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Jiro Fujimoto

Publications and source records attributed to Jiro Fujimoto.

52 records · Page 3Linked to original sources

Involvement of the p38 mitogen-activated protein kinase cascade in hepatocellular carcinoma.

BACKGROUND: The mitogen-activated protein kinase (MAPK) cascade is activated in response to various extracellular stimuli. The authors investigated the involvement of the p38 MAPK, a member of the MAPK superfamily, cascade in hepatoma cell lines and in human hepatocellular carcinoma (HCC) tissue specimens. METHODS: Constitutively active mutant of MAPK kinase 6 (MKK6), which is upstream of p38 MAPK, was transfected into the HepG2 and HuH7 human hepatoma cell lines. The constitutive active mutant was constructed by replacing Ser-189 and Thr-193 with Glu. The growth and death of mutant MKK6-transfected hepatoma cells were analyzed by the WST-1 and sub-G1 assays. The surgically resected livers of 20 HCC patients were divided histologically into tumorous (T) and nontumorous (NT) lesions. p38 MAPK activity was analyzed using in vitro kinase assay and MKK6 activity was measured using Western blot analysis. RESULTS: Mutant MKK6 transfection increased p38 MAPK activity, cytochrome c release from the mitochondria to the cytosol, and caspase-3 activity, accompanied by apoptosis. In contrast, SB203580, a p38 MAPK-specific inhibitor, prevented MKK6-induced apoptosis in hepatoma cell lines. In the T lesions of 20 HCC parients, p38 MAPK and MKK6 activities were significantly lower compared with NT lesions (P < 0.05). There was a significant positive correlation between p38 MAPK and MKK6 activity (r = 0.507, P < 0.05). Larger tumors (> 20 mm) exhibited lower levels of p38 MAPK and MKK6 activity than did smaller tumors (P < 0.05). CONCLUSIONS: These findings suggested that reduction of the p38 MAPK cascade may account, in part, for the resistance to apoptosis, leading to the unrestricted cell growth of human HCC.

Apoptosis↗

Strategy of gene therapy for liver cirrohosis and hepatocellular carcinoma.

BACKGROUND/PURPOSE: Liver cirrhosis and hepatocellular carcinoma (HCC) are major causes of morbidity and mortality worldwide, without effective therapies. Our aim was to establish a novel approach for the diseases utilizing in-vivo gene therapy. METHODS: To achieve effective gene expression in vivo, we employed a well-established transfection method, hemagglutinating virus of Japan (HVJ)-liposome. Liver cirrhosis, characterized by parenchymal collapse, was induced by dimethylnitrosamine (DMN) in rats, leading to accumulation of fibrous tissue. Muscle-directed gene transfer of hepatocyte growth factor (HGF) was performed in this model. As an approach for HCC therapy, suicide gene therapy using ganciclovir (GCV) with transfer of the herpes thymidine kinase (HSVtk) gene was tested. Alpha-fetoprotein (AFP) is highly expressed in many cases of HCC. To achieve specific gene expression of HSVtk in AFP-producing tumors, we employed the HSVtk gene driven by the AFP promoter (AFP-TK1), encapsulated in the HVJ-liposome. APF-producing HUH7 tumors in vivo were established in the livers of severe combined immunodeficiency (SCID) mice, by the injection of HUH7 cells into the portal vein. RESULTS: All cirrhotic rats died of liver dysfunction by 7 weeks after the initial injection of DMN. After repeated transfection with the HGF gene, increased concentrations of HGF in plasma and tyrosine phosphorylation of the c-Met/HGF receptor in the liver were detected, and the established massive hepatic fibrosis had almost totally disappeared and all cirrhotic rats survived. Repeated in-vivo transfection with AFP-TK1, using the HVJ-liposome, followed by GCV treatment, achieved abrogation of tumors in the liver, and improved survival. CONCLUSIONS: Our data indicate that the gene therapy may hold promise for the treatment of patients with liver cirrhosis and HCC.

Animals↗

Expression of estrogen receptor alpha and beta in myometrium of premenopausal and postmenopausal women.

