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Biomedical subjects

T Joh

Publications and source records attributed to T Joh.

At least 145 records · Page 8Linked to original sources

Localization of L-glutamate decarboxylase immunoreactivity in the major pelvic ganglion and in the coeliac-superior mesenteric ganglion complex of the rat.

The localization of L-glutamate decarboxylase (GAD), the GABA-synthesizing enzyme, was studied in the rat major pelvic ganglion and in the coeliac-superior mesenteric ganglion complex by indirect immunofluorescence technique with a specific antiserum raised in rabbits. GAD immunoreactivity was demonstrated in small cells of these ganglia. The GAD-immunoreactive small cells were 10-20 microns in diameter and formed clusters or occurred as solitary cells. The principal neurons were non-reactive but they were surrounded by immunoreactive processes. Studies on colocalization of GAD with tyrosine hydroxylase (TH), the rate-limiting enzyme of the catecholamine synthesis, in the major pelvic ganglion and in the coeliac-superior mesenteric ganglion complex indicated that all GAD-immunoreactive small cells were also labelled with TH. In the major pelvic ganglion all TH-immunoreactive SIF cells were also immunoreactive for GAD. However, in the coeliac-superior mesenteric ganglion complex there occurred TH-immunoreactive small cells which showed no immunoreactivity to GAD. It is suggested that the small GAD-immunoreactive cells represent small intensely fluorescent (SIF) cells.

Animals↗

Studies on dopamine-, tyrosine hydroxylase- and aromatic L-amino acid decarboxylase-containing cells in the rat diencephalon: comparison between formaldehyde-induced histofluorescence and immunofluorescence.

The morphology, number and distribution of catecholaminergic neurons, as visualized either with the aluminum-catalysed formaldehyde method for catecholamines or with the immunohistochemical method for the catecholamine-synthesizing enzymes tyrosine hydroxylase and aromatic L-amino acid decarboxylase, respectively, were analysed within the rat dorsal hypothalamus, ventral thalamus and adjoining regions (A11 and A13 cell groups). Both polyclonal rabbit and monoclonal mouse tyrosine hydroxylase antibodies were used in elution-restaining and double-staining experiments, respectively. Some of the animals also received spinal injections of the fluorescent tracer True Blue in order to retrogradely label cells projecting to the spinal cord. With respect to the number and distribution of catecholaminergic neurons in the A11 and medial A13 cell groups, including the spinal-projecting subpopulation, the results obtained with the two methods were very similar, indicating that within these regions of the CNS the two methods in principle visualize identical cell populations. However, the catecholaminergic cells were distinctly larger and their processes appeared more extensive with the immunohistochemical method. Animals processed for immunohistochemistry exhibited a lower total number of retrogradely labelled cells in the A11 area than those analysed with aldehyde-induced fluorescence despite the fact that both methods revealed similar numbers of retrogradely labelled tyrosine hydroxylase-positive and catecholamine-containing cells, respectively. The reason for these discrepancies, which are probably of methodological nature, are discussed. While this study shows that the results obtained with the two methods within the A11 and medial A13 cell group are very similar and thus strengthens the earlier proposed concept of the organization of the diencephalospinal dopaminergic system, it also documents that in intermingling and nearby CNS regions there are cell bodies which cannot be demonstrated with the aldehyde fluorescence method, but which still contain tyrosine hydroxylase and/or aromatic L-amino acid decarboxylase-like immunoreactivity. One explanation is low levels of enzyme and/or dopamine combined with a comparatively low sensitivity of the histochemical method. Thus, neurons containing both enzymes are probably dopaminergic, even if catecholamine fluorescence cannot be demonstrated. Neurons containing tyrosine hydroxylase, but lacking both aldehyde induced fluorescence and aromatic L-amino acid decarboxylase, may also still be dopaminergic.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Experimental and clinical studies on epidermal growth factor for gastric mucosal protection and healing of gastric ulcers.

