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Biomedical subjects

M Kasai

Publications and source records attributed to M Kasai.

At least 91 records · Page 5Linked to original sources

The fas antigen is involved in thymic T-cell development as a costimulatory molecule, but not in the deletion of neglected thymocytes.

To determine whether the Fas antigen (Fas) is involved in thymic T-cell development, we introduced the lymphoproliferation (lpr) mutation into a T-cell receptor-alphabeta transgenic mouse (DO10 mouse) and generated 4 genotypes of T-cell receptor transgenic mice homozygous or heterozygous for the lpr mutation with selecting or nonselecting H-2 haplotype. Unexpectedly, we found that the homozygous Fas mutation (lpr/lpr) induced a marked reduction in CD4(+)CD8(+) double-positive (DP) thymocytes in mice with nonselecting background and that the thymus showed severe cortical atrophy. We also found that the homozygous Fas mutation inhibited the activation of DP thymocytes in the process of positive selection, as indicated by the lower levels of CD5 and CD69 expressions on DP thymocytes in lpr/lpr mice with both selecting and nonselecting background than those of lpr/+ mice. Furthermore, we found a significant skewing from CD4(+) to CD8(+) single-positive thymocytes in lpr/lpr mice with nonselecting background compared with that in the corresponding lpr/+ mice. Taken together, these results indicate that Fas is involved in thymic T-cell development, DP thymocyte generation and positive selection, as a costimulatory molecule but is not involved in the deletion of neglected thymocytes.

Animals↗

Clinical significance of major and minor bcr/abl chimeric transcripts in essential thrombocythemia.

BACKGROUND: Contradictory results have been reported in terms of detecting bcr/abl transcripts in patients with essential thrombocythemia. The aim of this study was to investigate whether the bcr/abl transcript could be found in patients with essential thrombocythemia (ET). METHODS: The bcr/abl transcript was amplified by the RT-nested PCR method using RNA extract from leukocytes taken from 14 essential thrombocythemia patients. The amplified DNAs were electrophoresed in 1% agarose and visualized with ethidium bromide. The DNA bands associated with the bcr/abl transcript were then extracted and followed by DNA sequence analysis. RESULTS: Major bcr/abl transcripts of the b3a2 type and minor ones of the e1a2 type were found in one and two ET patients, respectively. The incidence of bcr/abl transcripts was 21.4% (three of 14 patients). CONCLUSION: Our experiments confirmed that bcr/abl transcripts are present in some patients with essential thrombocythemia.

Adult↗

Thalamotomy caused by cardioversion in a patient treated with deep brain stimulation.

Deep brain stimulation (DBS) has been applied mainly for the treatment of intractable pain and involuntary movement disorders. Based on the rising numbers of patients undergoing DBS therapy, the possibility of emergent application of cardioversion for the treatment of occasional severe arrhythmia in DBS patients has also increased. However, there has been insufficient discussion about cardioversion in DBS patients. We employed a radiofrequency receiver that transmits to the brain impulses provided by an external generator through an antenna applied to the skin in front of the receiver. We experienced a patient who displayed almost complete cessation of his action tremor with thalamic stimulation. He also developed central dysesthetic pain and showed complete disappearance of his action tremor, even without stimulation, following successful application of cardioversion. It is considered that slight changes in the high-voltage electrical current or high-voltage electrical current spread induced central dysesthetic pain and almost identical effects to thalamotomy. We report for the first time a case of thalamotomy induced by cardioversion in a DBS patient. Clearly, we need to bear in mind that cardioversion has the capability to cause brain lesions in DBS patients with a radiofrequency receiver implanted subcutaneously at the anterior chest wall.

Atrial Fibrillation↗

Effects of anterodorsal pallidal stimulation on gait freezing (Kinesia paradoxa) in Parkinson's disease.