Although a clear role for estrogen receptor (ER) alpha has been established, the contribution of ERbeta in estrogen-dependent development, growth and functions of the myometrium is not understood. As a first step towards understanding the role of ERbeta, we have examined the expression of ERalpha and ERbeta in the human myometrium. With competitive RT-PCR assays, the level of ERbeta mRNA was 10-200 times lower than that of ERalpha mRNA in both premenopausal and postmenopausal myometrium. In premenopausal myometrium, the expression pattern of ERbeta mRNA during the menstrual cycle was similar to that of ERalpha mRNA, with highest levels in peri-ovulatory phase. In postmenopausal myometrium, ERbeta mRNA was significantly higher than it was in premenopausal myometrium, while the level of ERalpha mRNA was lower. The net result was a change in the ratio of ERbeta to ERalpha mRNA expression. The ratio changed from 0.6-1.5 in premenopausal to 2.5-7.6 in postmenopausal myometrium. In premenopausal women, the gonadotropin releasing hormone analogue, leuprorelin acetate, elicited a decrease in ERalpha and an increase in ERbeta mRNA expression to cause a postmenopausal receptor phenotype. Estradiol, on the other hand, reversed ERalpha and ERbeta mRNA expression and their ratio in postmenopausal myometrium to those of premenopausal myometrium. Immunohistochemical staining and Western blot analysis of ERalpha and ERbeta with semiquantitative analysis showed good agreement between mRNA and protein levels. The data indicate that coordinated expression of ERalpha and ERbeta might be necessary for normal estrogen action in myometrium. Furthermore, estrogen appears a dominant regulator of both receptors in the myometrium.

Adult↗

Role of c-kit receptor tyrosine kinase-mediated signal transduction in proliferation of bile epithelial cells in young rats after ligation of bile duct: a study using Ws/Ws c-kit mutant rats.

BACKGROUND/AIMS: Recently, it has been shown that the c-kit receptor tyrosine kinase (KIT) is expressed in the liver of young rats, and its expression is up-regulated in bile epithelial cells (BEC) after ligation of the common bile duct (BDL). To clarify a role of KIT in BEC, we examined whether BEC of Ws/Ws rats, whose KIT kinase activity was severely impaired, could proliferate in response to bile stasis after BDL. METHODS/RESULTS: When 2-week-old control normal (+/+) and Ws/Ws mutant rats underwent BDL, only a few BEC were found in the portal field of livers of Ws/Ws rats, whereas many BEC were found in that of +/+ rats. Furthermore, Ki-67 immunostaining showed that the proliferative activity of BEC in 2-week-old Ws/Ws rats was much lower than that in +/+ rats of the same age. In contrast, when 6-week-old +/+ and Ws/Ws rats underwent BDL, BEC similarly proliferated in the livers of +/+ and Ws/Ws rats, and the proliferative activity of BEC was comparable. CONCLUSIONS: The mechanism whereby BEC proliferate in response to bile stasis after BDL may be different between 2- and 6-week-old rats, and KIT mediated-signal transduction plays a crucial role in the proliferation of immature BEC in young rats.

Age Factors↗

Expression of estrogen receptor beta exon-deleted variant mRNAs in ovary and uterine endometrium.

Various estrogen receptor beta exon-deleted variant (ER-beta EDV) mRNAs were expressed in human ovary and uterine endometrium. Estrogen receptor beta (ER-beta) completely or partially deleted exon n is expressed as ER-beta EnDV or En'DV, respectively. The mRNAs for ER-beta single exon-deleted variant (EDV), ER-beta E2DV, E4DV, E5DV and E6DV; for ER-beta double exon-deleted variants, ER-beta E1'+2DV, E4+5DV and E5+6DV; and for ER-beta triple exon-deleted variants, ER-beta E2'+3+4DV and E4+5+6DV were detected. In ER-beta E2DV, E4+5DV, E5DV and E6DV mRNAs, the new stop codon is made in the exon following the deleted exon(s), and the new proteins may lack the corresponding domains. In ER-beta E1'+2DV, E2'+3+4DV, E4DV, E4+5+6DV and E5+6DV mRNAs, the original stop codon is still present, and the new proteins may conserve the new short amino acid sequences surrounding the deleted exons. ER-beta E1'+2DV, E2DV, E2'+3+4DV, E4DV, E4+5DV and E4+5+6 are unlikely to work as a transcription factors. On the other hand, ER-beta E5DV, E6DV and E5+6DV lack only the ligand-binding domain, and might work as dominant positive or negative factors. Therefore, ER-beta E5DV, E6DV and E5+6DV, constitutively expressed in human ovary and uterine endometrium might, in part regulate estrogen responsiveness.

