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Biomedical subjects

M Kobashi

Publications and source records attributed to M Kobashi.

At least 37 records · Page 2Linked to original sources

Response of neurons in the solitary tract nucleus, area postrema and lateral parabrachial nucleus to gastric load of hypertonic saline.

c-Fos was induced in the solitary tract nucleus (NTS), area postrema (AP) and lateral parabrachial nucleus (LPB) by the intragastric injection of hypertonic saline. The effect was bilateral and most dramatic in the NTS caudal to the facial nucleus and the AP, the areas receiving dense vagal afferent projection from the subdiaphragmatic structures. At least a part of these Fos-LI is considered to have been induced by the activation of the visceral osmoreceptors.

Animals↗

Effects of hepatic vagotomy on suppression of water intake induced by hepatic portal infusion of water in water-deprived rats.

We investigated the effects of hepatic vagotomy on the suppression of water intake induced by hepatic portal infusion of water by 24-h water-deprived rats. In sham-operated rats, water intake of the portal infusion group was significantly less than that of the jugular infusion group during and after the infusion of deionized water for 3.5 h at a rate of 52 microliters/min. This result reconfirmed our previous findings. On the other hand, in hepatic-vagotomized rats, the suppression during the portal infusion of water was not observed, but the suppression after portal infusion was observed. It is concluded that the suppression, at least during the portal infusion of water, was mediated by hepatoportal osmo-receptive (or sodium-receptive) afferent signals contained in the hepatic branch of the vagus nerve.

Animals↗

Convergence of gastric and hepatic information in brain stem neurons of the rat.

Convergence of gastric and hepatic information in the nucleus of the solitary tract (NTS) was investigated by single-pulse electrical stimulation of the hepatic and the gastric branches of the vagus. Facilitation induced by both stimuli occurred most often in responses of neurons in the NTS, indicating convergence of information there. In a second experiment using gastric distension and portal infusion of glucose to analyze such convergence, activation by gastric distension and suppression by portal glucose was the most prominent combination of responses to both stimuli. This confirmed the results of electrical stimulation, because distension increases the firing rate of gastric afferents and glucose infusion decreases the firing rate of hepatic afferents. Analysis of the responses to varying degrees of gastric distension revealed that some NTS neurons are activated by weak distension, but inhibited by strong distensions.

Animals↗

Effect of hepatic portal infusion of water on water intake by water-deprived rats.

To determine whether or not hepatoportal osmoreceptive (or sodium-receptive) signals participate in the control of drinking, we examined the effects of portal infusion of water, 0.9% saline, and 1.8% saline on water intake by water-deprived rats. Infusion was started 0.5 h prior to the end of the water deprivation period for 3.5 h at a rate of 52 microliters/min through either a portal or a jugular catheter. After 24-h water deprivation, water intake was measured successively for 24 h without food. As a result of the water infusion tests, water intake of the portal infusion group was significantly less than that of the jugular infusion group during and after the infusion. Portal infusion of neither 0.9% nor 1.8% saline affected the water intake compared to similar infusion into the jugular vein. It is concluded that hypotonic stimulation of the hepatoportal osmoreceptor suppresses water intake in water-deprived rats. On the contrary, isotonic or hypertonic stimulation does not produce any change of water intake.

Animals↗

Chemosensitive neurons in the area postrema of the rat and their possible functions.

The present study is an attempt to demonstrate chemosensitive neurons within the area postrema (AP) electrophysiologically. Three types of chemosensitive neurons were identified: 1) glucose-responsive neurons that may participate in control of blood glucose and satiation, 2) sodium (osmotic pressure)-responsive neurons that may contribute to control of sodium and water balance of the body fluid and may be involved in salt appetite, 3) nausea-related neurons which respond to excess distension of stomach and LiCl as well. They may play a role in formation of conditioned taste aversion.

Animals↗

A hepatoportal osmoreceptive afferent projection from nucleus tractus solitarius to caudal ventrolateral medulla.

This study was performed to examine projection of nucleus tractus solitarii (NTS) neurons to the caudal ventrolateral medulla (cVLM) in rats. One hundred and seven neurons that responded antidromically to electrical stimulation of the cVLM were recorded within the NTS. Electrical stimulation of the hepatic branch of the vagus nerve (hepatic vagus) elicited facilitation on 62 neurons (facilitatory neurons) and suppression on 6 neurons (suppressed neurons). Effect of portal infusion of hypertonic saline was examined on 44 facilitatory and 4 suppressed neurons. Twelve facilitatory and 2 suppressed neurons showed a decrease in the discharge rate. One suppressed neuron showed an increase in the discharge rate. It is concluded that hepatoportal osmoreceptive signals are conveyed from the NTS to the cVLM. The responses are mostly characterized by the decrease in the discharge rate by portal infusion of hypertonic saline.

