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Biomedical subjects

H Kang

Publications and source records attributed to H Kang.

At least 109 records · Page 6Linked to original sources

[An experimental study on effects of biomembrane on prevention of filtering bleb adhesion in trabeculectomy].

OBJECTIVE: The study was designed to investigate the effects of biomembrane on experimental trabeculectomy. METHODS: A biomembrane was implanted under the scleral flap and the conjunctival flap in trabeculectomy in one eye of rabbits, while the fellow eye of the same rabbit without biomembrane implantation was the control. RESULTS: (1) The wound healing of the procedure reached its peak at 2-3 weeks after surgery, while the absorption of the biomembrane began at 6 weeks after surgery, and there was no tight adhesion between the biomembrane and the scar tissue, thus the filtering fistula was prevented from obstruction. (2) From the 2nd to the 7th week after surgery, the percentage of existing functional bleb in the experimental group was significantly higher than that in the control group (P < 0.05). (3) From the 1st to the 5th postoperative week, the decreasing of intraocular pressure in the experimental group was significantly greater than that in the control group (P < 0.05). CONCLUSION: The use of biomembrane in trabeculectomy can prevent the adhesion of filtering bleb and decrease intraocular pressure more effectively, and this study can provide experimental reference for the clinical use of biomembrane.

Animals↗

[Determination of trace Pb, Cu and Cd in environmental sample by slotted-tube atom-trapping atomic absorption spectrometry].

The optimal measuring conditions of slotted-tube atom-trapping atomic absorption spectrometry of Pb, Cu and Cd were examined in detail. The results show that the characteristic concentrations measured after trapping for 1min under definite conditions were 1.82 x 10(-3), 1.26 x 10(-3) and 6.7 x 10(-5) mg/L for Pb, Cu and Cd, respectively. Thus slotted tube atom-trapping AAS yields increase in sensitivety for Pb, Cu and Cd by 110, 39 and 150 fold, respectively, in comparison with the conventional FAAS. Trace elements Pb, Cu and Cd in earth surface water, tea and hair were determined by slotted tube atom-trapping. Satisfactory results were obtained.

English Abstract↗

A mutant RNA pseudoknot that promotes ribosomal frameshifting in mouse mammary tumor virus.

A single A-->G mutation that changes a potential A.U base pair to a G.U pair at the junction of the stems and loops of a non-frameshifting pseudoknot dramatically increases its frameshifting efficiency in mouse mammary tumor virus. The structure of the non-frameshifting pseudoknot APK has been found to be very different from that of pseudoknots that cause efficient frameshifting [Kang,H., Hines,J.V. and Tinoco,I. (1995) J. Mol. Biol. , 259, 135-147]. The 3-dimensional structure of the mutant pseudoknot was determined by restrained molecular dynamics based on NMR-derived interproton distance and torsion angle constraints. One striking feature of the mutant pseudoknot compared with the parent pseudoknot is that a G.U base pair forms at the top of stem 2, thus leaving only 1 nt at the junction of the two stems. The conformation is very different from that of the previously determined non-frameshifting parent pseudoknot, which lacks the A.U base pair at the top of the stem and has 2 nt between the stems. However, the conformation is quite similar to that of efficient frameshifting pseudoknots whose structures were previously determined by NMR. A single adenylate residue intervenes between the two stems and interrupts their coaxial stacking. This unpaired nucleotide produces a bent structure. The structural similarity among the efficient frameshifting pseudoknots indicates that a specific conformation is required for ribosomal frameshifting, further implying a specific interaction of the pseudoknot with the ribosome.

Adenine↗

Kinetic studies of Ca2+ binding and Ca2+ clearance in the cytosol of adrenal chromaffin cells.

