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Biomedical subjects

K Chang

Publications and source records attributed to K Chang.

At least 55 records · Page 3Linked to original sources

Cytotoxicity of Vibrio vulnificus cytolysin on rat peritoneal mast cells.

Histamine has been thought to be a permeability enhancing factor in Vibrio vulnificus infection. The injection of living bacteria or purified V. vulnificus cytolysin (VVC) can cause lethality in mice by inducing hemoconcentration and increased vascular permeability. In the present study, we tried to identify whether histamine release causes the increased vascular permeability that is responsible for the lethal effect of VVC. Treatment of rat peritoneal mast cells with high concentrations of VVC caused the release of whole cellular histamine and lactate dehydrogenase (LDH). At concentrations less than 10 HU/ml, histamine and LDH were not released whereas preloaded 2-deoxy-D-glucose was rapidly effluxed with the concomitant decrease in cellular ATP. VVC-treated mast cells were refractory to the stimulation of histamine secretion by Compound 48/80 but remained fully responsive to Ca2+ plus GTP-gamma-S. These results indicate that histamine can be released from mast cells only when the concentration of VVC is high enough to cause the lysis of cells. At low concentrations, VVC does not induce the release of stored histamine from damaged cells. The intravenous injection of 80 HU purified VVC to rats, which can produce the calculated blood concentration of about 3 HU/ml, caused a marked increase in pulmonary vascular permeability, hemoconcentration and death. However, no increase in blood histamine level was detected. This level of VVC in rat blood was enough to cause severe hemoconcentration and lethality but might not be enough to cause cytolysis of the mast cells and resulting histamine release.

Animals↗

The role of pharmacoeconomic evaluations in disease management.

Disease management is a systematic approach to a health condition or a healthcare intervention that organises preventative, interventional and care approaches throughout the continuum of care and which measures outcomes in terms of populations, not individuals. Disease management's advantage over the current component system is that it stresses prevention over acute treatment of a chronic disease. Patients with better control of their chronic diseases will likely have a decrease in the use of emergency room and inpatient hospitalisation services, thereby improving clinical outcomes of patients. To achieve these goals, disease management uses pharmacoeconomic evaluations and outcomes measures to provide information that helps build formularies and clinical practice guidelines. Several problems exist in integrating pharmacoeconomic studies in disease management models, such as the need for more integrated information systems, standardisation and who should perform these evaluations. Some possible solutions will be addressed in this article. With greater emphasis being placed on controlling costs, the need for pharmacoeconomic evaluations in the design of disease management models will continue to increase in the future.

Cost Control↗

Endoscopic ultrasound-guided diagnosis and therapy in pancreatic disease.

The role of endoscopic ultrasound (EUS) in the detection and staging of pancreatic cancer is well established in medical literature. The development of EUS-guided fine needle aspiration (FNA) and subsequently EUS-guided fine needle injection (FNI) has expanded the clinical utility of EUS. These newer techniques made "interventional" EUS possible. Several recent applications of EUS-guided FNI include celiac nerve block, pseudocyst drainage, and drug delivery into pancreatic tumors. EUS is also gaining acceptance as an alternative diagnostic modality in the management of choledocholithiasis. The value of EUS in the diagnosis of early chronic pancreatitis is still being actively studied. This article reviews a number of recent developments in EUS-guided diagnosis and therapy with an emphasis on EUS-guided FNA and EUS-guided FNI.

Drainage↗

Prevention of vascular and neural dysfunction in diabetic rats by C-peptide.

C-peptide, a cleavage product from the processing of proinsulin to insulin, has been considered to possess little if any biological activity other than its participation in insulin synthesis. Injection of human C-peptide prevented or attenuated vascular and neural (electrophysiological) dysfunction and impaired Na+- and K+-dependent adenosine triphosphate activity in tissues of diabetic rats. Nonpolar amino acids in the midportion of the peptide were required for these biological effects. Synthetic reverse sequence (retro) and all-D-amino acid (enantio) C-peptides were equipotent to native C-peptide, which indicates that the effects of C-peptide on diabetic vascular and neural dysfunction were mediated by nonchiral interactions instead of stereospecific receptors or binding sites.

Amino Acid Sequence↗

A G-protein-coupled receptor for leukotriene B4 that mediates chemotaxis.

