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Biomedical subjects

J Kao

Publications and source records attributed to J Kao.

At least 55 records · Page 3Linked to original sources

Mechanism of intragastric tetramethylammonium protection against 40% ethanol injury in rat stomach.

The effect of tetramethylammonium (TMA), a ganglionic stimulant, on gastric mucosal injury induced by 40% ethanol was examined. In studies I-III, rats were treated with intragastric vehicle or TMA (1 or 10 mg/kg). In study I, 1 hr after the treatment, 40% ethanol was given intragastrically. The length of the linear corpus mucosal lesions was measured unbiasedly with a caliper after another hour. In study II, mean blood pressure was assessed before and after the treatment. In study III, 1 hr after the treatment, gastric mucus and juice volumes, and titratable acid were measured. In study IV, 40% ethanol (10 ml/kg) was administered intragastrically immediately after 0.2 or 1.4 ml of intragastric vehicle treatment. One hour later, gastric lesions score was assessed as in study I. Results show that (1) intragastric TMA dose-dependently protected against 40% ethanol-induced gastric injury; (2) neither dose of intragastric TMA increased mean blood pressure; (3) there was a dose-related increase in gastric mucus secretion for TMA 1 and 10 mg/kg, and a significant increase in gastric juice volume only for TMA 10 mg/kg; and (4) the rats treated with 1.4 ml of vehicle plus 40% ethanol had significantly less injury than those treated with 0.2 ml of vehicle plus 40% ethanol. We conclude that the protective effect of intragastric TMA can be explained by its dose-related effect in enhancing gastric mucus secretion for TMA 1 and 10 mg/kg and the significantly greater increase in gastric juice volume for TMA 10 mg/kg.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

Involvement of alpha 2-adrenoceptors in mechanism of intragastric nicotine protection against ethanol injury in rat stomach.

To elucidate the role of alpha- and beta-adrenoceptors in the mechanism of intragastric nicotine protection against ethanol-induced gastric mucosal injury, the following studies were performed. At 0.5-hr prior to the injury study, rats were pretreated with: subcutaneous control, prazosin (0.5 mg/kg) or yohimbine (5 mg/kg) to block alpha 1- or alpha 2-adrenoceptors; or intraperitoneal control, metoprolol (2 mg/kg) or butoxamine (4 mg/kg) to block beta 1- or beta 2-adrenoceptors, respectively. At 1-hr intervals, rats received intragastric vehicle or nicotine (4 mg/kg) and 40% ethanol (10 ml/kg). Total lengths of the linear gastric corpus mucosal lesions were measured by an unbiased observer using a caliper. In a separate study, 0.5-hr after subcutaneous control or yohimbine (5 mg/kg), rats were treated with intragastric vehicle or nicotine (4 mg/kg). One hour later, gastric mucus volume, gastric juice volume and pH, and titratable acid in the gastric juice were measured. In the rat stomach, the intragastric nicotine protection against 40% ethanol-induced mucosal injury was not blocked by selective alpha 1-(prazosin), beta 1-(metoprolol), or beta 2-(butoxamine) adrenoceptor antagonists. The protection was significantly reduced although not completely abolished by selective alpha 2-(yohimbine) adrenoceptor antagonist. Yohimbine also significantly reduced basal and nicotine-stimulated increase in gastric mucus volume. These data suggest that alpha 2-adrenoceptors are involved in the protective effect of intragastric nicotine against 40% ethanol-induced gastric mucosal injury possibly by a mucus-dependent mechanism.

Adrenergic alpha-Antagonists↗

Mechanism of gastric hyperemia induced by intragastric hypertonic saline in rats.

BACKGROUND: Intragastric hypertonic (2 mol/L) saline produces injury in the gastric mucosa and a significant increase in gastric blood flow (hyperemia) in anesthetized rats. We studied the mechanism of this hyperemia. METHODS: Rats were treated with intravenous boluses of NG-nitro-L-arginine methyl ester (3 mg/kg) to block synthesis of endogenous nitric oxide, pyrilamine (1 mg/kg) to inhibit H1 receptors, or indomethacin (5 mg/kg) to block synthesis of endogenous prostaglandins during blood flow studies or with subcutaneous capsaicin (125 mg/kg) 10-14 days before blood flow studies to ablate capsaicin-sensitive afferent nerves. Gastric mucosal blood flow was measured by hydrogen gas clearance before and during intragastric administration of 2 mol/L saline. RESULTS: The gastric hyperemia induced by intragastric 2 mol/L saline was completely blocked only by indomethacin. The associated gastric mucosal damage was increased significantly. CONCLUSIONS: In the rat stomach, the gastric hyperemia induced by intragastric 2 mol/L saline is mediated by endogenous prostaglandins and plays a protective role. Endogenous nitric oxide, H1 receptors, and capsaicin-sensitive afferent nerves are not involved in this protective hyperemia.

