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Biomedical subjects

Y Namba

Publications and source records attributed to Y Namba.

At least 19 recordsLinked to original sources

Different origin of hypertriglyceridemia induced by a high-fat and a high-sucrose diet in ventromedial hypothalamic-lesioned obese and normal rats.

OBJECTIVE: To clarify the mechanism by which plasma triacylglycerol is affected by a high fat or a sucrose diet. DESIGN: Two sets of six groups each having six rats were prepared-(1) ventromedial hypothalamic (VMH)-lesioned rats fed a standard diet; (2) sham VMH-lesioned rats fed a standard diet; (3) VMH-lesioned rats fed a high-fat diet; (4) sham VMH-lesioned rats fed a high-fat diet; (5) VMH-lesioned rats fed a high-sucrose diet; and (6) sham VMH-lesioned rats fed a high-sucrose diet. After VMH lesions and sham operations, the rats were provided standard, high-fat and high sucrose diets for 2 weeks. Two weeks later, blood samples were collected after overnight fast to determine plasma triacylglycerol (TAG), hepatic triacylglycerol secretion rate (TGSR), fractional catabolic rate (FCR) of triacylglycerol and postheparin plasma lipoprotein lipase (LPL), plasma glucose, insulin and leptin. RESULTS: Values of TAG, TGSR, FCR and LPL in VMH-lesioned obese rats were all greater than those in sham-operated rats, regardless of the diet fed. In sham-operated rats, high-fat diet fed rats showed higher TAG with similar TGSR, higher LPL and lower FCR than those of standard diet fed rats. High-sucrose diet fed rats showed significantly higher TAG with higher TGSR, higher LPL and lower FCR than those of standard diet fed rats. Moreover, high-sucrose diet fed rats showed higher TAG with higher TGSR, lower LPL and higher FCR than those of high-fat diet fed rats. In VMH-lesioned rats, high-fat diet fed rats showed higher TAG with similar TGSR, higher LPL and lower FCR than those of standard diet fed rats. High-sucrose diet fed rats showed markedly higher TAG with notably higher TGSR, higher LPL and lower FCR than those of standard diet fed rats. High-sucrose diet fed rats showed still higher TAG with markedly higher TGSR, similar LPL and higher FCR than those of high-fat diet fed rats. CONCLUSIONS: The mechanism by which TAG metabolism is affected by a high-fat or a high-sucrose diet differed; a high-fat diet increased plasma TAG level by lowering removal of TAG without increase in hepatic TAG secretion in sham-operated (normal) rats. A high-sucrose diet, in contrast, induced much higher plasma TAG levels by both increased hepatic TAG secretion and decreased removal of TAG. The effects of a high-fat or a high-sucrose diet were similar but exaggerated in VMH lesioned animals.

Animals↗

A study of reproductive performance in pregnant, IL-2 receptor beta-chain overexpressed transgenic mice.

Relationships between female reproductive performance and uterine natural killer (uNK) cells were investigated in pregnant IL-2 receptor beta-chain overexpressed transgenic (Tg2Rbeta) mice. At 8 days of pregnancy, all fetuses were alive, suggesting that implantation normally occurred in these mice. However, 47% of fetuses were dead at 10 days of pregnancy and at 12 days all fetuses were resorbing, indicating that fetal loss progressed with the advance of pregnancy. The placenta of Tg2Rbeta mice gradually decreased in weight with the advance of pregnancy. At 10 days the placental labyrinth, decidua basalis, and metrial gland in Tg2Rbeta mice were poorly developed, and more uNK cells were found in Tg2Rbeta mice than in the control mice. We propose that Tg2RPbeta mice are the first and interesting model that uNK cells can cause abortion, to clarify the involvement of uNK cell function in female reproductive performance.

Animals↗

Liposomes modified with a synthetic Arg-Gly-Asp mimetic inhibit lung metastasis of B16BL6 melanoma cells.