Leukotriene B4 (LTB4) is a potent chemoattractant that is primarily involved in inflammation, immune responses and host defence against infection. LTB4 activates inflammatory cells by binding to its cell-surface receptor (BLTR). LTB4 can also bind and activate the intranudear transcription factor PPAR alpha, resulting in the activation of genes that terminate inflammatory processes. Here we report the cloning of the complementary DNA encoding a cell-surface LTB4 receptor that is highly expressed in human leukocytes. Using a subtraction strategy, we isolated two cDNA clones (HL-1 and HL-5) from retinoic acid-differentiated HL-60 cells. These two clones contain identical open reading frames encoding a protein of 352 amino acids and predicted to contain seven membrane-spanning domains, but different 5'-untranslated regions. Membrane fractions of Cos-7 cells transfected with an expression construct containing the open reading frame of HL-5 showed specific LTB4 binding, with a K(d) (0.154nM) comparable to that observed in retinoic acid-differentiated HL-60 cells. In CHO cells stably expressing this receptor, LTB4 induced increases in intracellular calcium, D-myo-inositol-1,4,5-triphosphate (InsP3) accumulation, and inhibition of adenylyl cyclase. Furthermore, CHO cells expressing exogenous BLTR showed marked chemotactic responses towards low concentrations of LTB4 in a pertussis-toxin-sensitive manner. Our findings, together with previous reports, show that LTB4 is a unique lipid mediator that interacts with both cell-surface and nuclear receptors.

Animals↗

Cloning and expression of the recombinant FAb fragment of monoclonal antibody K1 that reacts with mesothelin present on mesotheliomas and ovarian cancers.

The monoclonal antibody (MAb) K1 recognizes an approximate 40 kDa glycoprotein, mesothelin, that is present on the surface of human mesothelial cells, mesotheliomas and ovarian cancers. We have cloned the cDNAs encoding the variable regions of MAb K1 and constructed plasmids for expression of recombinant K1(FAb). Recombinant FAb was produced in Escherichia coli in inclusion bodies that were solubilized and refolded to active protein. Binding of K1 MAb and FAb was compared by radioactive binding and competition assays and by surface plasmon resonance (BIAcore). Recombinant K1(FAb) binds to cells expressing K1-antigen with a similar affinity as papain derived FAb from K1(IgG) and with a 4- to 10-fold reduced affinity compared with bivalent IgG. The cloned FAb can be used to make higher affinity antibodies and immunoconjugates that could be useful for various types of immunotherapies.

Amino Acid Sequence↗

Isolation of anti-mesothelin antibodies from a phage display library.

Phage display has been used to select single-chain Fvs (scFvs) against mesothelin, a surface antigen present on mesothelial cells as well as mesotheliomas and non-mucinous ovarian cancers. Several attempts to produce anti-mesothelin hybridomas from spleen cells of mice immunized with recombinant mesothelin were unsuccessful. This report describes the isolation of anti-mesothelin scFvs from a phage display library made from the mRNA of the same spleens. Panning on recombinant antigen produced in E. coli or on antigen positive cells was employed. Several scFvs which bind specifically to mesothelin were isolated. Panning on recombinant antigen yielded five different scFvs. Panning on cells selected two different scFvs which also differ from the scFvs selected by recombinant antigen. The heavy chains of the scFvs selected on recombinant antigen are derived from four different heavy chain gene families and the scFvs selected on cells are derived from two of these families. In contrast, the light chains of all of these scFvs are derived from family XI. Moreover, the light chains of the two scFvs selected on cells are very similar to the light chains of two of the scFvs selected by panning on recombinant mesothelin except for a few point mutations. One of these scFvs which have been studied in detail has been shown to bind specifically to mesothelin positive transfected cells.

3T3 Cells↗

Dimensions and indicators of patients' perceived nursing care quality in the hospital setting.

Nursing professionals have noted the impact of cost-containment strategies on nursing care quality in the hospital setting. However, there is a lack of scientific data to demonstrate the impact. The author reviewed 53 published data-based primary studies of patient satisfaction with nursing care (PSNC) from 1982 to the present and identified 13 published PSNC instruments. The author performed content analysis of the published instruments and identified the dimensions and indicators of patients' perceived structure, process, and outcomes attributed to nursing care. The needs for further development of instruments to assess patients' perceived nursing care quality are identified.

