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Biomedical subjects

M Suga

Publications and source records attributed to M Suga.

At least 19 recordsLinked to original sources

Use of tacrolimus, a potent antifibrotic agent, in bleomycin-induced lung fibrosis.

Idiopathic pulmonary fibrosis has a poor prognosis and few efficacious treatments. The immunosuppressant cyclosporin A has been shown to inhibit tumour growth factor (TGF)-beta-induced collagen deposition in vitro, and is widely used in Japan as a potent antifibrotic agent. Tacrolimus (FK506) is another attractive immunosuppressant, which may be useful in the treatment of pulmonary fibrosis. The aim of the present study was to elucidate the antifibrotic effect of FK506. The inhibitory effect of FK506 on collagen synthesis in cultured lung fibroblastic cells, TIG-3-20, and its antifibrotic effect on bleomycin (BLM)-induced pulmonary fibrosis in mice was investigated. FK506 inhibited TGF-beta-induced collagen synthesis, and suppressed the expression of TGF-beta type I receptor (TbetaR-I) in TIG-3-20 cells. Consistent with the in vitro findings, FK506 treatment starting on day 6 attenuated BLM-induced pulmonary fibrosis, in part, via reduced TbetaR-I expression. FK506 treatment in the acute BLM injury phase unexpectedly increased pro-inflammatory cytokine levels in bronchoalveolar lavage fluid and enhanced lung injury, resulting in poor survival. In conclusion, the present results suggest that FK506 has a potent antifibrotic effect and may be useful for the treatment of pulmonary fibrosis, although its use in the acute inflammatory phase may exacerbate lung injury.

Animals↗

A rare case of the cutaneous form of adult T-cell leukaemia/lymphoma: assessment of remission by PCR for clonal T-cell receptor gamma gene rearrangements in an electron beam-irradiated cutaneous lesion.

Adult T-cell leukaemia/lymphoma is a lymphoproliferative disorder aetiologically associated with human T-cell lymphotropic virus type I infection. A cutaneous lesion often develops in the disease, and in rare cases, is even the only manifestation. Here we report a rare case of 'cutaneous' adult T-cell leukaemia/lymphoma with neither atypical cells in the peripheral blood nor lymph node involvement. All nodular lesions were completely eliminated after local electron beam irradiation (20 Gy/nodule in total). To evaluate whether or not there were residual lymphoma cells in the skin, we performed PCR to detect clonal T cell receptor gamma gene rearrangements. The sample from the nodule before irradiation showed evidence of a rearranged band, which was not detected at the same site after treatment nor in any peripheral blood. The findings suggest that this procedure is useful for the evaluation of therapeutic effects and the early detection of lymphoma recurrence.

Female↗

Expression of lectin-like oxidized low-density lipoprotein receptor-1 in allografted hearts.

The pathogenesis of posttransplant coronary artery disease, which is thought to be a major form of chronic rejection after cardiac transplantation, is not fully understood. Lectin-like oxidized low-density lipoprotein receptor-1 (LOX-1) on endothelial cells induces reduction of NO release and up-regulation of adhesion molecules, thereby contributing to the development of vascular atherosclerosis. Herein, we investigated the expression of LOX-1 mRNA in murine allografted hearts that develop diffuse coronary obstruction. Allogeneic (C57BL/6 to BALB/c) and syngeneic (C57BL/6 to C57BL/6) heterotopic cardiac transplants were removed the 10th posttransplant day. LOX-1 mRNA expression was measured by RT-PCR. The heartbeat of the allografts gradually weakened and was almost stopped on day 10, whereas syngeneic hearts continued to pulsate throughout the experiment. Histologically, allografts showed fibrous luminal narrowing of the coronary arteries with severe mononuclear cell infiltration. In contrast, the vascular architecture of syngeneic grafts was almost normal. Marked increase in LOX-1 mRNA expression was observed only in allografts. The results indicate that alloimmune responses induce up-regulation of LOX-1 mRNA in transplanted hearts. Increased LOX-1 may be involved in the progression of obstructive vascular changes.

