PubMed Health⌕ Search

Biomedical subjects

Y Ikeno

Publications and source records attributed to Y Ikeno.

15 recordsLinked to original sources

Spontaneous hepatocellular carcinoma is reduced in transgenic mice overexpressing human O6- methylguanine-DNA methyltransferase.

O(6)-methylguanine (O(6)mG) is a potent mutagenic and procarcinogenic DNA lesion. Organisms have evolved with a DNA repair mechanism that largely ameliorates the deleterious effects of O(6)mG through a direct reversal mechanism by a protein termed O(6)-methylguanine-DNA methyltransferase (MGMT). However, the contribution of O(6)mG to carcinogenesis, in the absence of known exposure to agents that produce it, has not been defined. Nontransgenic C3HeB male mice have a high frequency of spontaneous liver tumors. Transgenic CeHeB/FeJ mice expressing human MGMT (hMGMT) were generated that had elevated hepatic MGMT activity. The spontaneous development of hepatocellular carcinoma was significantly reduced in those mice expressing hMGMT compared with nontransgenic C3HeB/FeJ male mice. No differences were detected in spontaneous mutant frequencies in lacI transgenes in mice carrying hMGMT compared with that without hMGMT but the proportion of GC to AT transition mutations was lower in the transgenic mice carrying hMGMT as well as lacI. Tumors that arose in C3HeB/FeJ transgenic mice were largely deficient in hMGMT protein as determined by immunohistochemistry with a monoclonal antibody directed against hMGMT. Together these data indicate that spontaneous O(6)mG lesions induced hepatocellular carcinogenesis in C3HeB/FeJ male mice. These transgenic mice represent a rare example of reduced spontaneous carcinogenesis.

Animals↗

Gene expression of cyclooxygenase in the aging heart.

Cyclooxygenase (COX) is the key rate-limiting enzyme in the prostaglandin synthetic pathway. Two isoforms of COX have been identified: a constitutive COX-1 and an inducible COX-2, which is activated in response to various stimuli. We investigated the changes of COX-1 and COX-2 in rat heart during aging. We measured the age-related changes in the mRNA and protein levels of COX by using reverse-transcription polymerase chain reaction and Western blotting, respectively. COX-2 mRNA and protein levels increased with age, whereas those of COX-1 showed no change. The COX activity determined by prostaglandin E(2) production increased with age. Because the COX-catalyzed arachidonate cascade is an important source of reactive oxygen species (ROS) generation, changes in ROS generation and lipid peroxidation were also assessed. The amount of ROS generated by the COX pathway increased with age, as did the total ROS generation and lipid peroxidation. These results show that COX-2 activity increases with age, partially because of elevated transcriptional expression and protein content, and they suggest that increased COX-2 can play a role in oxidative alterations in the aged heart.

Aging↗

Health span and life span in transgenic mice with modulated DNA repair.

One way to better understand the contribution of DNA repair, DNA damage, and mutagenesis in aging would be to enhance DNA repair activity, lower DNA damage, and lower mutagenesis. Because the repair protein O6-methylguanine-DNA methyltransferase (MGMT) acts alone and stoichiometrically, the human MGMT (hMGMT) cDNA was selected to test the feasibility of enhancing DNA repair activity in transgenic mice. MGMT activity is largely responsible for ameliorating the deleterious effects of O6-methylguanine (O6mG) lesions in DNA in a direct reversal mechanism. A transgene was constructed consisting of a portion of the human transferrin (TF) promoter and hMGMT cDNA such that hMGMT is expressed in transgenic mouse brain and liver. Expression of hMGMT was associated with a significant reduction in the occurrence of an age-related hepatocellular carcinoma in male mice at 15 months of age. Longitudinal and cross-sectional studies were initiated to determine whether the reduced incidence of hepatocellular carcinoma would impact median or maximum life span. The cross-sectional study performed on 15-month-old male animals confirmed the reduced occurrence of spontaneous hepatocellular carcinoma. At 30 months of age, however, the occurrence of hepatocellular carcinoma in at least one transgenic line was similar to that for nontransgenic animals. The longitudinal study is ongoing; however, at present no significant differences in life span have been detected. Tissues expressing the MGMT transgene also displayed greater resistance to alkylation-induced tumor formation. These results suggest that transgenes can be used to direct enhanced DNA repair gene expression and that enhanced expression can protect animals from certain spontaneous and induced tumors.

