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Biomedical subjects

I Rubinstein

Publications and source records attributed to I Rubinstein.

At least 19 recordsLinked to original sources

The stable VIP analogue, Ro 24-9981, potentiates bradykinin-induced increases in clearance of macromolecules.

The purpose of this study was to determine whether the stable cyclic peptide analogue of human vasoactive intestinal peptide, Ro 24-9981, modulates bradykinin-induced plasma exudation in the oral mucosa and if so, to determine the mechanisms that mediated these responses. Using intravital microscopy, we found that suffusion of Ro 24-9981 had no significant effects on leaky site formation and clearance of fluorescein-isothiocyanate-dextran (mol mass 70 kDa) in the hamster cheek pouch. However, Ro 24-9981 significantly potentiated bradykinin-induced increases in leaky site formation and clearance of fluorescein-isothiocyanate-dextran (P < 0.05). These effects were specific because Ro 24-9981 had no significant effects on adenosine and calcium ionophore A23187-induced increases in leaky site formation and clearance of fluorescein-isothiocyanate-dextran. Furthermore, they were not mediated by cyclooxygenase products of arachidonic acid metabolism because indomethacin was ineffective. NG-nitro-L-arginine methyl ester, a selective inhibitor of nitric oxide synthase, but not NG-nitro-D-arginine methyl ester, significantly attenuated the effects of both bradykinin and Ro 24-9981 with bradykinin (P < 0.05). These responses were restored by L-arginine but not D-arginine. Collectively, these data indicate that bradykinin-induced plasma exudation in the oral mucosa was potentiated by Ro 24-9981 in a specific receptor-mediated fashion. These responses were mediated, in part, by the L-arginine/nitric oxide biosynthetic pathway.

Adenosine

TNF-alpha and IL-1 beta upregulate nitric oxide-dependent ciliary motility in bovine airway epithelium.

Airway epithelial cells can be modulated by cytokines such as tumor necrosis factor (TNF)-alpha and interleukin (IL)-1 beta that are released from inflammatory cells. Since ciliary motility is an important host defense function of airway epithelium, we hypothesized that cytokines, released from lung macrophages, upregulate ciliary motility. To test this hypothesis, ciliary beat frequency (CBF) was measured by video microscopy in cultured ciliated bovine bronchial epithelial cells (BBECs) incubated for 24 h with bovine alveolar macrophage-conditioned medium (AM-CM). Exposure to AM-CM resulted in a delayed (> or = 2 h) increase in CBF that was maximal after 24 h exposure (13.70 +/- 0.43 for AM-CM vs. 9.44 +/- 0.24 Hz for medium; P < 0.0001) and which was largely blocked by either anti-TNF-alpha or anti-IL-1 beta antibodies. rTNF-alpha or rIL-1 beta similarly increased CBF, which could be blocked by preincubation with either anti-rTNF-alpha or anti-rIL-1 beta antibodies. Preincubation of BBECs with actinomycin D or dexamethasone also blocked rTNF-alpha- and rIL-1 beta-induced cilia stimulation, suggesting that new protein synthesis is required for cytokine-induced upregulation of CBF. Since NO is known to upregulate ciliary motility and cytokines can induce NO synthase (NOS), we hypothesized that TNF-alpha and IL-1 beta increase CBF by inducing NOS in BBECs. The cilia stimulatory effects of TNF-alpha or IL-1 beta were inhibited by NG-monomethyl-L-arginine, a competitive NOS inhibitor, and restored by the addition of either L-arginine, an NOS substrate, or sodium nitroprusside, an NO donor.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Oxidoreductases

Neutral endopeptidase modulates substance P-induced vasodilation in vivo.