Animals↗

A case of secondary hyperparathyroidism whose high turnover bone improved after the direct injection of acetic acid into the parathyroid glands.

A 48-year-old male was admitted to our hospital because of increasing knee pain and thigh muscle weakness. He had been undergoing hemodialysis for 15 years. His serum intact PTH value was 1,600 pg/ml with elevated ALP (387 IU/l) and osteocalcin (400 ng/ml). Ultrasound (US) examination disclosed 2 enlarged parathyroid glands. Because of poor cardiac function, an US-guided acetic acid injection into the enlarged parathyroids (percutaneous acetic acid injection therapy; PAIT) was performed. Soon after the PAIT, his arthralgia disappeared. Serum PTH fell to 220 pg/ml with the regression of bone marker 1 year following the PAIT. The size of his parathyroid glands dramatically regressed and 1 of the enlarged glands finally disappeared. Repeated bone biopsies following double tetracycline labeling showed a significant improvement from osteitis fibrosa to the mild lesion. This is the first known case report of severe secondary hyperparathyroidism whose PTH and high turnover bone was successfully managed by the direct injection of acetic acid into the parathyroid glands. As long as we pay attention to avoiding recurrent nerve palsy induced by acetic acid, US-guided PAIT may be an alternative to percutaneous ethanol injection therapy (PEIT) or surgical parathyroidectomy (PTx).

Acetic Acid↗

Prognostic factors of nosocomial pneumonia in general wards: a prospective multivariate analysis in Japan.

To determine prognostic factors of nosocomial pneumonia in general wards, we performed prospective clinical study using multivariate statistical analysis. Eighty patients with nosocomial pneumonia in our units were enrolled in the study between December, 1996 and January 1998. Clinical setting and severity of pneumonia were evaluated, and laboratory data were collected at the occurrence of nosocomial pneumonia. Death due to nosocomial pneumonia occurred in 29 of 80 patients (mortality rate 36%). Univariate analysis showed the following factors associated with mortality: the presence of an ultimately or rapidly fatal underlying condition, prior antibiotics use, use of antacids, presence of 'high-risk' micro-organisms, sepsis, respiratory failure, multiple organ failure, bilateral chest X-ray infiltrates, a Simplified Acute Physiology Score (SAPS) index > or = 11, albumin < 3.0 g dl(-1), and lactate dehydrogenase (LDH) > or = 796 IUI(-1). Furthermore, multivariate analysis identified three factors significantly associated with mortality: the presence of an ultimately or rapidly fatal underlying condition [odds ratio (OR)=7.0; 95% confidence interval (CI)=1.2-41.1; P=0.03]; SAPS index > or = 11 (OR=7.6; 95% CI=1.1-51.9, P=0.04); LDH > or = 796 IUI(-1) (OR=28.2; 95% CI=2.0-406, P=0.01). Our study indicates that host factors and disease severity factors are important prognostic factors of nosocomial pneumonia in general wards.

Aged↗

Effects of inducible nitric oxide synthase and xanthine oxidase inhibitors on SEB-induced interstitial pneumonia in mice.

The authors have previously reported that intratracheal instillation of staphylococcal enterotoxin-B (SEB) induced interstitial pneumonia (IP) in autoimmune-prone mice. SEB-reactive T-cells were critically involved in the development of IP in this model. Concern has arisen about the hazards of reactive oxygen species (ROS) and reactive nitrogen species (RNS) in the process of lung injury and fibrosis. Therefore, the involvement of nitric oxide (NO) and superoxide anion (O2-) in the pathogenesis of IP in this autoimmune-prone model has been investigated. Nitrite/nitrate levels were increased in bronchoalveolar lavage (BAL) fluid and serum from SEB-injected mice. The signal of the NO-(N-(dithiocarboxy) sarcosine)2-Fe2+ complex was detected in the SEB-injected lung and whole blood by electron paramagnetic resonance (EPR) spectroscopy. NO production was significantly decreased by aminoguanidine (AG) treatment. Xanthine oxidase (XO) activity in the lung, BAL fluid, and plasma was increased with instillation of SEB, and 4-amino-6-hydroxypyrazolo(3,4-d)-pyrimidine (AHPP) significantly inhibited XO activity. Moreover, both AG and AHPP significantly decreased production of pro-inflammatory cytokines, numbers of infiltrated cells in BAL fluid, and the area of thickened alveolar septa in the SEB-injected lung. In conclusion, the overproduction of nitric oxide and super oxide anion were implicated in the pathogenesis of interstitial pneumonia, and inducible nitric oxide synthase and xanthine oxidase inhibitors had protective effects against interstitial pneumonia in this model.

