++ release from skeletal muscle sarcoplasmic reticulum (SR) vesicles in a concentration-dependent manner. Ca++ release was inducable from vesicles derived from junctional SR but not from those derived from longitudinal SR. This subcellular site-dependent specificity suggests that suramin's actions on muscle involve the Ca++ release channel (CRC), a protein unique to terminal cisternae. This channel has been established as the site of action of ryanoid alkaloids such as ryanodine and dehydroryanodine. Suramin did not mimic ryanoid actions on the SR CRC, nor did it competitively diminish ryanodine binding. Instead, suramin actually increased [3H]ryanodine binding to junctional SR membranes. In this respect, suramin exhibited agonist effects like those of the adenine nucleotide, beta,gamma-methyleneadenosine 5'-triphosphate. Suramin's mechanism of action did not involve oxidation of sulfhydryl groups on the SR CRC, because dithiothreitol (1 mM) had no effect on suramin-induced Ca++ release. Independently of its effects on the CRC, suramin inhibited the Ca(++)-adenosine triphosphatase (EC 3.6.1.38, SERCA1) of SR membrane vesicles. The ability of suramin to diminish ATP-dependent Ca++ accumulation by SR vesicles therefore reflects two distinct actions: 1) activation (opening) of the SR Ca++ release channel and 2) inhibition of the Ca++ pump.

Adenosine Triphosphate↗

6-Oxo-2,2,4,4,6-pentaphenoxycyclotri-lambda 5-phosphazane-1,3-diene.

C30H26N3O6P3, Mr = 617.48, monoclinic, P2(1)/n, a = 13.200(4), b = 16.714(3), c = 13.438(9) A, beta = 96.38(3) degrees, V = 2946.3 A3, Z = 4, Dx = 1.392 Mg m-3, lambda (Mo K alpha) = 0.71073 A, mu = 0.23 mm-1, F(000) = 1280, T = 293(1) K, R = 0.037 for 4089 observed data with I greater than 3 sigma (I). The P3N3 ring has a boat conformation with a P atom and an N atom 0.396(1) and 0.118(2) A, respectively, out of the plane of the remaining atoms of the ring. One of the P atoms involves a double bond P = O [1.470(1) A] and a P-N single bond [1.683(1) A]. The P-O single bonds and P-N ring bonds range between 1.564(1) and 1.5941) A [mean 1.576(1) A] and 1.546(1) and 1.607(1) A [mean 1.574(1) A], respectively.

Molecular Structure↗

Amphiphilic polyphosphazenes as membrane materials: influence of side group on radiation cross-linking.

The amphiphilic mixed-substituent polyphosphazenes, [NP(OCH2CF3)x (NHCH3)y)]n and [NP(OC6H5)x (NHCH3)y]n, have been prepared by the sequential replacement of chlorine in [NPCI2]n by trifluorethoxide or phenoxide and methylamine. Thin films of these species were cross-linked by exposure to gamma radiation and the semipermeability of the resultant membranes was monitored. The radiation-induced cross-linking and membrane-forming properties of these polymers were compared with those of the single substituent polymers, [NP(OCH2CF3)2]n, [NP(OC6H5)2]n, and [NP(NHCH3)2]n. The radiation-cross-linking and appeared to involve free radical reactions at the methyl groups of the methylamino substituents. The possible utility of these materials in biomedical research is discussed.

Biocompatible Materials↗

Hydrophilic polyphosphazenes as hydrogels: radiation cross-linking and hydrogel characteristics of poly[bis(methoxyethoxyethoxy)phosphazene].

The water-soluble polyphosphazene, [NP(OCH2CH2OCH2CH2OCH3)2]n, cross-links when exposed to gamma rays to form hydrophilic, water-swellable membranes and hydrogels. The degree of cross-linking increases with irradiation dose in a manner that can be utilized to change the properties. gamma irradiation studies of the small molecule model compound, [NP(OCH2CH2OCH2CH2OCH3)2]4, were also carried out to probe the relationship between irradiation dose and cross-link density.