The results of a double-blind evaluation of the effects of internal globus pallidus (GPi) stimulation in 7 patients with advanced Parkinson's disease are summarized. The evaluation was performed 6-8 months after surgery while the patients were on medication with an optimal dose and schedule. The stimulation was turned off for at least 12 h. It was turned on in the morning (or maintained turned off), and the best and worst scores during their daytime activity were recorded as the on-period and off-period scores, respectively. A significant reduction in the total score on part III of the Unified Parkinson's Disease Rating Scale was induced by GPi stimulation at the off-period (-57%) as well as the on-period (-36%). Clinically important improvement was also achieved in severe gait freezing (kinesia paradoxa) in 2 patients when stimulation was applied to the anterodorsal portion of the GPi. Such an effect was observed during unilateral stimulation of the right side alone.

Aged↗

Bioavailable acyl-CoA: cholesterol acyltransferase inhibitor with anti-peroxidative activity: synthesis and biological activity of novel indolinyl amide and urea derivatives.

We synthesized a series of indoline derivatives with an amide or urea moiety and examined their inhibitory effects on acyl-CoA:cholesterol acyltransferase (ACAT) activity, lipid-peroxidation and serum cholesterol levels in experimental animals. Among the derivatives synthesized, a series of N-(1-alkyl-4,6-dimethylindolin-7-yl)-2,2-dimethylpropanamides++ + potently inhibited rabbit intestinal ACAT activity and lipid-peroxidation of rat brain homogenate. The effect on ACAT activity was related to the length of the alkyl chain at the 1-position of indoline. N-(4,6-Dimethyl-1-octylindolindolin-7-yl)-2,2-dimethylpropanami de hydrochloride (55) showed inhibitory effects on intestinal and hepatic ACAT activity slightly weaker than those of YM-750, and an inhibitory effect on low density lipoprotein (LDL)-peroxidation similar to that of probucol. Compound 55 also reduced serum cholesterol at 10 mg/kg/d in hyperlipidemic rats and 20 mg/kg/d in normolipidemic hamsters. The plasma concentration of 55 reached 716 ng/ml in dogs (10 mg/kg, p.o.), which is an effective concentration against hepatic ACAT activity and LDL-peroxidation. In conclusion, compound 55 is a novel bioavailable ACAT inhibitor with anti-peroxidative activity and is thus a promising anti-atherosclerotic and anti-hyperlipidemic drug. Indoline proved to be a useful pharmacophore for molecular design of new anti-peroxidative drugs.

Amines↗

Dietary conjugated linoleic acid increases immunoglobulin productivity of Sprague-Dawley rat spleen lymphocytes.

The dietary effects of conjugated linoleic acid (CLA) on Ig production of Sprague-Dawley rats were examined at various doses such as 0 (control), 0.05, 0.10, 0.25, and 0.50%. CLA increased IgG and IgM production of spleen lymphocytes in a dose-dependent manner, and these levels reached a plateau at 0.25%. IgA production was not detected in the control group, while it was detected in all CLA-fed groups and IgA productivity of spleen lymphocytes increased in a dose-dependent manner at the doses from 0.05 to 0.50%. Dietary CLA did not affect serum Ig levels. The major fatty acid composition of spleen lymphocytes was not affected by dietary CLA, which itself was hardly incorporated into the cells. In an in vitro assay, the effects of CLA and its oxidative derivatives, furan type fatty acids, on Ig productivity were also examined. As a result, 100 microM CLA suppressed Ig production of spleen lymphocytes and the degree was as follows IgA > IgG > IgM. Each CLA isomer and the furan type fatty acids also suppressed Ig production but the degree was weaker than the mixture of CLA isomers. In this result, dietary CLA increased Ig productivity of spleen lymphocytes in vivo.

Animals↗

Conjugated linoleic acid supplementation reduces adipose tissue by apoptosis and develops lipodystrophy in mice.

