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Biomedical subjects

B Mayer

Publications and source records attributed to B Mayer.

At least 271 records · Page 15Linked to original sources

[Follow-up of infra-inguinal bypass operations: value of the peak systolic velocity and arm-ankle index for evaluation of femorodistal reconstructions].

In a prospective study, the efficacy of noninvasive surveillance techniques including measurement of ABI and duplex-derived velocity parameters was studied after 74 infrainguinal arterial reconstructions. A decrease of ABI > or = 0.2 compared with prior examinations was considered abnormal. Results of the duplex scan were interpreted as abnormal when PSV was less than 45 cm/sec or greater than 200 cm/sec or when an interval decrease of greater than 30 cm/sec occurred. All patients meeting any of these criteria during the follow-up examinations were subjected to i.a. DSA. The combination of all duplex velocity criteria was significantly more sensitive to identify a failing graft than was measurement of ABI (90% vs. 18%; p = 0.00004). When independent variables (ABI- and PSV criteria, monophasic curve configuration) were entered into a logistic regression multivariate analysis, the model proved to be effective (F-value 5.551; df 4.8; R2 = 0.735; significance 98.03%; p < 0.02) in predicting angiogram findings (dependent variable). ABI measurements (significance 4.75%; p > 0.95) and the presence of a monophasic curve configuration (significance 89.58%; p > 0.1) failed to reach significance in the multivariate analysis. By excluding these latter parameters, the statistical power for the model could be improved (F-value 1036.57; df 2.1; R2 = 0.999; significance 97.69%; p = 0.0231): As a result normal PSV criteria indicated normal and abnormal angiographic findings in 83 and 17%, respectively. A PSV less than 45 cm/sec or greater than 200 cm/sec was suggestive of an abnormal angiogram in 80% and of a normal angiogram in 20%. The corresponding figures for a PSV interval decrease > 30 cm/sec were 71% and 29%. In conclusion, PSV parameters were found to be measurably more accurate to identify a failing graft than was measurement of ABI.

Aged↗

Demonstration of NADPH-diaphorase (NO-synthase) in the apocrine and eccrine skin glands of domesticated mammals.

The study demonstrates a strong enzyme histochemical and immunohistochemical reaction staining for NADPH-diaphorase/NO-synthase in the secretory cells of the apocrine glands in the hairy skin, and the eccrine glands in the foot pads of domesticated mammals. The results obtained are discussed in view of a regulatory action of the NO generated by these enzyme activities, implying a direct influence of NO on the contractile properties of glandular myoepithelial cells. In this way, a basic and simple mechanism to couple secretion production and secretion extrusion can be proposed.

Animals↗

[Value of interventional procedures in treatment of stenotic and occluded infra-inguinal vascular bypasses].

In a prospective study, the results following PTA of 30 short stenoses > 70% in 17 infrainguinal arterial bypass grafts were examined. The stenoses were detected after a mean follow-up of 7.2 months by Duplex-ultrasound. The initial success rate after PTA was 100%. After an average time of 4.6 months recurrent graft stenoses were identified in 8 bypasses and 1 patient experienced graft thrombosis. Overall 8 of the 17 patients with stenotic grafts were treated by PTA alone during a mean follow-up of 11.7 months. Using life-table analysis, primary and assisted primary patency rates were each 100% at 1 month and 41 and 86% at 2 years. The efficacy of thrombolysis in 36 occluded grafts (graft age > 30 days) with clinical symptoms of incomplete ischaemia was analyzed retrospectively. After successful lysis in 61% (22/36), 15 grafts underwent additional procedures including PTA (10), vein patch angioplasty (4) and distal graft extension (1). Following successful initial graft salvage, primary cumulative patency and limb salvage rates were 45 and 72% at 1 month and 16 and 51% at 3 years. PTA of primary graft stenoses may be regarded as an acceptable initial therapeutic option, but has some limitations in providing sustained patency. Grafts initially salvaged with lysis do not have favourable short and long-term patency.