The purpose of this study was to investigate whether neutral endopeptidase (NEP; EC 3.4.24.11) modulates substance P-induced vasodilation in the oral mucosa in vivo. Using intravital microscopy, we measured the diameter of second-order arterioles (44-70 microns) in the hamster cheek pouch during suffusion of capsaicin and substance P. We found that capsaicin (0.1 and 10.0 nM) induced significant concentration-dependent vasodilations (13 +/- 4 and 39 +/- 7% increase from baseline, respectively; P < 0.05) that were significantly potentiated by phosphoramidon (10.0 nM), a selective NEP inhibitor (35 +/- 15 and 61 +/- 12% increase from baseline, respectively; P < 0.05). Substance P (0.1 and 10.0 nM) also induced significant concentration-dependent vasodilations (7 +/- 3 and 25 +/- 8% increase from baseline, respectively; P < 0.05) that were mediated by the COOH-terminal of the molecule. Substance P-induced responses were significantly potentiated by phosphoramidon (34 +/- 9 and 53 +/- 10% increase from baseline, respectively; P < 0.05) and thiorphan (10.0 microM), a selective NEP inhibitor (44 +/- 11 and 53 +/- 10% increase from baseline, respectively; P < 0.05). Substance P-(1-9) had no significant effects on arteriolar diameter. Suffusion of captopril, leupeptin, Bestatin, and DL-2-mercaptomethyl-3-guanidinoethylthiopropanoic acid together had no significant effects on substance P-induced vasodilation. Phosphoramidon did not potentiate nitroglycerin-induced vasodilation. These data indicate that NEP modulates substance P-induced vasodilation in the hamster cheek pouch in vivo. We suggest that any decrease in tissue NEP activity may amplify neurogenic vasodilation in the oral mucosa.

Animals

Substance P increases neutrophil adhesion to bronchial epithelial cells.

Polymorphonuclear neutrophils (PMNs) accumulate within the airways during acute and chronic bronchitis and can adhere to bronchial epithelium. Substance P (SP), a neuropeptide released from the primary afferent nerve endings, has been shown to have a proinflammatory effect on PMNs. To test the hypothesis that SP could modulate PMN bronchial epithelial cell adherence, bovine bronchial epithelial cells (BBECs) were isolated and cultured, and the capacity of SP to modulate PMN-BBEC adherence was evaluated. SP interacted with BBECs to induce an increase in PMN adhesion (14.7 +/- 1.2% vs 5.3 +/- 0.7% adherence, p < 0.01). The effect of SP was both time- and dose-dependent with maximal responses at 6 h and 10(-10) M. The effect was reproduced by the carboxyl-terminal sequence of the molecule (SP 6-11). Importantly, pretreatment of the BBECs with the tachykinin SP receptor (NK1) antagonist, CP-96,345, significantly reduced the increase in adhesion induced by SP (p < 0.01). Furthermore, treatment of the BBECs with antibodies against CD11a (LFA-1), CD11b (MAC-1), or ICAM-1 significantly decreased SP-induced adherence (p < 0.01 all comparisons). Conversely, SP stimulation of PMN induced a dose-dependent, rapid (within 5 min) increase in adherence. This effect was also mediated by the carboxy end of the molecule and was decreased by CP-96,345, again suggesting that this effect was NK1 mediated. These data demonstrate the SP has the capacity for modulating PMN-BBEC interactions and suggest an important role for SP in modulating airway inflammation.

Animals

Acetylcholine induces vasoconstriction in the microcirculation of cardiomyopathic hamsters: reversal by L-arginine.

The goal of this study was to determine whether endothelium-dependent responses of the microcirculation are altered during cardiomyopathy. We examined in vivo responses of cheek pouch arterioles to an endothelium-dependent agonist (acetylcholine) and an endothelium-independent agonist (nitroglycerin) in normal and in cardiomyopathic hamsters. In normal hamsters, acetylcholine produced dose-related dilatation of arterioles. In contrast, acetylcholine produced constriction of arterioles in cardiomyopathic hamsters. Nitroglycerin produced similar dose-related dilatation in normal and cardiomyopathic hamsters. We also examined whether impaired responses to acetylcholine in cardiomyopathic hamsters were related to an alteration in the L-arginine/nitric oxide pathway. We found that L-arginine (100 microM) restored endothelium-dependent vasodilatation to acetylcholine in cardiomyopathic hamsters. Thus, cardiomyopathy impairs endothelium-dependent responses of the microcirculation which is reversed by L-arginine.