Chemical Phenomena↗

Precancerous mastopathie: structural and biological considerations.

The clinical and biological correlates of specifically classified non invasive breast lesions were compared with those of invasive breast cancer. Lesions classified as precancerous mastopathy and in situ carcinoma were shown to be related to invasive cancer, structurally, temporally, antigenically and in terms of some, but not all risk factors. Mammary carcinogenesis seems to be a discontinous step wise process in which the development of precursor lesions and the precursor to invasive progression are separable phenomena. It appears that different constellations of risk factors may selectively influence one or the other of these steps. Of particular interest are data which suggest that oral contraceptives (OC) favor the precursor to invasive transition in women whose grandmothers and/or aunts had breast cancer but impede this step in women without a family history of breast cancer. There is need for registries of breast diseases which routinely collect data on the clinical and analytical characteristics of specifically classified non invasive as well as invasive breast lesions, derived from the same population over the same time period. Our ability to specifically reduce morbidity and mortality from breast cancer may be more dependant on a better understanding of the development and progression of precursor lesions than on a continued preoccupation with already invasive breast cancers.

Breast Diseases↗

The breast cancer controversy. A natural experiment.

The number and types of breast lesions treated surgically at the Flower and Fifth Avenue Hospitals during the period from November 1974 through February 1976, increased sharply in monthly incidence as compared with the period from January 1973 through October 1974. This increase was attributable to public awareness of breast cancer because of the publicity given to its occurrence in the wives of the President and Vice-President. However, the consequent increase in mammography and breast surgery was not accompanied by any improvement in the stage characteristics of the breast cancers treated. The proportion of prognostically unfavorable stage II cases with involvement of four or more axillary nodes was undiminished, while the proportion of stage 0 and stage I cases was not increased among breast cancers diagnosed since Nov 1, 1974.

Adult↗

Vasopressin responses to peripheral and central osmotic pulse stimulation.

To determine the relative importance of central and peripheral osmoreceptors in the osmotically-induced vasopressin secretion, osmosensitive areas of pentobarbital-anaesthetized rats were exposed for 5 sec to an osmotic pulse (130 mumoles NaCl in 200 microliters). The hepatic portal receptors were stimulated by superfusion of the portal vein, and the central receptors by infusion into one common carotid artery. Portal stimulation was 2.14 +/- 0.25 (mean +/- SEM, 4 groups of 5 rats) more effective than central osmotic pulse stimulation in elevating, within 1 minute, the plasma vasopressin level (measured by RIA). The central stimulus was not effective when introduced into the freely perfused vessel, although the hypothalamic extracellular NaCl concentration rose transiently (6 sec) to 2.6 +/- 0.3 w/v% (mean +/- SEM, n = 6 rats). The results show that brief osmotic pulses preferentially stimulate portal osmoreceptors to cause the release of vasopressin, and suggest that portal osmoreceptors may be involved in the dynamic regulation of plasma osmolality.

Animals↗

Effects of glycerol of beta-lactamase production during high cell density cultivation of recombinant Escherichia coli.

Recombinant Escherichia coli was cultured up to OD600 90 with glycerol fed by the DO-STAT method to produce recombinant beta-lactamase. Optimum feeding and induction conditions were determined. When glycerol was maintained at a high concentration (40-50 g/L) after isopropyl thiogalactoside (IPTG) induction at OD600 75, a 2-fold increase in the amount of soluble beta-lactamase was obtained. Similarly, a 3-fold increase was obtained by the addition of NaCl (0.4 M) at low glycerol concentration (10 g/L).

Escherichia coli↗

RNA on the road to myelin.

In oligodendrocytes some mRNAs are transported from the perikaryon to the distal processes and localized in the myelin compartment where they are translated. This review describes the cis-acting signals and trans-acting factors that mediate intracellular trafficking of myelin basic protein (MBP) RNA, the prototype for such mRNAs in myelinating glia.

Animals↗