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Biomedical subjects

N Maeda

Publications and source records attributed to N Maeda.

At least 73 records · Page 4Linked to original sources

Elevated expression of type VIII collagen gene in the atherosclerotic plaque of the ApoE-deficient mouse.

The proliferation of smooth muscle cells (SMCs) is a key event in the development of atherosclerosis. To compare the nature of SMCs from advanced atherosclerotic lesions and normal aortic segments, we established SMC lines from plaque-containing portions (P) and non-plaque portions (NP) of aortas of apolipoprotein-E-deficient mice. Differential display showed several transcripts that were differentially expressed in P and NP lines. One of the transcripts whose expression was elevated in P lines compared to their NP counterparts was for type VIII collagen. Type VIII collagen transcripts were also readily detectable by RT-PCR in RNA isolated from plaques freshly dissected from apolipoprotein-E-deficient mice, but not in RNA isolated from the normal part of the aorta or from adventitia. In situ hybridization showed localization of Col8alpha1 transcripts near the luminal surface of the plaque. Thus, differential production of type VIII collagen in SMCs from atherosclerotic plaques continues when the cells are maintained in culture.

Animals↗

A phosphatidylinositol 3-kinase docking site in the cytoplasmic tail of the Jaagsiekte sheep retrovirus transmembrane protein is essential for envelope-induced transformation of NIH 3T3 cells.

Jaagsiekte sheep retrovirus (JSRV) is the causative agent of a transmissible lung cancer of sheep known as ovine pulmonary carcinoma. Recently, we have found that the expression of the JSRV envelope (Env) is sufficient to transform mouse NIH 3T3 cells in classical transformation assays. To further investigate the mechanisms of JSRV oncogenesis, we generated a series of envelope chimeras between JSRV and the JSRV-related endogenous retroviruses of sheep (enJSRVs) and assessed them in transformation assays. Chimeras containing the exogenous JSRV SU region and the enJSRV TM region were unable to transform NIH 3T3 cells. Additional chimeras containing only the carboxy-terminal portion of TM (a region that we previously identified as VR3) of the endogenous envelope with SU and the remaining portion of TM from the exogenous JSRV were also unable to transform NIH 3T3 cells. The VR3 region includes the putative membrane-spanning region and cytoplasmic tail of the JSRV TM glycoprotein; this suggested that the cytoplasmic tail of the JSRV Env mediates transformation, possibly via a cell signaling mechanism. Mutations Y590 and M593 in the cytoplasmic tail of the JSRV envelope were sufficient to inhibit the transforming abilities of these constructs. Y590 and M593 are part of a Y-X-X-M motif that is recognized by the phosphatidylinositol 3-kinase (PI-3K). PI-3K initiates a cell signaling pathway that inhibits apoptosis and is required for a number of mitogens during the G(1)-to-S-phase transition of the cell cycle. PI-3K activates Akt by phosphorylation of threonine 308 and serine 473. We detected by Western blot analysis phosphorylated Akt in serum-starved MP1 cells (NIH 3T3 cells transformed by JSRV) but not in the parental NIH 3T3 cells. These data indicate that the cytoplasmic tail of the JSRV TM is necessary for cell transformation and suggest a new mechanism of retroviral transformation. In addition, the ability to dissociate the function of the JSRV envelope to mediate viral entry from its transforming capacity has direct relevance for the design of JSRV-based vectors that target the differentiated epithelial cells of the lungs.

3T3 Cells↗

O(2) release from erythrocytes flowing in a narrow O(2)-permeable tube: effects of erythrocyte aggregation.

The effects of erythrocyte aggregation on O(2) release were examined using O(2)-permeable fluorinated ethylenepropylene copolymer tubes (inner diameter, 25 microm; outer diameter, 100 microm). Measurements were performed using an apparatus built on an inverted microscope that contained a scanning-grating spectrophotometer with a photon count detector connected to two photomultipliers and an image processor through a video camera. The rate of O(2) release from the cells flowing in the narrow tube was determined based on the visible absorption spectrum and the flow velocity of the cells as well as the tube size. When the tube was exposed to nitrogen-saturated deoxygenated saline containing 10 mM sodium dithionite, the flowing erythrocytes were deoxygenated in proportion to the traveling distance, and the deoxygenation at a given distance increased with decreasing flow velocity and cell concentration (hematocrit). Adding Dextran T-70 to the cell suspension increased erythrocyte aggregation in the tube, which resulted in suppressed cell deoxygenation and increased marginal cell-free-layer thickness. The deoxygenation was inversely proportional to the cell-free-layer thickness. The relation was not essentially altered even when the medium viscosity was adjusted with Dextran T-40 to remain constant. The rate of O(2) release from erythrocytes in the tube was discussed in relation to the O(2) diffusion process. We conclude that the diffusion of O(2) from erythrocytes flowing in narrow tubes is inhibited primarily by erythrocyte aggregation itself and partly by thickening of the cell-free layer.