In experimental studies, 0.6 N HCl-induced gastric mucosal injury was significantly severe in submandibularectomized rats (SMR rats) than that in either SMR rats receiving exogenous mouse EGF (SMR + EGF rats) or controls. This was also true in gastric injury induced by 0.4 N HCl under pretreatment with indomethacin to reduce gastric mucosal prostaglandins (PGs). Somatostatin (SLI), PGE2, and PAS-stained mucus in the corpus were significantly reduced in SMR rats in comparison to SMR + EGF and control rats. In clinical studies, salivary EGF secretion was much higher in peptic ulcer patients than healthy controls. beta-Urogastrone was effective in the treatment of gastric ulcers. On the basis of experimental studies, we conclude that the protective effect of EGF on the gastric mucosa is, in part, mediated indirectly by increases in SLI, PGE2, and mucus production. However, endogenous, as well as exogenous, EGF has an important direct, cytoprotective effect on the gastric mucosa. From the clinical studies, we also conclude that salivary EGF secretion in ulcer patients increases in a homeostatic response to the presence of an ulcer, facilitating ulcer healing. Furthermore, we believe that beta-urogastrone, human EGF, might prove to be an effective drug in the clinical treatment of gastric ulcers.

Animals↗

An enzyme immunoassay for pepsinogen II(PGII): chronological changes in serum PGII concentrations.

A new two-site enzyme immunoassay for pepsinogen II(PGII) has been developed. The detection limit of PGII was 0.15 ng/ml (15 pg/tube) and the optimal assay range was 1.5 to 150 ng/ml (150 pg to 15 ng/tube). Mean serum PGII concentrations in normal males and females were 17.2 and 14.6 ng/ml, respectively. The chronological analysis among 5 age groups from 20 to 69 yr, males and females together, revealed that the serum level was low (11.9 ng/ml) between 20-39 yr, gradually increased from 40 yr of age and attained the maximum (22.5 ng/ml) in the 50-yr group. Total gastrectomy markedly lowered the serum level to 1.9 ng/ml, suggesting that the majority of PGII in serum was derived from the gastric mucosa. This assay makes it possible to measure trace amounts of PGII derived from extragastric as well as gastroduodenal tissues.

Adult↗

Cloning and sequence analysis of cDNAs encoding mammalian cytosolic malate dehydrogenase. Comparison of the amino acid sequences of mammalian and bacterial malate dehydrogenase.

A cDNA clone, named ppcMDH-1 and covering a part of the coding region for the porcine cytosolic malate dehydrogenase (cMDH) mRNA, was isolated from a porcine liver cDNA library. Subsequently, mouse cMDH cDNA clones were isolated from mouse liver and heart cDNA libraries, using the ppcMDH-1 cDNA as a probe. The longest clone, named pmcMDH-5, was sequenced and the primary structure of the mouse cMDH deduced from its cDNA sequence showed that the mouse cMDH consists of the 334-amino acid residues. When the amino acid sequence of the mouse cMDH was compared with that of the porcine cMDH, they shared a 93% homology. On the other hand, the amino acid sequences of mouse cMDH and mitochondrial MDH (mMDH) showed about 23% overall homology. Surprisingly, comparison of the amino acid sequences among the mammalian and bacterial MDHs revealed that the homology between the mouse cMDH and thermophilic bacterial MDH, as well as the homology between the mouse mMDH and Escherichia coli MDH, markedly exceeds the intraspecies sequence homology between mMDH and cMDH from mice.

Amino Acid Sequence↗

Cloning and sequence analysis of cDNAs encoding mammalian mitochondrial malate dehydrogenase.

