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S Kudoh

Publications and source records attributed to S Kudoh.

At least 19 recordsLinked to original sources

Mechanical stretch induces hypertrophic responses in cardiac myocytes of angiotensin II type 1a receptor knockout mice.

Many lines of evidence have suggested that angiotensin II (AngII) plays an important role in the development of cardiac hypertrophy through AngII type 1 receptor (AT1). To determine whether AngII is indispensable for the development of mechanical stress-induced cardiac hypertrophy, we examined the activity of mitogen-activated protein kinase (MAPK) family and the expression of the c-fos gene as hypertrophic responses after stretching cultured cardiac myocytes of AT1a knockout (KO) mice. When cardiac myocytes were stretched by 20% for 10 min, extracellular signal-regulated protein kinases (ERKs) were strongly activated in KO cardiomyocytes as well as wild type (WT) myocytes. Both basal and stimulated levels of ERKs were higher in cardiomyocytes of KO mice than in those of WT mice. Activation of another member of the MAPK family, p38(MAPK), and expression of the c-fos gene were also induced by stretching cardiac myocytes of both types of mice. An AT1 antagonist attenuated stretch-induced activation of ERKs in WT cardiomyocytes but not in KO cardiomyocytes. Down-regulation of protein kinase C inhibited stretch-induced ERK activation in WT cardiomyocytes, whereas a broad spectrum tyrosine kinase inhibitor (genistein) and selective inhibitors of epidermal growth factor receptor (tyrphostin, AG1478, and B42) suppressed stretch-induced activation of ERKs in KO cardiac myocytes. Epidermal growth factor receptor was phosphorylated at tyrosine residues by stretching cardiac myocytes of KO mice. These results suggest that mechanical stretch could evoke hypertrophic responses in cardiac myocytes that lack the AT1 signaling pathway possibly through tyrosine kinase activation.

Animals

Tenascin suppresses CD3-mediated T cell activation.

Tenascin (TN) is an extracellular matrix protein which interferes with fibronectin (FN)-dependent cell attachment and activation as a natural antagonist to FN action. In this study, we examined the inhibitory effect of TN on T cell proliferation induced by immobilized anti-CD3 Ab combined with various costimulators in a serum-free condition. Consistent with previous studies, human T cell activation induced by anti-CD3 plus FN was completely inhibited by the addition of TN. Interestingly, TN could interfere with T cell proliferations costimulated by various very late activation antigen (VLA) integrin/ligand interactions such as VLA-4/FN, VLA-5/FN and VLA-6/laminin. Furthermore, lymphocyte function-associated antigen 1 (LFA-1)-, CD2- and CD28-costimulated T cell activation were also inhibited by TN, while TN could not affect the phorbol ester-stimulated T cell proliferation. Collectively, TN inhibits anti-CD3-induced T cell proliferation irrespectively of costimulatory molecules, suggesting that TN acts as a generally immunosuppressive extracellular matrix protein which potentially interferes with T cell receptor/CD3-mediated T cell activation.

CD3 Complex

Methylated Nepsilon-dansyl-L-lysine as a fluorogenic reagent for the chiral separation of carboxylic acids.

Dansyl amino acids having a free amino group and an asymmetric carbon atom were examined as a labeling reagent for chiral compounds containing carboxylic moieties to realize enantiomeric separation as well as fluorimetric determination. We tested dansyllysine by reacting it with (+)- and (-)-ibuprofen as a model carboxylic enantiomer. As the intramolecular carboxylic moiety of the dansyl amino acid interfered in the condensation reaction to form an amide bond with the carboxylic acid, the moiety was masked by methylation with trimethylsilyldiazomethane before the reaction. These derivatives were reacted with (+)- and (-)-ibuprofen and better enantiomeric resolution was achieved with methylated dansyllysine on a reversed-phase column. The derivatisation reaction was facilitated by the use of catalysts that are commonly employed in peptides synthesis. The reaction was completed within 5 min at room temperature when diethyl phosphorocyanidate was used. Due to the dansyl moiety, methylated dansyl-lysine enables a sensitive determination of ibuprofen with a fluorescence detector, in addition to the capability of enantiomer resolution. In tests, the detection limits for (+) and (-)-ibuprofen were 4 pmol per injection (S/N=3) at an excitation wavelength of 340 nm and an emission wavelength of 523 nm. Linear responses for the determination of (+) and (-)-ibuprofen in human urine were also demonstrated (r > or = 0.998) in the range from 10 to 1000 ng/ml. The precision and accuracy for urine samples spiked with (+)- and (-)-ibuprofen at 10, 100 and 1000 ng/ml were <10.1 and <14.6% (n=4), respectively.