The Ca2+ binding kinetics of fura-2, DM-nitrophen, and the endogenous Ca2+ buffer, which determine the time course of Ca2+ changes after photolysis of DM-nitrophen, were studied in bovine chromaffin cells. The in vivo Ca2+ association rate constants of fura-2, DM-nitrophen, and the endogenous Ca2+ buffer were measured to be 5.17 x 10(8) M-1 s-1, 3.5 x 10(7) M-1 s-1, and 1.07 x 10(8) M-1 s-1, respectively. The endogenous Ca2+ buffer appeared to have a low affinity for Ca2+ with a dissociation constant around 100 microM. A fast Ca2+ uptake mechanism was also found to play a dominant role in the clearance of Ca2+ after flashes at high intracellular free Ca2+ concentrations ([Ca2+]), causing a fast [Ca2+]i decay within seconds. This Ca2+ clearance was identified as mitochondrial Ca2+ uptake. Its uptake kinetics were studied by analyzing the Ca2+ decay at high [Ca2+]i after flash photolysis of DM-nitrophen. The capacity of the mitochondrial uptake corresponds to a total cytosolic Ca2+ load of approximately 1 mM.

Acetates↗

Neurotrophins and time: different roles for TrkB signaling in hippocampal long-term potentiation.

We examined the role of TrkB ligands in hippocampal long-term potentiation (LTP) using function-blocking TrkB antiserum (Ab) and Trk-IgG fusion proteins. Incubation of hippocampal slices with TrkB Ab had no effect on basal synaptic transmission, short-term plasticity, or LTP induced by several trains of tetanic stimulation. The TrkB Ab-treated slices, however, showed significant deficits in LTP induced by either theta-burst stimulation (TBS) or "pairing." Slices exposed to the same number of inducing stimuli, delivered either as TBS or as a single 100 Hz epoch, only exhibited TrkB-sensitive LTP when TBS was used, indicating that the temporal pattern of stimulation determines the neurotrophin dependence. The late phase of LTP (2-3 hr) was also significantly impaired in slices pretreated with TrkB Ab or a TrkB-IgG. The application of a TrkB-IgG 30 min after LTP induction caused previously potentiated synaptic transmission to return to baseline levels, indicating that TrkB ligands are required to maintain LTP for up to 1 hr after induction. Taken together, these results indicate that both the temporal patterns of synaptic activity and the different temporal phases of synaptic enhancement are important in determining the neurotrophin dependence of plasticity in the hippocampus.

3T3 Cells↗

Effects of the stable prostacyclin analogue iloprost on mesenteric blood flow in porcine endotoxic shock.

OBJECTIVE: To determine the effects of the stable prostacyclin analog, iloprost, in a porcine model of endotoxin-induced mesenteric ischemia. DESIGN: Prospective, experimental, randomized, controlled study. SETTING: Animal research laboratory at a university medical center. INTERVENTIONS: Pigs were randomized to receive a constant infusion of iloprost (0.18 microg/kg/min) or an equivalent amount of carrier solution (normal saline) 30 mins before being infused with endotoxin (100 microg/kg over 1 hr). The infusion with iloprost or carrier solution was continued for the duration of the experiment. MEASUREMENTS AND MAIN RESULTS: Twelve pigs (six per group), weighing between 20 and 22 kg, underwent laparotomy during which a magnetic flowprobe was placed around the superior mesenteric artery and an ileal tonometer was inserted. Thirty minutes before they were infused with endotoxin, the animals were randomized to receive intravenous iloprost or normal saline. Endotoxin was infused centrally over a 60-min period. Animals received normal saline at a rate of 1.2 mL/kg/min which was begun at the start of the endotoxin infusion. Data were measured at the end of the endotoxin infusion (E60) and 1 hr later (E120). Mean arterial pressure was not affected by the dosage of iloprost used in this experiment. After resuscitation, the cardiac output returned to baseline in the iloprost-treated group but remained decreased in the control group (2.6 +/- 0.5 vs. 1.6 +/- 0.4 L/min). Superior mesenteric blood flow increased 34% above baseline levels in animals pretreated with iloprost (from 363 +/- 85 to 485 +/- 81 mL/min). The superior mesenteric PCO2 was significantly higher (53 +/- 9 vs. 40 +/- 5 torr; 7.1 +/- 1.2 vs. 5.3 +/- 0.7 kPa) and the ileal intramucosal pH was significantly lower (7.07 +/- .28 vs. 7.44 +/- .23) in the control group than in the iloprost-treated group. CONCLUSIONS: Pretreatment with intravenous iloprost effectively increased intestinal blood flow in this model of endotoxin-induced mesenteric ischemia. This action of the drug resulted in an attenuation of ileal intracellular acidosis. Since low-dose iloprost had no effect on mean arterial pressure, it may be a useful adjunct in the treatment of sepsis and septic shock.