A cDNA clone, named ppmMDH-1 and covering a part of the porcine mitochondrial malate dehydrogenase (mMDH; L-malate:NAD+ oxidoreductase, EC 1.1.1.37) mRNA, was isolated from a porcine liver cDNA library with a mixture of 24 oligodeoxyribonucleotides as a probe. The sequences of the probe were deduced from the known sequence of porcine mMDH amino acid residues 288-293. ppmMDH-1 covered the coding region for porcine mMDH amino acid residues 17-314 and the 3' untranslated region. Subsequently, mouse mMDH cDNA clones were isolated from a mouse liver cDNA library with the ppmMDH-1 cDNA as a probe. One of the clones, named pmmMDH-1 and containing a cDNA insert of about 1350 base pairs, was selected for sequence analysis, and the primary structure of the mouse precursor form of mMDH (pre-mMDH) was deduced from its cDNA sequence. The sequenced coding regions for the porcine and mouse mMDH mRNAs showed about 85% homology. When the deduced amino acid sequence of the mouse pre-mMDH was compared with that of the porcine mMDH, they shared a 95% homology, and the mouse pre-mMDH yielded a leader sequence consisting of 24 amino acid residues and a mature mMDH, consisting of 314 amino acid residues. The leader sequence contained three basic amino acid residues, no acidic residues, and no hydrophobic amino acid stretch. The mouse mMDH leader sequence was compared with those of three other rodent mitochondrial matrix proteins.

Amino Acid Sequence↗

Dopaminergic cells in the caudal A13 cell group express somatostatin-like immunoreactivity.

The caudal extension of the hypothalamic A13 dopamine cell group (A13c) was studied in the rat brain with immunohistochemical techniques using antibodies raised against the dopamine synthesizing enzymes tyrosine hydroxylase (TH) and aromatic L-amino acid decarboxylase (AADC). Adjacent sections revealed that the TH- and AADC-staining patterns exhibited a clear overlap with that for somatostatin (SOM). Employing a double-labelling method with SOM- and AADC-antisera and subsequent elution and restaining of the same section with TH-antiserum, it was found that all immunoreactivities occurred in the same cell bodies. This study gives the first evidence for the presence of SOM-immunoreactivity in dopamine neurons.

Animals↗

Immunoreactive epidermal growth factor in mouse digestive organs. Use of a sensitive enzyme immunoassay.

A sandwich enzyme immunoassay (ELISA) system for mouse epidermal growth factor (EGF), which has a high sensitivity (500 fg/tube), has been established. It makes it possible to measure minute amounts of immunoreactive EGF in various mouse tissue without pretreatment. The immunoreactive EGF concentrations in digestive tissues of adult mice were much lower than previously reported. A significant sex difference was detected not only in the submandibular gland, but also in the oesophagus and forestomach. Although sialoadenectomy decreased the immunoreactive EGF contents in the alimentary tract to 4.2-23.8% of the pre-operative levels, the duodenal immunoreactive EGF was unaffected. Positive immunostaining was observed in the submandibular and sublingual gland, but not in the other digestive tissues, including the duodenum. These data implied that most of the EGF in the digestive tissues was derived mainly from the saliva and that a small amount of endogenous EGF existed in the duodenum. The physiological role of exogenous salivary EGF in the alimentary tract and the origin of endogenous duodenal EGF are discussed.

Animals↗

Physiological concentrations of human epidermal growth factor in biological fluids: use of a sensitive enzyme immunoassay.

A sandwich enzyme immunoassay for epidermal growth factor (EGF) has been developed which measures EGF concentrations in serum, urine, saliva, gastric and pancreatic juices without pretreatment. Sensitivity for human EGF is 500 fg/tube. Serum EGF concentration in normal males and females is 780 and 604 pg/ml, respectively. Urinary human EGF is 51.3 ng/mg creatinine for males, and 68.3 ng/mg creatinine for females. The difference is not significant, and no correlation between serum and urinary concentrations exists, but serum concentration changes with age. The highest concentration is seen up to 9 years of age, suggesting that EGF promotes cell proliferation during growth.

Adolescent↗

Effects of cyclic nucleotides, betazole hydrochloride and acetylcholine on pepsinogen secretion from isolated rabbit gastric mucosa.