Administration of large amounts of synthetic peptides based on the Arg-Gly-Asp (RGD) sequence has been shown to suppress tumor metastasis. To overcome the rapid degradation of peptides in the circulation, an RGD mimetic, L-arginyl-6-aminohexanoic acid (NOK), was synthesized and conjugated with phosphatidylethanolamine (PE) (NOK-PE) for liposomalization. Cell adhesion assays revealed that B16BL6 murine melanoma cells adhered to immobilized NOK-PE. This adhesion was inhibited by addition of either soluble RGDS or NOK at similar concentration in a dose-dependent manner. Administration of NOK-PE liposomes (equivalent to ca. 500 microg RGD peptides) via the tail vein completely inhibited lung colonization of B 16BL6 cells. The same dose of soluble NOK was not effective in inhibition of the tumor metastasis. In addition, injection of NOK-PE liposomes via the tail vein inhibited spontaneous lung metastasis of B16BL6 cells from the primary tumor site in the hind footpad. These results suggest that NOK, a structural mimetic of RGD, is capable of suppressing metastasis by blockade of the binding of the integrins present on tumor cells to the RGD-containing extracellular matrix.

Animals↗

Sucrose-diet feeding induces gene expression of heat shock protein in rat brain under stress.

Stress-induced hyperphagia is enhanced in the presence of sweets, particularly sucrose, which may act to attenuate stress. Recently, it was also reported that heat shock protein (HSP) may be involved in the defense against stress. To explore whether sucrose alters gene expression of HSP under stress, we determined the HSP mRNA levels in the hypothalamus, cerebellum, and cerebral cortex after restraint stress in sucrose-diet-fed rats. Competitive RT-PCR revealed that gene expressions of HSP27 in the cerebral cortex and cerebellum and of HSP70 in the cerebral cortex, hypothalamus, and cerebellum were induced by restraint stress under a sucrose-diet-fed condition. However, restraint stress by itself or sucrose diet alone did not induce expression of HSP27 or HSP70 mRNA in any of the three anatomical parts. It is suggested that sucrose facilitates the gene expression of HSP27 and HSP70 in brain after restraint stress, which may attenuate stress.

Animals↗

Lack of integrative control of heat production and heat loss after capsaicin administration.

Body temperature is usually regulated by opposing controls of heat production and heat loss. However, systemic administration of capsaicin activates heat loss and heat production simultaneously. Because capsaicin receptors are located mainly on primary sensory neurons and body temperature is regulated by the central nervous system, we investigated the brain mechanisms involved in these capsaicin-induced thermal responses. For this purpose, we examined the effects of spinalization and decerebration on these responses in artificially ventilated, urethane-anesthetized rats. Cervical spinal transection largely attenuated both responses, showing the critical involvement of the brain. Colonic temperature (Tc) did not change after the capsaicin administration to the spinalized rats. Decerebration between the hypothalamus and midbrain prevented the capsaicin-induced heat loss and enhanced the capsaicin-induced heat production. Consequently, Tc increased without a hypothermic period. The results show that capsaicin activates brainstem-controlled heat production and forebrain-controlled heat loss separately.

Animals↗

Clinico-radiological study of total knee arthroplasty after high tibial osteotomy.

The results of total knee arthroplasty (TKA) after high tibial osteotomy (HTO) and problems encountered during the operation were investigated in 23 patients (28 knees). HTO was performed by Coventry's method in 18 knees and by Maquet's method in 10 knees. The mean interval from HTO to TKA was 86 months (range, 3 to 288 months) and the mean follow-up period after TKA was 25 months (range, 6 to 116 months). Radiological evaluation showed that the proximal part of the tibia was shifted and tilted lateroinferiorly after HTO. Thus, a tendency to patella infera was observed. Lateral shift of the proximal part of the tibia was more marked with Maquet's method than with Coventry's method (P < 0.01). Posterior inclination of the tibial articular surface before TKA was smaller in the patients who gained a range of motion of 90 degrees or more after TKA than in those with less than 90 degrees (P < 0.05). In patients with 70 points or more on the three-university score after TKA, there was no change in the joint line level between before and after TKA, while the joint line was significantly lower after TKA in those with less than 70 points (P < 0.01). When TKA is done after HTO, various technical problems may influence the outcome, such as correction of the soft tissue imbalance, in addition to difficulties with patellar eversion and exposure of the proximal part of the tibia. The clinical results of TKA after HTO tend to be slightly inferior to those of primary TKA, probably because of such technical problems.