Acidosis↗

Altered glucocorticoid receptor expression and function during mouse skin carcinogenesis.

Glucocorticoids are the most potent inhibitors of tumor promotion in mouse skin, when applied with a promoting agent at the early stages of promotion. However, established skin papillomas become resistant to growth inhibition by glucocorticoids. Glucocorticoid control of cellular functions is mediated by the glucocorticoid receptor (GR), a well-known transcription factor. Here we present data on GR expression and function in mouse papillomas and squamous cell carcinomas. Tumors were produced in SENCAR mice by a 7,12-dimethylbenz[a]anthracene and 12-O-tetradecanoylphorbol-13-acetate two-stage protocol. In early papillomas (after 15-20 wk of promotion), northern blotting revealed a decrease in the GR mRNA level that was confirmed by a binding assay. However, in late papillomas (after 30-40 wk of promotion), and especially in squamous cell carcinomas, the level of GR in both assays was similar to or higher than the GR level in normal epidermis. To test the functional capability of GR in tumors, we compared the effect of the synthetic glucocorticoid fluocinolone acetonide (FA) on keratinocyte proliferation and on expression of glucocorticoid-responsive genes in normal epidermis, hyperplastic skin surrounding tumors, and mouse skin papillomas. FA strongly inhibited DNA synthesis in keratinocytes in normal skin and tumor-surrounding skin but had no effect on DNA synthesis in papillomas. In addition, FA strongly induced metallothionein 1 expression and inhibited connexin 26 expression in skin but did not affect expression of these genes in tumors. These data suggest that alteration of both the expression and function of GR may be an important mechanism of tumor promotion in skin.

9,10-Dimethyl-1,2-benzanthracene↗

Site-specific and photo-induced alkylation of DNA by a dimethylanthraquinone-oligodeoxynucleotide conjugate.

A dialkyl-substituted anthraquinone derivative was synthesized and ligated to a sequence-directing oligodeoxynucleotide to examine its efficiency and specificity for cross-linking to complementary sequences of DNA. The anthraquinone appendage stabilized spontaneous hybridization of the target and probe sequences through non-covalent interactions, as indicated by thermal denaturation studies. Covalent modification of the target was induced by exposure to near UV light (lambda > 335 nm) to generate cross-linked duplexes in yields as great as 45%. Reaction was dependent on the first unpaired nucleotide extended beyond the duplex formed by association of the target and probe. A specificity of C > T > A = G was determined for modification at this position. The overall site and nucleotide selectivity seems to originate from the chemical requirements of cross-linking and does not likely reflect the dominant solution structure of the complex prior to irradiation.

Alkylation↗

A requirement for local protein synthesis in neurotrophin-induced hippocampal synaptic plasticity.

Two neurotrophic factors, brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT-3), are able to produce a long-lasting enhancement of synaptic transmission in the hippocampus. Unlike other forms of plasticity, neurotrophin-induced plasticity exhibited an immediate requirement for protein synthesis. Plasticity in rat hippocampal slices in which the synaptic neuropil was isolated from the principal cell bodies also required early protein synthesis. Thus, the neurotrophins may stimulate the synthesis of proteins in either axonal or dendritic compartments, allowing synapses to exert local control over the complement of proteins expressed at individual synaptic sites.