Aged↗

Reversible inactivation of endothelial nitric oxide synthase by NG-nitro-L-arginine.

NG-Methyl-L-arginine (L-NMA) and NG-nitro-L-arginine (L-NNA) inhibited NO-induced cGMP accumulation in porcine aortic endothelial cells with half-maximally effective concentrations of 15 and 3.4 microM, respectively. The effects of both compounds were reversible, but the L-NNA-induced inhibition was only reversed by wash-out in the presence of 1 mM L-arginine. In short-term incubations (45 s) of membrane fractions, L-NMA and L-NNA exhibited similar potencies to inhibit endothelial NO synthase, but L-NNA was markedly more potent than L-NMA after prolonged incubation periods (> or = 3 min) due to induction of a pronounced, reversible enzyme inactivation.

Amino Acid Oxidoreductases↗

De-novo expression of CD44 and survival in gastric cancer.

We have examined the cell surface molecule CD44, which is attracting interest because of reports that isoforms are associated with metastasis. The prognostic value of CD44 expression has yet to be assessed for a solid tumour. Benign (59) and malignant (primary 61, metastatic 59) gastric tissues were examined with antibodies directed at epitopes common to known CD44 isoforms. Normal mucosa was CD44 negative. In atrophic gastritis and intestinal metaplasia expression was restricted to the epithelial cells of the basal glands and was positively correlated with an increased leucocyte infiltrate and with the expression of HLA DR by mucosal cells. These observations suggest a role for chronic inflammation in the induction of CD44 expression on benign mucosa. No such association was observed between inflammatory infiltrate and CD44 expression on gastric tumours. CD44 expression, observed in only 49% of primary tumours, was associated with distant metastases at time of diagnosis and, among 31 curatively resected patients, with tumour recurrence (p = 0.0014) and increased mortality (p = 0.001) during follow-up averaging 17 months. When we used an antibody directed against the CD44 variant exon 9v, we found a good correlation between the expression of total CD44 and of exon 9v containing isoforms, and 9v expression in primary tumours was significantly and positively associated with tumour recurrence and mortality.

Adenocarcinoma↗

Multiple catalytic functions of brain nitric oxide synthase. Biochemical characterization, cofactor-requirement, and the role of N omega-hydroxy-L-arginine as an intermediate.

Brain NO (nitric oxide) synthase contains FAD, FMN, heme, and tetrahydrobiopterin as prosthetic groups and represents a multi-functional oxidoreductase catalyzing oxidation of L-arginine to NO and L-citrulline, formation of H2O2, and reduction of cytochrome c. We show that substrate analogues and inhibitors interacting with the heme block both the reductive activation of oxygen and the oxidation of L-arginine without affecting cytochrome c reduction. We further demonstrate that N omega-hydroxy-L-arginine is an intermediate in enzymatic NO synthesis. The ratio of L-citrulline to free N omega-hydroxy-L-arginine was > or = 50 under various assay conditions, but could markedly be reduced down to 4 by redox active inhibitors. Brain NO synthase is shown to utilize both L-arginine and N omega-hydroxy-L-arginine for the formation of stoichiometric amounts of NO and L-citrulline. Tetrahydrobiopterin equally enhanced reaction rates from either substrate (approximately 5-fold), but its rate accelerating effects were only observed at NADPH concentrations > or = 3 microM. In the absence of L-arginine or tetrahydrobiopterin, brain NO synthase catalyzes the generation of H2O2. We now show that, in contrast to L-arginine, N omega-hydroxy-L-arginine fully blocked H2O2 formation in the absence of exogenous tetrahydrobiopterin, indicating that N omega-hydroxy-L-arginine is a direct inhibitor of enzymatic oxygen activation. Based on these data, a hypothetical mechanism of enzymatic NO formation is discussed.

Amino Acid Oxidoreductases↗

Nitric oxide synthase immunoreactive neurons anatomically define a longitudinal dorsolateral column within the midbrain periaqueductal gray of the rat: analysis using laser confocal microscopy.