Age of Onset↗

Effects of aging and caloric restriction on IGF-I, IGF-I receptor, IGFBP-3 and IGFBP-4 gene expression in the rat stomach and colon.

The purpose of this study was to determine the effects of aging and caloric restriction (CR) on insulin-like growth factor-I (IGF-I), IGF-I receptor (IGF-IR), IGF-binding protein-3 (IGFBP-3) and IGFBP-4 expression in the stomach and colon of male Fischer 344 rats. Stomach and colonic RNA were prepared from ad libitum (AL) fed or long-term CR rats. Stomach IGF-I, IGFBP-3 and IGFBP-4 mRNA levels increased significantly (P</=0.05), while colonic IGF-I mRNA levels were unchanged in aged AL rats. In aged CR rats, stomach IGFBP-3 mRNA levels decreased. Stomach and colonic IGF-IR mRNA levels declined with aging in AL and CR rats (P</=0.05). Colonic IGFBP-3 mRNA levels decreased significantly with aging in AL rats. There were no changes in colonic IGFBP-4 mRNA levels in aged AL or CR rats. Increased expression of stomach IGF-I, IGFBP-3 and IGFBP-4 in aged AL rats suggests that the stomach attempts to preserve IGF activity by increasing local expression of IGF-I and IGFBPs. Because the aging colon has a propensity to develop cancer, it may adapt to increased colonic IGF-I expression by reducing IGF-IR and IGFBP-3 expression. Additionally, CR lowers colonic IGF-I expression in aged rats (24 months) which may also be a protective adaptive mechanism.

Aging↗

Downregulation of telomerase in rat during the aging process.

Telomerase is an RNA-dependent DNA polymerase that maintains the tandem arrays of telomeric repeats at the eukaryotic chromosome ends. Because of its ability to replenish lost telomeric sequences, telomerase is thought to be required for cell proliferation. At present, very little information on the role of telomerase in aging is available. In the present study, we tested the telomerase activity of Fischer 344 rat testis and liver at 6, 12, 18 and 24 months of age. As the testis is an androgen-dependent tissue, we also investigated the changes of testosterone and mRNA levels of androgen receptor in this tissue. Our results show that the telomerase activity of Fischer 344 rat testis significantly reduced at 24 months of age compared to 6 months of age, and that the mRNA level of telomerase protein component 1 (TLP-1) show a corresponding decrease with the telomerase activity. Interestingly, this down-regulation was not observed in the liver. The testosterone level in testis increased until 18 months of age, but reduced by 50% at 24 months of age. Our conclusions are that the telomerase activity is age-dependent and its change is a tissue-specific phenomenon.

Aging↗

Regional difference of ROS generation, lipid peroxidation, and antioxidant enzyme activity in rat brain and their dietary modulation.

One of the potential causes of age-related neuronal damage can be reactive oxygen species (ROS), as the brain is particularly sensitive to oxidative damage. In the present study, we investigated the effects of aging and dietary restriction (DR) on ROS generation, lipid peroxidation, and antioxidant enzymes in cerebrum, hippocampus, and cerebellum of 6-, 12-, 18-, and 24-month-old rats. ROS generation significantly increased with age in cerebrum of ad libitum (AL) rats. However, no significant age-difference was observed in hippocampus and cerebellum. DR significantly decreased ROS generation in cerebrum and cerebellum at 24-months. On the other hand, the increased lipid peroxidation of AL rats during aging was significantly reduced by DR in all regions. Our results further showed that catalase activity decreased with age in cerebellum of AL rats, which was reversed by DR, although SOD activity had little change by aging and DR in all regions. In a similar way, glutathione (GSH) peroxidase activity increased with age in cerebrum of AL rats, while DR suppressed it at 24-months. These data further support the evidence that the vulnerability to oxidative stress in the brain is region-specific.