The effects of dibutyryl cyclic AMP (db-cAMP), dibutyryl cyclic GMP (db-cGMP), betazole hydrochloride (betazole) and acetylcholine (ach.) on pepsinogen secretion from isolated rabbit gastric mucosa were studied using an organ culture system. The 10(-3) M db-cAMP, but not db-cGMP of any concentration, produced a significant enhancement of pepsinogen secretion into the culture medium. In the presence of aminophylline (phosphodiesterase inhibitor), betazole stimulated pepsinogen secretion at concentrations of 10(-8), 10(-6) and 10(-4) M. The 10(-4) M betazole stimulated pepsinogen secretion most strongly (208% of control) and 10(-6) M betazole induced submaximal secretion (137% of control). Ach. stimulated pepsinogen secretion at 10(-8), 10(-6), 10(-4) and 10(-2) M. The peak secretion occurred at 10(-4) M ach. (303% of control). Betazole (with aminophylline) against a background of 10(-6) M ach. (submaximal stimulation dose), produced an intense stimulation of pepsinogen secretion at the concentrations of 10(-8), 10(-6) and 10(-4) M, and the secretion rate expressed as percent of control were 277, 350 and 329%, respectively. These responses were not considered the additive action by betazole and ach. but the potential interaction between the two agents in pepsinogen secretion. From these findings, we conclude that betazole-ach. interdependency exists in in vitro pepsinogen secretion.

Acetylcholine↗

Pulmonary arterial pressure and plasma concentration of atrial natriuretic factor (ANF) in patients with heart disease.

To study the factors controlling the release of atrial natriuretic factor (ANF), we analyzed the peripheral plasma ANF concentration in 34 patients with heart disease who underwent cardiac catheterization. A significant positive correlation between plasma ANF concentration and pulmonary arterial pressure (systolic, r = 0.87; diastolic, r = 0.75; mean, r = 0.85; each p less than 0.001) was found in all the patients examined. There were significant positive correlations between plasma ANF concentration and systolic right ventricular pressure (r = 0.86, p less than 0.001), pulmonary capillary wedge pressure (r = 0.50, p less than 0.01) and mean right atrial pressure (r = 0.39, p less than 0.05). A weak but significant negative correlation was found between plasma ANF concentration and stroke volume index (r = -0.43, p less than 0.05). The correlation coefficient between plasma ANF concentration and mean pulmonary arterial pressure was significantly stronger than those between plasma ANF concentration and pulmonary capillary wedge pressure, and between plasma ANF concentration and mean right atrial pressure (p less than 0.05 and p less than 0.01, respectively). In 10 patients with mitral valvular disease, significant correlations with plasma ANF concentration were also found for pulmonary arterial pressure (systolic, r = 0.80; diastolic, r = 0.82; mean, r = 0.82; each p less than 0.01). These findings suggest that pulmonary arterial pressure may play an important role in the mechanism of release of ANF from atrial cardiocytes.

Adult↗

Distribution of catecholamine-containing neurons in the normal human hypothalamus.

We have studied the distribution of catecholamine-containing neurons in the hypothalamus of 8 normal adult human brains, using Schmorl's stain for melanin and immunohistochemical staining for tyrosine hydroxylase (TH). TH immunoreactive perikarya were found in the wall of the third ventricle, in the areas in which dopaminergic neuroendocrine neurons are found in other primate species. Many of these neurons contained melanin pigment, and the percentage increased with age. Other melanin-pigmented neurons in the same distribution did not stain for TH, suggesting that postmortem TH immunostaining may not be sufficiently sensitive to visualize all catecholaminergic neurons. A separate group of larger TH-positive perikarya was seen in the lateral hypothalamic area. These may correspond to the incerto-hypothalamic dopamine neurons in other primate species. Only rare melanin-pigmented neurons were seen in this cell group, even at 66 years of age. Our data indicate that the hypothalamic neuroendocrine dopamine neurons in the human brain are distributed in a pattern similar to that in other primate species, and that both postmortem tyrosine hydroxylase and melanin staining provide an incomplete but representative sampling of the periventricular-arcuate cell group.

Adolescent↗