Nitric oxide has recently been proposed as a neuronal messenger in both the central and peripheral nervous system. Antibodies against nitric oxide synthase (NOS), the synthesizing enzyme for nitric oxide, were used in combination with immunocytochemistry and confocal laser microscopy to analyze the distribution of this enzyme in the midbrain periaqueductal gray (PAG) of the rat. NOS immunoreactive neurons were localized predominantly in a longitudinally oriented column in the dorsolateral PAG. NOS immunoreactive fibers and processes were scattered throughout the PAG but were most prevalent in the dorsolateral column and in the juxta-aqueductal column. This study provides neurochemical support for the existence of longitudinal columns in the PAG which are postulated to underlie the functional organization of this complex brainstem region.

Amino Acid Oxidoreductases↗

Nitric oxide synthase is found in some spinothalamic neurons and in neuronal processes that appose spinal neurons that express Fos induced by noxious stimulation.

To determine if nitric oxide (NO) and Fos immunoreactivity induced by noxious stimulation were colocalized in spinothalamic neurons, double-staining immunocytochemical techniques were combined with retrograde neuroanatomical tracing procedures. Initial studies on three rats demonstrated that Fos and nitric oxide synthase (NOS), the synthesizing enzyme for nitric oxide, did not coexist in spinothalamic tract neurons. However, some spinothalamic neurons were found to contain NOS and some NOS immunoreactive processes were found to appose Fos containing neurons. Thus the remainder of the study: (1) analyzed the relationship of NOS positive neuronal processes with Fos stained neurons using a Fos immunocytochemical technique in combination with either NOS immunofluorescence or NADPH-diaphorase histochemistry; and (2) quantitated the number of NOS containing cells that project to the thalamus using a combined immunofluorescent-retrograde tracing procedure. Both NOS-like immunoreactive (NOS IR) neuronal processes and NADPH-diaphorase positive neuronal processes in the dorsal horn of the lumbar spinal cord were found to appose Fos positive neurons located in laminae I and II of the dorsal horn. Approximately 40% of Fos-labeled cells in these superficial laminae were found to be in apposition to or in close proximity to NOS labeled neuronal processes. Examination of spinal cord sections for NOS-containing spinothalamic tract neurons revealed that lamina X was the only spinal cord region containing such double-labeled neurons. Further quantification revealed that approximately 10% of NOS positive neurons in lamina X were double-labeled with Fluorogold. These findings support the hypothesis that nitric oxide is involved in nociceptive events occurring in the spinal cord in response to a peripheral noxious stimulus and further indicate that nitric oxide may contribute to the central transmission of spinothalamic information.

Amino Acid Oxidoreductases↗

All-alpha-D-linked tetra- and penta-saccharide substructures of Trestatin A by block syntheses with triflic anhydride as promoter.

The perbenzylated maltosyl and maltotriosyl fluorides 6 and 16 were treated with 2,3,2',3',6'-penta-O-benzyl-4,6-O-benzylidene-alpha,alpha-trehalose (7) using triflic anhydride as a promoter to give all-alpha-D-linked tetra- and penta-saccharides which were finally deblocked to the free oligosaccharides 4-O-alpha-maltosyl-9 and 4-O-alpha-maltotriosyl-alpha,alpha-trehaloses 18. The 1H NMR spectra of some of the compounds were fully analyzed by 1D TOCSY and ROESY experiments.

Anhydrides↗

E-cadherin expression in primary and metastatic gastric cancer: down-regulation correlates with cellular dedifferentiation and glandular disintegration.