Animals↗

[A resected case of solitary fibrous tumor of the pleura].

A 45-year-old female with solitary fibrous tumor (SFT) of the pleura was reported. Chest X-ray and CT scan on admission showed a large tumor in the right thoracic cavity. A preoperative needle biopsy was performed. The microscopic appearance of biopsied specimen revealed many spindle cells. And an immunohistochemical study was positive for CD 34 and negative for keratin, epithelial membrane antigen, alpha-smooth muscle actin, S-100 protein. So SFT was strongly suspected and an operation was performed. A tumor arised from the visceral pleura of right middle lobe and was pedunculated. The tumor was 13 x 10 x 7.5 cm in size. An immunohistochemical study of the tumor was positive for CD 34, and negative for SMA, ki-67. From these immunohistochemical stainings and microscopic findings, the tumor was diagnosed as SFT. An immunohistochemical study of the tumor seems to be very useful for the diagnosis of SFT.

Female↗

In vivo transtracheal adenovirus-mediated transfer of human interleukin-10 gene to donor lungs ameliorates ischemia-reperfusion injury and improves early posttransplant graft function in the rat.

We examined the effect of adenovirus-mediated transtracheal transfer of the human interleukin 10 (hIL-10) gene on lung ischemia-reperfusion (IR) injury, which is the insult due to hypothermic preservation plus graft reperfusion, and posttransplant lung function in Lewis rat lungs. Thirty rats were divided into 6 groups (n = 5). Groups 1 and 4 received 5 x 10(9) PFU of Ad5E1RSVhIL-10, groups 2 and 5 received 5 x 10(9) PFU of Ad5BGL2 ("empty" vector), and groups 3 and 6 received 3% sucrose (diluent). After 24 hr of in vivo transfection, lungs were stored at 4 degrees C (cold ischemic time, CIT) for 6 hr (groups 1-3) or 24 hr (groups 4-6) before transplantation. After 2 hr of reperfusion, lung function was assessed by oxygenation (FIO2, 1.0), airway pressure (AwP), and wet-to-dry (W/D) weight ratios. Rat tumor necrosis factor alpha (rTNF-alpha), interferon gamma (IFN-gamma), IL-10, and hIL-10 were measured in graft tissue and recipient plasma by ELISA and detected by immunohistochemistry (IHC). Partial pressure of oxygen (PaO2) levels in the hIL-10 group (6 hr of CIT) were higher than in empty vector and diluent groups (PaO2, 530 +/- 23 vs. 387 +/- 31 and 439 +/- 27 mmHg, respectively, p < 0.05). IL-10 rats after 24 hr of CIT showed higher PaO2 levels (260 +/- 29 mmHg) than empty vector (96 +/- 24 mmHg) or diluent (133 +/- 10 mmHg) lungs (p < 0.05). AwP and W/D ratios were reduced in hIL10 lungs (p < 0.05) compared with the other groups. rTNF-alpha and INF-gamma were reduced in tissue and plasma in groups 1 and 4 (p < 0.05). rIL-10 was reduced in the tissue of hIL-10 lungs (p < 0.05). IHC showed equal distribution of cytokines in tissue and abundant transgene expression in large and small airway epithelium in hIL-10 lungs.

