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Biomedical subjects

K Chihara

Publications and source records attributed to K Chihara.

At least 73 records · Page 4Linked to original sources

Involvement of osteoprotegerin/osteoclastogenesis inhibitory factor in the stimulation of osteoclast formation by parathyroid hormone in mouse bone cells.

OBJECTIVE: Recently, osteoprotegerin (OPG)/osteoclastogenesis inhibitory factor (OCIF) has been shown to inhibit osteoclast differentiation. On the other hand, we have reported that parathyroid hormone (PTH) stimulated osteoclast formation, presumably through a PTH-responsive cAMP-dependent protein kinase (PKA) pathway, in mouse bone cells. DESIGN AND METHODS: The present study was performed to examine how OPG/OCIF expression is regulated by PTH and to further investigate the possible involvement of OPG/OCIF in the stimulation of osteoclast formation by PTH in mouse bone cells. OPG/OCIF mRNA expression was analyzed by Northern hybridization after 24h treatments of mouse whole bone cells and mouse stromal cell line, ST2 cells with PTH or various second messenger analogs. RESULTS: Human (h) PTH(1-34) (10(-10) and 10(-8)mol/l) but not 10(-8)mol/l hPTH(3-34) down-regulated OPG/OCIF mRNA expression in mouse bone cells. Dibutyryl cAMP, but not phorbol ester, an activator of protein kinase C, or A23187, a calcium ionophore, down-regulated it. The same was also observed in ST2 cells, suggesting that stromal cells are responsible for the inhibitory effect of PTH and cAMP analogs on OPG/OCIF mRNA expression in mouse bone cells. CONCLUSIONS: The present study indicates that PTH down-regulates OPG/OCIF mRNA expression through the PKA pathway in stromal cells, which would result in the stimulation of osteoclast formation.

Animals↗

Estrogen modulates osteoblast proliferation and function regulated by parathyroid hormone in osteoblastic SaOS-2 cells: role of insulin-like growth factor (IGF)-I and IGF-binding protein-5.

Although there is clinical evidence showing that combined therapy with parathyroid hormone (PTH) and estrogen is additively effective in increasing the bone mass of patients with osteoporosis, the mechanism of the interaction between these hormones remains unclear. The present study was performed to determine whether estrogen would affect osteoblast proliferation and function modulated by PTH in human osteoblastic SaOS-2 cells. Human PTH-(1-34) significantly inhibited [(3)H]thymidine (TdR) incorporation, which was attenuated by 24 h pretreatment with 10(-10) to 10(-7) M 17 beta-estradiol (17 beta-E(2)) in a concentration-dependent manner. PTH significantly stimulated alkaline phosphatase (ALP) activity, collagen synthesis and type-1 procollagen mRNA expression after pretreatment with 17 beta-E(2 )in these cells. Tamoxifen, an anti-estrogen, antagonized these 17 beta-E(2)-induced effects. Pretreatment with insulin-like growth factor-I (IGF-I) mimicked estrogen action, and coincubation of 3 microg/ml anti-IGF-I antibody antagonized the effects of 17 beta-E(2 )as well as those of IGF-I. In the presence of 17 beta-E(2 )pretreatment, PTH strongly stimulated IGF-binding protein (IGFBP)-5 mRNA expression in these cells, and recombinant IGFBP-5 increased type-1 procollagen mRNA expression and ALP activity. In conclusion, estrogen attenuates PTH-induced inhibition of osteoblast proliferation and PTH stimulates osteoblast function in the presence of estrogen pretreatment. IGF-I and/or IGFBP-5 seemed to be involved in the estrogen-induced modulation of PTH action on osteoblast proliferation and function.

Alkaline Phosphatase↗

T-cell-specific expression of kinase-defective Eph-family receptor protein, EphB6 in normal as well as transformed hematopoietic cells.

Although most kinase-defective growth factor receptor proteins are associated with pathogenic conditions, a kinase-defective Eph-family receptor protein, EphB6, is expressed in normal human tissues. We generated monoclonal antibodies specific for human EphB6 to characterize its expression on human hematopoietic cells. A very small population of normal human peripheral white blood cells (0.57 +/- 0.07%, n = 12) expressed EphB6. The EphB6-positive cells were CD2+, CD7+, CD3+ and CD4+ or CD8+ lymphocytes, but they did not express CD19 or CD11b. In human bone marrow, only 1.5 +/- 0.19% of lymphocytes expressed EphB6. Compared with the expression in peripheral lymphocytes, prominent expression of EphB6 protein was demonstrated in CD4+CD8+ double-positive mouse thymocytes. The T-cell lineage-specific expression was strictly conserved in human leukemia/lymphoma cells. Among T-cell-derived leukemia cells, the expression level of EphB6 seemed to decrease with maturation of the cells. These results suggest that EphB6 expression is regulated in T-cell development.