Expression of the epithelial cell adhesion molecule E-cadherin in primary and metastatic gastric carcinoma was examined using immunohistochemical analyses. Compared to normal mucosa, 92% of the primary tumors (n = 60) showed reduced E-cadherin expression, suggesting that down-regulation of this cell adhesion molecule is a common early event in gastric tumorigenesis. No significant correlation was found between E-cadherin expression and tumor diameter, lymphatic vessel invasion, Borrmann classification, lymph node status, or manifest metastases. Although advanced tumors (tumor stage 3/4) showed a loss of E-cadherin-positive cells (< or = 50% cells/lesion, P = 0.0168), the most significant correlation was observed between low E-cadherin expression and cellular dedifferentiation (grading 3/4, P = 0.0001) and disintegration of tissue architecture (Lauren and WHO classifications, P = 0.0001). Low E-cadherin expression (< or = 50% cells/lesion) was associated with tumor recurrence (P = 0.0013) and mortality (P = 0.0246). E-cadherin expression in metastatic lesions (n = 58) also correlated with the degree of glandular differentiation (P = 0.0001). Significant correlation (rs = 0.686) was observed between E-cadherin expression in primary and metastatic lesions from individual patients (n = 39). However, while metastases derived from E-cadherin-negative tumors remained negative, those originating from E-cadherin-positive tumors frequently demonstrated increased levels of expression. Evaluation of multiple metastases in 11 patients revealed uniformly strong E-cadherin expression in liver metastases, suggesting a possible regulatory role of the microenvironment.

Cadherins↗

Nitric oxide synthase-containing neural processes on large cerebral arteries and cerebral microvessels.

We studied whether neural processes containing nitric oxide synthase (NOS) are associated with large cerebral arteries and/or intraparenchymal microvessels. The presence of NOS-positive nerves on large cerebral arteries was examined in whole-mount preparations processed for NADPH diaphorase histochemistry, a procedure that stains NOS-containing neurons. The association between NOS-containing neural processes and intracerebral microvessels was studied by electron microscopy in ultrathin brain sections reacted with antibodies against NOS. A dense perivascular plexus of NADPH diaphorase positive axons was observed in the anterior portion of the circle of Willis and its branches while in the basilar artery the innervation was less dense. Lesions of the major sources of perivascular innervation of the cerebral arteries indicated that these nerve fibers arise from the sphenopalatine ganglia. Within the brain parenchyma, NOS immunoreactivity was observed in dendrites and axonal terminals closely associated with the basal lamina of arterioles and capillaries. We conclude that NOS-containing nerves of peripheral origin innervate large cerebral arteries while NOS-containing neural processes of central origin, especially dendrites, are closely associated with cerebral arterioles and capillaries. The presence of NOS in perivascular dendrites raises the possibility that these structures are a major source of NO during neural activity. These findings, collectively, provide morphological evidence supporting the hypothesis that NOS neurons participate in the mechanisms that match neural activity to cerebral blood flow.

Amino Acid Oxidoreductases↗

Long-lasting increase of nitric oxide synthase immunoreactivity, NADPH-diaphorase reaction and c-JUN co-expression in rat dorsal root ganglion neurons following sciatic nerve transection.

Changes of NADPH-diaphorase reaction (NDP) and nitric oxide synthase immunoreactivity (NOS-IR) in neurons of dorsal root ganglia (DRG) were investigated following transection and ligation of rat sciatic nerve. In untreated rats, 2.7% of L4/L5 DRG neurons were labelled by NDP. After 3 days, intensity of NDP and number of labelled neurons increased and reached a maximal level between 10 and 20 days in 26.8% neurons which persisted up to 50 days. After 150 days, 8.7% of DRG neurons were still labelled. In contralateral L4/L5 DRG, but not L1 and T10 DRG, the number but not the intensity of NDP labelled neurons slightly increased between 10 and 50 days. The patterns of NOS-IR and NDP were congruent. Ipsilaterally, 76% to 92% of NDP neurons showed co-expression with the c-JUN transcription factor which is supposed to play a crucial role in the regeneration process. NDP accumulated in the peripheral nerve stump and was increased in the superficial dorsal horn between 10 and 30 days, whereas motoneurons were not labelled by NOS and NDP.

Amino Acid Oxidoreductases↗

Inhibition of nitric oxide synthesis by methylene blue.