Analysis of Variance↗

Sedation and analgesia for gastrointestinal endoscopy.

We compared analgesia and sedation provided by one of four different opioids in combination with midazolam during gastrointestinal endoscopy. Patients were given 1-3 mg midazolam and meperidine 50-100 mg, fentanyl 50-100 micrograms, sufentanil 5-10 micrograms, or alfentanil 150-300 micrograms, plus additional opioid and/or midazolam if needed. No untoward effects (i.e., O2 saturation < 85%, nausea, vomiting, severe bradycardia) occurred. Sedation and analgesia were comparable in the upper gastrointestinal groups. The number of patients with amnesia for the examination was highest in the meperidine group. Recovery time generally was shorter with alfentanil and sufentanil. Recovery time of the lower gastrointestinal patients was significantly longer in the meperidine group than in the other groups; analgesia scores for sufentanil were significantly lower than for meperidine. Sedation scores for these patients were highest in the meperidine group. The number of patients given meperidine who were amnesic was significantly greater than for the other opioids. Meperidine was better than the other opioids with regard to patient comfort and amnesia during colonoscopy.

Adolescent↗

Endothelial monocyte-activating polypeptide II. A novel tumor-derived polypeptide that activates host-response mechanisms.

An important means by which tumor cells influence the vasculature is through the production of soluble mediators altering vascular properties. A approximately 22-kDa polypeptide was purified to homogeneity from conditioned medium of murine methylcholanthrene A (meth A) fibrosarcoma cells by ion-exchange chromatography and preparative sodium dodecyl sulfate-polyacryl-amide gel electrophoresis (SDS-PAGE), based on its ability to induce tissue factor procoagulant activity in endothelial cells (ECs). The final product migrated as a broad band on reduced and nonreduced SDS-PAGE and had an unique amino-terminal sequence. This meth A-derived polypeptide modulated EC coagulant properties through the induction of tissue factor, induced monocyte migration and tissue factor expression, and was also chemotactic for granulocytes. Injection of the polypeptide into mouse footpads resulted in an inflammatory response with tissue swelling and polymorphonuclear leukocyte infiltration. The ability of this mediator to activate ECs and monocytes has led us to name it EMAP II (endothelial monocyte-activating polypeptide). EMAP II is distinct from a previously described approximately 40-kDa meth A-derived polypeptide termed EMAP I. Through its potential to activate host effector mechanisms, EMAP II could contribute to the biology of immunogenic tumors, such as the meth A fibrosarcoma.

Amino Acid Sequence↗

Isolation and characterization of two binding proteins for advanced glycosylation end products from bovine lung which are present on the endothelial cell surface.

Nonenzymatic glycosylation of proteins, as occurs at an accelerated rate in diabetes, can lead to the formation of advanced glycosylation end products of proteins (AGEs), which can bind to endothelial cells, thereby altering cellular function in a manner which could contribute to the pathogenesis of diabetic angiopathy. In this report, we describe the isolation of two endothelial cell surface-associated proteins which mediate, at least in part, the interaction of AGEs with endothelium. Based on pilot studies demonstrating AGE binding activity with comparable characteristics in bovine endothelial cell and lung extracts, the material from lung was sequentially subjected to chromatography on hydroxylapatite, fast protein liquid chromatography Mono S, and gel filtration. Two distinct polypeptides, approximately 35 and approximately 80 kDa, were purified to homogeneity, each of which bound AGEs as demonstrated by competitive binding assays using cellular binding proteins immobilized on a plastic surface. NH2-terminal sequence analysis indicated that the approximately 35-kDa protein was novel, whereas the NH2-terminal sequence of the approximately 80-kDa protein was identical to that of lactoferrin. Immunocytologic studies using polyclonal antibody prepared to each of the purified polypeptides demonstrated the presence of immunoreactive material on the surface of bovine endothelial cells maintained under serum-free conditions. Furthermore, immunoelectron microscopic studies with antibodies to the approximately 35- and approximately 80-kDa AGE-binding proteins conjugated to different size colloidal gold particles confirmed the presence of the target antigens on the cell surface and suggested that they were closely associated. IgG purified from polyclonal antisera to either the 35- or 80-kDa AGE-binding proteins blocked the binding of 125I-AGE-albumin to the cell surface. These results indicate that endothelial cells express specific cell surface molecules which mediate AGE-endothelial interaction. These polypeptides represent a novel class of cell surface acceptor molecules for glucose-modified proteins which may promote degradation and/or transcytosis of the ligand, and modulation of cellular function.