Conjugated linoleic acid (CLA) is a naturally occurring group of dienoic derivatives of linoleic acid found in beef and dairy products. CLA has been reported to reduce body fat. To examine the mechanism(s) of CLA reduction of fat mass, female C57BL/6J mice were fed standard semipurified diets (10% fat of total energy) with or without CLA (1% wt/wt). Terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick endlabeling (TUNEL) and DNA fragmentation analysis revealed that fat-mass decrease by CLA was mainly due to apoptosis. Tumor necrosis factor (TNF)-alpha and uncoupling protein (UCP)-2 mRNA levels increased 12- and 6-fold, respectively, in isolated adipocytes from CLA-fed mice compared with control mice. Because it is known that TNF-alpha induces apoptosis of adipocytes and upregulates UCP2 mRNA, a marked increase of TNF-alpha mRNA with an increase of UCP2 in adipocytes caused CLA-induced apoptosis. However, with a decrease of fat mass, CLA supplementation resulted in a state resembling lipoatrophic diabetes: ablation of brown adipose tissue, a marked reduction of white adipose tissue, marked hepatomegaly, and marked insulin resistance. CLA supplementation decreased blood leptin levels, but continuous leptin infusion reversed hyperinsulinemia, indicating that leptin depletion contributes to the development of insulin resistance. These results demonstrate that intake of CLA reduces adipose tissue by apoptosis and results in lipodystrophy, but hyperinsulinemia by CLA can be normalized by leptin administration.

Adipose Tissue↗

Interpersonal constructs of pregnant married women during pregnancy and postpartum period as perceptions of family members.

Interpersonal constructs and their dynamics in pregnant women during the perinatal period were investigated using a symbol figure placement technique and a semantic differential test. 16 pregnant women represented their interpersonal perceptions of family members (husband, mother, father, mother-in-law, father-in-law, and child) at four different times (34 weeks of pregnancy, 37 weeks of pregnancy, and 3 days and 30 days after delivery). Two tests indicated positive perceptions of the pregnant women (cohesion, confidence, and dependence) of family members changed over the perinatal period and their interpersonal perceptions of self-husband and self-child were the most positive next to self-mother. Based upon these findings, the support system for pregnant women was discussed.

Adult↗

Randomized comparison of mobilization kinetics of circulating CD34+ cells between biweekly CHOP and dose-escalated CHOP with the prophylactic use of lenograstim (glycosylated rHuG-CSF) in aggressive non-Hodgkin's lymphoma. The lenograstim/Lymphoma Study Group.

High-dose chemotherapy with autologous hematopoietic stem cell transplantation has been expected to result in a promising outcome in high risk aggressive non-Hodgkin's lymphoma (NHL). However, it remains unknown what type of initial chemotherapy is optimal, especially regarding progenitor cell mobilization. Sixty-three untreated patients with aggressive NHL in a high risk group were randomized to either a biweekly arm with 8 cycles of standard CHOP or 6 cycles of the dose-escalated CHOP arm with cyclophosphamide 1.5 g/m2 and doxorubicin 70 mg/m2. Lenograstim (glycosylated rHuG-CSF 2.0 microg/kg/day) was administered daily from day 3 to patients in both arms. The mobilization effect of the two regimens on circulating CD34+ cells was evaluated. Twenty-seven of 29 patients in the biweekly CHOP arm and 33 of 34 patients in the dose-escalated CHOP were assessable. Dose-escalated CHOP yielded a significantly higher number of circulating CD34+ cells in the first cycle compared with biweekly CHOP (p=0.05). The peak number of circulating CD34+ cells with biweekly CHOP did not significantly change from cycle to cycle; however, in dose-escalated CHOP, the peak number of circulating CD34+ cells mobilized after the fifth and sixth cycle was lower than after the first cycle (p=0.07 and 0.009, respectively). Routine conventional-dose chemotherapy and low-dose G-CSF can mobilize sufficient CD34+ cells in patients with aggressive NHL. The mobilization kinetics of circulating progenitor cells in patients with aggressive NHL is dependent on the dosage and schedule of CHOP.

Adjuvants, Immunologic↗

Improving effects of the extracts from Eugenia uniflora on hyperglycemia and hypertriglyceridemia in mice.

