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Biomedical subjects

K Tanjoh

Publications and source records attributed to K Tanjoh.

30 records · Page 2Linked to original sources

Terminal motor latency in the pudendal nerves after colectomy with mucosal proctectomy and ileal J pouch-anal anastomosis for ulcerative colitis.

Pudendal nerve terminal motor latencies (PNTML) were measured in eight patients with ulcerative colitis who underwent colectomy with mucosal proctectomy and ileal J pouch-anal anastomosis, using a new digitally directed transrectal stimulation and recording technique, and the results were compared with data obtained from 15 control subjects. The conduction delay of PNTML in the patients with some degree of fecal incontinence was the longest, followed by those without any incontinence, and then the control subjects. These findings support the hypothesis that fecal incontinence after this procedure may be partially caused by damage to the pudendal nerve.

Adolescent↗

Nitric oxide and active oxygen species in severe sepsis and surgically stressed patients.

To clarify how the kinetics of nitric oxide (NO) and active oxygen species are correlated with the occurrence of organ dysfunction in sepsis, the levels of monocyte-associated NO2, NO3, and active oxygen species were examined in severely septic patients with multiple organ dysfunction syndrome (group M; n = 5), and the results compared with those of postoperative patients who had undergone gastrointestinal surgery (group S; n = 5) and healthy volunteers (group C; n = 10). The production of NO2 and NO3 by monocytes was significantly higher in group M than in the other two groups, while the production of active oxygen species by monocytes was significantly higher in groups M and S, than in group C. A significant correlation between the production of NO2 and that of active oxygen species by monocytes was noted only in group M. These findings indicate that the simultaneous activation of NO and active oxygen species production by monocytes is a prerequisite for the onset of multiple organ dysfunction in severe sepsis.

Aged↗

Sacral nerve terminal motor latency after ileal J pouch-anal anastomosis for ulcerative colitis.

Using a new transcutaneous magnetic stimulation technique, sacral nerve terminal motor latencies (SNTML) were measured after ileal J pouch-anal anastomosis in eight patients with ulcerative colitis, and the results were compared with those obtained from 15 normal subjects. The conduction delay of the SNTML in patients with soiling was significantly longer than that of the continent group as well as that of normal subjects (P < 0.01). There were no significant differences in the conduction delay between the continent group and the control subjects. These findings therefore support the hypothesis that such soiling, which is sometimes seen after ileal J pouch-anal anastomosis, is partly due to damage to the sacral nerves.

Adolescent↗

A role of nitric oxide in Hirschsprung's disease.

Nitric oxide (NO) has recently been shown to be a neurotransmitter in the nonadrenergic noncholinergic (NANC) inhibitory nerves in the gastrointestinal tract. To clarify the significance of NO in Hirschsprung's disease (HD), enteric nerve responses in colonic tissue obtained from HD patients were investigated. Colonic tissue specimens were obtained from four patients with HD and from 11 patients without constipation who were used as controls. A mechanograph was used to evaluate in vitro colonic responses to electrical field stimulation (EFS) of the adrenergic and cholinergic nerves before and after treatment with various autonomic nerve blockers, and NG-nitro-L-arginine (L-NNA) and L-arginine with the following results: (1) NANC inhibitory nerves were found to act on normal human colon, but had no effect on aganglionic colon; (2) L-NNA concentration dependently inhibited the relaxation in response to EFS in the normal colon, but had no effect on aganglionic colon; and (3) this inhibitory effect was reversed by L-arginine in the normal colon, but had no effect on the aganglionic colon. Nitric oxide mediates the relaxation reaction of NANC inhibitory nerves in the human colon, but the effect of NO was absent in aganglionic colon. The loss of action by NO may be implicated in the impaired motility observed in aganglionic colon.

Adolescent↗

Midazolam for continuous sedation in Japanese critical care patients: phase II study.

This prospective study was undertaken to evaluate the efficacy and safety of midazolam as a sedative agent in 14 critically ill patients without coma admitted to the intensive care unit at Nihon University Itabashi Hospital, Japan. Adequate sedation (sedation score [SS] 4-6) was induced with 0.058- 0.372 mg/ kg midazolam and maintained with a dose range of 0.03-0.4 mg/kg per h. Most burn or trauma patients required higher midazolam doses than patients with cardiovascular disease. The most frequent adverse events observed were hypotension, heart-rate fluctuation and electrocardiogram abnormalities. Pharmacokinetic analysis of the population suggested that lower drug clearance rates correlated with presence of complications. Plasma concentrations (EC50) of SS 5, estimated by logistic regression analysis, varied among patients (mean 194 ng/ml). Midazolam infusion achieved successful sedation in this critical care setting, but the optimum dose differed by patient and was influenced by the presence of complications.