Amino Acid Sequence↗

Intragastric nicotine protection against 40% ethanol injury in rat stomach. Role of ganglionic stimulation or blockade.

Intragastric nicotine (4 mg/kg) protects against 40% ethanol-induced gastric mucosal injury and raises mean blood pressure. We postulated that this protective effect was mediated by the ganglionic stimulatory property of nicotine and therefore could be abolished by ganglionic blockers. Rats were pretreated with intraperitoneal hexamethonium (10 mg/kg) or mecamylamine (2 mg/kg) to block peripheral or central autonomic ganglia, respectively. Intragastric vehicle or nicotine (4 mg/kg) was then administered. The total lengths of the linear gastric corpus mucosal lesions induced by intragastric 40% ethanol were measured by an unbiased observer using a caliper. The results showed that both intraperitoneal hexamethonium and mecamylamine pretreatments protected against 40% ethanol-induced gastric mucosal injury. Neither modified the protective effect of intragastric nicotine. The protective effect of hexamethonium and mecamylamine was associated with a significant increase in the volume of gastric mucus and gastric juice. The increase in the volume of gastric content (mucus and juice) was partially responsible for the protective effect of these ganglionic blockers. In a separate experiment, intraperitoneal nicotine (4 mg/kg) also protected against 40% ethanol-induced gastric mucosal injury and raised mean blood pressure. These data indicate that the protection against 40% ethanol-induced gastric mucosal injury is not unique to intragastric nicotine. Such protection can be induced by ganglionic blocking doses of hexamethonium and mecamylamine, or a ganglionic stimulatory dose of intraperitoneally administered nicotine. Whether ganglionic stimulation or blockade plays a role in the mechanism of intragastric nicotine protection, however, remains to be determined.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Changes in atrial natriuretic factor processing and secretion with age.

The effect of age on atrial natriuretic factor (ANF) metabolism in the rat was studied. Plasma ANF levels rose with age. A positive correlation was found between age and plasma ANF levels. Molecular forms of ANF were also examined. alpha-ANF and gamma-ANF were present in the circulation. The ratio of gamma-ANF/alpha-ANF increased with age. The atria were isolated and perfused to determine the ANF secretion rate. The spontaneous release of ANF decreased with age. The released ANF mainly consisted of alpha-ANF with a small amount of gamma-ANF. The ratio of gamma-ANF/alpha-ANF in the effluent increased with age. ANF concentrations in the atria varied with age, but the molecular forms did not. gamma-ANF was the main form found in the atria. These results suggest that ANF secretion as well as post-transcriptional processing is altered with age.

Aging↗

Stenosis following laser thermal angioplasty--a blinded controlled randomized study between aspirin against Probucol.

Long-term patency of vascular angioplasties is limited by stenosis from neointimal hyperplasia or progressive arteriosclerosis. This study evaluated the hypothesis that ASA (an antiprostaglandin) or Probucol (an antioxidant) may be useful in preventing stenosis following laser thermal angioplasty. Aortoiliac arteriosclerosis was induced in 17 female New Zealand white rabbits with a combination of endothelial denudation (4 Fr. Fogarty balloon catheters) and 2% cholesterol-supplemented diet for 6 weeks. All rabbits then underwent arteriography and were immediately randomized to one of three groups: Group I (n = 6), control, laser but no adjunctive therapy; Group II (n = 5), laser and ASA 10 mg/kg/day; Group III (n = 6), laser and 1% Probucol diet. Retrograde laser thermal angioplasty was performed with a 1-mm coronary Laserprobe. Six watts of argon laser energy was delivered for a single 5-sec pulse using a continuous motion from the right common iliac artery to the aorta. Pre- and postlaser arteriography was performed in all groups. Rabbits were sacrificed 1 month following laser angioplasty, and aortoiliac sections were taken after in situ perfusion fixation with paraformaldehyde and 0.05% glutaraldehyde. Serial 5-mm segments, proximal to the aortic bifurcation and distally from the same, were taken, stained, and evaluated by quantitative morphometry. From each segment, lesion area and lesion area/internal elastic laminae area were evaluated and compared. Serum cholesterol increased from 60.8 +/- 19.5 to 1494.7 +/- 12.7 mg% following institution of the cholesterol diet (P less than 0.05). Arteriosclerotic lesions were observed in all rabbits and maximally located around the common iliac artery.(ABSTRACT TRUNCATED AT 250 WORDS)

Angioplasty, Laser↗

Characterization of the renal effects and renal elimination of sulotroban in the dog.

