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Biomedical subjects

D Chow

Publications and source records attributed to D Chow.

At least 19 recordsLinked to original sources

HIV disease progression and limited antiretroviral treatment options for a HIV-1 infected individual with myoclonic epilepsy associated with ragged red fibers.

We describe a 50-year-old Caucasian man with a family history of myoclonic epilepsy associated with ragged red fibers (MERRF) and a diagnosis of Human Immunodeficiency Virus (HIV). The patient had multiple risk factors for contracting HIV and was being followed in our clinic at the time of his diagnosis. Initial testing following seroconversion revealed a baseline CD4+ T-lymphocyte count of 652 x 10(6)cells/l and a HIV-1 RNA of 14,781 copies/ml. He reported exercise intolerance and had mild neurologic deficits, which worsened around the time of HIV seroconversion. These symptoms led to his subsequent diagnosis of MERRF by the detection of the A8344G point mutation in the tRNA(Lys) gene of mitochondrial DNA (mtDNA). The baseline estimated proportion of mutant genome was 39%. He showed a rapid course of HIV disease progression with a CD4+ T-lymphocyte nadir of 174 x 10(6) cells/l associated with a HIV-1 RNA of 238,178 copies/ml, within 17 months following HIV seroconversion. To avoid further mitochondrial insult, which could result from the use of a standard nucleoside reverse transcriptase inhibitor-containing regimen, a protease inhibitor regimen consisting of hard-gel saquinavir (Invirase), and lopinavir/ritonavir (Kaletra) was chosen for this patient. The patient's CD4+ T-lymphocyte count increased to 282 x 10(6)cells/l and his viral load became undetectable 7 months following the initiation of antiretroviral therapy. His neurologic symptoms did not worsen on this antiretroviral regimen. When initiating HIV therapy in individuals with metabolic myopathies related to mitochondrial dysfunction, it may be important to design an antiviral regimen that minimizes mitochondrial damage, yet effectively maintains durable viral suppression.

Journal Article↗

In vitro reconstitution of recognition and activation complexes between interleukin-6 and gp130.

Gp130 is a shared signal-transducing receptor for a family of four-helix cytokines, of which interleukin-6 is a prototypic member. IL-6-type cytokines activate gp130 to elicit downstream intracellular JAK/STAT signaling cascades through formation of hetero-oligomeric receptor complexes. Interleukin-6 must first complex with its specific alpha-receptor (Ralpha) in order to bind and activate gp130. We have dissected the extracellular activation pathway of human gp130 by human IL-6 through reconstitution of soluble complexes representing intermediate and final states in the hierarchical assembly of the IL-6/IL-6Ralpha/gp130 signaling complex. To isolate these hetero-complexes, we have applied a protein engineering strategy of covalently linking IL-6 to its Ralpha, which results in a "hyperactive" single-chain complex (hyper-IL-6) which we express in both Escherichia coli and insect cells. We have determined that IL-6/IL-Ralpha and the cytokine-binding homology region (CHR) of gp130 (D2D3) form a stable trimolecular "recognition" complex (trimer) consisting of 1IL-6,1 IL-6Ralpha, and 1 gp130-CHR. Addition of the N-terminal (D1) Ig-like domain (IGD) of gp130 to the CHR results in a transition to a hexameric "activation" complex containing 2 IL-6, 2IL-6Ralpha, and 2 gp130. These results clearly demonstrate that the recognition and activation complexes are disparate hetero-oligomeric molecular species linked by the recruitment of the gp130 IGD by the unique site III epitope present on all gp130-class cytokines. The results of these studies are relevant to other members of the IL-6 family of gp130-cytokines and address a longstanding question concerning the respective roles of the gp130 CHR and IGD in assembly of the active signaling oligomer.

Antigens, CD↗

Structure of an extracellular gp130 cytokine receptor signaling complex.