Adult↗

Effects of various steroids on platelet-derived endothelial cell growth factor (PD-ECGF) and its mRNA expression in uterine endometrial cancer cells.

Progestins diminish the estrogen-induced angiogenic potential related to basic fibroblast growth factor (FGF) and vascular endothelial growth factor (VEGF) in uterine endometrial cancer cells. This led us to study the effect of various steroids on the expression of platelet-derived endothelial cell growth factor (PD-ECGF) as the other pertinent angiogenic factor in well-differentiated uterine endometrial cancer cell line Ishikawa. In Ishikawa cells, estradiol induced the expression of PD-ECGF and its mRNA. The estrogen-induced expression was increased approximately two-fold by progesterone and by its metabolite, 17alpha-hydroxyprogesterone, but not by medroxyprogesterone acetate (MPA). Therefore, progesterone and 17alpha-hydroxyprogesterone as endogenous steroids might induce PD-ECGF-related angiogenic potential in uterine endometrial cancer cells, but not MPA as a synthetic steroid. In conclusion, the failure of PD-ECGF induction by MPA might be the great merit of anti-angiogenic treatment with MPA for uterine endometrial cancers.

17-alpha-Hydroxyprogesterone↗

Nuclear factor kappa B decoy oligodeoxynucleotides prevent endotoxin-induced fatal liver failure in a murine model.

Endotoxin syndrome is a systemic inflammatory response mediated by inflammatory cytokines. Nuclear factor kappa B (NF-kappa B) is the dominant regulator of the production of these cytokines by inflammatory cells. The aim of this study was to assess the efficacy of in vivo transfer of synthetic double-stranded oligodeoxynucleotides (ODN) with high affinity against NF-kappa B (NF-kappa B/decoy/ODN) as a therapeutic strategy for treating endotoxin-induced fatal liver injury. Liver injury was induced by administration of lipopolysaccharide (LPS) to Propionibacterium acnes-primed BALB/C mice. NF-kappa B/decoy/ODN was transferred into the portal vein using a fusigenic liposome with hemagglutinating virus of Japan. NF-kappa B/decoy/ODN was preferentially transferred to Kupffer cells, and activation of NF-kappa B after the LPS challenge was suppressed, leading to decreased inflammatory cytokine production. As a result, the massive necrosis and hepatocyte apoptosis observed in the control mice was dramatically attenuated and the survival rate improved. In conclusion, NF-kappa B/decoy/ODN transfer in vivo effectively suppressed endotoxin-induced fatal liver injury in mice.

Animals↗

Repeated hepatocyte injury promotes hepatic tumorigenesis in hepatitis C virus transgenic mice.

Although hepatitis C virus (HCV) is a well-known causative agent of hepatocellular carcinoma (HCC), the mechanism by which HCV induces HCC remains obscure. To elucidate the role of HCV in hepatocarcinogenesis, a model of hepatocyte injury was established using HCV core transgenic mice, which were developed using C57BL/6 mice transfected with the HCV core gene under control of the serum amyloid P component promoter. After 18-24 months, neither steatosis nor hepatic tumors were found in transgenic mice. The extent of hepatocyte injury and tumorigenesis were then examined in transgenic mice following repeated administration of carbon tetrachloride (CCl(4)) using various protocols (20%, 1/week; 10%, 2/week and 20%, 2/week). Serum alanine aminotransferase (ALT) levels did not differ among HCV core transgenic mice and non-transgenic littermates; however, after 40 weeks, hepatic adenomas preferentially developed in transgenic mice receiving 20% CCl(4) once weekly. Moreover, HCC was observed in transgenic mice receiving 2 weekly injections of a 20% solution of CCl(4), and was not observed in the non-transgenic control mice. In conclusion, the HCV core protein did not promote hepatic steatosis or tumor development in the absence of hepatotoxicity. However, the HCV core protein promoted adenoma and HCC development in transgenic mice following repeated CCl(4) administration. These results suggest that hepatotoxicity resulting in an increased rate of hepatocyte regeneration enhances hepatocarcinogenesis in HCV-infected livers. Furthermore, this experimental mouse model provides a valuable method with which to investigate hepatocarcinogenesis.

Animals↗

Clinical implications of expression of ETS-1 in relation to angiogenesis in ovarian cancers.