Acetylcholine

Tissue angiotensin I-converting enzyme activity in spontaneously hypertensive hamsters.

The purpose of this study was to measure angiotensin I-converting activity in heart, kidney, lung and cheek pouch tissue homogenates of spontaneously hypertensive and normotensive hamsters. We also determined inhibitor sensitivity and the effects of chloride anion concentration on kidney angiotensin I-converting activity in these animals. We found no significant differences in angiotensin I-converting activity between hypertensive and normotensive hamsters in all tissues tested. Inhibitor sensitivity of kidney angiotensin I-converting activity with captopril and lisonopril was similar in both groups. Finally, kidney angiotensin I-converting activity increased significantly in both groups as chloride anion concentration in the assay buffer increased. Substituting chloride anion for citrate abrogated the increase in angiotensin I-converting enzyme activity.

Angiotensin I

Immunological rejection of heart transplant: how lytic granules from cytotoxic T lymphocytes damage guinea pig ventricular myocytes.

We investigated the mechanism by which lytic granules extracted from cytotoxic T lymphocytes (CTL) damage guinea pig ventricular myocytes in order to determine whether their actions can be related to the overall immunological rejection of the transplanted heart. Granule-induced myocyte morphological changes and final destruction were preceded by shortening of action potential duration (APD) and reductions of the resting potential and the action potential amplitude. APD shortening was probably caused by a granule-induced increase in outward current (most likely non-specific). Ryanodine, which blocks Ca2+ release from the sarcoplasmic reticulum, did not interfere with the morphological and electrophysiological effects of lytic granules. Fura-2 imaging indicated that [Ca2+]i initially increased about 2-fold from 90.0 +/- 11.5 nM, while cell length decreased less than 5% from a mean value of 99.0 +/- 9.0 microns. A further increase in [Ca2+]i (greater than 10 fold) was associated with progressive contracture and destruction, suggesting that the structural damage inflicted by lytic granules is caused by [Ca2+]i overload. The results indicate that the cytocidal action of CTL-derived lytic granules may be involved in immunologically induced damage, even to the extent of rejection of the transplanted heart.

Action Potentials

Muscle microcirculatory impairment following acute compartment syndrome in the dog.

Visualization of the intramuscular microcirculation during and after compartmental syndrome was studied by microangiograms and histologic cross sections. A marked reduction in the circulation of the endomysial capillary network was found during compartment tamponade, whereas the perimysium arteriolar system was patent. Revascularization took place by formation of distorted blood vessels accompanied by intramuscular hematomas in muscles 7 and 14 days after the compartment insult. The cross sections show massive fibroblastic activity around blood vessels that caused concealed intramuscular pressure-ischemic contracture resulting in the foci of myofibrillar necrosis seen within normal muscle tissue. The muscle located in the tamponaded compartment profusely bleeds when it is touched, even though its viability is in doubt. The explanation for this clinical observation might be the abnormal intramuscular revascularization that was found in this work.

Acute Disease

Bronchial epithelial cells release neutrophil chemotactic activity in response to tachykinins.

The purpose of this study was to determine whether substance P (SP), neurokinin A (NKA), and neurokinin B (NKB) induce the release of neutrophil chemotactic activity (NCA) from bovine bronchial epithelial cells (BBEC) and whether neutral endopeptidase (NEP), a membrane-bound metalloenzyme that hydrolyzes tachykinins, modulates these effects. BBEC monolayers were exposed to SP, NKA, and NKB in the absence or presence of phosphoramidon (10(-6) M), a selective NEP inhibitor, for 72 h. Using a modified blind-well in vitro neutrophil chemotaxis assay, we found that tachykinin-exposed BBEC culture supernatant fluids induced significant neutrophil chemotaxis compared with supernatants obtained from unstimulated BBEC. Maximal effect was observed after 48 h of incubation and at SP concentration of 10(-13) M [92 +/- 3 (SP) vs. 64 +/- 2 (media) cells/high-power field (HPF), mean +/- SE, n = 7, P less than 0.05]. Release of NCA was mediated by the COOH-terminal of the SP molecule. The rank order of potency of tachykinins in inducing release of NCA was SP greater than NKA = NKB. SP-induced response was significantly potentiated by phosphoramidon (109 +/- 3 vs. 92 +/- 3 cells/HPF, n = 7, P less than 0.05), whereas other proteinase inhibitors had no effect. The released NCA was composed of protein and lipid-soluble components. These data indicate that mammalian tachykinins induce the release of NCA from BBEC and that NEP modulates these effects. We suggest that tachykinins regulate neutrophil recruitment into the lower respiratory tract, in part, by inducing the release of NCA from airway epithelial cells.