Animals↗

Feasibility of high-dose chemotherapy without stem cell support as a first-line treatment for non-Hodgkin's aggressive lymphoma: a pilot study.

A regimen which incorporates cyclophosphamide, doxorubicin, vincristine and prednisolone (CHOP) is the standard treatment for patients with non-Hodgkin's lymphoma (NHL), but it has not been effective in patients with aggressive NHL who are at high risk. The aim of the present trial was to investigate the feasibility of high-dose chemotherapy (HDC) without stem cell support as a first-line treatment. The primary endpoint was a complete remission rate. The second endpoint was survival. Fourteen patients with aggressive NHL entered the study and were treated according to the K93 protocol (3 cycles of CHOP, high-dose etoposide and ifosfamide, and high-dose methotrexate) Eleven patients (79%) achieved complete remission (CR) and two (14%) achieved partial remission (PR). Overall survival (OS) after five years was 79%. The actuarial five year disease free survival (DFS) for the eleven cases of CR was 75%. During chemotherapy, grade IV hematologic toxicity was observed in all patients and grade IV non-hematologic toxicity in only one patient, who experienced oral ulcers. Peripheral blood stem cell (PBSC) apheresis was performed in eight cases. One harvesting was enough to provide an adequate number of CD34+ cells for the subsequent PBSC transplantation (PBSCT). In conclusion our study confirmed the efficacy of the K93 protocol in obtaining a good response (CR + PR) rate and a very good DFS rate in most cases of aggressive NHL, with acceptable toxicity. This regimen may improve the outcome in cases of aggressive NHL without stem cell support. It seems worthwhile to conduct a randomized controlled study comparing the K93 protocol with the standard CHOP regimen.

Adult↗

[First documentation of transfusion-associated babesiosis in Japan].

A 40-year-old man received blood transfusion in December 1998 because of gastric bleeding from a peptic ulcer. One month later, he developed febrile hemolytic anemia. Administration of high doses of glucocorticoid significantly reduced the hemolysis, but did not cure the disease. To investigate the cause of the hemolysis, the patient was transferred to our hospital in May 1999. Giemsa-stained peripheral blood smears showed Babesia parasites in the red blood cells (RBC), and PCR analysis confirmed the presence of Babesia microti DNA. The parasitemia disappeared hematologically after 2 weeks of quinine and clindamycin therapy. However, parasite DNA was still detectable in the RBC. Although treatment with oral atovaquone was given for 2 weeks, parasitemia and febrile hemolysis recurred within a month after the last treatment. Fortunately, complete remission was obtained after a second 12-week course of therapy with quinine and clindamycin. PCR analysis revealed asymptomatic Babesia infection in one of eight samples from the original blood donor. The initial steroid therapy given to the patient without an accurate diagnosis seemed to have delayed augmentation of the specific antibodies (IgG) against Babesia microti, thus prolonging the parasitemia after the initial acute stage of babesiosis.

Adult↗

The COOH terminus of Rho-kinase negatively regulates rho-kinase activity.

Rho-kinase is implicated in the phosphorylation of myosin light chain downstream of Rho, which is thought to induce smooth muscle contraction and stress fiber formation in non-muscle cells. Here, we examined the mode of action of inhibitors of Rho-kinase. The chemical compounds such as HA1077 and Y-32885 inhibited not only the Rho-kinase activity but also the activity of protein kinase N, one of the targets of Rho, but had less of an effect on the activity of myotonic dystrophy kinase-related Cdc42-binding kinase beta (MRCKbeta). The COOH-terminal portion of Rho-kinase containing Rho-binding (RB) and pleckstrin homology (PH) domains (RB/PH (TT)), in which point mutations were introduced to abolish the Rho binding activity, interacted with Rho-kinase and thereby inhibited the Rho-kinase activity, whereas RB/PH (TT) had no effect on the activity of protein kinase N or MRCKbeta, suggesting that the COOH-terminal region of Rho-kinase is a possible negative regulatory region of Rho-kinase. The expression of RB/PH (TT) specifically blocked the stress fiber and focal adhesion formation induced by the active form of Rho or Rho-kinase in NIH 3T3 cells, but not that induced by the active form of MRCKbeta or myosin light chain. Thus, RB/PH (TT) appears to specifically inhibit Rho-kinase in vivo.