The activation of gp130, a shared signal-transducing receptor for a family of cytokines, is initiated by recognition of ligand followed by oligomerization into a higher order signaling complex. Kaposi's sarcoma-associated herpesvirus encodes a functional homolog of human interleukin-6 (IL-6) that activates human gp130. In the 2.4 angstrom crystal structure of the extracellular signaling assembly between viral IL-6 and human gp130, two complexes are cross-linked into a tetramer through direct interactions between the immunoglobulin domain of gp130 and site III of viral IL-6, which is necessary for receptor activation. Unlike human IL-6 (which uses many hydrophilic residues), the viral cytokine largely uses hydrophobic amino acids to contact gp130, which enhances the complementarity of the viral IL-6-gp130 binding interfaces. The cross-reactivity of gp130 is apparently due to a chemical plasticity evident in the amphipathic gp130 cytokine-binding sites.

Antigens, CD↗

Quantitative determination of saccharide surfactants in protein samples by liquid chromatography coupled to electrospray ionization mass spectrometry.

A direct and highly selective method, combining liquid chromatography (LC) with electrospray ionization mass spectrometry (ESI-MS), has been developed for quantifying saccharide surfactants. Saccharide surfactants, such as n-octyl-beta-d-glucopyranoside (NOG), are widely used to solubilize or refold membrane-bound or lipophilic proteins. In the present study, we have developed an LC-MS method to quantify NOG in protein samples. Protein-bound NOG was completely dissociated from proteins by reversed-phase LC, allowing the total amount of saccharide surfactant in protein samples to be quantified by MS. A chemical analog of NOG was used as an internal standard for improving the reproducibility of the method. Linearity was found in the range of 10 microg/mL-1.0 mg/mL NOG concentrations. Seven major surfactant oligomeric ions were detected under the ionization conditions applied and their relative abundance was essentially unchanged over the range of 0.05-1.0 mg/mL NOG concentrations. Consequently, ions with characteristic mass-to-charge ratios could be used for quantification of NOG. Analytical accuracy of the method was examined by determining the amounts of NOG recovered from apolipoprotein A-I and myoglobin samples spiked with NOG.

Animals↗

Dentate hilar mossy cells and somatostatin-containing neurons are immunoreactive for the alpha8 integrin subunit: characterization in normal and kainic acid-treated rats.

Integrins are heterodimeric cell surface receptors composed of different alpha and beta subunits that mediate cell-cell and cell-extracellular matrix interactions. They have been implicated in the regulation of neuronal migration, differentiation, process outgrowth, and plasticity. The alpha8 integrin subunit associates exclusively with the beta1 subunit to form a receptor (alpha8beta1) for fibronectin, vitronectin, tenascin, and osteopontin. In a previous study, we demonstrated that hippocampal dentate hilar neurons are immunoreactive for alpha8. The present study identifies the major types of alpha8-immunoreactive hilar neurons and characterizes the effects of kainic acid-induced seizures on alpha8-immunoreactivity in these cells. Examination of the hilus in normal rats revealed alpha8-immunoreactivity in the somatodendritic compartments of large hilar neurons identified as mossy cells, including a subset of dendritic thorny excrescences that were contacted by large mossy fiber terminals. alpha8-immunoreactivity also was found in approximately 71% of somatostatin-containing hilar cells. Kainic acid-induced seizures dramatically and rapidly altered the levels and distribution of alpha8-immunoreactivity in hilar neurons. After 1.5 h of seizures, alpha8-immunoreactivity in their dendrites was reduced greatly. One day after kainic acid treatment, labeling was diminished throughout the somatodendritic compartments of most hilar cells. This decrease appeared to be transient, since alpha8 labeling returned to normal levels in surviving hilar neurons within 2 weeks of treatment. In addition, many alpha8-immunoreactive hilar neurons, particularly in caudal dentate regions, were lost 3-5 weeks after kainic acid treatment. Our findings suggest that alpha8beta1 may mediate adhesive interactions of the dendritic processes of mossy cells and somatostatin-containing hilar neurons with other cellular elements or with extracellular matrix components. They also suggest that alpha8 may be susceptible to activity-dependent proteolysis that could modulate its function in the somatodendritic compartment of these cells.

Animals↗

Ultrasound biomicroscopy of sclerotomy sites: the effect of vitreous shaving around sclerotomy sites during pars plana vitrectomy.