Animals

Role of peptidases in bradykinin-induced increase in vascular permeability in vivo.

The purpose of this study was to examine whether neutral endopeptidase and angiotensin I-converting enzyme, two membrane-bound metalloenzymes that are widely distributed in the microcirculation, play a role in bradykinin-induced increase in vascular permeability in the hamster cheek pouch. Changes in vascular permeability were quantified by counting the number of leaky sites and by calculating the clearance of fluorescein isothiocyanate (FITC)-dextran (molecular mass, 70,000 d) during suffusion of the cheek pouch with bradykinin. Bradykinin produced a concentration- and time-dependent increase in the number of leaky sites and clearance of FITC-dextran. The selective, active site-directed neutral endopeptidase inhibitors phosphoramidon (1.0 microM) and thiorphan (10.0 microM) and the selective angiotensin I-converting enzyme inhibitor captopril (10.0 microM) each shifted the concentration-response curve to bradykinin significantly to the left. During suffusion with bradykinin (1.0 microM) and phosphoramidon, the number of leaky sites increased significantly from 17 +/- 2 to 27 +/- 4 sites per 0.11 cm2 (mean +/- SEM, p less than 0.05), and FITC-dextran clearance increased significantly from 1.0 +/- 0.2 to 2.1 +/- 0.3 ml/sex x 10(-6).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Developmental changes in ventricular action potential properties in guinea-pigs are modulated by age-related changes in the thyroid state.

Previous studies have demonstrated that in different cardiac preparations action potential duration (APD) increases with age. As in various species, thyroid hormone levels increase developmentally, and since hyperthyroidism shortens APD while hypothyroidism prolongs it, we hypothesized that developmental changes in APD result from age-related variations in the thyroid state. The hypothesis was tested by analysing ventricular action potentials and total T4 (TT4) levels in guinea-pigs in the age range of 0 days to 3 months (adult), and in hyperthyroid and hypothyroid newborns (0-5 days old). We found that APD50 increased exponentially with age with a time constant of 6.7 days, from 100.6 +/- 3.4 ms in newborns (0-5 days old) to 147.4 +/- 5.2 ms in adults (P less than 0.001). TT4 decreased exponentially with age with a time constant of 4.8 days, from 3.9 +/- 0.4 micrograms/dl in newborns to less than 1.0 microgram/dl in adults. In the age range studied, APD50 and TT4 were linearly correlated: Y = -12.13X + 142, r - 0.865. In contrast to the marked changes in APD, resting potential and action potential amplitude were age-independent, and Vmax only slightly increased with age. Alterations in the thyroid state in newborns affected ventricular action potentials as predicted by the hypothesis. In euthyroid (TT4 = 3.9 +/- 0.4 micrograms/dl), hypothyroid (TT4 = 1.6 +/- 0.4 micrograms/dl) and hyperthyroid (TT4 = 39.8 +/- 10.8 micrograms/dl) newborns, APD50 was: 100.6 +/- 3.4 ms, 117.7 +/- 4.2 ms and 63.7 +/- 7.4 ms, respectively (P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Action Potentials

Effects of 0.60 PPM nitrogen dioxide on circulating and bronchoalveolar lavage lymphocyte phenotypes in healthy subjects.