3T3 Cells↗

Growth hormone stimulates tyrosine phosphorylation of focal adhesion kinase (p125(FAK)) and actin stress fiber formation in human osteoblast-like cells, Saos2.

Bone is one of the essential target tissues of growth hormone (GH). In bone remodeling, cell-matrix attachment is important where focal adhesion kinase (FAK) is involved. FAK plays a central role in determining the shape and motility of cells in response to the extracellular matrix stimuli. In the present study, we have demonstrated that GH stimulated tyrosine phosphorylation of FAK in human osteoblast-like cells, Saos2. Moreover, GH rapidly enhanced the formation of actin stress fibers. In Saos2, Jak2 was tyrosine phosphorylated by GH stimulation, and AG490, a Jak2 specific inhibitor, inhibited GH-induced tyrosine phosphorylation of FAK and actin stress fiber reorganization. These results suggest that GH activates FAK via Jak2, and stimulates the formation of actin stress fibers in Saos2. Activation of FAK and actin stress fiber formation induced by GH seem to be important for the physiological role of osteoblast.

Actins↗

High extracellular calcium inhibits osteoclast-like cell formation by directly acting on the calcium-sensing receptor existing in osteoclast precursor cells.

Although it has recently been suggested that high extracellular calcium ([Ca(2+)](e)) inhibits osteoclast function via a calcium-sensing receptor (CaSR) in mature osteoclasts, the role of CaSR in the regulation of osteoclast formation remains unknown. The present study was performed to investigate whether osteoclast precursor cells possess CaSR and to clarify the possible role of CaSR in the regulation of osteoclast formation. Immunocytochemistry detected CaSR in osteoclast precursor cells derived from spleen cells as well as in osteoblastic MC3T3-E1 cells. The use of reverse-transcription polymerase chain reaction (RT-PCR) with CaSR-specific primers, followed by nucleotide sequencing of the amplified products, also identified CaSR transcripts in osteoclast precursor cells derived from spleen cells as well as in MC3T3-E1 cells. High [Ca(2+)](e) (3 to 5 mM) concentration dependently inhibited 1,25(OH)2D3- or human parathyroid hormone (hPTH) (1-34)-induced osteoclast-like cell (Ocl) formation from osteoclast precursor cells derived from spleen cells. Further, the CaSR agonist neomycin also concentration dependently inhibited 1,25(OH)2D3- or hPTH(1-34)-induced Ocl formation. Moreover, a calcimimetic which mimics or potentiates the effects of [Ca(2+)](e) at the CaSR NPS R-467 (1-100 microM) concentration dependently inhibited Ocl formation stimulated by 1,25(OH)2D3 or hPTH(1-34). These findings first demonstrated that osteoclast precursor cells possess CaSR very similar, if not identical, to those in the parathyroid and kidney. Furthermore, the CaSR in osteoclast precursor cells could play a key role in regulating Ocl formation by sensing local changes in [Ca(2+)](e) at the resorptive sites.

Animals↗

Cloning and characterization of the 5'-flanking region of the human growth hormone-releasing hormone receptor gene.

We cloned the 5'-flanking region of the human growth hormone-releasing hormone receptor (GHRH-R) gene and determined the nucleotide sequence of 2.7 kilobases upstream from the translation start site. RNase protection analysis showed the major transcription start site is 122 base pairs upstream from the translation start site. The 5'-end of the longest product of 5'-rapid amplification of cDNA ends was close to the site. There were no typical TATA homologies but several putative regulatory elements including Pit-1-binding site-like element. Transient transfection studies using a luciferase reporter gene demonstrated that 5'-flanking region had promoter activity in GH3 cells (derived from rat pituitary tumor) but not in nonpituitary cells, BeWo and HeLa cells. However, co-transfection of Pit-1 expression vector increased luciferase activity in BeWo cells. Deletion study showed that the regions from -310 to -130 and from -130 to -120 were important for the GHRH-R gene expression in GH3 cells, although the latter contributed less to the gene expression. In BeWo cells co-transfected with Pit-1 expression vector, the region from -310 to -130 was essential for the Pit-1-dependent expression of GHRH-R gene. The region from -310 to -120 has two putative Pit-1-binding sites, P1 and P2, located from -129 to -123 and from -171 to -160, respectively. Both mobility shift assay and DNase-I footprint analysis showed that P2 had much higher Pit-1 binding affinity than P1. Mutation of P2 decreased GHRH-R gene expression in GH3 cells. These findings were consistent with the results that the region from -310 to -130 is an important element for Pit-1-dependent expression of GHRH-R gene.

Animals↗

Preventive effects of insulinlike growth factor-I on steroid-induced muscle atrophy.