PURPOSE: To study the difference in the amount of vitreous incarceration between conventional pars plana vitrectomy (PPV) and PPV with vitreous shaving around sclerotomy sites. METHODS: A dynamic in vivo examination using ultrasound biomicroscopy (UBM) was performed on the sclerotomy sites of 22 eyes after PPV. Patients were divided into two groups. In the study group (n = 11), the vitreous was completely shaved from the internal initial sclerotomy by cotton-tip depressed vitrectomy under coaxial illumination. In the control group (n = 11), no vitreous shaving was performed. RESULTS: Vitreous incarceration into sclerotomy sites was significantly less in the study group compared with the control group (P <0.001). No difference was seen among the three sclerotomy sites regarding vitreous incarceration within individual eyes. No difference was seen between eyes operated by right- and left-handed surgeons. CONCLUSIONS: Vitreous shaving of sclerotomy sites using depressed vitrectomy significantly reduces vitreous incarceration. This may reduce the rate of sclerotomy-related complications following PPV in selected cases.

Case-Control Studies↗

Effectiveness of water soluble poly(L-glutamic acid)-camptothecin conjugate against resistant human lung cancer xenografted in nude mice.

A camptothecin (CPT) formulation that can be easily administered, is less toxic, and has greater antitumor effect is needed. In this study, a water-soluble CPT derivative was obtained by direct coupling of CPT to poly(L-glutamic acid) (PG) through the C20(S)-hydroxyl group. CPT was released from the resulting conjugate, PG-CPT, in phosphate-buffered saline with a zero-order kinetics in the initial 50 days. The release rates were 0.623% per day, 1.081% per day, and 1.396% per day at pH 5.3, 7.4, and 9.0, respectively. In vitro, PG-CPT was less potent in inhibiting cell growth than was free CPT in all human tumor cell lines tested. However, PG-CPT showed better antitumor activity and tolerability than did CPT in vivo. When H322 human lung tumor cells were inoculated subcutaneously in nude mice, PG-CPT delayed the growth of these well-established tumors with an absolute growth delay of 32 days when given as 4 doses with 4-day intervals between injections at an equivalent CPT dose of 40 mg/kg. When H322 cells were inoculated intratracheally in nude mice, 5 doses of intravenous injection of PG-CPT at an equivalent CPT dose of 10 mg/kg on days 4, 8, 12, 16, and 20 after inoculation significantly prolonged the median survival of treated mice, averaging 1.8-fold that of untreated mice (p=0.01). Increasing the dose of PG-CPT to an equivalent CPT dose of 40 mg/kg per injection administered in 4 doses on days 4, 8, 12, and 16 prolonged the median survival of treated mice by 4-fold (p=0.0008). Significantly, mice with intratracheally inoculated H322 tumors were resistant to both CPT and cisplatin treatments. These studies demonstrated that PG may be used as an effective solubilizing carrier for CPT and that PG-CPT may have potential application in the treatment of lung cancer.

Animals↗

Visualization of a looped and knotted epidural catheter with a guidewire.

PURPOSE: To describe the management of a looped and knotted epidural catheter after analgesia for labour and delivery. CLINICAL FEATURES: Obstetrical epidural pain relief was provided for a 37-yr old woman in early labour. A 20-gauge Portex catheter was inserted at the L2-L3 interspace. Six centimetres of catheter was left in the epidural space. After vaginal delivery the catheter could not be removed. The catheter was left in situ for 24 hr. Repeated attempts at removal were again unsuccessful. The epidural catheter was not visible with fluoroscopy and it was impossible to inject radiopaque dye into the catheter. However, we successfully advanced a 0.016 inch guidewire through the epidural catheter and radiologically demonstrated a knot and part of a loop. The catheter was removed by an orthopedic surgeon using blunt dissection under local anesthetic from the soft tissue just lateral to the interspinous ligament. CONCLUSIONS: A knot can be a rare cause of a trapped epidural catheter. A suggested approach to the trapped lumbar epidural catheter: 1) Gentle traction on the catheter with the patient in various positions and in various degrees of lumbar flexion. 2) Test for catheter patency by injecting sterile, preservative-free, normal saline through the catheter. 3) Radiological imaging to determine if a knot is present and to determine its location, using radiopaque contrast for patent catheters or a guidewire for occluded catheters. 4) The approach to definitive management is based on the position of the knot. This can range from excision under local anesthetic to consultation with a surgical specialty for more invasive retrieval.