Diffusion↗

Receptor-like protein tyrosine phosphatase gamma (RPTPgamma), but not PTPzeta/RPTPbeta, inhibits nerve-growth-factor-induced neurite outgrowth in PC12D cells.

Receptor-like protein tyrosine phosphatase gamma (RPTPgamma) and PTPzeta/RPTPbeta are RPTPs which structurally resemble each other and form a distinct RPTP family. Both molecules are highly expressed in the central nervous system (CNS), though RPTPgamma is distributed also in several peripheral tissues. To date, the functional differences between RPTPgamma and PTPzeta in neuronal cells have not been made clear because their substrate and ligand molecules have not been fully elucidated. To address this issue, we established PC12D cell transfectants stably expressing rat RPTPgamma or PTPzeta and analyzed the effects on cellular response to nerve growth factor (NGF). Compared with the parent PC12D cells which extend neurites vigorously in response to NGF, the transfectants expressing RPTPgamma showed almost no neurite outgrowth. In contrast, neurite extension in PTPzeta-expressing clones on NGF treatment was the same as in parent cells. We investigated differences in tyrosine phosphorylation levels in the cellular proteins in these cells after the NGF treatment before morphological charges appeared. Despite the lack of a response, major proteins and MAP kinase in RPTPgamma-expressing PC12D cells displayed normal tyrosine phosphorylation changes on NGF treatment. However, tyrosine phosphorylation levels in the protein components purified with p13(suc1) agarose (p13(suc1) complex) from RPTPgamma-expressing cells were different from those of the control cells. (1) Tyrosine-phosphorylation levels of 140- and 117-kD proteins were significantly reduced. (2) Rapid tyrosine phosphorylation of 58-kD protein induced by NGF was absent. (3) Activities of tyrosine kinases and protein kinase C in the p13(suc1) complex were markedly reduced. We found that the p13(suc1) complex also contained cytoskeletal proteins such as MAP2 and neurofilaments, but their phosphorylation levels were not different. These results indicate that RPTPgamma and PTPzeta have different substrate specificities, and RPTPgamma inhibits NGF-induced neurite outgrowth of PC12D cells through modulation of the p13(suc1) complex.

Amino Acid Sequence↗

Pressure-independent enhancement of cardiac hypertrophy in natriuretic peptide receptor A-deficient mice.

Mice lacking natriuretic peptide receptor A (NPRA) have marked cardiac hypertrophy and chamber dilatation disproportionate to their increased blood pressure (BP), suggesting, in support of previous in vitro data, that the NPRA system moderates the cardiac response to hypertrophic stimuli. Here, we have followed the changes in cardiac function in response to altered mechanical load on the heart of NPRA-null mice (Npr1-/-). Chronic treatment with either enalapril, furosemide, hydralazine, or losartan were all effective in reducing and maintaining BP at normal levels without affecting heart weight/body weight. In the reverse direction, we used transverse aortic constriction (TAC) to induce pressure overload. In the Npr1-/- mice, TAC resulted in a 15-fold increase in atrial natriuretic peptide (ANP) expression, a 55% increase in left ventricular weight/body weight (LV/BW), dilatation of the LV, and significant decline in cardiac function. In contrast, banded Npr1+/+ mice showed only a threefold increase in ANP expression, an 11% increase in LV/BW, a 0.2 mm decrease in LV end diastolic dimension, and no change in fractional shortening. The activation of mitogen-activated protein kinases that occurs in response to TAC did not differ in the Npr1+/+ and Npr1-/- mice. Taken together, these results suggest that the NPRA system has direct antihypertrophic actions in the heart, independent of its role in BP control.