Animals↗

A characteristic bent conformation of RNA pseudoknots promotes -1 frameshifting during translation of retroviral RNA.

The structures of four different RNA pseudoknots that provide one of the signals required for ribosomal frameshifting in mouse mammary tumor virus have been determined by NMR. The RNA pseudoknots have similar sequences and assume similar secondary structures, but show significantly different frameshifting efficiencies. The three-dimensional structures of one frameshifting and one non-frameshifting RNA pseudoknot had been determined previously by our group. Here we determine the structures of two new RNA pseudoknots, and relate the structures of all four pseudoknots to their frameshifting abilities. The two efficient frameshifting pseudoknots adopt characteristic bent conformations with stem 1 bending towards the major groove of stem 2. In contrast, the two poor frameshifting pseudoknots have structures very different from each other and from the efficient frameshifters. One has linear, coaxially stacked stems, the other has stems twisted and bent, but in the opposite direction to the efficient frameshifters. Changes in loop size that favor bending (shorter loops) increase frameshifting efficiency; longer loops that allow linear arrangement of the stems decrease frameshifting. Frameshifting pseudoknots in feline immunodeficiency virus and simian retrovirus have different loop sequences, but the sequences at their stem junctions imply the same bent conformation as in the mouse mammary tumor viral RNA. The requirement for a precise pseudoknot conformation for efficient frameshifting strongly implies that a specific interaction occurs between the viral RNA pseudoknot and the host protein-synthesizing machinery.

Base Sequence↗

Purification and properties of transglutaminase from soybean (Glycine max) leaves.

Transglutaminase was purified to homogeneity from leaves of soybean (Glycine max). The molecular weight of the enzyme estimated by gel filtration and sodium dodecyl sulfate polyacrylamide gel electrophoresis was 80,000 daltons. This purified enzyme catalyzed the incorporation of [14C]-putrescine into N,N'-dimethylcasein as a protein substrate. With N,N'-dimethylcasein, the Km values for putrescine, spermidine and spermine were 109, 42 and 69 microM, respectively. The optimum pH and temperature for the enzyme reaction were 7.6 and 37 degrees C. Ca2+ was not an absolute requirement for enzyme activity unlike animal transglutaminases. The enzyme was activated by dithiothreitol, but inhibited by GTP. With molecular weight of this enzyme, this inhibition of enzyme activity by GTP indicates that this enzyme is very similar to known tissue transglutaminases in animals.

Calcium↗

DNA damage and repair in mutagenesis and carcinogenesis: implications of structure-activity relationships for cross-species extrapolation.