Aging↗

Modulation of renal xanthine oxidoreductase in aging: gene expression and reactive oxygen species generation.

Xanthine oxidoreductase (XD: xanthine dehydrogenase + xanthine oxidase) is a complex enzyme that catalyzes oxidation of hypoxathine to xanthine, subsequently producing uric acid. The enzyme complex exists in separate but interconvertible forms, xanthine dehydrogenase (XDH) and xanthine oxidase (XOD). XOD is one of the major cellular sources of superoxide production and is well known as a causative factor in ischemia/reperfusion damage. At present, almost no information on the conversion status is available with respect to aging. In the present study, we investigated the effect of age on the XOD/XDH status and gene expression in the kidney. In addition, we assessed XOD-induced reactive oxygen species (ROS) using the dichlorofluoroscein (DCF) method. Our results show that XD activity gradually up to 18 months of age and then a slight decrease at 24 months of age. XDH activity showed increases up to 18 months of age, then decreased at 24 months of age. The conversion of XDH to XOD, assessed by changes in the ratios of XOD/(XOD+XDH), showed an age-related increase, which peaked at 24 months. Levels of XD protein and its mRNA paralleled to overall XD activity. ROS generation has tendency to increase with age. Our results suggest that the increased conversion of XDH to XOD observed with age may be an important contributing factor to the increased renal oxidative stress during aging.

Aging↗

Oxidant-mediated repression of mitochondrial transcription in diabetic rats.

Diabetes-associated mitochondrial dysfunction is recognized, but the underlying mechanisms are unknown. Using isolated liver mitochondria from streptozotocin-induced diabetic Sprague-Dawley rats, we showed that diabetes can result in a > 95% loss in mitochondrial transcriptional capacity. Decreased transcription correlated well with both disease status, as indicated by serum lipemia and ketone levels, and with increased resistance of the mitochondrial transcription system to oxidative stress imposed by the hydrophilic AAPH [2,2'-azobis-(2-amidino-propane) hydrochloride] or the hydrophobic AMVN [2,2'-azobis-(2,4,-dimethyl-valeronitrile)]. The onset of AAPH- or AMVN-induced lipid peroxidation was also delayed; this suggests that liver mitochondrial membranes from diabetics have increased resistance to peroxyl radical-mediated lipid peroxidation. Lipid peroxidation induced endogenously was increased, however, suggesting a state of increased oxidative stress likely exists in vivo. Furthermore, changes in the rate of lipid peroxidation occurring during the propagation phase were also affected by diabetes. This implies possible changes in lipid composition or structure. Analysis indicated that the factors protecting mitochondria from lipid peroxidation differ from those involved in protecting the transcription system, and that both are independent of free radical scavenger levels. These results suggested that diabetes alters mitochondrial exposure and/or response to reactive species and provided clues to the role of oxidant stress in the development of diabetes-associated mitochondrial dysfunction.

Amidines↗

[An autopsy case of urinary bladder carcinoma with pulmonary infarction and subacute cor pulmonale caused by tumor embolization].

Pulmonary tumor embolism is a common finding at autopsy but is difficult to diagnose clinically antemortem. We report an autopsy case of urinary bladder carcinoma associated with tumor emboli of the pulmonary arteries and subsequent pulmonary infarctions. An eighty-six-year-old man with bloody sputum showed multiple infiltrates on chest X-ray and multiple pleural based parenchymal lesions with truncated apex on computed tomography. The patient had a history of radiation therapy against urinary bladder carcinoma two years earlier. Transitional type carcinoma cells were identified from a urine sample obtained on admission. Three weeks later, the patient developed subacute cor pulmonale and died in severe respiratory distress. Postmortem examination revealed primary carcinoma of the urinary bladder. Multiple tumor emboli of pulmonary arteries and subsequent pulmonary infarctions were visible microscopically. There was a large amount of effusion in both the pleural and the abdominal space. The heart contained focal scarring and mild right ventricular hypertrophy and there was congestion of the lungs, liver, kidneys and spleen. Pulmonary tumor embolization may present at any stage of the patient's illness but rarely causes subsequent pulmonary infarctions. Cytologic examination of blood samples obtained from Swan-Ganz catheters may be useful in the diagnosis of tumor embolization.