ETS-1 has been identified as a transcription factor involved in tumor angiogenesis, which is essential for the growth, invasion, and metastasis of solid tumors. This result prompted us to study whether ETS-1 works as an angiogenic mediator in ovarian cancers. Immunohistochemical staining revealed that ETS-1 was expressed in vascular endothelial cells and in cancer cells of ovarian cancers. There was a significant correlation between microvessel counts and both ETS-1 histoscores and ets-1 mRNA levels in ovarian cancers. Both ETS-1 histoscores and ets-1 mRNA levels increased with the progression of ovarian cancers. Furthermore, the 24-month survival rate of 30 patients with high ets-1 (high ETS-1 histoscores and high ets-1 mRNA levels) was 30%, while that of 30 other patients with low ets-1 (low ETS-1 histoscores and ets-1 mRNA levels) was 70%. There was a significant difference between the 24-month survival rates of the 30 patients with high ets-1 and the 30 with low ets-1. This indicates that ETS-1 might act as an angiogenic mediator in, and be a prognostic factor for, ovarian cancers.

Adult↗

Interleukin 18 and hepatocyte growth factor in fulminant hepatic failure of adult onset Still's disease.

Adult onset Still's disease (AOSD) is a rheumatoid disorder characterized by polyarthritis, intermittent high fever, and salmon colored rashes. Liver dysfunction is usually mild and fulminant liver failure is rare. We describe a 20-year-old woman with AOSD and severe hepatic necrosis leading to hepatic failure requiring liver transplant. This severe liver disorder developed after decreases in fever, arthritis, and C-reactive protein. Interleukin 18 (IL-18), but not ferritin, increased in association with liver dysfunction. Hepatocyte growth factor (HGF) increased at the time of hepatic failure. IL-18 and HGF elevation may have contributed to this rare severe liver injury in AOSD.

Adult↗

Critical roles of myeloid differentiation factor 88-dependent proinflammatory cytokine release in early phase clearance of Listeria monocytogenes in mice.

Listeria monocytogenes (LM), a facultative intracellular Gram-positive bacterium, often causes lethal infection of the host. In this study we investigated the molecular mechanism underlying LM eradication in the early phase of infection. Upon infection with LM, both IL-12 and IL-18 were produced, and then they synergistically induced IFN-gamma production, leading to normal LM clearance in the host. IFN-gamma knockout (KO) mice were highly susceptible to LM infection. IL-12/IL-18 double knockout mice were also highly susceptible. Their susceptibility was less than that of IFN-gamma KO mice, but more than that of single IL-12 or IL-18 KO mice. Mice deficient in myeloid differentiation factor 88 (MyD88), an essential adaptor molecule used by signal transduction pathways of all members of the Toll-like receptor (TLR) family, showed an inability to produce IL-12 and IFN-gamma following LM infection and were most susceptible to LM. Furthermore, MyD88-deficient, but not IFN-gamma-deficient, Kupffer cells could not produce TNF-alpha in response to LM in vitro, indicating the importance of MyD88-dependent TNF-alpha production for host defense. As TLR2 KO, but not TLR4 KO, mice showed partial impairment in their capacity to produce IL-12, IFN-gamma, and TNF-alpha, TLR2 activation partly contributed to the induction of IL-12-mediated IFN-gamma production. These results indicated a critical role for TLRs/MyD88-dependent IL-12/TNF-alpha production and for IL-12- and IL-18-mediated IFN-gamma production in early phase clearance of LM.

Adaptor Proteins, Signal Transducing↗

Hepatocyte growth factor gene therapy retards the progression of chronic obstructive nephropathy.