Adult↗

Physiological studies on nitric oxide in the right sided colon of patients with diverticular disease.

BACKGROUND/AIMS: Previously, we reported that non-adrenergic non-cholinergic (NANC) inhibitory nerves are decreased in the left-sided colon of patients with diverticular disease, contributing to their intraluminal high pressure by segmentation (1). It is established that nitric oxide (NO) is released by stimulation of NANC inhibitory nerves. Among Oriental people, including the Japanese, right-sided diverticular disease has predominated more frequently than among Western people. In order to evaluate the function of NO in the right-sided colon of patients with diverticular disease, we examined the enteric nerve responses in colonic materials from patients with this disease, using the right-sided normal colon as a control. METHODOLOGY: Colonic tissue specimens were obtained from 8 patients with diverticular disease of the right-sided colon, and normal segments of the right-sided colon were obtained from 11 patients with localized diseases. A mechanograph was used to evaluate in vitro colonic responses to electrical field stimulation (EFS) of adrenergic and cholinergic nerves before and after treatment with various autonomic nerve blockers, N(G)-nitro-L-arginine (L-NNA), and L-arginine. RESULTS: 1) Cholinergic nerves were more dominant in the diverticular colon than in the normal colon (p<0.01). 2) NANC inhibitory nerves were found to act on the normal colon and to a lesser extent in the diverticular colon (p<0.05). 3) NO mediates the relaxation reaction of NANC inhibitory nerves in the normal colon and to a lesser extent in the diverticular colon. CONCLUSIONS: The intrinsic intestinal innervation contains excitatory and inhibitory nerves and the former, especially cholinergic nerves, are dominant in the right-sided colon with diverticula. In addition, reduction of the action of NANC inhibitory nerves by substances such as NO may be largely related to the tight intraluminal pressure by colonic segmentation observed in the right-sided colon with diverticula.

Adrenergic Fibers↗

The role of nitric oxide (NO) in the human pyloric sphincter.

BACKGROUND/AIMS: Nitric oxide (NO) has recently been shown to be a neurotransmitter in non-adrenergic non-cholinergic (NANC) inhibitory nerves in the gastrointestinal tract. To clarify the role of NO in the human pyloric sphincter, enteric nerve responses in pyloric tissue specimens obtained from patients with gastric cancer were investigated. METHODOLOGY: Fresh specimens of normal pylorus obtained from 18 patients with gastric cancer were used. The subjects consisted of 12 men and 6 women, aged from 45-74 years (average: 60.1 years). A mechanograph was used to evaluate in vitro pyloric sphincter muscle responses to electrical field stimulation (EFS) of adrenergic and cholinergic nerves before and after treatment with various autonomic nerve blockers, and N(G)-nitro-L-arginine (L-NNA) and L-arginine. RESULTS: Cholinergic nerves were mainly involved in the regulation of enteric nerve responses to EFS in the basal condition of the study, and NANC inhibitory nerves acted on human pylorus. L-NNA concentration dependently inhibited the relaxation in response to EFS in the human pylorus, and this inhibitory effect in the pylorus was reversed by L-arginine. CONCLUSIONS: These findings suggest that the cholinergic/adrenergic and NANC inhibitory nerves play important roles in regulating contraction and relaxation of the human pylorus, and that NO plays an important role as a neurotransmitter in NANC inhibitory nerves of the human pylorus.

Adrenergic Fibers↗

Peptidergic nerves in the colon of patients with ulcerative colitis.

BACKGROUND/AIMS: The cause of impaired motility, such as diarrhea and toxic megacolon, in patients with ulcerative colitis is unknown. Neuropeptides have recently been shown to be a neurotransmitter in the non-adrenergic non-cholinergic inhibitory and excitatory nerves in the human gut. To clarify the physiological significance of vasoactive intestinal polypeptide, substance P and neurotensin in the colon of patients with ulcerative colitis, we investigated the enteric nerve responses on lesional and normal bowel segments derived from patients with ulcerative colitis and patients who underwent colon resection for colonic cancers. METHODOLOGY: Twenty-four specimens were obtained from the lesional colon of 6 patients with ulcerative colitis (4 male, 2 female; ages 14-51 years, mean: 40.3 years). The patients with ulcerative colitis had chronic disease (4 with moderate disease, 2 with severe disease). Seventy-two specimens were obtained from the normal colon of 10 patients with colonic cancer (8 men and 2 women; ages 40-56 years, mean: 51.2 years). A mechanographic technique was used to evaluate in vitro muscle responses to these peptides of adrenergic and cholinergic nerves before and after treatment with various autonomic nerve blockers. RESULTS: (1) Peptidergic nerves such as vasoactive intestinal polypeptide, substance P, and neurotensin nerves were found to act on both normal colon and ulcerative colitis colon; (2) the colon with ulcerative colitis was more strongly innervated by vasoactive intestinal polypeptide nerves than the normal colon; (3) Substance P and neurotensin nerves act more weakly in the UC colon that the normal colon. CONCLUSIONS: These findings suggest that peptidergic nerves play an important role in the impaired motility observed in patients with UC.