Attitude of Health Personnel↗

Increased sciatic nerve blood flow in diabetic rats: assessment by "molecular" vs. particulate microspheres.

Sciatic nerve blood flow in diabetic rats in typically increased or unchanged when assessed by the reference sample microsphere method in our laboratory. In contrast, blood flow is generally reported to be decreased approximately 50% when assessed with laser Doppler flowmetry or hydrogen clearance polarography. To address concerns that increased blood flow observed with microspheres might be anomalous because of their particulate nature and/or because insufficient numbers of microspheres are captured in the nerve, a plasma-soluble "molecular microsphere" ([3H]desmethylimipramine, mol wt = 266) and 11.3-micron 153Gd-labeled microspheres were injected sequentially to assess blood flow in rats with streptozotocin diabetes of 2-4 wk duration. Nerve blood flows in diabetic rats were increased 1.5- to 2-fold (vs. control rats) with both tracers; these increases were prevented by tolrestat, an inhibitor of aldose reductase. These observations indicate that blood flow in sciatic nerve (like that in retina and kidney) is increased early after the onset of diabetes and is 1) demonstrable with a plasma-soluble tracer as well as with particulate microspheres and 2) linked to increased metabolism of glucose via the sorbitol pathway.

Aldehyde Reductase↗

Diabetes impairs sciatic nerve hyperemia induced by surgical trauma: implications for diabetic neuropathy.

The most widely used methods to assess nerve blood flow in diabetics rats are hydrogen clearance polarography and laser Doppler flowmetry, techniques requiring surgical exposure of the nerve. In these experiments, we examined the hypothesis that the trauma of surgical exposure introduces an important and hitherto largely unrecognized variable that could account for discordant reports on nerve blood flow changes induced by diabetes. We used the noninvasive (for sciatic nerve) reference sample microsphere method to quantify sciatic nerve blood flow in unexposed va. surgically exposed nerves in rats with streptozotocin-induced diabetes (at different temperatures and after curarization) and in unexposed vs. surgically exposed nerves in galactose-fed rats. Baseline resting blood flow in unexposed nerves in both animal models of diabetes was either normal or increased (but was decreased in diabetic rats given d-tubocurarine). Furthermore, the normal brisk hyperemic nerve blood flow response to the minimal trauma associated with surgical exposure of the nerve was markedly impaired in diabetic and in galactose-fed rats. Normalization of the blood flow response to trauma in galactose-fed rats by an aldose reductase inhibitor suggests that the impairment is linked to increased polyol pathway metabolism. These findings 1) confirm our previous findings that sciatic nerve blood flow in diabetic rats is increased or unchanged in unexposed nerves, while also confirming reports that in surgically exposed nerves blood flow is higher in control than in diabetic rats, and 2) indicate that blood flows in surgically exposed nerves are largely a measure of vascular responses to injury rather than (patho)physiological blood flow in undisturbed nerves.

Aldehyde Reductase↗

TNF-alpha causes reversible in vivo systemic vascular barrier dysfunction via NO-dependent and -independent mechanisms.

Tumor necrosis factor (TNF-alpha) and nitric oxide (NO) are important vasoactive mediators of septic shock. This study used a well-characterized quantitative permeation method to examine the effect of TNF-alpha and NO on systemic vascular barrier function in vivo, without confounding endotoxemia, hypotension, or organ damage. Our results showed 1) TNF-alpha reversibly increased albumin permeation in the systemic vasculature (e.g., lung, liver, brain, etc.); 2) TNF-alpha did not affect hemodynamics or blood flow or cause significant tissue injury; 3) pulmonary vascular barrier dysfunction was associated with increased lung water content and impaired oxygenation; 4) TNF-alpha caused inducible nitric oxide synthase (iNOS) mRNA expression in the lung and increased in vivo NO production; 5) selective inhibition of iNOS with aminoguanidine prevented TNF-alpha-induced lung and liver vascular barrier dysfunction; 6) aminoguanidine prevented increased tissue water content in TNF-alpha-treated lungs and improved oxygenation; and 7) nonselective inhibition of NOS with NG-monomethly-L-arginine increased vascular permeation in control lungs and caused severe lung injury in TNF-alpha-treated animals. We conclude that 1) TNF-alpha reversibly impairs vascular barrier integrity through NO-dependent and -independent mechanisms; 2) nonselective NOS inhibition increased vascular barrier dysfunction and caused severe lung injury, whereas selective inhibition of iNOS prevented impaired endothelial barrier integrity and pulmonary dysfunction; and 3) selective inhibition of iNOS may be beneficial in treating increased vascular permeability that complicates endotoxemia and cytokine immunotherapy.