BACKGROUND: Unilateral ureteral obstruction (UUO) is characterized by progressive tubular atrophy and interstitial fibrosis. Rupture of the balance between cell proliferation and apoptosis plays a critical role in renal atrophy. Hepatocyte growth factor (HGF) is a cytokine function on cell survival and tissue regeneration. We studied the effects and possible mechanisms of HGF gene therapy on tubular cell survival and anti-fibrosis in chronic obstructed nephropathy. METHODS: An in vivo transfection procedure of repeatedly transducing skeletal muscles with the HGF gene using liposomes containing the hemagglutinating virus of Japan (HVJ liposome) was tested on UUO rats. Expression of HGF and c-Met were examined by in situ hybridization, ELISA, or immunohistochemical staining. Interstitial fibrosis and macrophage infiltration were evaluated by Masson's Trichrome staining, alpha-smooth muscle actin and ED-1 immunostaining. Cell survival indices including proliferating cell nuclear antigen (PCNA), Bcl-2, Bcl-xL and Bax were measured by immunohistochemistry and Western blots. Apoptosis was determined by the TUNEL method. RESULTS: After HVJ-HGF gene transfer, endogenous HGF and c-Met were up-regulated in UUO kidneys. Renal fibrosis, macrophage infiltration and tubular atrophy were suppressed both at day 14 and 28 after UUO (P < 0.05 or 0.01). Tubular cell proliferation was activated while apoptosis was inhibited, especially at the late stage of UUO. Bcl-2 was enhanced in the HGF-transfected UUO rats, while no changes of Bcl-xL and Bax were found. CONCLUSIONS: In vivo HGF gene transfection retards the progression of chronic obstructed nephropathy and protects tubular cell survival in the long-term UUO model. Bcl-2 rather than Bcl-xL or Bax may contribute to the anti-apoptotic function of HGF.

Animals↗

Clinical implications of the expression of estrogen receptor-alpha and -beta in primary and metastatic lesions of uterine endometrial cancers.

Novel human estrogen receptor (ER)-beta was identified in cDNA libraries from human testes. ER-beta specifically expresses in the testis, ovary, thymus, spleen, osteoblasts, fetus and uterine endometrium. ER-beta might not conserve the same physiological functions as does ER-alpha. Therefore, expressions of ER-alpha and ER-beta mRNAs in primary and metastatic lesions of uterine endometrial cancers were investigated. The levels of ER-beta mRNA were significantly lower than those of ER-alpha mRNA in uterine endometrial cancers and in normal uterine endometria. The ratio of ER-beta to ER-alpha mRNA in most primary uterine endometrial cancers was similar to that in normal uterine endometria (<0.4% of ER-beta mRNA to ER-alpha mRNA). On the other hand, in 14 of the 20 lymph node metastasis-positive cases of uterine endometrial cancers, the ratio in the metastatic lesion was significantly higher than that in the primary lesion of the corresponding case, and patient prognosis in these cases was extremely poor. Therefore, it is suggested that the intact synchronized expression of ER-beta interacting with ER-alpha might be disrupted, especially in most metastases of uterine endometrial cancers, leading to poor patient prognosis related to estrogen refractoriness.

Adult↗

Frequent polymorphic changes but rare tumor specific mutations of the LATS2 gene on 13q11-12 in esophageal squamous cell carcinoma.

We previously reported that loss of heterozygosity on 13q12-13 is related with poor prognosis of esophageal cancer. However, a target tumor-suppressor gene on this region is not yet identified. Recently, LATS2, a new human homologue of the Drosophila tumor suppressor gene (lats/warts) was identified on 13q11-12. We therefore screened esophageal tumor cell lines and tumor tissues to detect tumor specific mutations of the LATS2 gene. Although we found 5 different polymorphisms in this gene (4 kinds of single-base changes and a 6-bp insertion), a tumor specific mutation was identified in only one out of 60 tumor tissues. These results indicated that the LATS2 gene is inactivated in only a small part of esophageal tumors, if any.

Carcinoma, Squamous Cell↗

Expression of ETS-1 related to angiogenesis in uterine endometrium during the menstrual cycle.

ETS-1 has been identified as a transcription factor for angiogenesis, which is essential for the development and growth of the uterine endometrium. This characteristic prompted us to study whether ETS-1 functions as an angiogenic mediator in uterine endometrium. Immunohistochemical staining revealed that the localization of ETS-1 was similar to that of vascular endothelial cells. There was a significant correlation between microvessel counts and both ETS-1 histoscores and ets-1 mRNA levels in uterine endometrium. The ETS-1 histoscores and ets-1 mRNA levels increased in the proliferative phase, reached a peak during peri-ovulation and decreased in the secretory phase. Furthermore, the ETS-1 histoscores and ets-1 mRNA levels correlated with vascular endothelial growth factor (VEGF) levels in the proliferative phase. This indicates that ETS-1 might be an angiogenic mediator in uterine endometrium linked to VEGF in the proliferative phase.

Adult↗