The renal effects and renal handling of the nonprostanoid thromboxane receptor antagonist, sulotroban (4-[2-(phenylsulfonylamino)ethyl]phenoxyacetic acid), were characterized in dogs. Sulotroban was infused i.v. at 0.06, 0.2, 0.6 and 1.0 mg kg-1 min-1 (plus prime) for 180 min. Arterial blood pressure was reduced significantly during infusion of the 1.0 mg kg-1 min-1 dosage only. Diuresis, characterized by increases in both fractional and absolute urinary excretion of sodium, potassium, chloride and calcium, and decreases in urine osmolality occurred at each of the sulotroban dosages tested. The renal clearance of sulotroban exceeded the glomerular filtration rate, suggesting renal secretion of sulotroban. The transport maximum for sulotroban secretion was approximately 160 micrograms kg-1 min-1. Renal cortical slices from naive dogs accumulated [14C]sulotroban against a concentration gradient. Sulotroban accumulation was blocked by metabolic inhibitors (dinitrophenol and sodium azide) and inhibitors of organic anion transport (probenecid and p-aminohippurate), but not by inhibitors of organic cation transport (cyanine and tetraethylammonium), suggesting that tubular secretion of sulotroban is mediated by an organic anion transport system. It was concluded that: 1) decreases in blood pressure occurred only after high dosages and were associated with high plasma sulotroban concentrations; 2) diuresis occurred at all dosages and may represent a separate pharmacological action unrelated to thromboxane receptor antagonism; and 3) renal excretion of sulotroban in the dog occurs by both filtration and tubular secretion with secretion occurring via an organic acid transporter.

Animals↗

Ascorbic acid stimulates production of glycosaminoglycans in cultured fibroblasts.

The effect of ascorbic acid on collagen synthesis is well characterized. Proteoglycans and their attached glycosaminoglycans are components of the extracellular matrix closely associated with collagen fibers. We examined whether ascorbic acid also plays a role in glycosaminoglycan production. Synthesis and deposition of glycosaminoglycans into the extracellular matrix and secretion into the media were followed in human skin fibroblasts cultured in the presence and absence of ascorbic acid. Specific glycosaminoglycans were identified and quantitated by differential enzyme digestion, ion-exchange column chromatography, and cellulose-acetate electrophoresis. No major qualitative changes in glycosaminoglycans were observed. However, quantitatively, synthesis of glycosaminoglycans increased 30 to 90%, and deposition into the extracellular matrix increased 80% in the presence of ascorbic acid. This effect was only in part secondary to decreased levels of collagen, and the diminished capacity of underhydroxylated collagen to bind proteoglycans. The effect of ascorbic acid on extracellular macromolecules is thus more pervasive than previously assumed.

Ascorbic Acid↗

Reciprocal synergy between Escherichia coli and Bacteroides fragilis in an intra-abdominal infection model.

The synergic relationship between Escherichia coli and Bacteroides fragilis was examined in a model of intra-abdominal abscess formation. The addition of B. fragilis to E. coli in the fibrin clot inoculum increased abscess weight and residual numbers of E. coli in the abscess at 7 days. In a reciprocal fashion, E. coli was capable of enhancing B. fragilis persistence in abscesses. Neither heat-killed E. coli nor heat-killed B. fragilis was able to mimic the synergic effect of its live counterpart. Furthermore, B. fragilis culture filtrate was unable to reproduce the ability of live B. fragilis to act synergically with E. coli. For B. fragilis to act synergically with E. coli, it had to be inoculated locally with E. coli in the peritoneal cavity, indicating that an effect on systemic resistance by B. fragilis was an unlikely mechanism for the production of bacterial synergy. These studies suggest that the synergic relationship between bacteria in polymicrobial infections is a complex one, resulting from intimate interactions between bacteria and the host in the local milieu of the infection.

Abscess↗

A soluble Bacteroides by-product impairs phagocytic killing of Escherichia coli by neutrophils.

