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Biomedical subjects

K Tojo

Publications and source records attributed to K Tojo.

At least 55 records · Page 3Linked to original sources

IgA myeloma complicated by fractures of the bones and hyperviscosity syndrome--report of an autopsied case.

A case of IgA (kappa type) myeloma complicated by fractures of the bones and hyperviscosity syndrome is presented. A 56-year-old woman who had been followed as an outpatient with diabetes mellitus for about 16 years, developed multiple myeloma. She also showed symptoms and signs of hyperviscosity syndrome; hemorrhagic diathesis, blurred vision and episodes of transient ischemic attacks of the brain, and fractures of the bones by small powers of trauma. At autopsy, almost all bones showed infiltration of multiple myeloma of IgA-kappa type and severe osteoporosis accompanied with proliferation of osteoclasts. The association of IgA myeloma with hyperviscosity syndrome and/or bone destruction was discussed. The "serum hyperviscosity syndrome" has been described clinically as the triad of bleeding, visual signs and symptoms, and neurologic manifestations. And this syndrome has been associated frequently with macroglobulinemia of Waldenström, occasionally with immunoglobulin (Ig) G myeloma, rarely with IgA myeloma, and with other dysproteinemia. Myeloma is also characterized by extensive bone destruction and is accompanied by susceptibility to fracture, although Waldenström's macroglobulinemia, acute leukemia or chronic leukemia are rarely associated with bone resorption. The present report describes a patient with IgA myeloma complicated by hyperviscosity syndrome and multiple bone fractures.

Blood Viscosity↗

A method for predicting steady-state rate of skin penetration in vivo.

A simple in vivo method was proposed for predicting the steady-state rate of penetration of drugs across the stratum corneum. Both the diffusion coefficient and the partition coefficient in the stratum corneum can be determined by the amounts of drug in the stratum corneum at two time intervals under transient conditions after transdermal drug application. The amount of drug entering the stratum corneum is determined by 20 strippings with an adhesive tape. The steady-state rate of penetration was then calculated for the thickness of the stratum corneum and the concentration of the donor solution. The steady-state rates of penetration of ascorbic acid and estradiol across hairless mouse skin were evaluated from this in vivo approach and compared with those obtained from in vitro penetration experiment using excised hairless mouse skin. The data confirmed that the proposed in vivo method can predict the steady-state rate of penetration of these drugs across the stratum corneum in normal skin.

Administration, Cutaneous↗

Stimulation of growth hormone secretion by central administration of atrial natriuretic polypeptide in the rat.

Intracerebroventricular (icv) injection of alpha-human atrial natriuretic polypeptide (alpha hANP) or alpha-rat ANP (0.6 and 3 nmol/rat) elicited an increase in plasma GH levels both in conscious freely moving rats and in urethane-anesthetized rats when given at the trough of spontaneous GH secretion. Antiserum specific for rat GRF did not affect the plasma GH increase induced by icv injection of alpha hANP. Intracerebroventricular injection of alpha ANP (3 nmol/rat) failed to stimulate GH secretion in conscious rats pretreated with cysteamine (30 mg/100 g BW, sc), a depletor of somatostatin (SRIF), and in conscious rats during constant iv infusion of SRIF (55 ng/ml). GH release induced by iv injection of synthetic rat GRF (200 ng/100 g BW) was exaggerated by alpha hANP (3 nmol/rat, icv) in conscious rats. These results suggest that central ANP stimulates pituitary GH secretion possibly by inhibiting SRIF release from the hypothalamus in the rat.

Animals↗

Drug permeation across the skin: effect of penetrant hydrophilicity.

The hydrophilicity of progesterone, a lipophilic steroid itself, was progressively increased by incorporating one or more hydroxy substituents at different positions on the steroidal skeleton. Effects of these hydrophilic substituents on the permeation of progesterone across the intact skin and stripped skin of the hairless mouse were studied using a hydrodynamically well-calibrated in vitro skin permeation system. The steady-state rate of permeation across the intact skin and stripped skin was found to be approximately proportional to the solubility of drugs in the stratum corneum or in the viable skin, respectively. Furthermore, the solubility of progesterone and its hydroxyl derivatives in the stratum corneum was noted to decrease gradually as the hydrophilicity of the penetrant increased. This finding was similar to that of a previously reported study of drug permeation across the lipophilic silicone membrane. However, the solubility of these progestins in the viable skin was observed to be dependent not only on the penetrant hydrophilicity but also on the position of the OH group on the penetrant molecule. The diffusivity of progesterone and its hydroxyl derivatives across the stratum corneum and viable skin was almost independent of the hydrophilicity of the drugs.

Animals↗

Random brick model for drug transport across stratum corneum.

A model for drug permeation across the stratum corneum is developed to predict the effect of the physical configuration and chemical composition of the stratum corneum on the skin permeability of drugs. The experimental data of percutaneous absorption across different skin specimens are well interpreted by the present model.

Biological Transport↗

Stimulation by serotonin of immunoreactive peptide histidine isoleucine release from rat hypothalamus in vitro.

