A locus responsible for arrest of spermatogenesis is located on rat Chromosome 12.
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Biomedical subjects
Publications and source records attributed to K Kikuchi.
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BACKGROUND: A new endoscopic classification of gastroesophageal reflux disease (GERD) has been proposed, and the term mucosal break has been introduced to describe mucosal damage. This new classification was evaluated by endoscopists with different levels of experience. METHODS: Fifty endoscopic photographs for each of 20 randomly selected patients with GERD were assessed retrospectively by three groups of seven endoscopists classified by experience: group 1 (100 to 500 procedures), group 2 (500 to 3000), and group 3 (more than 3000). The new classification was modified by adding grade 0 to describe healed mucosal breaks, so that there were five grades. All photographs were assessed twice at an interval of more than 1 week, and kappa statistics were used to determine observer variation. RESULTS: Interobserver variation within group 3 (kappa = 0.39, n = 21) and between groups 3 and 2 (kappa = 0.36, n = 49) was significantly different (p < 0.01) from that between groups 3 and 1 (kappa = 0.26, n = 49). Intraobserver variation in group 1 (kappa = 0.39, n = 7) was significantly different (p < 0.01) from that in group 2 (kappa = 0.51, n = 7) and group 3 (kappa = 0.54, n = 7). CONCLUSIONS: Observer variation depends on level of endoscopic experience. Only experienced endoscopists should use the new classification for grading of GERD.
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The distribution and fatty acid composition of cardiac choline and ethanolamine glycerophospholipids in both migratory and demersal fish and bovine and pig were determined. Phospholipid contents (mg/g heart) were 4.7-9.4 in demersal fish, 14.0-16.5 in migratory fish, and 16.8-20.6 in mammals. Phosphatidylcholine (PC) and phosphatidylethanolamine (PE) were the major components in the phospholipid fraction. Diacyl forms represented 50.2-88.1% of PC in all animals, while plasmalogens comprised 47.0% in bovine, 8.2% in pig and 6.2-7.2% in four species of fish. In PE, plasmalogens varied from 45.0% in bovine and 57.9% in pig to 26.1-29.7% in fish. This glycerophospholipid subclass was identified as containing higher proportions of polyunsaturated fatty acids (PUFAs; 20:4, 20:5, and 22:6) than found in alkylacyl- and diacyl-glycerophospholipids. Qualitative and quantitative differences were found in PE-plasmalogen between land mammals and fish, especially with regard to n-3 fatty acid composition, but no significant difference was noted between migratory and demersal fish.
Thyrsiferyl 23-acetate (TF-23A), a cytotoxic compound from marine red alga, induced a rapid cell death in various leukemic T- and B-cell lines. During incubation of Jurkat cells with TF-23A, condensation and fragmentation of nuclei occurred and clusters composed of uneven small cellular particles were formed. Concentration- and time-dependent DNA fragmentation was also induced by the incubation of the cells with TF-23A. These results demonstrate that the TF-23A-induced cell death follows a typical apoptotic process. The TF-23A-induced apoptosis was prevented by fetal calf serum and insulin, but not by EGF or PDGF. TF-23A and its several analogous compounds showed apoptosis-inducing activity. However, only TF-23A out of these compounds showed an inhibitory activity for protein phosphatase 2A, PP2A. These results strongly suggest that a structure of TF-23A involved in induction of apoptosis is different from that involved in the PP2A inhibition.
Culturing of matured porcine oocytes in vitro results in the enhancement of their cytoplasmic ability for oocyte activation (so-called ageing), although they are arrested at metaphase II. The enhanced ability for oocyte activation is related to decreased activity of the maturation promoting factor (MPF). In the present study we clarified the molecular mechanism of MPF inactivation during ageing, especially the changes in the phosphorylation status of p34cdc2, a catalytic subunit of MPF, compared with that in fertilised oocytes. The MPF activity decreased gradually when maturation culture was prolonged from 36 to 72 h, confirming the decreasing MPF activity in aged oocytes. The activity of 48 h matured oocytes also decreased after in vitro fertilisation. Immunoblotting of p34cdc2 with anti-PSTAIRE antibody revealed that the culturing of matured oocytes induces a gradual increase in pre-MPF, which is a p34cdc2 and cyclin B complex inactivated by phosphorylation at the inhibitory phosphorylation site of p34cdc2. In contrast, pre-MPF decreased after fertilisation, indicating the degradation of cyclin B. These results suggest that the molecular mechanisms of inactivation of MPF are different between oocyte activation and ageing, and that the mechanism during ageing might be based on the inhibitory phosphorylation of p34cdc2, whereas that of oocyte activation is based on the degradation of cyclin B.