The effect of Bacteroides culture filtrate on killing of Escherichia coli by neutrophils was examined as a potential mechanism for E. coli-Bacteroides microbial synergy. A low-molecular-weight heat-stable factor present in the 22-h culture filtrate of Bacteroides fragilis 9032 impaired neutrophil killing function. To determine whether short-chain fatty acids present in the filtrate could account for the inhibition, the fatty acid content of the culture filtrate was determined and sterile medium supplemented with measured concentrations of fatty acids was tested for its effect on neutrophil function. Succinic and acetic acids were measured in high concentrations, while lactic, formic, and fumaric acids were present in lower concentrations. Reconstituted media mimicked the inhibitory effect of B. fragilis filtrate on neutrophil killing capacity. In further support of the hypothesis that short-chain fatty acids were responsible for the inhibition, the filtrates of other Bacteroides strains were found to be inhibitory only after bacterial growth had entered the stationary phase, a period during which fatty acid production is maximized. Further studies investigating the mechanism of impaired neutrophil killing showed that B. fragilis 9032 culture filtrate inhibited both phagocytosis of [3H]thymidine-labeled E. coli by neutrophils and the intrinsic microbicidal functions of the neutrophil. Impairment of neutrophil superoxide production was mediated via the ability of short-chain fatty acids present in B. fragilis filtrate to reduce neutrophil cytoplasmic pH. These studies suggest that Bacteroides strains capable of reaching stationary phase in vivo may contribute to the pathogenesis of mixed infections by direct inhibition of neutrophil function.

Bacteroides↗

In vitro percutaneous absorption in mouse skin: influence of skin appendages.

Skin appendages are often envisaged as channels that bypass the stratum corneum barrier and are generally thought to facilitate the dermal absorption of topical agents. However, the significance of this transappendageal pathway in percutaneous absorption remains to be assessed experimentally. With the use of a skin organ culture penetration chamber system, the influence of skin appendages on the in vitro permeation of topically applied benzo[a]pyrene and testosterone (5 micrograms/2 cm2) was examined in skin preparations from both haired and hairless mice. Haired mice examined included the C57BL6, C3H, DBA2, Balbc, and Sencar strains and the hairless mice were the HRS and SKH. In all mouse strains examined, the overall permeation of testosterone (greater than 65% of applied dose) 16 hr following in vitro topical application was greater than that of benzo[a]pyrene (less than 10%). No strain differences were observed with respect to the percutaneous permeation of testosterone; however, percutaneous permeation of benzo[a]pyrene in the haired mice (7-10% of applied dose) was higher than that in the hairless mice (2%). In an in-house derived mouse strain which showed three phenotypic variants due to hair densities, the permeability to both compounds was highest in the skin of the haired phenotype (testosterone 67%, benzo[a]pyrene 7%), lowest in the hairless phenotype (35 and 1%, respectively) and intermediate in the fuzzy-haired animal (57 and 3%, respectively). Examination by fluorescence microscopy of cryosections of skin, prepared 1 hr after topical benzo[a]pyrene, showed areas of intense fluorescence deep within the nonfluorescing dermis of skin from the haired phenotype. These fluorescent areas were correlated with follicular ducts and sebaceous glands. In contrast, skin from the hairless phenotype showed no evidence of fluorescence in the dermis and intermediate was the fluorescence observed in the skin from the fuzzy-haired animal. These observations showed that transappendageal penetration could contribute significantly to the overall skin absorption of topical agents. They also suggest that regional distribution of skin appendages could influence the percutaneous fate of topically applied chemicals.

Animals↗

Prevention of intra-abdominal abscesses by fibrinolysis using recombinant tissue plasminogen activator.

We studied whether intraperitoneal fibrinolysis using recombinant tissue plasminogen activator (t-PA) could prevent abscess formation in the rat model of intra-abdominal infection caused by fibrin clots. Single-dose administration of t-PA at concentrations greater than 0.005 mg/mL at surgery or delivered by open lavage within 1 h of surgery completely obviated abscess formation induced by Bacteroides fragilis-infected clots without altering mortality (approximately 0.6%). With mixed Escherichia coli-B. fragilis clots, t-PA increased the mortality rate from the control level of 43.8% to 81.3% but prevented abscesses in survivors. This increased mortality rate was probably due to an acute E. coli bacteremia. Antibiotics plus t-PA prevented both mortality and abscess formation. Intraperitoneal fibrinolysis may be a useful adjunct to antibiotics and appropriate surgery in the management of intra-abdominal infection.

Abscess↗