The effect of serotonin (5-HT) on the release of peptide histidine isoleucine-like immunoreactivity (PHI-LI) from rat hypothalamus was investigated in vitro with a perifusion system. A high potassium concentration (56 mM) stimulated PHI-LI release in a calcium-dependent manner. PHI-LI release was dose-relatedly stimulated by 5-HT (10(-6), 10(-5) and 10(-4) M). PHI-LI release induced by 5-HT (10(-5) M) was abolished by cyproheptadine (10(-4) M), a 5-HT antagonist. These results suggest that 5-HT has a stimulating effect on PHI release from the hypothalamus.

Animals↗

Involvement of growth hormone (GH)-releasing factor in GH secretion induced by serotoninergic mechanisms in conscious rats.

A possible role of hypothalamic GH-releasing factor (GRF) in GH secretion induced by serotoninergic stimuli was investigated in conscious freely moving rats with a passive immunization technique. Either iv injection of 5-hydroxy-L-tryptophan (1 mg/100 g BW) or intracerebroventricular injection of serotonin (10 micrograms/rat) caused an increase in plasma GH in rats treated with normal rabbit serum (0.5 ml/rat, iv) 30 min previously. Injection of rabbit antiserum specific for rat GRF (0.5 ml/rat, iv, 30 min previously) blunted the plasma GH increase induced by 5-hydroxy-L-tryptophan or serotonin in these animals. These results suggest that GH secretion induced by serotoninergic mechanisms is mediated, at least in part, by hypothalamic GRF in the rat.

5-Hydroxytryptophan↗

Further evidence that central neurotensin inhibits pituitary prolactin secretion by stimulating dopamine release from the hypothalamus.

Intracerebroventricular (icv) injection of neurotensin (NT) (2 micrograms/rat) suppressed prolactin (PRL) release induced by L-5-hydroxytryptophan (1 mg/100 g body wt, iv), prostaglandin E2(1 microgram/rat, icv), and FK33-824 (10 micrograms/100 g body wt, iv), a Met5-enkephalin analog, in urethane-anesthetized or conscious rats. In contrast, NT did not suppress elevated plasma PRL levels sustained by a large dose of domperidone (10 micrograms/100 g body wt, iv), a peripheral dopamine antagonist. In in vitro experiments, NT (10(-5) M) stimulated dopamine release from perifused rat hypothalamic fragments. These results suggest that central NT inhibits PRL secretion by stimulating dopamine release from the hypothalamus into hypophysical portal blood in the rat.

5-Hydroxytryptophan↗

Central effects of DN1417, a novel TRH analog, on plasma glucose and catecholamines in conscious rats.

Intracerebroventricular (icv) injection of DN1417 (0.3, 3 and 30 nmol/rat), a TRH analog, resulted in a dose-related increase in plasma glucose, epinephrine and norepinephrine levels in conscious male rats. The effects of DN1417 were more potent and longer-lasting than those of TRH on a molar basis. Intravenous injection of DN1417 (30 nmol/rat) did not change plasma glucose, epinephrine and norepinephrine levels. Pretreatment with hexamethonium (1.5 mg/100 g body wt, iv, 2 min before) inhibited plasma glucose, epinephrine and norepinephrine responses to DN1417 (3 nmol/rat, icv). DN1417 did not change plasma glucose, epinephrine and norepinephrine levels in rats after total adrenalectomy. In the animals pretreated with cysteamine (30 mg/100 g body wt, sc, 4 h before), basal plasma glucose, epinephrine and norepinephrine levels were raised, and exaggerated responses of plasma glucose, epinephrine and norepinephrine to DN1417 (3 nmol/rat, icv) were obtained. These results indicate that DN1417 has a potent and long-lasting effect in the central nervous system in stimulating the secretion of catecholamines through the autonomic nervous system, which is associated with an elevation of plasma glucose and that endogenous hypothalamic somatostatin may inhibit the action of DN1417.

Adrenalectomy↗

Inhibition by antiserum to vasoactive intestinal polypeptide (VIP) of prolactin secretion induced by serotonin in the rat.

Intraventricular (i.c.v.) injection of serotonin (5HT) or intravenous (i.v.) injection of 5-hydroxytryptophan (5HTP), a precursor of 5HT, raised plasma prolactin (PRL) levels in urethane-anesthetized rats pretreated with normal rabbit serum. When the animals were injected i.c.v. or i.v. with specific anti-VIP rabbit serum, the plasma PRL responses to 5HT and 5HTP were blunted. These findings suggest that hypothalamic VIP is involved, at least in part, in PRL secretion induced by central serotonergic stimulation in the rat.

5-Hydroxytryptophan↗

Intrinsic release rate from matrix-type drug delivery systems.

A simple method was presented for evaluation of the intrinsic release rate from a matrix-type drug delivery system. The effect of the hydrodynamic diffusion boundary layer on the rate of drug release was corrected to obtain the release profile without any diffusion boundary layer effect. The experimental release data was logically explained in terms of the intrinsic rate of release evaluated from the present method.

Chemical Phenomena↗

Involvement of growth hormone-releasing factor in growth hormone secretion induced by gamma-aminobutyric acid in conscious rats.