Nitrogen dioxide (NO2) is a common oxidant air pollutant. Animal studies have suggested that NO2 exposure causes a decrease in the numbers of some splenic lymphocyte subtypes and impairs lymphocyte-dependent immune responses. To investigate whether ambient levels of NO2 alter circulating and bronchoalveolar lavage fluid (BALF) human lymphocytes, we studied five healthy nonsmoking adult volunteers. In each subject, blood and bronchoalveolar lavage fluid was obtained and then, more than 2 weeks later, volunteers were exposured to 0.60 ppm NO2 for 2 hr with intermittent light to moderate exercise on 4 separate days within a 6-day period. We measured standard tests of pulmonary function (airway resistance, thoracic gas volume, maximal expiratory flow) and had the subjects rate the severity of respiratory symptoms before and after each NO2 exposure. Circulating and BALF lymphocytes were labeled with fluorochrome-conjugated monoclonal antibodies to human lymphocyte antigens and a flow cytometer was used to count lymphocyte subtypes. Neither any single day's exposure nor all four exposures caused a change in symptoms or in the results of tests of pulmonary function. The total number of circulating lymphocytes obtained after NO2 exposure was slightly greater than at baseline (1792 +/- 544 vs 1598 +/- 549 cells/mm3 at baseline; P = not significant) but the proportions of lymphocyte subtypes did not differ. In the BALF obtained after NO2 exposure and in the baseline state, the total number of lymphocytes and the percentages of T cells (CD 3), B cells (CD 20), T cytotoxic-suppressor cells (CD 8), T helper-inducer cells (CD 4), and large granular lymphocytes (CD 57) also did not differ after NO2 exposure. A slightly but significantly greater proportion of natural killer cells (CD 16) was found in the BALF obtained after NO2 exposure (7.2 +/- 3.1 vs 4.2 +/- 2.4% of total lymphocytes). We conclude that repeated exposures of healthy nonsmoking adults to 0.60 ppm NO2 are not associated with clinically significant symptoms, changes in airway caliber, or alterations in circulating and BALF lymphocyte subtypes. We suggest that brief, daily exposures to NO2 at levels higher than those achieved in urban atmosphere are unlikely to provoke acute respiratory impairment in healthy, nonsmoking adults.

Adult

Antioxidants attenuate endotoxin-induced microvascular leakage of macromolecules in vivo.

The purpose of this study was to examine whether antioxidants attenuate endotoxin-induced microvascular hyper-permeability for macromolecules in the hamster cheek pouch. Twenty-two adult male Syrian hamsters were anesthetized, and a removable plastic chamber was placed in the cheek pouch to observe and collect suffusate from the microvasculature. Fluorescent-labeled dextran (FITC-D; mol wt 150,000) was injected intravenously, and changes in the number of microvascular leaky sites and microvascular clearance of FITC-D were measured in five groups: saline control (group 1, n = 4), endotoxin (0.1 mg/ml) suffusion for 120 min (group 2, n = 6), endotoxin plus dimethyl sulfoxide (1.0 g/kg iv; group 3, n = 4), endotoxin plus allopurinol (30 mg/kg ip; group 4, n = 4), and endotoxin plus dimethyl sulfoxide and allopurinol (group 5, n = 4). The number of leaky sites and the FITC-D clearance were significantly higher in group 2 [45 +/- 18 (SD) sites/cm2 and 20 +/- 6 X 10(-6) ml/min, respectively; P less than 0.01] than in group 1 (7 +/- 6 sites/cm2 and 7 +/- 5 X 10(-6) ml/min), group 3 (9 +/- 5 sites/cm2 and 8 +/- 2 X 10(-6) ml/min), group 4 (11 +/- 7 sites/cm2 and 9 +/- 4 X 10(-6) ml/min), and group 5 (11 +/- 6 sites/cm2 and 7 +/- 1 x 10(-6) ml/min). The leaky sites appeared predominantly in postcapillary venules. There was a positive and significant correlation between the number of leaky sites and FITC-D clearance.(ABSTRACT TRUNCATED AT 250 WORDS)

Allopurinol

Role of neutrophils in endotoxin-mediated microvascular injury in hamsters.