Adenoviridae↗

Osmotic shock induces G1 arrest through p53 phosphorylation at Ser33 by activated p38MAPK without phosphorylation at Ser15 and Ser20.

Osmotic shock induced transient stabilization of p53, possibly due to increased degradation of Mdm2. Stabilized p53 was activated by p38(MAPK), resulting in G(1) arrest through induction of p21(WAF1). Among the postulated phosphorylation sites involved in p53 stabilization or activation (Ser(15), Ser(20), Ser(33), and Ser(46)), only Ser(33) was phosphorylated. Furthermore, interaction of p53 with the transcriptional coactivator p300 was induced, and Lys(382) of p53 was acetylated. Although inhibition of p38(MAPK) did not prevent nuclear accumulation of p53, phosphorylation of Ser(33) was markedly suppressed by SB203580, a specific inhibitor of p38(MAPK). Under these conditions, acetylation of Lys(382) and induction of p21(WAF1) were also inhibited, and cells with elevated levels of p53 showed normal cell cycle progression. Activated p38(MAPK) phosphorylated endogenous p53 at Ser(33) in living cells. In stable transformants expressing dominant negative MKK6, an upstream protein kinase of p38(MAPK), p53 stabilization was induced normally following osmotic shock, but phosphorylation of Ser(33), acetylation of Lys(382), and induction of p21(WAF1) were almost completely inhibited. These results suggest that phosphorylation at Ser(33) by p38(MAPK) is critical for activation of p53 following osmotic shock. Phosphorylation of neither Ser(15) nor Ser(20) was needed in this activation.

Acetylation↗

Role of monocyte chemoattractant protein-1 in Propionibacterium acnes-induced pulmonary granulomatosis.

The inflammatory process in granulomatous disorders such as sarcoidosis is mainly the consequence of delayed hypersensitivity induced by causative antigens. Propionibacterial DNA was isolated recently by PCR from human sarcoidosis tissue. Hence, we developed a model using sensitized rabbits for T cell-mediated pulmonary granulomatosis induced by Propionibacterium acnes (P. acnes) and investigated the role of monocyte chemoattractant protein-1 (MCP-1) in the pathogenesis of the granuloma formation in vivo. Intravenous injection of P. acnes into sensitized rabbits induced massive pulmonary granulomas on day 3. Maximum levels of MCP-1 in sera and bronchoalveolar lavage fluid (BALF) were detected on day 1 and preceded recruitment of monocyte/macrophages and T cells. In BALF, monocyte chemotaxis peaked 1 day after P. acnes challenge, and T cell chemotaxis peaked 3 days after P. acnes challenge. Anti-MCP-1 IgG inhibited monocyte chemotaxis by 80.2% and T cell chemotaxis by 35.7%. Phenotypic analysis of migrating T cells revealed that activated and memory T cells (CD26(+)/CD45RO(+)) but not naive cells were preferentially attracted to BALF. Administration of MCP-1 antiserum in vivo inhibited the development of granulomas in both size 59.9% reduction and number 28.6% reduction, the number of infiltrating leukocytes in BALF, and the expression of adhesion molecules on leukocytes in peripheral blood and BALF. Our data indicate that MCP-1 plays important roles in granuloma formation by attracting and activating specific types of cells in this model. Furthermore, results suggest that the rabbit model resembles human angiocentric granulomatosis and would be useful for investigating the immunopathogenesis of human pulmonary granulomatosis.

Animals↗

Molecular dynamics simulation of the calmodulin-trifluoperazine complex in aqueous solution.