Amino Acids

Pressure overload induces cardiac hypertrophy in angiotensin II type 1A receptor knockout mice.

BACKGROUND: Many studies have suggested that the renin-angiotensin system plays an important role in the development of pressure overload-induced cardiac hypertrophy. Moreover, it has been reported that pressure overload-induced cardiac hypertrophy is completely prevented by ACE inhibitors in vivo and that the stored angiotensin II (Ang II) is released from cardiac myocytes in response to mechanical stretch and induces cardiomyocyte hypertrophy through the Ang II type 1 receptor (AT1) in vitro. These results suggest that the AT1-mediated signaling is critical for the development of mechanical stress-induced cardiac hypertrophy. METHODS AND RESULTS: To determine whether AT1-mediated signaling is indispensable for the development of pressure overload-induced cardiac hypertrophy, pressure overload was produced by constricting the abdominal aorta of AT1A knockout (KO) mice. Quantitative reverse transcriptase-polymerase chain reaction revealed that the cardiac AT1 (probably AT1B) mRNA levels in AT1A KO mice were <10% of those of wild-type (WT) mice and were not affected by pressure overload. Chronic treatment with subpressor doses of Ang II increased left ventricular mass in WT mice but not in KO mice. Pressure overload, however, fully induced cardiac hypertrophy in KO as well as WT mice. There were no significant differences between WT and KO mice in expression levels of fetal-type cardiac genes, in the left ventricular wall thickness and systolic function as revealed by the transthoracic echocardiogram, or in the histological changes such as myocyte hypertrophy and fibrosis. CONCLUSIONS: AT1-mediated Ang II signaling is not essential for the development of pressure overload-induced cardiac hypertrophy.

Angiotensin II

Acute pressure overload could induce hypertrophic responses in the heart of angiotensin II type 1a knockout mice.

Increasing evidence has suggested that locally produced angiotensin II (Ang II) plays an important role in the development of cardiac hypertrophy through the Ang II type 1 receptor (AT1). We and others have recently reported that Ang II is critical for mechanical stress-induced hypertrophic responses in vitro. Using AT1a knockout (KO) mice, we examined whether Ang II is indispensable for pressure overload-induced cardiac hypertrophy in the present study. Reverse-transcriptase polymerase chain reaction analysis revealed that AT1 mRNA levels were <10% in the heart of KO mice compared with wild-type (WT) mice, but the Ang II type 2 receptor gene was expressed at almost the same levels in the hearts of both mice. Intravenous infusion of subpressor dose of Ang II induced c-fos gene expression in the hearts of WT mice but not KO mice. Acute pressure overload, however, induced expressions of immediate-early response genes and activations of mitogen-activated protein kinases in the hearts of KO mice as well as WT mice. Both basal and activated levels of all these responses were significantly higher in KO mice than in WT mice. Pressure overload markedly increased the heart weight-to-body weight ratio in both mice strains at 14 days after aortic banding. These results suggest that acute hypertrophic responses could be induced by pressure overload in the in vivo heart without AT1 signaling.

Angiotensin II

Role of ion channels and exchangers in mechanical stretch-induced cardiomyocyte hypertrophy.

We have previously reported that stretching of cardiomyocytes activates the phosphorylation cascade of protein kinases, including Raf-1 kinase and mitogen-activated protein (MAP) kinases, followed by an increase in protein synthesis partly through enhanced secretion of angiotensin II and endothelin-1. Membrane proteins, such as ion channels and exchangers, have been postulated to first receive extracellular stimuli and evoke intracellular signals. The present study was performed to determine whether mechanosensitive ion channels and exchangers are involved in stretch-induced hypertrophic responses. Neonatal rat cardiomyocytes cultured on expandable silicone dishes were stretched after pretreatment with a specific inhibitor of stretch-sensitive cation channels (gadolinium and streptomycin), of ATP-sensitive K+ channels (glibenclamide), of hyperpolarization-activated inward channels (CsCl), or of the Na+-H+ exchanger (HOE 694). Pretreatment with gadolinium, streptomycin, glibenclamide, and CsCl did not show any inhibitory effects on MAP kinase activation by mechanical stretch. HOE 694, however, markedly attenuated stretch-induced activation of Raf-1 kinase and MAP kinases by approximately 50% and 60%, respectively, and attenuated stretch-induced increase in phenylalanine incorporation into proteins. In contrast, HOE 694 did not inhibit angiotensin II-and endothelin-1-induced Raf-1 kinase and MAP kinase activation. These results suggest that among many mechanosensitive ion channels and exchangers, the Na+-H+ exchanger plays a critical role in mechanical stress-induced cardiomyocyte hypertrophy.