Animals↗

Estrogen receptor alpha is a major mediator of 17beta-estradiol's atheroprotective effects on lesion size in Apoe-/- mice.

The inhibitory effects of estrogen (17beta-estradiol) on atherosclerosis have been well documented in numerous animal models, and epidemiological evidence supports this protective effect in humans. The detailed mechanisms for this protection are not understood, but most are thought to be mediated through estrogen receptors (ERs), of which two are known (ERalpha and ERbeta). To investigate the role of ERalpha in the atheroprotective effect of 17beta-estradiol (E2), we ovariectomized female mice that lack apoE (AAee) or lack both apoE and ERalpha (alphaalphaee), and treated half of them with E2 for three months. E2 treatment of ovariectomized AAee females dramatically reduced the size of the lesions as well as their histological complexity. Plasma cholesterol was significantly reduced in this group, although the observed extent of protection by E2 was greater than could be explained solely by the change in lipid levels. In contrast, E2 treatment of ovariectomized alphaalphaee females caused minimal reduction in lesion size and no reduction in total plasma cholesterol compared with alphaalphaee mice without E2, demonstrating that ERalpha is a major mediator of the atheroprotective effect of E2. Nevertheless, E2 treatment significantly reduced the complexity of plaques in the alphaalphaee females, although not to the same degree as in AAee females, suggesting the existence of ERalpha-independent atheroprotective effects of E2.

Animals↗

Homocysteine-induced endoplasmic reticulum stress causes dysregulation of the cholesterol and triglyceride biosynthetic pathways.

Hepatic steatosis is common in patients having severe hyperhomocysteinemia due to deficiency for cystathionine beta-synthase. However, the mechanism by which homocysteine promotes the development and progression of hepatic steatosis is unknown. We report here that homocysteine-induced endoplasmic reticulum (ER) stress activates both the unfolded protein response and the sterol regulatory element-binding proteins (SREBPs) in cultured human hepatocytes as well as vascular endothelial and aortic smooth muscle cells. Activation of the SREBPs is associated with increased expression of genes responsible for cholesterol/triglyceride biosynthesis and uptake and with intracellular accumulation of cholesterol. Homocysteine-induced gene expression was inhibited by overexpression of the ER chaperone, GRP78/BiP, thus demonstrating a direct role of ER stress in the activation of cholesterol/triglyceride biosynthesis. Consistent with these in vitro findings, cholesterol and triglycerides were significantly elevated in the livers, but not plasmas, of mice having diet-induced hyperhomocysteinemia. This effect was not due to impaired hepatic export of lipids because secretion of VLDL-triglyceride was increased in hyperhomocysteinemic mice. These findings suggest a mechanism by which homocysteine-induced ER stress causes dysregulation of the endogenous sterol response pathway, leading to increased hepatic biosynthesis and uptake of cholesterol and triglycerides. Furthermore, this mechanism likely explains the development and progression of hepatic steatosis and possibly atherosclerotic lesions observed in hyperhomocysteinemia.

Animals↗

7-Dehydrocholesterol-dependent proteolysis of HMG-CoA reductase suppresses sterol biosynthesis in a mouse model of Smith-Lemli-Opitz/RSH syndrome.

Smith-Lemli-Opitz/RSH syndrome (SLOS), a relatively common birth-defect mental-retardation syndrome, is caused by mutations in DHCR7, whose product catalyzes an obligate step in cholesterol biosynthesis, the conversion of 7-dehydrocholesterol to cholesterol. A null mutation in the murine Dhcr7 causes an identical biochemical defect to that seen in SLOS, including markedly reduced tissue cholesterol and total sterol levels, and 30- to 40-fold elevated concentrations of 7-dehydrocholesterol. Prenatal lethality was not noted, but newborn homozygotes breathed with difficulty, did not suckle, and died soon after birth with immature lungs, enlarged bladders, and, frequently, cleft palates. Despite reduced sterol concentrations in Dhcr7(-/-) mice, mRNA levels for 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, the rate-controlling enzyme for sterol biosynthesis, the LDL receptor, and SREBP-2 appeared neither elevated nor repressed. In contrast to mRNA, protein levels and activities of HMG-CoA reductase were markedly reduced. Consistent with this finding, 7-dehydrocholesterol accelerates proteolysis of HMG-CoA reductase while sparing other key proteins. These results demonstrate that in mice without Dhcr7 activity, accumulated 7-dehydrocholesterol suppresses sterol biosynthesis posttranslationally. This effect might exacerbate abnormal development in SLOS by increasing the fetal cholesterol deficiency.