Previous studies on structure-activity relationships (SARs) between types of DNA modifications and tumour incidence revealed linear positive relationships between the log TD50 estimates and s-values for a series of mostly monofunctional alkylating agents. The overall objective of this STEP project was to further elucidate the mechanistic principles underlying these correlations, because detailed knowledge on mechanisms underlying the formation of genotoxic damage is an absolute necessity for establishing guidance values for exposures to genotoxic agents. The analysis included: (1) the re-calculation and further extension of TD50 values in mmol/kg body weight for chemicals carcinogenic in rodents. This part further included the checking up data for Swain-Scott s-values and the use of the covalent binding index (CBI); (2) the elaboration of genetic toxicity including an analysis of induced mutation spectra in specific genes at the DNA level, i.e., the vermilion gene of Drosophila, a plasmid system (pX2 assay) and the HPRT gene in cultured mammalian cells (CHO-9); and (3) the measurement of specific DNA alkylation adducts in animal models (mouse, rat, hamster) and mammalian cells in culture. The analysis of mechanisms controlling the expression of mammalian DNA repair genes (alkyltransferases, glycosylases) as a function of the cell type, differentiation stage, and cellular microenvironment in mammalian cells. The 3 classes of genotoxic carcinogens selected for the project were: (1) chemicals forming monoalkyl adducts upon interaction with DNA; (2) genotoxins capable of forming DNA etheno-adducts; and (3) N-substituted aryl compounds forming covalent adducts at the C8 position of guanine in DNA. In general, clear SARs and AARs (activity-activity relationships) between physiochemical parameters (s-values, O6/N7-alkylguanine ratios, CBI), carcinogenic potency in rodents and several descriptors of genotoxic activity in germ cells (mouse, Drosophila) became apparent when the following descriptors were used: TD50 estimates (lifetime doses expressed in mg/kg b.wt. or mmol/kg b.wt.) from cancer bioassays in rodents; the degree of germ-cell specificity, i.e., the ability of a genotoxic agent to induce mutations in practically all cell stages of the male germ-cell cycle of Drosophila (this project) and the mouse (literature search), as opposed to a more specific response in postmeiotic stages of both species; the Mexr-/Mexr+ hypermutability ratio, determined in a repair assay utilizing Drosophila germ cells; mutation spectra induced at single loci (the 7 loci used in the specific-locus test of the mouse (published data), and the vermilion gene of Drosophila); and doubling doses (DD) in mg/kg (mmol/kg) for specific locus test results on mice. By and large, the TD50 values, the inverse of which can be considered as measures of carcinogenic potency, were shown to be predictable from knowledge of the in vivo doses associated with the absorbed amounts of the investigated alkylators and with the second-order constant, kc, reaction at a critical nucleophilic strength, nc. For alkylating agents kc can be expressed as the second-order rate constant for hydrolysis, kH2O, and the substrate constant s:kH2OTD50 is a function of a certain accumulated degree of alkylation, here given as the (average) daily increment, ac, for 2 years exposure of the rodents. The TD*50 in mmol/kg x day) could then be written: [formula: see text] This expression would be valid for monofunctional alkylators provided the reactive species are uncharged. This is the case for most SN2 reagents. Although it appears possible to predict carcinogenic potency from measured in vivo doses and from detailed knowledge of reaction-kinetic parameter values, it is at present not possible to quantify the uncertainty of such predictions. One main reason for this is the complication due to uneven distribution in the body, with effects on the dose in target tissues. The estimation can be impro

Alkylating Agents↗

Conformation of a non-frameshifting RNA pseudoknot from mouse mammary tumor virus.

The solution conformation of an RNA pseudoknot, which is a mutant of the pseudoknot required for ribosomal frameshifting in mouse mammary tumor virus, has been determined by NMR. The 32-nucleotide RNA pseudoknot does not promote efficient frameshifting, although its sequence is very similar to the efficient frameshifting pseudoknot whose structure was recently determined by our group. 13C-labeling of the RNA and 13C-edited NMR techniques were used to facilitate spectral assignment. The three-dimensional structure of the RNA pseudoknot was determined by restrained molecular dynamics based on NMR-derived interproton distances and torsion angle constraints. The conformation is very different from that previously determined for the efficient-frameshifting pseudoknot. Two unpaired nucleotides are stacked between stem 1 and stem 2, in contrast to the one unpaired nucleotide at the same junction region as found previously. The two stems of the pseudoknot are not coaxial, they are twisted and bent relative to each other. Loop 2 does not cross the shallow minor groove of stem 1, in contrast to the pseudoknots with one or no intervening nucleotides between the stems. The fact that a specific conformation is required for efficient frameshifting implies a specific interaction of the pseudoknot with the ribosome.

Base Sequence↗

Comparison of the kidney dose between supine and prone position for pelvic and periaortic irradiation.

We compared the doses received by the kidney in supine and prone positions for pelvic and periaortic irradiation. Kidney locations were verified by CT images taken with patients in the same position as during the treatment. Due to the shift of the kidney anteriorly during prone position, treatment in supine position delivered a much lower dose to most of the kidney than treatment in the prone position. Therefore, for periaortic irradiation treatment, the supine position should be considered to minimize the dose to the kidneys, even though the prone position with a belly board can reduce the dose to the small bowel.