Methylene blue appears to inhibit nitric oxide-stimulated soluble guanylyl cyclase and has been widely used for inhibition of cGMP-mediated processes. We report here that endothelium-dependent relaxation of isolated blood vessels and NO synthase-dependent cGMP formation in cultured endothelial cells were both markedly more sensitive to inhibition by methylene blue than effects induced by direct activation of soluble guanylyl cyclase. These discrepancies were also observed when superoxide dismutase (SOD) was present to protect NO from inactivation by superoxide anion. Subsequent experiments showed that formation of L-citrulline by purified NO synthase was completely inhibited by 30 microM methylene blue (IC50 = 5.3 and 9.2 microM in the absence and presence of SOD, respectively), whereas guanylyl cyclase stimulated by S-nitrosoglutathione was far less sensitive to the drug (50% inhibition at approximately 60 microM, and maximal inhibition of 72% at 1 mM methylene blue). Experimental evidence indicated that oxidation of NADPH, tetrahydrobiopterin or reduced flavins does not account for the inhibitory effects of methylene blue. Our data suggest that methylene blue acts as a direct inhibitor of NO synthase and is a much less specific and potent inhibitor of guanylyl cyclase than hitherto assumed.

Amino Acid Oxidoreductases↗

Ca2+/calmodulin-dependent nitric oxide synthase activity in the human cervix carcinoma cell line ME-180.

We show here that the human cervix carcinoma cell line ME-180 expresses a constitutive nitric oxide (NO) synthase, as demonstrated by formation of [3H]citrulline and nitrite. The enzyme is dependent on tetrahydrobiopterin, NADPH, flavins and Ca2+/calmodulin. Enzyme activity is located in the cytosol rather than in the membrane fraction and can be inhibited by NG-monomethyl-L-arginine (NMMA). An antiserum to NO synthase purified from porcine cerebellum inhibited the enzyme activity. ME-180 cells released NO, as was shown by stimulation of guanylate cyclase (EC 4.6.1.2) in RFL-6 detector cells; this release was stimulated 8-fold by the Ca2+ ionophore A23187 and 2-fold by increasing the intracellular tetrahydrobiopterin levels with cytokines. This is the first characterization of a Ca2+/calmodulin-dependent NO synthase activity in human epithelial-type tumour cells.

Amino Acid Oxidoreductases↗

Nitric oxide synthase in guinea pig lower airway innervation.

The inhibitory non-adrenergic non-cholinergic (i-NANC) innervation of the guinea pig airways was suggested to be mediated, at least partially, by nitric oxide (NO). The enzyme catalyzing the generation of NO and citrulline from L-arginine, nitric oxide synthase (NOS), was found to be identical with neuronal nicotinamide-adenine dinucleotide hydrogen phosphate (NADPH)-diaphorase. In the present study, we report the distribution of NOS in guinea pig lower airways and in vagal sensory and sympathetic ganglia as revealed by NOS immunohistochemistry and NADPH-diaphorase histochemistry. The distribution of NOS was identical using either technique and displayed a similar distribution pattern in all parts of the lower airways. Yet, the number of NOS-containing fibres was increasing from cervical trachea towards principal bronchi and decreasing to complete absence in bronchioli. Innervation with NOS-containing nerve fibres was densest in the smooth muscle layer and in the lamina propria of the mucosa. Single fibres were found in the respiratory epithelium. Labelling was absent from nerve fibres innervating the submucosal glands. Perivascular fibre networks enmeshed tracheal arteries, pulmonary arteries and veins. A substantial number of NOS-immunoreactive and NADPH-diaphorase-positive neurons was observed in vagal sensory ganglia, whereas such neurons were rather sparse in sympathetic ganglia. Tracheal and peribronchial ganglia of the airways were devoid of labelling. These findings suggest that extrinsic rather than intrinsic (tracheal and peribronchial) neurons are the source of NO release from guinea pig airway nerve fibres after electrical field stimulation. These extrinsic nerve fibres may originate from both sympathetic and vagal sensory ganglia.

Amino Acid Oxidoreductases↗