Angiotensin II

Cell type-specific angiotensin II-evoked signal transduction pathways: critical roles of Gbetagamma subunit, Src family, and Ras in cardiac fibroblasts.

Angiotensin II (Ang II) induces hypertrophy of cardiac myocytes and hyperplasia of cardiac fibroblasts. To determine the molecular mechanism by which Ang II displayed different effects on cardiac myocytes and fibroblasts, we examined signal transduction pathways leading to activation of extracellular signal-regulated kinases (ERKs). Ang II-induced ERK activation was abolished by pretreatment with pertussis toxin and by overexpression of the Gbetagamma subunit-binding domain of the beta-adrenergic receptor kinase 1 in cardiac fibroblasts but not in cardiac myocytes. Inhibition of protein kinase C strongly inhibited activation of ERKs by Ang II in cardiac myocytes, whereas inhibitors of tyrosine kinases but not of protein kinase C abolished Ang II-induced ERK activation in cardiac fibroblasts. Overexpression of C-terminal Src kinase (Csk), which inactivates Src family tyrosine kinases, suppressed the activation of transfected ERK in cardiac fibroblasts. Ang II rapidly induced phosphorylation of Shc and association of Shc with Grb2. Cotransfection of the dominant-negative mutant of Ras or Raf-1 kinase abolished Ang II-induced ERK activation in cardiac fibroblasts. Overexpression of Csk or the dominant-negative mutant of Ras had no effects on Ang II-induced ERK activation in cardiac myocytes. These findings suggest that Ang II-evoked signal transduction pathways differ among cell types. In cardiac fibroblasts, Ang II activates ERKs through a pathway including the Gbetagamma subunit of Gi protein, tyrosine kinases including Src family tyrosine kinases, Shc, Grb2, Ras, and Raf-1 kinase, whereas Gq and protein kinase C are important in cardiac myocytes.

Angiotensin II

Molecular cloning of human homolog of yeast GAA1 which is required for attachment of glycosylphosphatidylinositols to proteins.

Anchoring proteins to cell surface membranes by glycosylphosphatidylinositols (GPIs) is important. We have isolated a component of the putative transamidase machinery, hGaa1p (human GPI anchor attachment protein). hGAA1 cDNA is approximately 2 kb in length and codes 621 amino acids. The amino acid sequence of hGaa1p is 25%, identical and 57% homologous to that of yeast Gaa1p. Moreover, Kite-Dolittle hydrophobicity plots of both proteins show marked similarity. hGAA1 gene is expressed ubiquitously and mRNA levels are higher in the undifferentiated state. Overexpression of antisense hGAA1 in human K562 cells significantly reduced the production of a reporter GPI-anchored protein.

Amino Acid Sequence

Irinotecan (CPT-11) in combination with weekly administration of cisplatin (CDDP) for non-small-cell lung cancer.

PURPOSE: CPT-11 (60 mg/m2 on days 1, 8 and 15) in combination with CDDP (80 mg/m2 on day 1) has shown promising antitumor activity for non-small-cell lung cancer (NSCLC), but dose-limiting toxicities (DLT) are leukopenia and diarrhea, with a wide variation among patients. To estimate weekly CDDP administration in combination with CPT-11, a phase I study for patients with advanced NSCLC was conducted. METHODS: Patients were treated with CPT-11 at a fixed dose of 60 mg/m2 together with CDDP at 27 mg/m2 (level 1, 6 patients), 33 mg/m2 (level 2, 12 patients), and 40 mg/m2 (level 3, 6 patients) with 1600 ml hydration on days 1, 8 and 15 over 4 weeks. During the treatment course, drug was not administered on the day it was due in the presence of leukopenia (< 3000/ml) and/or diarrhea. RESULTS: The planned administration was completed in 5 of 6 patients at level 1, 6 of 12 patients at level 2, and 2 of 6 patients at level 3. The most common toxicity observed was leukopenia (five patients with grade 3 and one patient with grade 4). Leukopenia was considered to be a DLT, and the maximum tolerated dose (MTD) was level 2. Although there were patients who suffered from diarrhea (four patients with higher than grade 2), diarrhea was judged not to be a DLT with this weekly regimen. Nausea and vomiting were mild. Pharmacokinetic analysis of free platinum from CDDP demonstrated that the area under the curve (AUC) from 33 mg/m2 CDDP was 0.92 +/- 0.29 microg/ml h. In 13 patients evaluated for response, the response rate was 54%. CONCLUSION: The value of weekly administration of CDDP in combination with CPT-11 was shown by (1) diarrhea not being dose-limiting, (2) mild nausea, (3) well-maintained AUC of free platinum, and (4) promising activity.