Adult↗

The effect of dietary patterns on blood pressure control in hypertensive patients: results from the Dietary Approaches to Stop Hypertension (DASH) trial.

To determine the impact of dietary patterns on the control of hypertension we studied the subgroup of 133 participants with systolic blood pressure (BP) of 140 to 159 mm Hg and/or diastolic BP of 90 to 95 mm Hg enrolled in the Dietary Approaches to Stop Hypertension (DASH) study. Participants were fed a control diet for a 3-week period and were then randomized to receive for 8 weeks either the control diet; a diet rich in fruits and vegetables, but otherwise similar to control; or a combination diet rich in fruits, vegetables, and low-fat dairy products, including whole grains, fish, poultry, and nuts, and reduced in fats, red meats, sweets, and sugar-containing beverages. Sodium intake and body weight were held constant throughout the study. The combination diet significantly reduced systolic BP (-11.4 mm Hg, P < .001) and diastolic BP (-5.5 mm Hg, P < .001). The fruits-and-vegetables diet also significantly reduced systolic BP (-7.2 mm Hg, P < .001) and diastolic BP (-2.8 mm Hg, P = .013). The combination diet produced significantly greater BP effects (P < .05) than the fruits-and-vegetables diet. Blood pressure changes were evident within 2 weeks of starting the intervention feeding. After the 8-week intervention period, 70% of participants eating the combination diet had a normal BP (systolic BP < 140 and diastolic BP < 90 mm Hg) compared with 45% on the fruits-and-vegetables diet and 23% on the control diet. In patients with hypertension, the DASH combination diet effectively lowers BP and may be useful in achieving control of Stage 1 hypertension.

Adult↗

cDNA cloning and characterization of a plant protein that may be associated with the harpinPSS-mediated hypersensitive response.

Hypersensitive response-assisting protein (HRAP) is a novel plant protein that can intensify the harpinPSS-mediated hypersensitive response (HR) in harpinPSS-insensitive plants, such as the vegetative stage of sweet pepper. In this report, we identified a HRAP cDNA clone from sweet pepper (Capsicum annuum cv. ECW). The sequence of this cDNA clone showed no appreciable similarity to any other known sequences. However, it contained three positively charged regions, a typical signal peptide and a cAMP-dependent phosphorylation site. The hrap mRNA accumulated preferentially during the incompatible interaction of sweet pepper leaves with a pathogenic bacterium, Pseudomonas syringae pv. syringae. When the hrap gene transcription level was high, the sweet pepper leaves readily expressed the harpinPSS-mediated HR. The hrap gene transcription level in sweet pepper was also higher during the reproductive stage than during the vegetative stage. The HRAP distribution in an individual plant and different plant species was investigated. We found that all the organs of sweet pepper, except fruit, could express two different forms of HRAP. Moreover, the hrap gene was presented in many plant species including tobacco, Arabidopsis, and rice. In conclusion, our results suggest that the hrap gene is widely distributed throughout the plant world and its transcription level correlates with plant sensitivity to harpinPSS. The interaction between HRAP and harpinPSS reveals a novel way to interpret the interaction mechanism between plants and bacterial pathogens.

Amino Acid Sequence↗

Redistribution of a 120 kDa phosphoprotein in the parietal cell associated with stimulation.

When rabbit isolated gastric glands were stimulated via the cyclic AMP pathway, a phosphorylated protein band of about 120 kDa (pp120) was markedly increased in the apical membrane-rich fraction, concomitant with an increase in the amount of H,K-ATPase and the phosphorylation of the cytoskeletal protein ezrin in the same fraction. The cytosolic fraction, but not other membrane fractions, also contained a protein with common features to the membrane-bound pp120, i.e., comigration in two-dimensional gels with a pI of approximately 4.5, anomalous mobility in SDS-PAGE, reactivity to antibodies, and phosphorylation, indicating that these two proteins were identical. The possibility that pp120 is vinculin was completely excluded. Using antibody against pp120, this protein was found to be almost exclusively in the gastric parietal cell. Biochemical and immunohistochemical analyses suggest that pp120 exists mainly in the cytosol, and that a small part of the protein binds to the apical membrane when the parietal cell is stimulated via the cyclic AMP pathway. In the presence of histone, purified pp120 produced phosphorylation on pp120 as well as histone. The inhibitor profile of this kinase activity is not consistent with any known kinase. We conclude that pp120 is closely associated with a new type of kinase, and translocates from cytosol to the apical membrane when the parietal cell is stimulated.