Aged↗

GFAP expression in the subcutaneous tumors of immature glial cell line (HITS glioma) derived from ENU-induced rat glioma.

In order to evaluate the proliferation and differentiation potentials of ethylnitrosourea (ENU)-induced rat glioma cells, the authors attempted to obtain a cell line that maintains glial features in long-term culture. One of five cell lines cultivated from ENU-induced rat gliomas merited particular interest because of the differentiation of its neoplastic glia. This cell line, designated as HITS glioma, had a polygonal cell body and formed a monolayer with pile-up foci in vitro, in contrast to the other cell lines, which displayed a mesenchymal change through passages. GFAP-positive cells, found in the primary culture, disappeared in the late passages of HITS glioma, as they did in the other cell lines. Galactocerebroside (GC), GD3 ganglioside, and Leu7 were not expressed in the cell lines during culture. Subcutaneous inoculation of HITS glioma into neonatal rats induced tumors with histopathological components mimicking the histopathological appearance of ENU-induced gliomas. The components also had a fraction of GFAP-positive cells. Such findings indicate that HITS glioma cells may be composed of immature glial cells which are able to differentiate into astrocytic cells under certain conditions. Several growth factors which play a role in gliogenesis were used to evaluate the mechanism(s) of proliferation and/or differentiation of HITS glioma. These growth factors did not induce the expression of GFAP and other antigenic expression in HITS glioma, even though some promoted the proliferation of HITS glioma. Although the mechanism involving the astrocytic differentiation of HITS glioma is unknown, HITS glioma may serve as an effective tool in research to evaluate the mechanisms of proliferation and differentiation of neoplastic glia.

Animals↗

[A case of pulmonary asbestosis with slightly increased serum IgE concentration and histopathological changes resembling DIP].

A 68-year-old male presented with cough and sputum. He had suffered from these symptoms for ten years prior to admission. Chest roentgenogram revealed reticulonodular shadows in the lower fields of both lungs. CT scan of the chest revealed an interstitial pattern in the lower field of both lungs. Honeycombing and bullous pattern were also present in the subpleural area. The patient had a history of dust and asbestos inhalation while working as an electrician. Eosinophilia of the peripheral blood and BALF, and a slightly increased serum IgE concentration were noted. Open lung biopsy revealed interstitial fibrosis with intra-alveolar macrophage accumulation and asbestos bodies. The histopathological features resembled UIP and DIP, although DIP is uncommon in pulmonary asbestosis. The slightly increased serum IgE concentration was considered to be an additional effect of asbestos. This is a case of pulmonary asbestosis with intriguing immunological and histopathological features.

Aged↗

[A case of interstitial pneumonitis with hemoptysis, BOOP (bronchiolitis obliterans organizing pneumonia) pattern, granulomas and foreign body giant cells in lung biopsy].