The purpose of this study was to examine the role of circulating neutrophils in endotoxin-induced increase in microvascular permeability in vivo. Fifteen hamsters were anesthetized, and a plastic chamber was placed in each cheek pouch to observe the microvasculature. Fluorescein-labeled dextran (FITC-D, 150 kDa) was injected intravenously, and changes in leaky sites and FITC-D clearance were measured in three groups: control (saline, n = 4), endotoxin suffusion (n = 6), and endotoxin suffusion after neutropenia induction (n = 5). We found a significant increase in leaky sites and FITC-D clearance with endotoxin (45 +/- 18/cm2 and 20 +/- 6 x 10(-6) ml/min, respectively; mean +/- SD, P less than 0.05) in comparison to control (7 +/- 6/cm2 and 7 +/- 5 x 10(-6) ml/min) and endotoxin suffusion in neutropenic animals (19 +/- 11/cm2 and 12 +/- 4 x 10(-6) ml/min). There was a significant correlation between the number of leaky sites and FITC-D clearance (r = 0.91, P less than 0.01) and between the number of circulating neutrophils and FITC-D clearance (r = 0.87, P less than 0.01). We conclude that endotoxin-mediated increase in microvascular permeability in the peripheral circulation is dependent in part on circulating neutrophils.

Animals

Hypertonic mannitol ameliorates intracompartmental tamponade in model compartment syndrome in the dog.

Acute compartment syndrome (ACS) is a devastating complication of rhabdomyolysis caused by muscle tamponade secondary to increased intracompartmental pressure (Pi). ACS requires emergency surgical decompression when Pi greater than 30 mmHg (normal less than 4.0 mmHg) and clinical signs exist. The present study was undertaken to examine whether mannitol which has been used extensively for prevention of acute renal failure in rhabdomyiolysis may also improve muscular hemodynamics in ACS. ACS was produced in dogs by injecting dog plasma into the anterolateral compartment of the hind limb. The Pi was directly monitored. Control dogs received saline, whereas experimental dogs received intravenously 20% mannitol (0.15 ml/min/kg) over a period of 1 h. The initial Pi was set arbitrarily at 100 mm Hg. Following the establishment of ACS, the spontaneous mean decrease in Pi in the control group was 40% of initial value over 60 min (n = 5) versus a decrease of 65%/60 min in the experimental (mannitol) group (n = 7, p less than 0.01). The net mean decompressive effect of mannitol treatments was approximately 28 mm Hg (mean control Pi minus mean experimental Pi at time 60 min). Extrapolated to man with ACS, such a decrease in Pi induced by mannitol theoretically could relieve compartmental tamponade noninvasively.

Angiography

Airflow limitation in morbidly obese, nonsmoking men.

STUDY OBJECTIVE: To determine the effect of obesity on pulmonary function. DESIGN: Case-control study, using nonobese, age- and height-matched [corrected] nonsmokers. SETTING: Metabolic and obesity clinics of two major teaching hospitals. PATIENTS: One hundred and three obese, lifelong nonsmokers without cardiopulmonary disease. CONTROLS: One hundred and ninety healthy, nonobese nonsmokers recruited from among hospital personnel. MEASUREMENTS AND MAIN RESULTS: Complete pulmonary function measurements in all patients and controls. These measurements included maximum expiratory flow-volume curve, lung volumes and airway resistance using body plethysmograph, single-breath diffusing capacity for carbon monoxide, and total lung capacity using the helium dilution technique. Obese persons were found to have lower functional residual capacity, expiratory reserve volume, and total lung capacity by helium dilution than nonobese controls. In addition, residual volume and diffusing capacity were higher in the obese group. Finally, we found that obese men, but not women, had reduced maximum expiratory flow rates at 50% and 75% of exhaled vital capacity. CONCLUSION: Obesity may contribute independently of smoking habits to chronic airflow limitation in men.

Adult