1-Methyl-3-isobutylxanthine↗

Metastable polymorph of etoposide with higher dissolution rate.

Etoposide, an anticancer drug, has low oral bioavailability because of low aqueous solubility, slow dissolution rate, and instability in acidic pH. Our objective was to enhance the aqueous solubility and dissolution rate of etoposide by polymorph formation. Preparation of various polymorphs of etoposide was attempted by crystallizing etoposide from organic solvents. Physicochemical properties of the crystals, namely, crystal habit, thermal behavior with hot-stage microscopy, thermal analysis by differential scanning calorimetry, IR spectrum, and solubility and dissolution rates, were examined. Based on the physicochemical characteristics, a metastable polymorph of etoposide was identified when it was crystallized from isopropanol. The metastable polymorph had an equilibrium solubility and intrinsic dissolution rate of 221 micrograms/ml and 16.3 micrograms/min/cm2, respectively; 1.9 and 1.7 times that of etoposide powder at 25 degrees C, respectively.

2-Propanol↗

Airway epithelial tight junctions and binding and cytotoxicity of Pseudomonas aeruginosa.

The role of tight junctions in the binding and cytoxicity of Pseudomonas aeruginosa to apical or basolateral membranes of lung airway epithelial cells was tested with fluorescence microscopy on living cells. Binding of noncytotoxic P. aeruginosa strain O1 was assessed with P. aeruginosa that expressed green fluorescent protein. Binding of cytotoxic P. aeruginosa strain 6206 was assessed with FITC-labeled P. aeruginosa; cytotoxicity was determined from nuclear uptake of the impermeant dye propidium iodide. The role of direct contact of P. aeruginosa to epithelial cells was tested with filters with small (0.45-micrometer) or large (2.0-micrometer) pores. High transepithelial resistance (R(t)) Calu-3 and cultured bovine tracheal monolayers (R(t) > 1,000 Omega. cm(2)) bound P. aeruginosa very infrequently (<1 P. aeruginosa/100 cells) at the apical membrane, but P. aeruginosa bound frequently to cells near "free edges" at holes, wounds, islands, and perimeters; cytotoxicity required direct interaction with basolateral membranes. Wounded high R(t) epithelia showed increased P. aeruginosa binding and cytotoxicity at the free edges because basolateral membranes were accessible to P. aeruginosa, and dead and living cells near the wound bound P. aeruginosa similarly. Compared with high R(t) epithelia, low R(t) CFT1 (R(t) = 100-200 Omega. cm(2)) and EGTA-treated Calu-3 monolayers were 25 times more susceptible to P. aeruginosa binding throughout the monolayer. Cytotoxicity to CFT1 cells (throughout the confluent monolayer, not only at the free edge) occurred after a shorter delay (0.25 vs. 2.0 h) and then five times faster than to Calu-3 cells, indicating that the time course of P. aeruginosa cytotoxicity may be limited by the rate of gaining access through tight junctions and that this occurred faster in low R(t) than in high R(t) airway epithelia. Cytotoxicity appeared to occur in a sequential process that led first to a loss of fura 2 and a later uptake of propidium iodide. P. aeruginosa bound three times more frequently to regions between cells (tight junctions?) than to cell membranes of low R(t) CFT1 cells.

Animals↗

Cryogenic high-resolution X-ray spectrometers for SR-XRF and microanalysis.

Experimental results are presented obtained with a cryogenically cooled high-resolution X-ray spectrometer based on a 141 x 141 micro m Nb-Al-Al(2)O(3)-Al-Nb superconducting tunnel junction (STJ) detector in an SR-XRF demonstration experiment. STJ detectors can operate at count rates approaching those of semiconductor detectors while still providing a significantly better energy resolution for soft X-rays. By measuring fluorescence X-rays from samples containing transition metals and low-Z elements, an FWHM energy resolution of 6-15 eV for X-rays in the energy range 180-1100 eV has been obtained. The results show that, in the near future, STJ detectors may prove very useful in XRF and microanalysis applications.