Adult

Drug-induced pneumonitis caused by sulfamethoxazole, trimethoprim during treatment of Pneumocystis carinii pneumonia in a patient with refractory ulcerative colitis.

We recently treated a patient with intractable ulcerative colitis complicated with Pneumocystis carinii pneumonia in whom sulfamethoxazole/trimethoprim caused pneumonitis. The pneumonitis was difficult to differentiate from worsening of the infection or the appearance of another opportunistic infection. The patient's history of sulfasalazine (sulfonamide)-induced pneumonitis made diagnosis possible. The CD4/CD8 ratio of lymphocyte subsets in bronchoalveolar lavage fluid was decreased at the diagnosis of Pneumocystis carinii pneumonia and this ratio had increased when drug-induced pneumonitis was diagnosed. Topical administration of beclomethasone dipropionate by enema was a safe and effective for the treatment of such a compromised patient with active colitis.

Adult

Risk factors of pneumonitis following chemoradiotherapy for lung cancer.

The purpose of this retrospective study was to identify risk factors associated with development of pneumonitis following chemoradiotherapy (CRT). We examined 60 patients (pts) who received CRT from May 1993 to August 1995. Factors evaluated included total radiation dose, field-size, irradiated site, type of chemotherapy, pulmonary fibrosis and treatment schedule (concurrent versus sequential). There were 17 pts (28.3%) who had > or = Grade 2 pulmonary toxicity. There was no significant relationship between total radiation dose, field-size > or = 200 cm2, pulmonary fibrosis or treatment schedule and risk of pneumonitis. In the sequential treatment group (22 pts), no relationship was noted between any factor and the risk of pneumonitis, while in the concurrent treatment group (38 pts), the incidence of pneumonitis was more frequent (53.8%) in patients with field-size > or = 200 cm2 than in patients with field-size < 200 cm2 (P < 0.05). In those who received concurrent treatment, including weekly CPT-11, pneumonitis was more frequent (56.3%) than in those without CPT-11 (13.6%, P < 0.01). When the lower lung field was included in the radiation site, the incidence of pneumonitis was 70% compared with 20% for other sites (P < 0.01). Multivariate analysis revealed a significant relationship between radiation site and the risk of pneumonitis (P = 0.0096). CPT-11 was significant (P = 0.038) only in the concurrent group. Pneumonitis was reversible in all but one pt by steroid therapy. Thus, irradiated site (included lower lung field) and concurrent CRT used with weekly CPT-11 were treatment factors significantly associated with a higher risk of pneumonitis following CRT.

Adult

Phase II trial of carboplatin plus oral etoposide for elderly patients with small-cell lung cancer.

A phase II trial was conducted to evaluate the efficacy and toxicity of the Egorin's carboplatin dosing formula with 14-day oral etoposide in 38 elderly patients with small-cell lung cancer (SCLC). The overall response rate was 81%. Median survival times were 15.1 months for 16 limited-disease (LD) and 8.6 months for 22 extensive-disease (ED) patients. Myelosuppression was the principal side-effect. This regimen is an active regimen in the treatment of elderly SCLC patients.

Aged

Pulmonary toxicity after granulocyte colony-stimulating factor-combined chemotherapy for non-Hodgkin's lymphoma.