Arginine vasopressin (AVP) is known to contribute significantly to the pathogenesis of congestive heart failure and hypertension. However, little is known about its effect on the myocardium. The present study was conducted to determine whether AVP directly increases the rate of protein synthesis in isolated, perfused rat heart, and, if so, the mechanism involved. Elevation of the aortic pressure from 60 to 120 mmHg in perfused rat heart accelerated the rate of protein synthesis which was associated with increases in cAMP levels and Ca2+ uptake. AVP (100 microM) increased Ca2+ uptake and accelerated the rate of protein synthesis without a change in cAMP concentration. The latter events were inhibited by OPC-21268 (100 microM), a selective V1 receptor antagonist, or amiloride (100 microM), an inhibitor of the Na+/H+ exchange system. However, increases in cAMP concentrations, Ca2+ uptake, and rates of protein synthesis associated with the elevated aortic pressure were not inhibited by amiloride. Thus, AVP directly increased the rate of protein synthesis via the V1 receptor that is sensitive to amiloride, a mechanism that differs from the cAMP-dependent mechanism that is responsible for the cardiac hypertrophy induced by pressure overload.
This study examined the effects of acute high-intensity and moderate-intensity exercise on Ca2+-stimulated adenosine triphosphatase (ATPase) activity and the Ca2+ and ATP dependence of Ca2+-ATPase of the sarcoplasmic reticulum (SR) in the soleus muscle. The rats were run on 10% grade at 50 m min(-1) or 25 m min(-1) until fatigued (avg. time to exhaustion 2.8 and 87.7 min, respectively). The catalytic activities of SR Ca2+-ATPase were significantly depressed immediately after both types of exercise. Kinetic analyses demonstrated that the Ca2+ affinity of Ca2+-ATPase was elevated by both types of exercise adopted in the present investigation whereas the increase in the ATP affinity was brought about by only high-intensity exercise. These results suggest that exhaustive exercise may induce in slow-twitch muscle fibre the environmental changes, which adversely affect SR Ca2+-ATPase activity and can overcome the positive influence arising from the increase in the Ca2+ and/or ATP affinities of SR Ca2+-ATPase.
We established a monoclonal antibody, 3G12 (IgG1), with antiproliferative effects on a human T-cell leukaemia cell line, SUP-T13. Among haematolymphoid cell lines, 3G12 reacted with most T-cell lines, Epstein-Barr transformed B-cell lines, some myelomonocytic cell lines and, most strongly with an anaplastic large cell lymphoma (ALCL) cell line, Karpas 299. The cell panel reactive with 3G12 was similar, but not identical, to that of the anti-CD30 antibody Ber-H2. 3G12 induced Fas-independent apoptosis in SUP-T13 and it also induced growth-inhibition in a limited number of other cell lines, but not Karpas 299. Immunohistochemical studies on paraffin-embedded tissue specimens demonstrated that 3G12 reacted with most CD30-positive ALCL cases and some T-cell lymphomas and some Hodgkin's lymphomas, but not with B-cell lymphomas or non-haematogeneic tumours. The immunoprecipitation study with 3G12 demonstrated a major band of 200 kD and a minor band of 100 kD, which were different from CD30. Thus 3G12 defines a novel antigen that shares a similarity to CD30 in terms of distribution among haemopoietic cells. The data suggest that the 3G12-defined antigen, designated Hal-1, is important as a marker for ALCL and may play a role in its pathogenesis.
We report two Japanese patients with dermatomyositis whose serum hyaluronate levels were correlated with their disease activities. The diagnosis of one patient was primary idiopathic dermatomyositis, and that of the second patient was dermatomyositis associated with neoplasia. The serum hyaluronate level of the former patient was decreased by systemic corticosteroid therapy, and that of the latter patient decreased following the surgical resection of mammary carcinoma and subsequent chemotherapy. The disease activity of each patient was greatly improved after these therapies. The longitudinal measurement of serum hyaluronate concentration may be useful to estimate the disease activity of patients with dermatomyositis whose initial serum levels of hyaluronate are elevated.
Systemic sclerosis (SSc) is a generalized connective tissue disease which is characterized by the presence of several autoantibodies. To determine the prevalence and antigen specificity of anti-U1RNP antibodies (anti-U1RNP) in patients with SSc, serum samples from 223 patients with SSc, 117 patients with systemic lupus erythematosus (SLE), 18 patients with mixed connective tissue disease (MCTD) and 40 healthy control subjects were examined by indirect immunofluorescent analysis (IIF), double immunodiffusion, and immunoblotting using nuclear extract of HeLa cells. Eighteen of the 223 (8%) serum samples from patients with SSc were shown to be positive for anti-U1RNP. The frequency of anti-U1RNP positivity in limited cutaneous SSc (14%) was significantly higher than that in those with diffuse cutaneous SSc (3%). Anti-Sm antibodies were detected in patients with SLE positive for anti-U1RNP, but not in those with SSc positive for anti-U1RNP or those with MCTD. Immunoblotting demonstrated that anti-70-kD antibodies were detected more often in patients with SSc positive for anti-U1RNP and in those with MCTD than in those with SLE. Furthermore, anti-U1RNP was closely correlated with pulmonary fibrosis and joint involvement in patients with SSc. These results suggest that anti-70-kD antibodies are useful in the classification of patients with anti-U1RNP.