Animals↗

Discordant effects of guanidines on renal structure and function and on regional vascular dysfunction and collagen changes in diabetic rats.

We examined the effects of aminoguanidine and methylguanidine on vascular dysfunction, glomerular structural changes, and indexes of early and late nonenzymatic glycation in 7-month streptozotocin-induced diabetic rats. Kidney weight, glomerular volume, fractional mesangial volume, glomerular capillary basement membrane width, and urinary albumin excretion were increased in diabetic rats. Diabetes also 1) increased vascular albumin permeation twofold in retina, sciatic nerve, aorta, skin, and kidney; 2) decreased renal collagenase-soluble collagen; 3) increased collagen-associated fluorescence in kidney and skin but not in aorta; and 4) increased glycated hemoglobin levels and aortic pentosidine levels. Aminoguanidine reduced albuminuria by 70% after 4 months, and both guanidines 1) normalized aortic pentosidine levels and renal collagenase-soluble collagen, 2) had no effect on glycated hemoglobin levels or collagen-associated fluorescence (in aorta, kidney, or skin), and 3) had little or no effect on regional albumin permeation. These discordant effects of aminoguanidine on diabetes-induced vascular changes versus parameters of nonenzymatic glycation are consistent with a multifactorial pathogenesis of diabetic complications, including roles for metabolic imbalances independent of nonenzymatic glycation. To the extent that glomerular matrix accumulation and increased regional albumin permeation in chronically diabetic rats are sequelae of nonenzymatic glycation, these findings point to an important role for early glycation reactions and products.

Albuminuria↗

Preretinal neovascularization induced by experimental retinal vein occlusion in albino rats.

Retinal ischemia and neovascularization have been demonstrated in several animal models. To determine 1) whether the retinal or preretinal neovascularization can be induced in albino rats by retinal vein occlusion and 2) the type and rate of occurrence on neovascularization, we occluded retinal veins in albino rats by photodynamic thrombosis. After anesthesia, each of 36 rats received an injection of rose bengal photosensitive dye, and their veins underwent argon green laser treatment. Half or all the major retinal veins were occluded in 12 eyes and in 24 eyes, respectively. Ten control rats underwent the same procedures but the laser beam was directed between major retinal vessels. In 46 control eyes, rose bengal dye was seen to have perfused without laser treatment. Retinal detachment developed in most vein occluded eyes within one day of venous occlusion, which was confirmed by fluorescein angiography. On follow-up at two weeks, only four of 24 eyes (16.7%) had undergone occlusion of all retinal veins showed new preretinal vessels on the optic disc. In these four eyes, severe disturbance of both retinal arterial and venous blood flow was observed, but no other eyes showed such severe combined disturbance. These data suggest that preretinal neovascularization in albino rats can be induced by this minimally traumatic method and that venous occlusion is severe enough to compromise arterial blood flow for a certain threshold period, thus inducing the development of preretinal neovascularization.

Animals↗

High-dose infusional doxorubicin and cyclophosphamide: a feasibility study of tandem high-dose chemotherapy cycles without stem cell support.