Aged↗

Disulfide bonds in rat cutaneous fatty acid-binding protein.

Unlike other fatty acid-binding proteins, cutaneous (epidermal) fatty acid-binding proteins contain a large number of cysteine residues. The status of the five cysteine residues in rat cutaneous fatty acid-binding protein was examined by chemical and mass-spectrometric analyses. Two disulfide bonds were identified, between Cys-67 and Cys-87, and between Cys-120 and Cys-127, though extent of formation of the first disulfide bond was rather low in another preparation. Cys-43 was free cysteine. Homology modeling study of the protein indicated the close proximity of the sulfur atoms of these cysteine pairs, supporting the presence of the disulfide bonds. These disulfide bonds appear not to be directly involved in fatty acid-binding activity, because a recombinant rat protein expressed in Escherichia coli in which all five cysteines are fully reduced showed fatty acid-binding activity as examined by displacement of a fluorescent fatty acid analog by long-chain fatty acids. However, the fact that the evolutionarily distant shark liver fatty acid-binding protein also has a disulfide bond corresponding to the one between Cys-120 and Cys-127, and that fatty acid-binding proteins play multiple roles suggests that some functions of cutaneous fatty acid-binding protein might be regulated by the cellular redox state through formation and reduction of disulfide bonds. Although we cannot completely exclude the possibility of oxidation during preparation and analysis, it is remarkable that a protein in cytosol under normally reducing conditions appears to contain disulfide bonds.

Amino Acid Sequence↗

Effects of fructose and glucose on plasma leptin, insulin, and insulin resistance in lean and VMH-lesioned obese rats.

To determine the influence of dietary fructose and glucose on circulating leptin levels in lean and obese rats, plasma leptin concentrations were measured in ventromedial hypothalamic (VMH)-lesioned obese and sham-operated lean rats fed either normal chow or fructose- or glucose-enriched diets (60% by calories) for 2 wk. Insulin resistance was evaluated by the steady-state plasma glucose method and intravenous glucose tolerance test. In lean rats, glucose-enriched diet significantly increased plasma leptin with enlarged parametrial fat pad, whereas neither leptin nor fat-pad weight was altered by fructose. Two weeks after the lesions, the rats fed normal chow had marked greater body weight gain, enlarged fat pads, and higher insulin and leptin compared with sham-operated rats. Despite a marked adiposity and hyperinsulinemia, insulin resistance was not increased in VMH-lesioned rats. Fructose brought about substantial insulin resistance and hyperinsulinemia in both lean and obese rats, whereas glucose led to rather enhanced insulin sensitivity. Leptin, body weight, and fat pad were not significantly altered by either fructose or glucose in the obese rats. These results suggest that dietary glucose stimulates leptin production by increasing adipose tissue or stimulating glucose metabolism in lean rats. Hyperleptinemia in VMH-lesioned rats is associated with both increased adiposity and hyperinsulinemia but not with insulin resistance. Dietary fructose does not alter leptin levels, although this sugar brings about hyperinsulinemia and insulin resistance, suggesting that hyperinsulinemia compensated for insulin resistance does not stimulate leptin production.

Animals↗

Magnetic resonance lymphography of profundus lymph nodes with liposomal gadolinium-diethylenetriamine pentaacetic acid.