Animals↗

Blood flow structure related to red cell flow: determinant of blood fluidity in narrow microvessels.

The review article deals with phenomena of the blood flow structure (structuring) in narrow microvessels-capillaries and the adjacent arterioles and venules. It is particularly focused on the flow behavior of red blood cells (RBCs), namely, on their specific arrangements of mutual interaction while forming definite patterns of self-organized microvascular flow. The principal features of the blood flow structure in microvessels, including capillaries, include axial RBC flow and parietal plasma layer, velocity profile in larger microvessels, plug (or bolus) flow in narrow capillaries, and deformation and specific behavior of the RBCs in the flow. The actual blood flow structuring in microvessels seems to be a most significant factor in the development of pathological conditions, including arterial hypertension, brain and cardiac infarctions, inflammation, and many others. The blood flow structuring might become a basic concept in determining the blood rheological properties and disorders in the narrow microvessels. No solid theoretical (biorheological) basis of the blood flow structuring in microvessel has been found, but in the future it might become a foundation for a better understanding of the mechanisms of these properties under normal and pathological conditions in the narrowest microvessels 5 to 25 microm large. It is also a topic for further biorheological research directed to find the background of actual physiopathological phenomena in the microcirculation.

Animals↗

PPARgamma ligands increase expression and plasma concentrations of adiponectin, an adipose-derived protein.

Insulin resistance and its dreaded consequence, type 2 diabetes, are major causes of atherosclerosis. Adiponectin is an adipose-specific plasma protein that possesses anti-atherogenic properties, such as the suppression of adhesion molecule expression in vascular endothelial cells and cytokine production from macrophages. Plasma adiponectin concentrations are decreased in obese and type 2 diabetic subjects with insulin resistance. A regimen that normalizes or increases the plasma adiponectin might prevent atherosclerosis in patients with insulin resistance. In this study, we demonstrate the inducing effects of thiazolidinediones (TZDs), which are synthetic PPARgamma ligands, on the expression and secretion of adiponectin in humans and rodents in vivo and in vitro. The administration of TZDs significantly increased the plasma adiponectin concentrations in insulin resistant humans and rodents without affecting their body weight. Adiponectin mRNA expression was normalized or increased by TZDs in the adipose tissues of obese mice. In cultured 3T3-L1 adipocytes, TZD derivatives enhanced the mRNA expression and secretion of adiponectin in a dose- and time-dependent manner. Furthermore, these effects were mediated through the activation of the promoter by the TZDs. On the other hand, TNF-alpha, which is produced more in an insulin-resistant condition, dose-dependently reduced the expression of adiponectin in adipocytes by suppressing its promoter activity. TZDs restored this inhibitory effect by TNF-alpha. TZDs might prevent atherosclerotic vascular disease in insulin-resistant patients by inducing the production of adiponectin through direct effect on its promoter and antagonizing the effect of TNF-alpha on the adiponectin promoter.

3T3 Cells↗

[Ectopic ureter in 54 children].

PURPOSE: We reviewed 54 pediatric patients with ectopic ureter treated at our institution from 1975 to 1999. MATERIALS AND METHODS: Our series comprised 40 female and 14 male children, with age from 1 month to 11 years. Clinical records of the patients were reviewed retrospectively. RESULTS: Chief complaint was urinary incontinence in 24, high fever in 18, abdominal mass in 6, scrotal swelling in 3 and growth retardation in 2 patients. Two patients were found to have ectopic ureters without symptom during urological work-ups for their anorectal anomaly. The ectopic ureters opened into vagina in 19, vestibulum in 8, bladder neck in 7, urethra in 17, seminal vesicle in 2 and ejaculatory duct in 1 patient (s). Treatment was ureterocystoneostomy in 30, nephroureterectomy in 19, hemi-nephroureterectomy in 2, and ureteral ligature in 1 patient (s). Postoperatively, most of the patients became symptom free except for 6 patients in whom urinary incontinence was not cured due to mal-development of the bladder neck and sphincter, and due to Gartner's duct cyst. CONCLUSION: Urinary incontinence and urinary tract infection are most frequent presentations of ectopic ureter in children. Although most of the patients are cured with ureterocystoneostomy or nephroureterectomy, some incontinent girls continue to have urinary incontinence due to mal-development of the bladder neck and sphincter or Gartner's duct cyst.