Trifluoperazine (TFP) has been widely studied in relation to its mode of binding and its inactivation of calmodulin (CaM). Most studies in solution have indicated that CaM has two high-affinity binding sites for TFP. The crystal structure of the 1:4 CaM-TFP complex (CaM-4TFP) shows that three TFP molecules bind to the C-domain of CaM, and that one TFP molecule binds to the N-domain. In contrast, the crystal structure of the 1:1 CaM-TFP complex (CaM-1TFP) shows that one TFP molecule binds to the C-domain. It has been thought that the binding of one TFP molecule to the C-domain is followed by binding to the N-domain. The crystal structure of the 1:2 CaM-TFP complex (CaM-2TFP), moreover, has recently been determined, showing that two TFP molecules bind to the C-domain. In order to determine the structure of the CaM-TFP complex and to clarify the interaction between CaM and TFP in solution, we performed a molecular dynamics simulation of the CaM-TFP complex in aqueous solution starting from the CaM-4TFP crystal structure. The obtained solution structure is very similar to the CaM-2TFP crystal structure. The computer simulation showed that the binding ability of the secondary binding site of the C-domain is higher than that of the primary binding site of the N-domain.

Binding Sites↗

Caspase-3-deficiency induces hyperplasia of supporting cells and degeneration of sensory cells resulting in the hearing loss.

Caspase-3 is one of the cystein proteases that play essential roles in programmed cell death. As such, brain development is profoundly affected by caspase-3-deficiency, resulting in hyperplasia and abnormal cell organization (Kuida et al., Nature 1996;384:368-372). In the present study, we used caspase-3 (-/-) mice to show that caspase-3 deficiency results in severe hearing loss, hyperplasia of supporting cells and degeneration of sensory hair cells. The greater epithelial ridge, a remnant of the primordial organ of Corti, persists throughout all of the turns of cochlea in 2-week-old caspase-3 (-/-) mice, which indicates that the morphology of the cochlea is immature. The number of border cells, that develop from the greater epithelial ridge and are one of the supporting cells of the inner hair cell, increase significantly in both 2- and 5-week-old caspase-3 (-/-) mice. On the other hand, abnormal fused stereocilia can be seen in both 2- and 5-week-old caspase-3 (-/-) mice, and disarrangement and loss of sensory hair cells are observed in 5-week-old caspase-3 (-/-) mice. Taken together, both hyperplasia and degeneration occur simultaneously in the inner ear of the caspase-3 (-/-) mice, suggesting that caspase-3-dependent apoptosis is necessary for the development and formation of a properly functioning auditory system in mammals.

Animals↗

High efficiency transformation of Schizosaccharomyces pombe pretreated with thiol compounds by electroporation.

A highly efficient method for transformation of the fission yeast Schizosaccharomyces pombe by electroporation has been developed. Significantly higher transformation efficiency was obtained when intact cells grown in SD medium (0.67% Bacto yeast nitrogen base without amino acids, 2% glucose) were pretreated with thiol compounds before an electric pulse was applied to the cells. Among the thiol compounds tested, dithiothreitol (DTT) was the most effective for pretreatment. A high transformation efficiency was obtained when the cells were pretreated with 25 mM DTT at 30 degrees C for 15 min in an osmotically adjusted buffer, since the cells were sensitive to osmotic pressure. It was important to exclude glucose from the DTT pretreatment buffer, as it caused a drastic decrease in efficiency. The optimal cell concentration and amount of DNA during the electric pulse were 1x10(9) cells/ml and 10 ng, respectively. The maximum transformation efficiency, 1.2x10(7) transformants/microg plasmid DNA, was obtained when an electric pulse of 11.0 kV/cm was applied for 5 ms. Furthermore, the high competency of cells pretreated with DTT was maintained by freezing them in a non-permeating cryoprotectant such as sorbitol.

Cryopreservation↗

Expression of matrix metalloproteinases in pigs with hyperoxia-induced acute lung injury.