Sporadic cases have developed pulmonary toxicity after receiving chemotherapy and granulocyte colony-stimulating factor (G-CSF). However, because such cases received chemotherapy that alone frequently causes pulmonary toxicity, the role of G-CSF in this toxicity has been unclear. CHOP therapy (cyclophosphamide, doxorubicin, vincristine and prednisolone) only slightly induces pulmonary toxicity. However, we observed a considerable incidence of this toxicity in non-Hodgkin's lymphoma subjects receiving CHOP therapy and G-CSF (6 out of 52 subjects, 11.5%). In this cohort, among various characteristics, including the dose and interval of CHOP therapy, only the mean peak leucocyte count (MPLC) with each therapy cycle was associated with development of this toxicity (MPLC > or = 23.0 x 10(9) l(-1), 6 out of 29 cases; MPLC < 23.0 x 10(9) l(-1), 0 out of 23 cases; P = 0.020). These findings suggest that the effect of G-CSF is the main determinant of the pulmonary toxicity in these cases. Because the toxicity was associated with a large MPLC and did not recur in cases readministered G-CSF, an idiosyncratic reaction to G-CSF is unlikely to be the pathogenesis of this toxicity. Thus, lowering the G-CSF dose seems to be useful in the prevention of this toxicity. In all six cases, the time course of manifestation of the toxicity was the same, and early application of high-dose corticosteroid led to cure. This knowledge will be helpful in the care of similar cases.

Adult

CYFRA 21-1, a cytokeratin subunit 19 fragment, in bronchoalveolar lavage fluid from patients with interstitial lung disease.

1. It has been suggested that CYFRA21-1, a cytokeratin subunit 19 fragment, is potentially useful for diagnosis and monitoring of lung carcinoma. However, serum levels of CYFRA21-1 are also increased in a high proportion of patients with interstitial lung disease. In this study we measured CYFRA21-1 levels in bronchoalveolar lavage fluid from 10 normal subjects, 18 patients with idiopathic pulmonary fibrosis and 14 patients with sarcoidosis, and determined whether any relationship exists between CYFRA21-1 levels in bronchoalveolar lavage fluid and clinical parameters. 2. CYFRA21-1 levels in bronchoalveolar lavage fluid were significantly higher in patients with sarcoidosis (mean value 8.3 ng/ml, P < 0.01) and idiopathic pulmonary fibrosis (42.5 ng/ml, P < 0.005) than in normal controls (1.0 ng/ml). Moreover, higher CYFRA21-1 levels in bronchoalveolar lavage fluid were found in sarcoidosis patients in radiological stage 2 or 3 than in those in stage 1. In patients with idiopathic pulmonary fibrosis, there was a significant correlation between CYFRA21-1 levels, and percentage of inflammatory cells in bronchoalveolar lavage fluid (r = 0.56, P < 0.05) and the magnitude of the alveolar--arterial oxygen pressure difference [P(A-a)O2] gradient (r = 0.66, P < 0.01). 3. Serial bronchoalveolar lavage samples were obtained from six patients with clinically active pneumonitis after they had undergone systemic corticosteroid therapy. CYFRA21-1 levels were significantly lower after these patients exhibited clinical improvement (P < 0.05). 4. These findings suggest that the level of CYFRA21-1 in bronchoalveolar lavage fluid is a useful marker for the clinical diagnosis of pneumonitis, and is also adequate for the evaluation of disease activity, especially over the course of treatment.

Adrenal Cortex Hormones

Erythromycin treatment in diffuse panbronchiolitis.

Diffuse panbronchiolitis is a chronic infectious airway disease that mainly occurs in the Far East. The prognosis for diffuse panbronchiolitis has dramatically improved over the past 10 years with the use of low-dose long-term erythromycin treatment. The beneficial effect of erythromycin and other 14-membered-ring macrolides in this condition is considered to be due to an anti-inflammatory rather than anti-infective mechanism. Recent investigations have revealed many new actions to the airway epithelial and inflammatory cells, e.g., neutrophils, lymphocytes, and macrophages. Furthermore, erythromycin treatment of diffuse panbronchiolitis provides a new understanding of the pathophysiology and the treatment of chronic infectious airway disease.

Anti-Bacterial Agents

Preventive effect of erythromycin on experimental bleomycin-induced acute lung injury in rats.

BACKGROUND: Erythromycin has been reported to have an inhibitory effect on chronic inflammatory airway disease and chronic infiltration of neutrophils into the airway. Bleomycin (BLM) often induces interstitial lung fibrosis following acute lung injury. A study was undertaken to investigate the effects of erythromycin (EM) on experimental bleomycin-induced acute lung injury in rats. METHODS: Bleomycin-induced lung injury was assessed by light microscopic examination, measurement of neutrophil elastase activity and of the interleukin 8 (IL-8) content in bronchoalveolar lavage (BAL) fluid. The potential inhibitory effect of erythromycin was assessed by overall comparison of erythromycin untreated (BLM alone), concurrently treated (BLM + EM), and pretreated (BLM + pre-EM) groups. RESULTS: The neutrophil count and concentration of neutrophil-derived elastase in BAL fluid were significantly different in the three groups. The morphological changes of lung injury were also less extensive in rats pretreated with erythromycin. However, these protective effects were not marked in the group concurrently treated with erythromycin. Moreover, the concentration of IL-8 in the BAL fluid tended to be less in the erythromycin treated groups; however, there were no significant differences between the bleomycin-treated groups. CONCLUSION: Erythromycin exhibits a prophylactic effect on acute lung injury induced by intratracheal administration of bleomycin, which is possibly associated with a downregulation of neutrophil-derived elastase.