Action Potentials↗

[T-cell lymphomas of the skin: a study of 7 cases excluding mycosis fungoides and adult T-cell leukemia/lymphoma].

Seven cases of T-cell lymphomas of the skin, excluding mycosis fungoides and adult T-cell leukemia/lymphoma, treated at the Department of Dermatology, Miyazaki Medical College for the previous 5 years were studied. Five were males and 2 were females, with a mean age of 61 years. Six patients presented either multiple skin tumors or subcutaneous indurations. Histologically, all cases presented dense infiltrations of the tumor cells showing variable morphological characteristics. Surface markers were also variable, suggesting that these were not a single entity. Treatment consisted of chemotherapy in 5 cases and electron beam therapy in 5 (localized in 4 and generalized in 1). Complete remission was obtained in 5 cases. The mean period from the first examination to death in the three fatal cases was 11.7 months, and the mean period of observation from the first examination to the present time in 4 cases ranged from 12 months to 40 months. Clinicopathological characteristics of these cases were compared with those of adult T-cell leukemia/lymphoma.

Adult↗

A direct hepatic osmoreceptive afferent projection from nucleus tractus solitarius to dorsal hypothalamus.

Thirty units that responded antidromically to electrical stimulation of the zona incerta (ZI) or the dorsal portion of hypothalamus were recorded in the nucleus tractus solitarii (NTS). These units were analyzed in relation to hepatoportal afferent inputs. Electrical stimulation of the hepatic branch of the vagus nerve facilitated six units (facilitatory units) and suppressed 10 units (suppressed units). Effect of the portal infusion of hypertonic saline was examined on six facilitatory and eight suppressed units. One facilitatory unit and one suppressed unit increased their discharge rates in response to portal infusion. Four facilitatory units and one suppressed unit decreased their discharge rates in response to the same stimulation. Increased or decreased discharge rates in response to portal infusion of hypertonic saline were observed in units that responded antidromically to electrical stimulation of the paraventricular hypothalamic nucleus, the lateral hypothalamic area, or the ZI. It is concluded that hepatoportal osmoreceptive signals are conveyed to the hypothalamus or the ZI directly from the NTS.

Afferent Pathways↗

Projection of nucleus tractus solitarius units influenced by hepatoportal afferent signal to parabrachial nucleus.

In urethan-chloralose anesthetized rats, units in the nucleus tractus solitarius (NTS) which antidromically responded to electrical stimulation of the parabrachial nucleus (PB) were investigated for their responses to hepatic-vagal afferent signals. Among 63 NTS units examined, 25 (40%) were excited, 17 (27%) inhibited and the remaining 21 (33%) unaffected by single shock electrical stimulation of the hepatic branch of the vagus nerve. Topical application of Na+ produced an increase in discharge rate of 9 units and a decrease in 5 units. Portal infusion of hypertonic saline produced an increase in discharge rate of 3 units and a decrease in 5 units. Furthermore, 3 units responded to both topical application of Na+ and portal infusion of hypertonic saline.

Afferent Pathways↗

Chemosensitive neurons within the area postrema of the rat.

It is demonstrated that some neurons within the area postrema, if not all, are responsive to glucose or sodium ions applied topically by means of microelectro-osmotic techniques. Glucose-responsive neurons displayed a marked decrease in the discharge rate in response to the topical application of glucose. Two different types of sodium-responsive neurons were observed; one was characterized by increasing the frequency of the discharges responding to microiontophoretic application of Na+, while the other showed the opposite response by decreasing the discharge rate in response to the same stimulation. They may serve enteroceptors in response to changes in the glucose or sodium concentrations of cerebrospinal fluid (CSF) or blood.

Animals↗

Convergence of hepatic osmoreceptive inputs on sodium-responsive units within the nucleus of the solitary tract of the rat.

Single-shock electrical stimulation of the hepatic branch of the vagus induced both facilitation and suppression in units within the nucleus of the solitary tract (NTS). Some units that were facilitated by electrical stimulation also increased their discharge rates during topical iontophoretic application of Na+, as well as portal infusion of hypertonic saline. Other facilitatory units produced opposite responses; their discharge rates decreased during topical iontophoretic application of Na+ and portal infusion of hypertonic saline. Some units that were suppressed by electrical stimulation also responded to the topical application of Na+ and portal infusion of hypertonic saline. The responses to these two different stimuli were positively correlated in some units but not in others. The evidence suggests that the units within the NTS that are responsive to hepatic osmosensitive primary afferents may serve a Na+-responsive function and may be important in integration within the NTS for isosmotic or isovolemic homeostasis.

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