Adolescent↗

Role of nitric oxide in the left-sided colon of patients with diverticular disease.

BACKGROUND/AIMS: Non-adrenergic non-cholinergic inhibitory nerves are the most important nerves in the enteric nervous system of the human gut. Recently, it has been established that nitric oxide is released by stimulation of non-adrenergic non-cholinergic inhibitory nerves. Therefore, in order to evaluate the function of nitric oxide in the left-sided colon of patients with diverticular disease, we examined the enteric nerve responses in colonic tissues from patients with this disease, and also used the left-sided normal colon as a control. METHODOLOGY: Colonic tissue specimens (the diverticular bearing segments) were obtained from 9 patients with diverticular disease of the left-sided colon, and normal segments of the left-sided colon were obtained from 16 patients with ascending colon cancer. A mechanograph was used to evaluate in vitro colonic responses to electrical field stimulation of adrenergic and cholinergic nerve before and after treatments with various autonomic nerve blockers, NG-nitro-L-arginine, and L-arginine. RESULTS: 1) The diverticular colon was more strongly innervated by cholinergic nerves than the normal colon (P < 0.01); 2) Non-adrenergic non-cholinergic inhibitory nerves were found to act on the normal colon and to a lesser extent in the diverticular colon (P < 0.05). 3) Nitric oxide mediates the relaxation reaction of non-adrenergic non-cholinergic inhibitory nerves in the normal colon and to a lesser extent in the diverticular colon. CONCLUSIONS: These findings suggest that the intrinsic intestinal innervation contains excitatory and inhibitory nerves and that the former, especially cholinergic nerves, are dominant in the left-sided colon with diverticula. In addition, diminution of action of non-adrenergic non-cholinergic inhibitory nerves by substances such as nitric oxide may be largely related to the high intraluminal pressure by colonic segmentation observed in the left-sided colon with diverticula.

Adult↗

Relationship between gastroduodenal interdigestive migrating motor complex and quality of life in patients with distal subtotal gastrectomy for early gastric cancer.

A total of 40 patients (28 males, 12 females; mean age, 56.6 years; range, 41-72 years), 1-1.5 years (mean, 1.4 years) after subtotal gastrectomy for early gastric cancer (Billroth I, D2 lymph node dissection, curability A) were divided into 2 groups according to the occurrence of interdigestive migrating motor complex (IMMC), phase III from the duodenum, and their postoperative quality of life was compared. Results were as follows: (i) patients in the IMMC, phase III positive group (28 patients) had evidently more appetite and ate more food, with less decrease in body weight compared with the IMMC, phase III negative group (12 patients); and (ii) patients in the IMMC, phase III positive group had clearly less symptoms, such as early dumping symptoms (systemic symptoms), symptoms of reflux esophagitis (e.g. heartburn, feeling of regurgitation, difficult swallowing), nausea, abdominal pain, diarrhea, abdominal distention, and borborygmus, compared with the negative group. These results showed more satisfactory quality of life in the IMMC, phase III positive group compared with the negative group.

Adult↗

A novel operative technique on proximal gastrectomy reconstructed by interposition of a jejunal J pouch with preservation of the vagal nerve and lower esophageal sphincter.

BACKGROUND/AIMS: This article describes the surgical techniques and postoperative status for proximal gastrectomy reconstructed by interposition of a jejunal J pouch with preservation of the vagal nerve and lower esophageal sphincter. METHODOLOGY: We have performed a new technique for reducing postgastrectomy sequelae such as reflux esophagitis, early dumping syndrome, and microgastria in early gastric cancer located in the proximal third of the stomach. The technique consists of proximal gastrectomy with preservation of the hepatic, pyloric, celiac branch of the vagal nerve, and abdominal esophagus (lower esophageal sphincter), and reconstruction by interposition of a jejunal J pouch. To reserve pyloric function, pyloroplasty can be omitted by preservation of the pyloric branch from the vagal nerve. To restore loss of reservoir function, the reconstruction is performed with an interposed jejunal J pouch. Sacrifice of the mesenteric arcades is kept to a minimum to preserve the autonomic nerve and blood flow in the mesentery. RESULTS: All of the patients who underwent this operation were able to eat an adequate amount of food at 6 months after surgery and they were satisfied with their postoperative status. And that, we have not experienced postgastrectomy disorders such the dumping syndrome and reflux esophagitis. CONCLUSIONS: Therefore, this method is useful for preventing the postoperative disorders in patients with early gastric cancer located in the proximal third of the stomach.

Adult↗