Lymphography, especially imaging of profundus lymph nodes, is a useful tool for diagnosis of cancer metastases in lymph nodes. However, positive enhancement agents for magnetic resonance lymphography (MRL) have not been available, since the positive imaging agents so far introduced are low-molecular-weight materials that are not trapped in lymph nodes. For the purpose of improved positive enhanced MRL, we employed liposomes as carriers of a positive enhancer, gadolinium-diethylenetriamine pentaacetic acid (Gd-DTPA). Magnetic resonance (MR) imaging was performed after subcutaneous injection of Gd-liposomes into the hind feet of rabbits which had reactive enlarged retroperitoneal lymph nodes. As a result, not only popliteal but also profundus retroperitoneal lymph nodes were positively enhanced by Gd-liposomes, especially after 20 min massage of the injected sites. Gd-Liposomes containing dipalmitoylphosphatidylglycerol were more effective than Gd-liposomes containing palmityl-D-glucuronide, a type of long-circulating liposomes, suggesting that liposomal accumulation in lymph node is, at least partly, mediated by the trapping of liposomes by macrophages. These data show that liposomes modified with Gd-DTPA are effective for positive enhancement of both regional and profundus lymph nodes in MR lymphography.

Animals↗

Lack of integrative control of body temperature after capsaicin administration.

BACKGROUND: Body temperature is usually regulated by opposing controls of heat production and heat loss. However, systemic administration of capsaicin, the pungent ingredient of hot peppers, facilitated heat production and heat loss simultaneously in rats. We recently found that the capsaicin-induced heat loss and heat production occur simultaneously and that the biphasic change in body temperature is a sum of transient heat loss and long-lasting heat production. Moreover, suppression of the heat loss response did not affect capsaicin-induced heat production and suppression of heat production did not affect capsaicin-induced heat loss. These observations suggest the independent peripheral mechanisms of capsaicin-induced thermal responses. Thus, the capsaicin-induced thermal responses apparently lack an integrated control. METHODS: Male Wistar rats were maintained at an ambient temperature of 24 +/- 1 degrees C on a 12 h on-off lighting schedule at least for two weeks before the experiments. They were anesthetized with urethane (1.5 g/kg, i.p.) and placed on a heating pad, which was kept between 29 and 30 degrees C. Skin temperature(Ts) was measured with a small thermistor, which was taped to the dorsal surface of the rat's tail, to assess vasoactive changes indirectly. Colonic temperature(Tc) was measured with another thermistor inserted about 60 mm into the anus. O2 consumption was measured by the open-circuit method, and values were corrected for metabolic body size (kg0.75). Capsaicin (Sigma) was dissolved in a solution comprising 80% saline, 10% Tween 80, and 10% ethanol, and injected subcutaneously at a dose of 5 mg/kg. Each rat received a single injection of capsaicin because repeated administration of capsaicin renders an animal insensitive to the subsequent administration of capsaicin. Laminectomy was performed at the level of the first and second cervical vertebrae to expose the cervical spinal cord for sectioning. The brain was transected at 4-mm rostral from the interaural line with an L-shaped knife. RESULTS: After administration of capsaicin, O2 consumption increased from 13.5 +/- 0.4 mL/min/kg0.75 at 0 min to a peak of 15.9 +/- 0.4 mL/min/kg0.75 at 71 min and gradually declined but remained higher than the basal value until the end of the 4-h observation period. Ts also immediately increased from 27.7 +/- 0.2 degrees C to 31.9 +/- 0.3 degrees C at 39 min, and it returned to the baseline level within 90 min after the capsaicin administration. Tc initially decreased from 37.1 +/- 0.1 degrees C to 36.8 +/- 0.2 degrees C at 43 min and then gradually increased over the baseline level and remained at 37.6 +/- 0.2 degrees C until the end of the experiment. In spinalized rats, the capsaicin-induced increases in O2 consumption was largely attenuated, while the basal O2 consumption was similar to that of control rats. The basal Ts of spinalized rats was 32.4 +/- 0.3 degrees C, which was higher than that of control rats. Capsaicin increased Ts by less than 1 degree C, and Tc did not change after the capsaicin administration. O2 consumption of decerebrated rats was statistically higher than that of control rats after the injection of capsaicin. However, capsaicin did not increase Ts, showing a lack of a vasodilatory response. Decerebration between the hypothalamus and midbrain prevented the capsaicin-induced heat loss but not the heat production response. CONCLUSION: These results show that the capsaicin-induced heat production and heat loss are controlled separately by the brainstem and by the forebrain, respectively, and suggest that the body temperature regulation is performed without an integrative center.