A 66-year-old male presented to our hospital in January 1990 with chief complaints of hemoptysis and cough. These symptoms had developed 10 months previously and had gradually increased. Fine crepitations were audible over the right lower lung field. There were no results suggesting an inflammatory process such as leucocytosis, elevation of ESR or positive CRP reaction. Chest X-ray film on the first visit showed fine nodular shadows in the right lower lung field, and chest CT revealed fine nodular shadows and mild dilatation of the right lower lobe bronchus. Transbronchial lung biopsy specimens showed granulomas with multinucleated giant cells, alveolitis and Masson bodies. The open lung biopsy specimens showed numerous macrophages and foreign body giant cells, and extensive organizing exudates in the bronchioles and alveolar spaces. Proliferation of smooth muscle and fibrosis around the dilated bronchioles were also seen. Thus, this patient demonstrated BOOP pattern, with granulomas and foreign body giant cells. His hemoptysis appeared to have resulted from inflammation of dilated bronchioles. His symptoms and abnormal shadows on chest X-ray improved without any therapy after admission. After treatment with corticosteroid, the diffuse fine nodular shadows disappeared. There has been no recurrence of symptoms to date, although this patient has continued living in the same environment as prior to admission. BAL findings during his prolonged follow-up revealed decrease in lymphocytes and elevation of CD4/CD8 ratio. Although the presence of granulomas suggests the possibility of an allergic reaction, no antigenic material could be identified in this case.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Local formation and degradation of endothelin-1 in guinea pig airway tissues.

Endothelin(ET)-1 and big ET-1 caused potent and sustained constriction of isolated guinea pig bronchus. The response to ET-1 was enhanced by phosphoramidon in a simple dose-related manner (0.01-1000 microM), while the response to big ET-1 was enhanced at lower doses (0.01-0.1 microM) but was suppressed at higher doses (100-1000 microM) of phosphoramidon. Big ET-1, when given intravenously (i.v.) to anesthetized guinea pigs, increased both bronchopulmonary inflation pressure and mean arterial blood pressure (2.5, 5, 10 nmol/kg i.v.). The pressor response to big ET-1 was attenuated by phosphoramidon dose-relatedly, while the pulmonary response was modified in a complex fashion composed of delayed onset and prolonged duration of action. These results suggest that ET converting as well as degrading enzymes coexist in the airway tissue and both enzymes are sensitive to phosphoramidon, so that phosphoramidon acts bifunctionally to reduce and stimulate the airway responses to big ET-1.

Animals↗

Diffuse infantile fibromatosis.

A boy 15 months old with diffuse infantile fibromatosis in the thigh is reported. A rapidly growing tumor in the right thigh was the only clinical manifestation, suggesting a malignant soft tissue tumor. Macroscopically, the lesion in the medial vastus muscle with an illdefined border gave a pepper and salt appearance. Histologically, the lesion was characterized by an abnormal proliferation of fibroblasts accompanied by some fibrosis, infiltration of chronic inflammatory cells, formation of lymphoid follicles, proliferation of capillaries and the presence of a small number of mature fat cells. No evidence of recurrence is found at present one and half years after operation.

Fibroma↗

Physical activity as a factor in the action of dietary restriction on aging: effects in Fischer 344 rats.

Dietary restriction (DR) slows the rate of aging in laboratory rodents but the mechanism of action is unknown. DR is known to induce beneficial effects in a variety of tissues and organ systems. DR also maintains high levels of physical activity over the life span. We tested the hypothesis that lifelong physical activity is an important component of the anti-aging action of DR. Male specific pathogen-free Fischer 344 rats were divided into 4 groups at 6 weeks of age: A: fed old libitum; AE: fed ad libitum and in cages with running wheels; B: fed 60% ad libitum; BE: fed 60% ad libitum and in cages with running wheels. Running activity and spontaneous cage activity were measured over 24 hours and over the life span. Metabolic rate was measured indirectly by analysis of air entering and leaving cages. AE rats exhibited low levels of running activity and ran very little beyond 6 months of age. In contrast, BE rats sustained high running levels even after all A and AE rats had died. High levels of wheel running did not decrease spontaneous cage activity. Median life span (50% survival) was in the order A = AE < B < BE. Ten percent survival was in the order A = AE < B = BE. BE rats had greatest median life span and also highest specific metabolic rate. Exercise and DR altered pathology: At death BE rats had a high incidence of cardiomyopathy, whereas A and AE rats had high incidence of chronic nephropathy and pituitary tumors. The data indicate that increased physical activity is probably not an important factor in the action of DR on aging.

Aging↗