Humans↗

The risk of seizure recurrence after a first unprovoked afebrile seizure in childhood: an extended follow-up.

OBJECTIVE: To assess the long-term recurrence risks after a first unprovoked seizure in childhood. METHODS: In a prospective study, 407 children who presented with a first unprovoked seizure were then followed for a mean of 6.3 years from the time of first seizure. RESULTS: One hundred seventy-one children (42%) experienced subsequent seizures. The cumulative risk of seizure recurrence was 29%, 37%, 42%, and 44% at 1, 2, 5, and 8 years, respectively. The median time to recurrence was 5.7 months, with 53% of recurrences occurring within 6 months, 69% within 1 year, and 88% within 2 years. Only 5 recurrences (3%) occurred after 5 years. On multivariable analysis, risk factors for seizure recurrence included a remote symptomatic etiology, an abnormal electroencephalogram (EEG), a seizure occurring while asleep, a history of prior febrile seizures, and Todd's paresis. In cryptogenic cases, the risk factors were an abnormal EEG and an initial seizure during sleep. In remote symptomatic cases, risk factors were a history of prior febrile seizures and age of onset younger than 3 years. Risk factors for late recurrences (after 2 years) were etiology, an abnormal EEG, and prior febrile seizures in the overall group and an abnormal EEG in the cryptogenic group. These are similar to the risk factors for early recurrence. CONCLUSIONS: The majority of children with a first unprovoked seizure will not have recurrences. Children with cryptogenic first seizures and a normal EEG whose initial seizure occurs while awake have a particularly favorable prognosis, with a 5-year recurrence risk of only 21%. Late recurrences do occur but are uncommon.

Child↗

Long-lasting neurotrophin-induced enhancement of synaptic transmission in the adult hippocampus.

The neurotrophins are signaling factors important for the differentiation and survival of distinct neuronal populations during development. To test whether the neurotrophins also function in the mature nervous system, the effects of brain-derived neurotrophic factor (BDNF), nerve growth factor (NGF), and neurotrophic factor 3 (NT-3) on the strength of synaptic transmission in hippocampal slices were determined. Application of BDNF or NT-3 produced a dramatic and sustained (2 to 3 hours) enhancement of synaptic strength at the Schaffer collateral-CA1 synapses; NGF was without significant effect. The enhancement was blocked by K252a, an inhibitor of receptor tyrosine kinases. BDNF and NT-3 decreased paired-pulse facilitation, which is consistent with a possible presynaptic modification. Long-term potentiation could still be elicited in slices previously potentiated by exposure to the neurotrophic factors, which implies that these two forms of plasticity may use at least partially independent cellular mechanisms.

2-Amino-5-phosphonovalerate↗

P-31 changes as a measure of therapy response in resistant and sensitive osteosarcomas implanted into nude mice.

OBJECTIVE: To determine if changes in PCr/Pi and PME can be used to predict lack of tumor response to chemotherapy in a murine model of a chemotherapy-resistant human osteosarcoma. MATERIAL AND METHODS: Cisplatin-resistant sublines were grown from high-grade cisplatin-sensitive human osteosarcoma. Surface coil localized 31P NMR spectroscopy of implanted cisplatin-resistant and sensitive osteosarcoma tumors in nude mice was performed. RESULTS: A cisplatin-resistant subline of a sensitive human osteosarcoma was developed that was five times more resistant to cisplatin than the parent cell line. Our NMR data shows a statistically significant difference in the change in the PCr/Pi ratio after treatment between sensitive and resistant osteosarcomas at the alpha = 0.05 level. Changes in PME were seen in the sensitive tumors but were not statistically significant. CONCLUSIONS: Changes in PCr/Pi predict lack of tumor treatment response in human osteosarcoma implanted into nude mice with a specificity of 70% and a sensitivity of 54%. Monitoring of PCr/Pi in human osteosarcoma patients may allow detection of response to chemotherapy before conventional imaging techniques.

Animals↗