Child↗

[All-trans retinoic acid combined with low-dose cytosine arabinoside treatment for acute myelogenous leukemia with trilineage myelodysplasia--a case report].

AML with trilineage myelodysplasia (AML/TMDS) is recognized as having of poor prognosis due to its resistance to chemotherapy in comparison with de novo AML. An AML/TMDS patient who failed to respond to ordinary induction therapy achieved complete remission with combination therapy consisting of all-trans retinoic acid (ATRA) and low-dose Ara-C. No serious toxicity was observed. ATRA combined with low-dose Ara-C could be an alternative treatment for this kind of patient.

Antimetabolites, Antineoplastic↗

[Epithelial scraping for corneal epithelial ingrowth after laser in situ keratomileusis].

BACKGROUND: Laser in situ keratomileusis (LASIK) is an effective method for correcting a wide range of myopia. However, complications sometimes occur. We report here a case treated with epithelial scraping two years and 4 months after surgery for epithelial ingrowth in the central cornea after LASIK. CASE: A 32 year-old woman who had undergone LASIK one year and 4 months before visited our hospital because of visual loss. At the first examination in our clinic, her best-corrected visual acuity was 20/60 in the right eye and 20/15 in the left eye. Epithelial ingrowth was observed in both eyes, but in the right eye, the epithelial ingrowth had reached the central cornea leading to the visual loss. The increased corneal stromal opacity decreased the visual acuity to 20/400. The patient decided to undergo epithelial scraping. The corneal flap was dissected again and epithelial scraping was performed on the stromal bed and back of the corneal flap. The visual acuity was improved from 20/400 to 20/40. However, the stromal opacity and the corneal astigmatism still remained. CONCLUSION: This case suggests that epithelial scraping should be performed immediately when ingrowing epithelium after LASIK begins to invade the central cornea.

Adult↗

Retardation of early-onset PMA-induced apoptosis in mouse neutrophils deficient in myeloperoxidase.

Neutrophil apoptosis is a mechanism involved in the resolution of inflammation. To explore the role of hypochlorous acid (HOCl) produced by neutrophils while they are undergoing apoptosis, we compared the rates of apoptosis in neutrophils isolated from normal mice and from myeloperoxidase (MPO)-deficient mice, which are unable to generate HOCl. Apoptosis in MPO-deficient neutrophils stimulated by phorbol myristate acetate (PMA) was significantly slower than in normal neutrophils during 3 h of incubation. Exposure of normal neutrophils to H(2)O(2) together with PMA resulted in a dramatic acceleration of apoptosis, and almost all of the cells revealed apoptotic morphology at 1 h. This acceleration was inhibited by cytochrome c, a superoxide scavenger. Conversely, in MPO-deficient neutrophils activated with PMA and H(2)O(2), little acceleration was observed before 1 h, although it gradually increased thereafter. This retardation was almost completely reversed when MPO or HOCl was exogenously added. These results suggest that coexistence of HOCl and superoxide accelerates the early onset of neutrophil apoptosis.

Animals↗

Enhancement of red blood cell aggregation by plasma triglycerides.

The effects of plasma triglycerides level on human red blood cells (RBCs) indices, hematological parameters, RBCs aggregation velocity and whole blood viscosity were studied at 2 hours after high-fat or low-fat meal. Proteins, triglycerides and cholesterol levels of plasma were analysed. The RBCs rouleaux formation rate was measured in 70% autologous plasma (with 30% phosphate-buffered saline, PBS) or 1 g/dl dextran T70 solution (with 4 g/dl bovine serum albumin) in PBS, using a low-shear rheoscope. The results were grouped according to triglycerides content in plasma. No significant difference in whole blood viscosity, hematological parameters, RBC indices, protein and cholesterol content was observed between high-fat and low-fat blood samples. There was a significant increase in rouleaux formation rate of samples with high triglyceride levels, when measured in 70% autologous plasma, but it was not significant in dextran T70 containing medium. In conclusion, the results obtained suggest that alteration of plasma lipid levels as well as possible changes in the cell membrane lipid composition lead to enhanced RBC aggregation.

Adult↗