We have recently isolated two cDNAs encoding two forms of transmembrane and cytosolic protein tyrosine phosphatase epsilon (PTPepsilon). In this study, the 5' end of the rat PTPepsilon gene was isolated and characterized. Transmembrane PTPepsilon (PTPepsilonM) and cytosolic PTPepsilon (PTPepsilonC) were encoded by a single gene. 5' RACE analysis and RNase protection assay showed that the mRNA of each PTPepsilon isoform was transcribed from different promoters. The putative promoter regions of two alternative first exons lacked a TATA box, but contained potential recognition sites for several transcription factors. Reverse transcription PCR analysis revealed that PTPepsilonC mRNA was up-regulated during interleukin 6-induced differentiation of murine leukemia M1 cells, whereas PTPepsilonM mRNA was down-regulated. With the use of luciferase as a reporter gene, the promoter activities of the 5'-flanking regions were examined during phorbol myristate acetate-induced differentiation of HL-60 cells. In the differentiated HL-60 cells, the activity of the PTPepsilonC promoter, but not that of PTPepsilonM, was dramatically elevated. Furthermore, we found that PTPepsilonC mRNA is highly expressed in mouse peritoneal macrophages and enhanced during activation by lipopolysaccharide. These results suggest that the different promoters control expression of PTPepsilon isoforms during the differentiation and/or activation of macrophages.
Anti-histone antibodies have been detected in the sera of patients with various autoimmune diseases. The existence of anti-histone antibodies in patients with polymyositis/dermatomyositis, however, has not been reported. We found anti-histone antibodies in eight (17%) of 46 sera from patients with polymyositis/dermatomyositis by an enzyme-linked immunosorbent assay. One serum was positive for both IgG anti-histone antibodies and IgM anti-histone antibodies. Six sera were positive only for IgG anti-histone antibodies. One serum was positive only for IgM anti-histone antibodies. An indirect immunofluorescence analysis using HEp-2 cells as the substrate showed that all sera positive for anti-histone antibodies produced homogeneous nuclear fluorescence. This immunofluorescence pattern disappeared after absorption of anti-histone activity with total histones. An immunoblotting analysis demonstrated that the anti-histone antibodies were predominantly directed against histone H1 in all seven sera with IgG anti-histone antibodies. Weak reactivity with H2B and H4 were also found in three sera from the patients with polymyositis/dermatomyositis. Sera from two patients with polymyositis/dermatomyositis displayed anti-H2A and H3 activity. One of the two sera showed IgM anti-histone antibodies in the enzyme-linked immunosorbent assay reacted with H1, H2A, H2B, H3, and H4, whereas the other serum reacted with no fractions of total histones. The activity of anti-histone antibodies disappeared in immunoblotting after absorption with total histones. All of the patients with anti-histone antibodies were free from lung fibrosis or internal malignancies. Thus, our data indicate that the presence of anti-histone antibodies is classified as one of the serologic abnormalities observed in polymyositis/dermatomyositis.
Infectious disease caused by methicillin-resistant Staphylococcus aureus (MRSA) often develops in compromised hosts in whom a single administration of vancomycin is usually not effective. We assessed the combined antimicrobial effects of vancomycin and imipenem against MRSA growth in vitro as well as in vivo using a neutropenic mouse thigh infection model. Synergic and additive effects of the two drugs were observed for 34 and two, respectively, of the 36 clinical isolates of MRSA, as determined by the chequerboard method. For MRSA strain N, postantibiotic effect (PAE) values obtained in vitro were 1.9-2.6 h for vancomycin and 2.6-3.5 h for imipenem, while higher values of 2.7-4.4 h were obtained for the combination of vancomycin and imipenem. In vivo, a single administration of vancomycin at 1 or 2 mg/kg or of imipenem/cilastatin at 5 mg/kg produced growth curves similar to those in controls, with a suppressive time of 0 h. Imipenem/cilastatin at 10 mg/kg demonstrated a suppressive time of 3.1 h. Combinations of vancomycin 1 mg/kg plus imipenem/cilastatin 5 mg/kg, vancomycin 1 mg/kg plus imipenem/cilastatin 10 mg/k and vancomycin 2 mg/kg plus imipenem/cilastatin 10 mg/kg demonstrated suppressive times of 2.9, 3.9 and 5.2 h, respectively, indicating that combined administration was effective. Simultaneous administration of the two drugs was more effective than sequential administration. Thus, combined administration of vancomycin and imipenem/cilastatin proved effective for MRSA in vivo. The combined effects seemed to be synergic, since a single administration of either drug did not show anti-MRSA effects at the doses used in the combined regimen.