EtOH (70%) extracts from the leaves of Eugenia uniflora were separated into six fractions with different polarity and molecular size, i.e. NP-1-NP-6. In an oral glucose tolerance test, NP-1 and 4 inhibited the increase in plasma glucose level. However, in an intraperitoneal glucose tolerance test, such an inhibitory effect was not seen. Thus, the effects of NP-1 and 4 were apparently due to the inhibition of glucose absorption from the intestine. In a sucrose tolerance test, all fractions inhibited the increase in plasma glucose level. In an oral corn oil tolerance test, NP-3 and 4 showed an inhibitory effect on the increase in plasma triglycerides level. On the other hand, NP-3, 4, 5 and 6 inhibited maltase and sucrase activities and all fractions except for NP-1 showed an inhibitory effect on lipase activity dose-dependently. The inhibition of the increase in plasma glucose level by NP-3, 4, 5 and 6 in the oral sucrose tolerance test and the inhibition of the increase in plasma triglycerides by NP-3 and 4 in the oral corn oil tolerance test were apparently due to the inhibition of the decomposition of carbohydrates and fats in the intestine, respectively.

Animals↗

Regulation of the ryanodine receptor calcium release channel: a molecular complex system.

Skeletal muscle contraction is regulated by Ca(2+) released from the sarcoplasmic reticulum (SR). The Ca(2+) release channel in the SR has been identified as the ryanodine receptor (RyR). Recently, it was found that the RyR is a large transmembrane protein that is regulated by many intrinsic factors. In this review, we mainly summarize our experimental results. We will first show that calsequestrin and the DIDS-binding 30-kDa protein work as intrinsic factors and regulate the RyR Ca(2+) release channel. Next, the DIDS-binding 30-kDa protein was identified as the ADT/ATP translocase (AAT) present in mitochondria, based on a cDNA analysis. This result shows that AAT is bifunctional and works as a transporter protein in mitochondria and as a regulator of Ca(2+) release in the SR. From these results, we propose a model in which calsequestrin, the DIDS-binding 30-kDa protein, and junctin form a ternary complex that regulates the RyR Ca(2+) release channel through interactions with triadin.

Journal Article↗

Endogenous nerve growth factor increases the sensitivity to bradykinin in small dorsal root ganglion neurons of adjuvant inflamed rats.

To examine the cellular mechanisms of hyperalgesia observed in an adjuvant-induced chronic inflammation, the role of nerve growth factor (NGF) in the response to bradykinin (BK) in small neurons from dorsal root ganglia (DRG) was studied via intracellular recordings. After 2 days of cultivation in the absence of NGF, the percentage of neurons from adjuvant-inflamed (AI) rats which were depolarized by BK (53%) was significantly higher than that in neurons from intact rats (13%). This higher percentage in AI rat neurons was significantly reduced after culturing with anti-NGF (17%), but was not influenced by the addition of NGF (57%). The present result demonstrated that sensitivity to BK of DRG neurons from AI rats is increased due to the action of endogenous NGF, suggesting that plastic change in primary afferent neurons caused by NGF may be one of the mechanisms involved in hyperalgesia.

Action Potentials↗

Inhibition of the ryanodine receptor calcium channel in the sarcoplasmic reticulum of skeletal muscle by an ADP/ATP translocase inhibitor, atractyloside.

The effects of an inhibitor of ADP/ATP translocase (AAT) mainly expressed in the mitochondria inner membrane, atractyloside (ATR), on the gating property of the Ca2+ channels in the sarcoplasmic reticulum (SR) vesicles from the rabbit skeletal muscle were investigated using ion flux measurement and single channel recording. At 10 microM of cytoplasmic Ca2+, ATR decreased the rate constant of choline+ influx through the Ca2+ channels up to about 60% and perfectly inhibited about half the population of single Ca2+ channels incorporated into planar bilayers. Furthermore, the inhibition of the Ca2+ channels by ATR was effective at lower Ca2+. These results support the previous results that AAT exists in the skeletal muscle SR and plays a key role in the Ca2+ mobilization of the skeletal muscle cell [Yamaguchi, N., and Kasai, M. (1998) Biochem. J. 335, 541-547], and the number of Ca2+ channels regulated by AAT is thought to depend on the cytoplasmic Ca2+ concentration.

Animals↗

The DNA binding activity of Translin is mediated by a basic region in the ring-shaped structure conserved in evolution.