The purpose of this study was to determine the maximally tolerated dose of doxorubicin administered during two cycles of intensive chemotherapy with cyclophosphamide and doxorubicin without stem cell support in patients with advanced cancer and to assess the cumulative cardiac toxicity of the regimen by noninvasive radionuclide imaging and by pre-and postchemotherapy endomyocardial biopsies. Thirty-eight patients (thirty-six with high risk or metastatic breast cancer) were treated in a dose-escalation trial using a fixed dose of i.v. cyclophosphamide (4.2 g/m2) administered over 2 h on day 5 and escalating doses of doxorubicin (50-175 mg/m2) given as a 96-h continuous i.v. infusion on days 1-4, using Filgrastim (granulocyte colony-stimulating factor) for hematological support beginning on day 6. All patients underwent pretreatment, and 28 patients underwent postchemotherapy endomyocardial biopsies. Twenty-nine of 38 patients received two cycles of treatment (median number of days between cycles, 44; range, 34-62). Twenty-one patients had received doxorubicin previously at cumulative dose levels </=150 mg/m2; all patients had pretreatment endomyocardial biopsy scores less than 1. One patient treated at the highest dose level of doxorubicin (175 mg/m2) developed symptoms of mild congestive heart failure following two cycles of chemotherapy. Pre- and posttreatment radionuclide ejection fractions were 65 and 45%, respectively; this patient had a posttreatment endomyocardial biopsy score of 1 (damage to <5% of myocytes). One additional patient at this dose level had an asymptomatic biopsy score of 1, with a decrease in ejection fraction from 62 to 43%; this recovered to 58% 5 months after completion of chemotherapy. Six additional patients treated at lower dose levels had abnormal posttreatment endomyocardial biopsies without abnormal posttreatment ejection fractions. Nine patients received only one cycle of chemotherapy: five patients due to decreased cardiac ejection fraction following cycle 1 (two of these patients had normal endomyocardial biopsies, and two patients had biopsy scores of 1); one patient secondary to tumor progression following cycle one; one patient due to persistently detectable Clostridium difficile toxin in the stool; one patient refused cycle two; and one patient died following cycle one of complications related to sepsis. A single patient experienced a grand mal seizure associated with orthostatic hypotension, which was considered the dose-limiting toxicity. The median duration (over two cycles) of granulocytopenia (absolute granulocyte count <500/microliter) at the maximally tolerated dose level of 150 mg/m2 was 8.5 days (range, 5-13 days), and the median duration of thrombocytopenia (platelets <20,000/microliter) was 2.5 days (range, 0-9 days). The median duration of hospitalization including chemotherapy administration was 23 days (range, 19-36 days). Other toxicities included stomatitis, fever, diarrhea, and emesis. One patient developed acute leukemia 54 months posttreatment. We conclude that two courses of high-dose cyclophosphamide and doxorubicin using granulocyte colony-stimulating factor are feasible and safe with tolerable myocardial toxicity as evidenced by serial endomyocardial biopsies. The dose-limiting toxicity encountered was a grand mal seizure. The recommended Phase II dose is doxorubicin 150 mg/m2 administered as a 96-h infusion on days 1-4, with cyclophosphamide 4. 2 g/m2 on day 5 and G-CSF 5 microgram/kg/day started on day 6 and administered until the total WBC is above 10,000/microliter for three consecutive days.

Adult↗

Molecular cloning of mesothelin, a differentiation antigen present on mesothelium, mesotheliomas, and ovarian cancers.

Monoclonal antibody MAb K1 recognizes a 40-kDa glycoprotein present on the surface of mesothelial cells, mesotheliomas, and ovarian cancers. We have used MAb K1 to isolate a 2138-bp cDNA that encodes this antigen. The cDNA has an 1884-bp open reading frame encoding a 69-kDa protein. When the cDNA was transfected into COS and NIH 3T3 cells, the antigen was found on the cell surface and could be released by treatment with phosphatidylinositol-specific phospholipase C. The 69-kDa precursor is processed to the 40-kDa form. The protein has been named mesothelin because it is made by mesothelial cells. Mesothelin may play a role in cellular adhesion.

Amino Acid Sequence↗

Intracellular distribution of type II collagen mRNA and prolyl 4-hydroxylase in embryonic avian corneal epithelia.