Animals

Efficient inhibition of the development of cardiac remodeling by a long-acting calcium antagonist amlodipine.

The purpose of the present study was to examine the effects of a long-acting calcium antagonist, amlodipine, on the development of cardiac remodeling. Dihydropyridine calcium antagonists have been used widely for many years in the treatment of hypertension and angina pectoris. It has been reported, however, that a prototype of dihydropyridines, nifedipine, does not reduce mortality of patients with ischemic heart disease, possibly because of reflex stimulation of the sympathetic nervous system. A calcium antagonist, amlodipine, has been reported to have potential benefits by virtue of a gradual onset of action and a long duration of effects. Amlodipine (8 mg/kg per day, once a day) or nifedipine (24 mg/kg per day, three times a day) was administered to spontaneously hypertensive 12-week-old rats for 12 weeks. Left ventricular wall thickness was measured by echocardiography, and relative amounts of myosin heavy chain isoforms were assessed by pyrophosphate gels. Expressions of "fetal type" genes and type 1 collagen gene were examined by Northern blot analysis. Amlodipine and nifedipine both markedly reduced systolic blood pressure. However, the decrease in systolic blood pressure caused by nifedipine continued for no more than 8 hours, whereas the blood pressure-lowering effect of amlodipine continued for more than 16 hours post dose. Amlodipine markedly reduced left ventricular wall thickness, whereas nifedipine only weakly attenuated an increase in the wall thickness. Amlodipine, but not nifedipine, prevented an increase in the relative amount of V3 myosin heavy chain isoform and suppressed an increase in mRNA levels of beta-myosin heavy chain, skeletal alpha-actin, and type 1 collagen. Unlike nifedipine, amlodipine effectively prevented cardiac remodeling secondary to high blood pressure at biochemical levels and morphological levels. These results suggest that a long-acting calcium antagonist is more effective than a short-acting one in preventing organ injury in hypertensive subjects.

Amlodipine

Improvement of survival in patients with diffuse panbronchiolitis treated with low-dose erythromycin.

Diffuse panbronchiolitis (DPB) is a chronic inflammatory disease of the airways with a high rate of mortality despite treatment with a combination of antibiotics and the use of supportive therapy such as oxygen administration. Low-dose erythromycin therapy (EM) (400 to 600 mg/d) has been found to improve the survival of patients with DPB, and most patients with DPB in Japan have been treated with this erythromycin regime since 1984. The purpose of this study was to evaluate the effects of treatment with erythromycin on the survival rate of patients with DPB in Japan. We compared the survival rates of 498 patients with DPB after dividing them into three groups according to the date of their first medical examination (Group a: 1970-1979, Group b: 1980-1984, Group c: 1985-1990). DPB had been diagnosed in these patients using the criteria of the Ministry of the Health and Welfare Diffuse Lung Disease Committee (MHW-DLDC), which includes chronic productive cough, shortness of breath, presence of roentgenologically smoldering symmetrical granular shadows in the middle and lower lung fields, limitation of airflow without decrease in DLCO, elevated serum cold hemagglutinin titers, and/or narrowing bronchiolus with infiltration of lymphocytes and foamy alveolar macrophages. These patients were registered in the DPB research group of the Ministry of Health and Welfare (MHW). Survival rates were statistically compared using the generalized-Wilcoxon test. The survival rate of Group c was significantly higher than that of Groups a (p < 0.0001) and b (p < 0. 0001). In Group c, eight of 87 patients died; five died in the EM nontreated subgroup (n = 24), and three died in the EM-treated subgroup (n = 63). There was a significant difference in the survival rates between the two subgroups in Group c (p < 0.001). Treatment with EM was associated with a significant improvement in the rate of survival of patients with DPB. The efficacy of EM treatment increased the survival rate of patients with DPB, which was more significant in the older than in the younger patients.

Adult