We examined the effects of simultaneous administration of recombinant insulinlike growth factor-I (IGF-I) and glucocorticoid on the diameter of muscle fibers in rats. The steroid group received subcutaneous injection of triamcinolone, the IGF-treated group received IGF-I alone, and the steroid plus IGF group received both triamcinolone and IGF-I. After 14 days, each rat was subjected to muscle biopsy of the extensor digitorum longus and soleus. Glucocorticoid treatment caused significant reduction in diameter of muscle fibers, compared to controls. Simultaneous administration of IGF-I significantly attenuated glucocorticoid-induced muscle atrophy. Glucocorticoid increased both urinary concentration of 3-methylhistidine and urinary creatine/creatinine ratio. IGF-I reduced those changes in the urine. We conclude that IGF-I administration prevents, at least partially, the development of steroid myopathy.

Animals↗

Glycogen storage disease type IIIa: first report of a causative missense mutation (G1448R) of the glycogen debranching enzyme gene found in a homozygous patient.

Several different mutations in the glycogen-debranching enzyme gene AGL have been found in patients with glycogen storage disease type III (GSD III) to date, but no missense mutations have been reported for GSD III, only nonsense, splicing, and deletion/insertion lesions. Here we describe a novel G1448R missense mutation in a Japanese GSD IIIa patient from a consanguineous family. Sequence analysis of cDNA from the patient' liver specimen revealed two separate nucleotide changes: a G-to-A transition at nucleotide 3737 in exon 26 (3737G>A) and a G-to-C transversion at nucleotide 4742 in exon 33 (4742G>C), both of which result in substitution of glycine by arginine (G1115R and G1448R). Because homo-zygotes for G1115R were found in healthy controls, G1115R seems to be a polymorphism. Restriction fragment length polymorphism analysis with Bsa JI showed that the patient was homozygous for G1448R and that none of the normal controls had the mutation. This missense mutation is located at a putative glycogen-binding site that is indispensable for enzyme activity. Thus, G1448R is likely to be the causative mutation in this patient. This is the first report of a missense mutation associated with GSD III.

Amino Acid Substitution↗

Short stature by mutant growth hormones.

Although the presence of a short stature caused by biologically inactive growth hormone (GH) has been presumed by many case reports, its molecular basis has been unclear until recently. Short stature with low concentrations of insulin-like growth factor-I (IGF-I), despite normal to high GH concentration, suggests impaired GH effect. Recently, we have reported two unique point mutations in the GH1 gene in short children whose GH was thought to be bioinactive. The mutant GH, D112G, was found to lose the capability to transduce GH-dependent signals by impaired dimerization of GH receptors. This case was the first example that proved the molecular mechanism of bioinactive GH syndrome. Another mutant GH, R77C, was so unique that it failed to stimulate GH-induced tyrosine phosphorylation in the cells by itself, but also inhibited the activity of wild-type GH, indicating an antagonistic effect of this mutant GH. The severity of short stature and the responses to exogenous GH were different in these cases. It was supposed that the molecular heterogeneity of mutant GH reflected clinical phenotypes of bioinactive GH syndrome.

Binding Sites↗

Parathyroid hormone gene polymorphisms in primary hyperparathyroidism.

OBJECTIVE: Genetic contributions to bone mineral density (BMD) and bone turnover are well known. In the present study, we analysed the relationship between restriction fragment length polymorphisms of the PTH gene and the development of primary hyperparathyroidism (pHPT) as well as its severity. PATIENTS: Seventy-nine pHPT patients and 104 age-matched healthy controls were analysed. DESIGN AND MEASUREMENTS: PTH genotypes were determined by polymerase chain reaction and BstB I or Dra II restriction fragment length polymorphisms. The presence and absence of BstB I or Dra II restriction sites of the PTH gene were indicated by B and b or D and d, respectively. BMD levels at the lumbar spine and at the radius were measured in all subjects. Serum levels of calcium, phosphorus, alkaline phosphatase and intact PTH were measured in pHPT patients. RESULTS: There were no differences in the frequencies of these PTH genotypes between pHPT patients and controls. In control subjects, lumbar BMD was significantly higher in BB genotype than in Bb/bb genotypes. In pHPT patients, there was no difference of BMD between BB and Bb/bb genotypes. In pHPT patients, serum calcium level was significantly higher in those with the BB genotype than Bb/bb genotypes. On the other hand, there was no association between Dra II polymorphism and BMD in both controls and pHPT patients, but serum intact PTH level was significantly higher in DD genotype than Dd/dd genotype in pHPT patients. Moreover, serum levels of ALP and intact PTH were significantly higher in the PTH BBDD haplotype, compared to those in haplotypes other than BBDD. CONCLUSIONS: The present study suggests that the BstB I polymorphism of PTH gene is closely related to bone mineral density and that PTH gene polymorphisms do not seem to affect the development of primary hyperparathyroidism but may relate to the severity of primary hyperparathyroidism.