Animals↗

Involvement of sympathetic activation and brown adipose tissue in calcitonin gene-related peptide-induced heat production in the rat.

We previously reported that microinjection of calcitonin gene-related peptide (CGRP; 1.6-8.0 pmol, 0.2-1.0 microliter) into the ventromedial hypothalamus (VMH) increased oxygen consumption (VO(2)), heart rate (HR), colonic temperature (T(co)), and temperature of interscapular brown adipose tissue (T(IBAT)). In the present study, we investigated whether the autonomic nervous system is involved in the CGRP-induced heat production in urethane-anesthetized rats. Intraperitoneal administration of the ganglion blocker hexamethonium (20 mg/kg) or the beta-adrenergic antagonist propranolol (5 mg/kg) suppressed the CGRP-induced increases in VO(2), HR, T(co), and T(IBAT). Pretreatment with the alpha-adrenergic antagonist phentolamine (5 mg/kg) partly attenuated the heat production response but did not affect the tachycardiac response. Bilateral sectioning of the nerves supplying the IBAT attenuated the CGRP-induced increase in T(IBAT) but not significantly that in VO(2) or T(co). In rats with adrenal demedullation, the effects of CGRP were similar to those in intact rats. These results suggest that the CGRP-induced heat production is mediated by the sympathetic nervous system and, at least in part, by the BAT through the alpha- and beta-adrenoceptors.

Adipose Tissue, Brown↗

Neuronal localization of a novel mosaic apolipoprotein E receptor, LR11, in rat and human brain.

A new type of mosaic protein was recently discovered as a new member of the low density lipoprotein receptor (LDLR) family, designated as LR11. The predominant expression of LR11 transcripts in brain tissue and the presence of elements found in neural adhesion molecules suggested a function(s) in the central nervous system (CNS). In order to gain insight about this complex receptor in the CNS, we raised a rabbit polyclonal antibody and examined immunohistochemically rat and human brain tissue. A strong LR11 immunoreactivity was found to be localized mainly in neurons throughout the brain in both species. A detailed mapping in the rat brain showed a distribution of LR11 immunoreactivity in a widespread population of neurons, though the intensity varied between different locations. The most prominent immunoreactivity was observed in neurons of the hippocampus, some nuclei of brain stem and Purkinje cells, whereas neurons of the thalamus and the hypothalamus showed weak staining. Uniquely, the single LR11 immunoreactive cytoplasmic puncta were observed in the proximity of apical dendrites, most conspicuously in the pyramidal neurons of hippocampus. In the human brain, one to four immunoreactive puncta were seen within individual neurons. The neuronal localization of LR11 and its unique association of cytoplasmic structure, presumably botrysome, may suggest the roles of LR11 in both the lipoprotein metabolism and intracellular trafficking in certain neuronal population of the CNS.

Adult↗

Bleomycin hydrolase immunoreactivity in senile plaque in the brains of patients with Alzheimer's disease.

Bleomycin hydrolase (BH), a cysteine protease belonging to the papain superfamily, is one of the candidate beta secretases. We performed immunohistochemical studies of Alzheimer's disease (AD) brains using an antibody to BH. Polyclonal antibody to BH immunostained neocortical neurons. The immunoreactivity was also found in senile plaques in AD. These results may suggest a role of BH in amyloid formation.

Alzheimer Disease↗

CGRP microinjection into the ventromedial or dorsomedial hypothalamic nucleus activates heat production.