Journal Article↗

Clinically suspected primary acquired nasolacrimal duct obstruction: clinicopathologic review of 150 patients.

PURPOSE: The incidence of lacrimal sac pathology in patients with clinically suspected primary acquired nasolacrimal duct obstruction is unknown. This is an important issue when considering the potential risk of either conservative nonsurgical management or laser dacryocystorhinostomy, neither of which permits direct visualization and biopsy of the lacrimal outflow apparatus. METHODS: A total of 162 lacrimal sac biopsy specimens were obtained in 150 consecutive patients undergoing external or endonasal dacryocystorhinostomy for clinical primary acquired nasolacrimal duct obstruction from January 1992 to October 1994. RESULTS: A total of 147 patients (98%) had histopathologic findings consistent with inflammation or fibrosis of the lacrimal sac or both. In the remaining three patients, abnormalities included sarcoid granuloma (one patient), oncocytoma (one patient), and lymphoma (one patient). CONCLUSIONS: The incidence of significant pathology of the lacrimal sac in clinically suspected primary acquired nasolacrimal duct obstruction is low. However, these cases can be identified correctly only by routine biopsy of the lacrimal sac during dacryocystorhinostomy.

Adult↗

Pseudomonas aeruginosa B-band O-antigen chain length is modulated by Wzz (Ro1).

The wbp gene cluster, encoding the B-band lipopolysaccharide O antigen of Pseudomonas aeruginosa serotype O5 strain PAO1, was previously shown to contain a wzy (rfc) gene encoding the O-antigen polymerase. This study describes the molecular characterization of the corresponding wzz (rol) gene, responsible for modulating O-antigen chain length. P. aeruginosa O5 Wzz has 19 to 20% amino acid identity with Wzz of Escherichia coli, Salmonella enterica, and Shigella flexneri. Knockout mutations of the wzz gene in serotypes O5 and O16 (which has an O antigen structurally related to that of O5) yielded mutants expressing O antigens with a distribution of chain lengths differing markedly from that of the parent strains. Unlike enteric wzz mutants, the P. aeruginosa wzz mutants continued to display some chain length modulation. The P. aeruginosa O5 wzz gene complemented both O5 and O16 wzz mutants as well as an E. coli wzz mutant. Coexpression of E. coli and P. aeruginosa wzz genes in a rough strain of E. coli carrying the P. aeruginosa wbp cluster resulted in the expression of two populations of O-antigen chain lengths. Sequence analysis of the region upstream of wzz led to identification of the genes rpsA and himD, encoding 30S ribosomal subunit protein S1 and integration host factor, respectively. This finding places rpsA and himD adjacent to wzz and the wbp cluster at 37 min on the PAO1 chromosomal map and completes the delineation of the O5 serogroup-specific region of the wbp cluster.

Bacterial Proteins↗

Delivery of macromolecules into adherent cells via electroporation for use in fluorescence spectroscopic imaging and metabolic studies.

A method is described to introduce by electroporation membrane-impermeant molecules into adherent living cells with little perturbation. The approach uses simple, commonly available equipment to introduce small fluorescent dyes, large carrier-based dyes (e.g., fluorescein-labeled dextran), large macromolecules (e.g., antibodies), and metabolic precursors (e.g., 32P-ATP) with high efficiency. Conditions are relatively independent of cell type. Electroporation with three pulses of 300 volts at 540 microF capacitance at 4 degrees C is a good starting point for many cell types. Electrode distance from the adherent cells was critical at 1.0 +/- 0.15 mm. Suitable poration medium includes calcium-magnesium free phosphate buffered saline (PBS), PBS-buffered 0.25-3.0 M sucrose, Hepes-buffered sucrose, or unbuffered sucrose. Potential use in fluorescence imaging and metabolic studies is shown with DNA synthesis, cell replication, cell substratum attachment, 32P-ATP phosphorylation, and insulin-mediated increases in glucose uptake and its suppression by antiphosphotyrosine and antiglucose transporter protein antibodies. The ability to load foreign molecules into large numbers of adherent cells provides a means of studying these cells individually via microscopic approaches, such as fluorescence spectroscopic imaging, as well as with conventional biochemical and physiological techniques.

3T3 Cells↗