Intracerebroventricular (icv) injection of gamma-aminobutyric acid (GABA) (10 mumol/rat) resulted in an increase in plasma GH in conscious freely moving rats pretreated with normal rabbit serum (0.5 ml/rat, iv). Rabbit antiserum specific for rat GH-releasing factor (GRF) (0.5 ml/rat, iv) abolished GH release induced by GABA in these animals. Rabbit anti-rat GRF serum also blunted GH release induced by a Met5-enkephalin analog, FK33-824 (10 micrograms/100 g BW, iv) in conscious rats. Considering our previous findings that rat GH release induced by FK33-824 was blunted by GABA antagonists (Endocrinology 103:1033, 1981), these results suggest that GH secretion induced by opioid peptides via GABAergic mechanisms is mediated, at least in part, by hypothalamic GRF in the rat.

Animals↗

Stimulation by leumorphin of prolactin secretion from the pituitary in rats.

The effect of leumorphin (LM), one of big leu-enkephalins derived from preproenkephalin B, on PRL secretion was studied in the rat in vivo and in vitro. Intracerebroventricular injection of synthetic porcine LM (0.06-6 nmol/rat) caused a dose-related increase in plasma PRL levels in urethane-anesthetized male rats and in conscious freely moving rats. Intravenous injection of LM (3 nmol/100 g BW) also raised plasma PRL levels in these animals. The plasma PRL response to intracerebroventricular LM (0.6 nmol/rat) was blunted by naloxone (125 micrograms/100 g BW, iv). The stimulating effect of LM on PRL release was the most potent among the peptides derived from preproenkephalin B. In in vitro studies, PRL release from superfused anterior pituitary cells was stimulated in a dose-related manner by LM (10(-9)-10(-6) M), and the effect was blunted by naloxone (10(-5) M). These results suggest that LM has a potent stimulating effect on PRL secretion from the pituitary in the rat by acting, at least in part, directly at the pituitary through an opiate receptor.

Animals↗

Inhibition by antiserum to rat growth hormone-releasing factor of growth hormone secretion induced by a met5-enkephalin analog, FK33-824, in rats.

A Met5-enkephalin analog, FK33-824 (5, 10 and 20 micrograms/100 g body wt, iv) caused a dose-related increase in plasma growth hormone (GH) in urethane-anesthetized male rats. Pretreatment with cysteamine (30 mg/100 g body wt, sc), a depletor of hypothalamic somatostatin, increased the plasma GH response to FK33-824 (10 micrograms/100 g body wt, iv). Antiserum specific for rat GH-releasing factor (GRF) (0.5 ml/rat, iv) blunted GH release induced by FK33-824 (10 micrograms/100 g body wt, iv) in rats with or without cysteamine pretreatment. These results suggest that GH secretion induced by the opioid peptide is mediated, at least in part, by hypothalamic GRF in the rat.

Animals↗

Involvement of peptide histidine isoleucine (PHI) in prolactin secretion induced by serotonin in rats.

The possible role of hypothalamic peptide histidine isoleucine (PHI) in prolactin (PRL) secretion induced by serotoninergic mechanisms was investigated in male rats using a passive immunization technique. Intracerebroventricular injection of serotonin (5HT, 10 micrograms/rat) raised plasma PRL levels both in urethane-anesthetized rats and in conscious rats pretreated with normal rabbit serum (0.5 ml/rat, iv, 30 min before). Plasma PRL responses to 5HT were blunted in these animals when they were pretreated with rabbit antiserum specific for PHI (0.5 ml/rat, iv, 30 min before) (mean +/- SE peak plasma PRL: anesthetized rats 271.3 +/- 38.3 ng/ml vs 150.0 +/- 12.6 ng/ml, p less than 0.01, conscious rats 54.3 +/- 6.8 ng/ml vs 30.7 +/- 4.1 ng/ml, p less than 0.025). These results suggest that hypothalamic PHI is involved, at least in part, in PRL secretion induced by central serotoninergic stimulation in the rat.

Animals↗

Involvement of hypothalamic vasoactive intestinal polypeptide (VIP) in prolactin secretion induced by serotonin in rats.

To study the possible involvement of hypothalamic vasoactive intestinal polypeptide (VIP) in regulating the secretion of prolactin (PRL), the effect of anti-VIP rabbit serum on serotonin (5-HT)-induced PRL release was examined in urethane-anesthetized male rats. Anti-VIP serum (AVS) or normal rabbit serum (NRS) was infused into a single hypophysial portal vessel of the rat for 40 min at a rate of 2 microliters/min with the aid of a fine glass cannula and 5-HT was injected into a lateral ventricle 10 min after the start of the infusion. Intraventricular injection of 5-HT (10 micrograms/rat) caused an increase in plasma PRL levels in control animals infused with NRS and 5-HT-induced PRL release was blunted in animals infused with AVS (mean +/- SE peak plasma PRL: 118.9 +/- 19.8 ng/ml vs 54.7 +/- 16.2 ng/ml, p less than 0.05). These findings suggest that the secretion of PRL induced by 5-HT is mediated, at least in part, by hypothalamic VIP release into the hypophysial portal blood in the rat.

Animals↗