DNA binding proteins, for the most part, function as dimers or tetramers which recognize their target sequences. Here we show that Translin, a novel single-stranded DNA end binding protein, forms a ring-shaped structure conserved throughout evolution and that this structure is responsible for its DNA binding activity. Point mutations at Leu184 and Leu191 in the leucine zipper motif of human Translin resulted in loss of the multimeric structure and abrogation of DNA binding. Point mutations at R86, H88, H90 to T86, N88, N90 in one of the basic regions, however, completely inhibited the DNA binding activity without affecting the multimeric structure. These results support the view that the DNA binding domain of Translin is formed in the ring-shaped structure in combination with its basic region (amino acids 86-97) polypeptides.

Amino Acids↗

Viable spermatozoa can be recovered from refrigerated mice up to 7 days after death.

To develop a model for utilizing germ cells collected from dead animals, male mice were euthanized and refrigerated for various periods, and the viability of the epididymal spermatozoa was examined by in vitro fertilization, embryo culture, and embryo transfer. Higher proportions of fresh oocytes were fertilized when males had been stored at 4-6 or 8-10 degrees C than at 0 degrees C. By partially dissecting the zona of freshly ovulated oocytes, spermatozoa from ICR male mice could fertilize oocytes (21% fertilization rate) after being stored for 5 days at 4-6 degrees C, and spermatozoa from BDF1 male mice could fertilize oocytes (39%) after being stored for 7 days at 4-6 degrees C. The resulting two-cell embryos had the ability to develop into expanded blastocysts in culture (81-100%) and into live young after transfer (34-47%). With further refinement of this system, it should be applicable not only for rescuing valuable genetic variants in laboratory animals or livestock animals but also for wild species in the future.

Animals↗

Restoration of resistance to osmotic swelling of vitrified mouse embryos by short-term culture.

In cryopreservation of mammalian embryos, embryos can be injured by osmotic swelling during removal of the cryoprotectant after warming. We have shown that vitrified embryos are more sensitive to osmotic swelling than fresh cells but that sensitivity is reduced or abolished if vitrified cells are cultured for a short period before subjecting them to hypotonic stress. In the present study, we examined the mechanism by which vitrified two-cell mouse embryos regain their resistance to osmotic swelling by culturing the embryos in the presence of various inhibitors before hypotonic treatment. New synthesis of RNA and proteins during culture was not required for regaining resistance to osmotic swelling because actinomycin D and cycloheximide failed to inhibit restoration. Inhibitors of polymerization of microfilaments and microtubules (cytochalasin B and demecolcine, respectively) also did not affect restoration of resistance to osmotic swelling, suggesting that rearrangement or repolymerization of cytoskeletal components is not involved in this process. On the other hand, brefeldin A and concanamycin A, which inhibit intracellular vesicular transport, strongly suppressed restoration of resistance. These results suggest that the intracellular vesicular transport system plays a crucial role in restoration of resistance of vitrified embryos to osmotic swelling during short-term culture.

Animals↗

A clonal culture assay for human cord blood lymphohematopoietic progenitors.

We describe a two-step clonal culture assay system for human lymphohematopoietic progenitors present in umbilical cord blood which are capable of differentiation along both myeloid and B-lymphoid lineages. Human cord blood CD34+ cells were plated in methylcellulose in the presence of stem cell factor (SCF), granulocyte-colony stimulating factor (G-CSF), interleukin (IL)-7, and the murine stroma cell line, MS-5. The growing primary colonies were individually examined for their potentials to differentiate along both myeloid and B-lymphoid lineages by reculturing aliquots of the primary colonies in methylcellulose culture containing IL-3, G-CSF and erythropoietin (Epo), and on a monolayer of MS-5 in the presence of SCF and G-CSF. Approximately 10-15% of the primary colonies generated various combinations of myeloid cells and CD19+ sIgM+ cells. Subsequent studies using micromanipulated single CD34+ cells unequivocally demonstrated the clonal origin of the lymphohematopoietic progenitors. This culture system should prove valuable for elucidation of the mechanisms regulating early stages of human lymphohematopoiesis.

Animals↗