BACKGROUND: Intra-arterial chemotherapy with concurrent pelvic radiotherapy as a bladder-sparing regimen for invasive bladder cancer is highly promising for selected patients. However, lower urinary tract function after this treatment has not been fully investigated. METHODS: The urodynamic effects of intra-arterial chemotherapy with concurrent pelvic radiotherapy were retrospectively evaluated in 14 patients with organ-confined invasive bladder cancer. The post-treatment urodynamic findings were compared with the pretreatment ones (n = 7), and a comparison was made between the serial urodynamic findings after the treatment in another seven patients who were able to undergo the pretreatment urodynamic study (UDS). RESULTS: The median follow-up period up to the latest UDS was 34 months. Of the 14 patients, the latest UDS revealed some storage dysfunctions in 11 (79%) and some emptying dysfunctions in three (23%). Uninhibited detrusor contraction and decreased bladder compliance were recorded in 29 and 43% at the pretreatment UDS and approximately 50-60 and 20-60% in the serial follow-up studies, respectively (n = 7). Impaired detrusor contractility lasted in one patient. In the seven patients without the pretreatment UDS, decreased maximum cystometric capacity and decreased compliance were recorded in approximately 50-60 and 20-60% at the serial UDS, respectively. Detrusor contractility was aggravated in one patient and completely lost in one with time. CONCLUSIONS: The urodynamic findings indicate that the bladder-sparing regimen might result in perpetuating the lower urinary tract dysfunctions due to invasive bladder cancer itself and/or transurethral surgery and might injure the infrasacral autonomic nerves and the bladder itself.
The objective of this study was to evaluate the developmental ability of early porcine embryos produced in vitro and transferred to recipient gilts. Porcine cumulus-oocyte complexes were matured in modified North Carolina State University-37 solution for 44-46 h (in vitro maturation, IVM). In vitro fertilization (IVF) was performed with frozen-thawed epididymal spermatozoa. Inseminated oocytes were cultured in vitro (IVC) for 0, 24, or 48 h in modified NCSU-37 solution. Embryos were surgically transferred to the oviducts of recipients in which estrus had been synchronized with eCG and hCG. On the 29th day post-IVF, the uteri of some recipients were surgically examined for pregnancy; then pregnant females were hysterectomized in order to examine number and weight of the fetuses. Developmental rates to fetuses for IVM/IVF oocytes cultured for 24 and 48 h were significantly lower (p < 0.05, 1.7% and 2.0%, respectively) than that of IVM/IVF oocytes without IVC (6.7%). However, the weights of fetuses (1.0-1.2 g) did not differ among the experimental groups. The other recipients were examined for pregnancy using an ultrasound pregnancy detector, and pregnant females were allowed to go to term. Healthy piglets were delivered by some recipients to which embryos cultured for 0 or 24 h had been transferred; however, no farrow was obtained from embryos cultured for 48 h before the transfer. The results indicate that the viability of in vitro-produced porcine embryos is decreased by IVC after IVF; however, these embryos have competence to develop to term. An improved IVC system of porcine IVM/IVF oocytes is needed to generate advances in this field.
Cell adhesion is linked to various regulatory processes of growth as well as apoptotic cell death in normal and transformed epithelial cells. We investigated changes of cellular responses to the deprivation of cell anchorage associated with immortalization or malignant transformation. Normal human ectocervical keratinocytes (NCE cells) deprived of cell anchorage become susceptible to apoptosis, and in parallel they lose their adhesion to the culture substratum. The loss of cell adhesion is not directly due to apoptosis. NCE16 cells, an immortalized but not malignantly transformed subline of NCE, underwent apoptosis and lost cell adhesion in suspension, as the NCE cells did. By contrast, apoptosis was not inducible in human cervical cancer-derived C33A cells in suspension. Of other cell lines derived from human cervical cancer, SiHa cells showed a weak apoptotic response and Caski cells were highly sensitive to apoptosis in the absence of cell anchorage. Unlike NCE or NCE16 cells, all these cancer cells retained cell adhesion as well as growth capability in suspension cultures. These results indicate that retention of cell adhesion and growth capability in the absence of cell anchorage is more closely associated with cancer cell lines than resistance to apoptosis upon the deprivation of cell anchorage.