Alkaline Phosphatase↗

Effect of recombinant human growth hormone in elderly osteoporotic women.

OBJECTIVE: Bone mineral density and growth hormone (GH) secretion rate both decline during normal human ageing. We evaluated the effects of recombinant human GH on markers of body composition and bone turnover in an open study in 8 elderly osteoporotic women aged 68-75 years (mean age 71 years). DESIGN: Subjects were treated with GH as a single daily subcutaneous injection (0.125 IU/kg/week for the first 4 weeks and subsequently 0.25 IU/kg/week) for 48 weeks. RESULTS: GH treatment caused a rapid (within 2 weeks) increase in serum levels of IGF-I and IGF-binding protein-3 (IGFBP-3) which was sustained throughout the study. Markers of bone formation and resorption were both gradually increased up to 24 weeks of GH treatment. The bone formation markers, osteocalcin (OC) and bone alkaline phosphatase, remained high during GH treatment, while the bone resorption marker, deoxypyridinoline (D-Pyr), tended to return to baseline levels after 24 weeks of GH therapy. GH treatment for 48 weeks caused a significant increase in hand grip and a decrease in waist/hip ratio. The mean percentage changes in bone mineral density (BMD) of mid-radius and lumbar spine were + 2.1% and + 1.2%, respectively, although they were not statistically significant. GH treatment was well tolerated and no major side-effects except mild oedema and joint pain were found. Since GH treatment produced durable increases in bone formation markers, BMD continued to be monitored after discontinuation of GH treatment for another 48 weeks, during which significant increases in radial and lumbar BMD (8.1 +/- 2.1 and 3.8 +/- 1.4% above pre- treatment values, respectively) were recorded. CONCLUSION: These results indicate that GH attenuates the decrease in muscle strength and bone mass as well as the gain of abdominal fat with ageing in elderly women. The present data provide useful information about the application of GH treatment in elderly women.

Aged↗

A compression and transmission system of ultrasonic image sequence for telemedicine.

OBJECTIVE: A newly developed compression and transmission system of ultrasound image sequence for telemedicine is proposed for transmitting ultrasonic image sequence in real time via IP-connected computers for telemedicine. MATERIALS AND METHODS: In the compression method, the characteristics of ultrasound images were taken into account. Only sound data were essential, and the histogram of the images had two narrow distributions around black-and-white areas. The sound data, therefore, were run length encoded and then transmitted. In the transmission, UDP/IP was employed with a time weight insertion among the packets so as not to overflow the data buffers of computers in this system to derive the maximum transmission performance up to the network capacity. The decompression method was the same as the generation of the sector scan images from the sound data, so that natural ultrasound image sequence could be obtained. RESULTS: This system was evaluated by transmitting the ultrasonic image sequence of the heart via ISDN (1. 5 mbps). Although this system completely specialized in compression and transmission of the ultrasound sector scan image sequence, a relatively good performance in the frame rate and the image quality was achieved, compared with the previous systems (H.260, JPEG, and MPEG-1).

Heart Diseases↗

Increased c-Fos/activator protein-1 confers resistance against anergy induction on antigen-specific T cell.

We have studied the contribution of c-Fos/activator protein-1 (AP-1) to antigen-specific T cell response with reference to T cell anergy by increasing c-Fos/AP-1 in vivo and in vitro. First, after injection of a high dose of staphylococcus enterotoxin B (SEB), clonal deletion of SEB-reactive V(beta)8(+) CD4 T cells occurred both in control B6 and H2-c-fos transgenic (fos) mice, whereas proliferation of T cells against SEB was profoundly depressed in B6 but not in fos mice. Second, the keyhole limpet hemocyanin-specific CD4 T(h)1 cell clone produced decreasing amounts of IL-2 in response to increasing amounts of concanavalin A (Con A) in vitro, whereas the decrease was less significant in the T(h)1 clones stably transfected with c-fos gene. Electrophoretic mobility shift assay with nuclear protein from the transformants showed that overexpression of the c-fos gene compensated the amounts of AP-1 in the nuclei of Con A-treated T(h)1 clones. Thus, increased c-Fos/AP-1 confers resistance against anergy induction on antigen-specific T cells.

Animals↗