The aim of this study was to determine the role of matrix metalloproteinases (MMPs) in the pathogenesis of acute lung injury induced by hyperoxia. Twenty-three pigs were exposed in sealed cages to >80% oxygen (for 24-120 h) or room air. Correlation between MMP-2/MMP-9 activity, measured by gelatin zymography in bronchoalveolar lavage fluid (BALF), and the histological findings and pathological parameters were examined in detail. Sources of these MMPs in the hyperoxic lung were analysed by immunohistochemistry. The histological progression of acute lung injury in this model ranged from the early exudative to the early proliferative phase of diffuse alveolar damage (DAD). MMP-2 and -9 activities were elevated under prolonged hyperoxic exposure. MMP-9 activity correlated significantly with the oxygen tension in arterial blood/inspiratory oxygen fraction, the lung wet-to-dry weight ratio, and the number of neutrophils in BALF, whereas MMP-2 activity did not correlate at all with these factors. MMP-9 activity correlated more closely with the pathological findings of DAD than did MMP-2 activity. Strong MMP-9 expression was observed in neutrophils, alveolar macrophages as well as alveolar lining epithelial cells. These results suggest that matrix metalloproteinase. which may derive from neutrophils recruited into airspaces, plays an important role in the pathogenesis of hyperoxic diffuse alveolar damage

Animals↗

Erythromycin attenuates an experimental model of chronic bronchiolitis via augmenting monocyte chemoattractant protein-1.

The mechanisms underlying the therapeutic efficacy of erythromycin (EM) in diffuse panbronchiolitis (DPB) was investigated. For this purpose, an experimental rabbit model of DPB induced by Pseudomonas aeruginosa inoculation was employed. Daily administration of EM (3 mg x kg x day(-1)) led to an increase in the number of macrophages in bronchoalveolar lavage fluid (BALF) at an early phase, while reducing the size of granulomatous lesions at the late phase without affecting the number of viable bacteria recovered from the infected lung. Reverse transcriptase polymerase chain reaction (RT-PCR), enzyme-linked immunosorbent assay (ELISA) and immunohistochemical studies showed that monocyte chemoattractant protein (MCP)-1 was produced in both BALF and infected lung. EM treatment resulted in a significant increase in the level of MCP-1 in BALF, while reducing that of tumour necrosis factor (TNF)-alpha, interleukin (IL)-1beta and IL-8. EM also increased MCP-1 messenger ribonucleic acid (mRNA) and protein expression in the infected lung. MCP-1 blockade abolished the protective effect of EM, as neutralization of MCP-1 with anti-MCP-1 antibodies reduced the EM-induced increase in the number of macrophages in BALF, and augmented size of the granulomatous lesions, as compared to control. The results of the present study suggest that erythromycin attenuates the pulmonary granuloma formation, at least in part, by increasing the production of monocyte chemoattractant protein-1.

Animals↗

Expression of discoidin domain receptor 1 tyrosine kinase on the human bronchial epithelium.

Discoidin domain receptor 1 (DDR1) tyrosine kinases constitute a novel family of receptors characterized by a unique structure in the ectodomain (discoidin-I domain). The DDR1 ligand is the extracellular matrix protein collagen. To identify receptor tyrosine kinases (RTKs) involved in control of growth and differentiation of human bronchial epithelial (HBE) cells, a polymerase chain reaction-based search for RTKs in HBE cells was performed. DDR1 was the most abundant clone identified. Northern analysis detected a 3.6 kb DDR1 messenger ribonucleic acid (mRNA) expressed in HBE cells and transformed HBE lines, BET-1A and BEAS-2B. In addition, fluorescence-activated cell sorter (FACS) analyses using an anti-DDR1 antibody showed that DDR1 was expressed on HBE cells and two HBE lines. Immunohistochemical staining using human bronchial tissue demonstrated that DDR1 was mainly expressed at the basolateral cell surface of the bronchial epithelium. Furthermore, immunostaining of type IV collagen, a major component of the basement membrane, clearly showed that the basement membrane was closely attached to the basal surface of the bronchial epithelium. Since collagen binds to and activates discoidin domain receptor 1 tyrosine kinase, colocalization of discoidin domain receptor 1 and its ligand type IV collagen demonstrates a potential interaction of discoidin domain receptor 1 on the bronchial epithelium with type IV collagen. Further study of this interaction may define the functional significance of the collagen-discoidin domain receptor 1 signalling pathway in health and in disease.

Blotting, Northern↗