Unilateral microinjection of calcitonin gene-related peptide (CGRP, 1.6 pmol; 0.2 microl) into the ventromedial hypothalamus (VMH) and dorsomedial hypothalamus (DMH) immediately increased oxygen consumption (VO2), heart rate (HR), colonic temperature (Tco), and temperature of interscapular brown adipose tissue (TIBAT) in urethane-anesthetized rats, whereas vehicle saline injection into the VMH and CGRP injection into other hypothalamic regions such as the preoptic area, lateral hypothalamic area, paraventricular nucleus, and bed nucleus of the stria terminalis had no effect. The effects of CGRP injection into the VMH were dose-dependent over the range of 0.016-1.6 pmol. CGRP administration to the lateral ventricle (LV) required 16-320 pmol to elicit similar degrees of responses that were observed after the injection into the VMH. The increase in TIBAT was always higher than that in Tco after CGRP injection. Injection of [Cys(ACM)2,7]hCGRPalpha, a selective CGRP2 receptor agonist, did not induce any thermogenic effects. Human CGRP8-37, a proposed CGRP1 receptor antagonist, by itself induced heat production responses with no signs of inhibition of CGRP-induced responses. Thus, the receptor subtype of the thermogenic effect of CGRP could not be determined by the available pharmacological tools. The present results show that centrally administrated CGRP induces heat production in the BAT specifically through the VMH or DMH.

Adipose Tissue, Brown↗

Radioimmunotherapy of human glioma xenografts in nude mice by indium-111 labelled internalising monoclonal antibody.

The potential of 111Indium (111In)-labelled internalising anti-integrin alpha 3 antibody GA17 in the radioimmunotherapy of human glioblastoma xenografts in nude mice was investigated. A radioisotope retention assay showed a rapid release of radioiodine from the glioblastoma cells after the binding of 125I-GA17, whilst 111In-GA17 was retained in the cells for a longer time period. The glioblastoma xenografts showed a high and prolonged uptake of 111In-GA17, and tumour uptake of 125I-GA17 was lower and decreased with time. In the mice which received two injections of 18.5 MBq of 111In-GA17, the growth of the subcutaneous tumour was significantly suppressed compared with the untreated group and mice injected with an 111In-labelled control antibody. These results indicate that GA17 was internalized into the glioblastoma cells and that 111In was retained within the cancer cells. The injection of a high-dose of 111In-GA17 can suppress the growth of tumour xenografts in nude mice.

Animals↗

Application of surface-coated liposomes for oral delivery of peptide: effects of coating the liposome's surface on the GI transit of insulin.

We prepared two kinds of surface-coated liposomes and investigated their potencies as oral dosage forms for peptide drugs by focusing on their effects on the gastrointestinal (GI) transit of drugs. The surface of the liposomes was coated with poly(ethylene glycol) 2000 (PEG-Lip) or the sugar chain of mucin (Mucin-Lip). As a model peptide drug, insulin was encapsulated in these liposomes. Coating the surface with poly(ethylene glycol) was found to reduce the transit rate of liposomes in the small intestine after oral administration to rats in vivo. Mucin-Lip was retained in the stomach longer than PEG-Lip or uncoated liposomes. The effect of surface coating on the intestinal transit of liposomes was determined by means of in situ single pass perfusion in the rat small intestine. Statistical moment analysis was applied to the outflow pattern of both liposomes and encapsulated insulin. The mean transit time (MTT) and deviation of transit time (DTT) in the intestinal tract were calculated. The MTT of PEG-Lip was much longer than those of uncoated liposomes and Mucin-Lip and was significantly shortened after removal of the intestinal mucous layer. These results indicated that PEG-Lip interacts strongly with the intestinal mucous layer, leading to its slow transit in the intestine. In contrast, coating the liposome's surface with mucin did not affect either the MTT or DTT of liposomes in the intestine. This result is in accordance with the in vivo observation that Mucin-Lip was highly retained in the stomach, but not in any region of the small intestine in vivo. Both the MTT and DTT values of insulin encapsulated in PEG-Lip and Mucin-Lip were almost the same as those of liposomes themselves, suggesting that surface-coated liposomes retained insulin in the intestinal tract. However, MTT and DTT of insulin were significantly shorter than those of uncoated liposomes because these liposomes degraded and released significant amounts of insulin during single pass perfusion. The ability of surface-coated liposomes, especially of PEG-Lip, to interact with the mucus layer and slow the transit rate in the GI tract is considered desirable for oral delivery of peptide drugs. Modification of the liposomal surface with appropriate materials, therefore, should be an effective method by which to achieve the oral delivery of peptide drugs.

Animals↗