BACKGROUND: The distribution of endoplasmic reticulum (ER) proteins and type II collagen mRNA in whole mount preparations of embryonic corneal epithelia was investigated. We asked, do transmission electron microscopy (TEM) and confocal microscopy of chick prolyl 4-hydroxylase (CPH) show similar ER distributions as CPH is necessary for collagen biosynthesis? METHODS: The overall distribution of ER was analyzed by TEM. Collagen secreting ER was localized with antibodies to chick prolyl 4-hydroxylase (CPH, CPH-alpha, or CPH-beta subunits). Type II collagen mRNA distribution was determined by in situ hybridization. RESULTS: The ER localized with TEM, and immunohistochemistry using anti-CPH antibodies, showed similar distribution patterns. Immunostaining for CPH and CPH-beta was prominent in both periderm and basal cells and also appeared to stain the periderm apical surface. CPH-alpha was less intense, only localizing to ER regions. The basal cell CPH distribution appeared perinuclear in optical sections that contained nuclei, but occupied nearly all the cytoplasm in a reticular pattern above and below nuclei, similar to that seen with TEM cross-sections. Epithelia double labeled with propidium iodide and CPH showed overlapping cytoplasmic staining. The distribution of type II collagen mRNA was similar to the ER staining pattern, appearing to represent a subset of total ER. CONCLUSIONS: This study demonstrates that ER markers have a similar distribution as type II collagen mRNA in embryonic avian corneal epithelia. In addition the CPH subunits had distinct, but overlapping distributions, suggesting that they may act independently.

Animals↗

Impact of endoscopic ultrasound with fine-needle aspiration on the surgical management of pancreatic cancer.

BACKGROUND: Endoscopic ultrasound (EUS) with EUS-guided fine-needle aspiration (EUS-FNA) enables one to visualize the pancreas and surrounding structures and can provide access for FNA of those structures that appear suspicious for tumor. PATIENTS AND METHODS: From 1993 to 1995, 50 patients suspected of having pancreatic cancer underwent EUS/EUS-FNA and abdominal computed tomography (CT). Malignancy was found in 30 (60%) cases, which included 24 (48%) pancreatic adenocarcinomas. RESULTS: Endoscopic ultrasound/EUS-FNA identified 26 of the 30 malignancies (85%) and 21 of the 24 pancreatic adenocarcinomas (88%), with no false positives. Thirteen of the 24 pancreatic cancer patients had lymph nodes that were sampled with EUS/EUS-FNA. Seven of these 13 patients (62%) were found to have metastatic spread to lymph nodes. Operations were performed on 11 of the pancreatic cancer patients. Of these 11, the 5 that were predicted to be resectable by EUS/EUS-FNA underwent successful resection. Of the 6 predicted to be unresectable, 5 had palliative biliary bypasses, and 1 had a grossly positive margin of resection. CONCLUSIONS: Endoscopic ultrasound/EUS-FNA can identify patients for curative surgical resection. It can also preoperatively identify patients with regional nodal disease for inclusion in appropriately designed clinical trials.

Adult↗

Inhibition of inducible nitric oxide synthase prevents myocardial and systemic vascular barrier dysfunction during early cardiac allograft rejection.

NO is produced during cardiac allograft rejection by expression of inducible NO synthase (iNOS) in the rejecting heart. Recent evidence indicates that NO modulates vascular permeability under both physiological and pathophysiological conditions. The present study explored the effects of early acute cardiac allograft rejection, and specifically the effects of NO, on myocardial and systemic vascular barrier function using a quantitative double-tracer permeation method in a rat cardiac transplant model. Early allograft rejection increased albumin permeation twofold to fivefold in the allograft heart and systemic vasculature (brain, lung, sciatic nerve, diaphragm, retina, muscle, kidney, and uvea) compared with isografts and controls. There were no detectable differences in regional blood flow or hemodynamics, suggesting that increased albumin permeation resulted from increased vascular permeability. iNOS mRNA was expressed in the allograft heart and native lung and was associated with increased serum nitrite/nitrate levels. iNOS inhibition with aminoguanidine prevented or attenuated allograft heart and systemic vascular barrier dysfunction and reduced allograft serum nitrite/nitrate levels to isograft values. Aminoguanidine did not affect the mild histological changes of rejection present in allografts. These data demonstrate the novel observations that (1) endothelial barrier function is compromised in the systemic vasculature, particularly in the brain, remote from the site of allograft rejection; (2) allograft vascular barrier dysfunction is associated with increased NO production and iNOS mRNA expression in the affected tissues (eg, native lung and grafted heart); and (3) inhibition of NO production by iNOS prevents vascular barrier dysfunction in the allograft heart and systemic vasculature.

Animals↗