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Idiopathic pulmonary fibrosis and pulmonary fibrosis in diffuse systemic sclerosis: two fibroses with different prognoses.

Idiopathic pulmonary fibrosis and diffuse cutaneous systemic sclerosis (dSSc) involve the lung by a fibrotic process. In recent years, there has been increasing awareness that the natural history of these two types of pulmonary fibrosis might be different. The purpose of this study was to compare lung involvement in these two diseases in a prospective fashion in order to address differences in their clinical course. Forty-three consecutive patients, 18 with lone interstitial pulmonary fibrosis (lone IPF) and 25 with dSSc-IPF were evaluated clinically, radiologically and physiologically at the entry into the study and the evolution of their disease was contrasted by survival analysis. Patients with lone IPF compared with dSSc-IPF were characterized by male predominance (p < 0.001), older age at disease onset (p < 0.001), shorter disease duration (p < 0.001), more frequent crackles on auscultation and clubbing (p < 0.001 and p < 0.0001, respectively), more severe dyspnea (p < 0.0001) and more advanced radiological involvement (p < 0.0001). Functional indices presented comparable values and did not reach statistically significant differences except for the values of single breath CO diffusing capacity (p < 0.0001) and the PaO2 (p < 0.01) which was worse in patients with lone IPF. Finally 12 of the 18 patients with lone IPF died in 2.66 +/- 1.18 years from the onset of respiratory symptoms, while none of the dSSc-IPF patients had died 5.6 +/- 4.25 years from the first ever appearance of respiratory involvement (p < 0.001). In conclusion, although the two groups of patients were not at an absolutely comparable stage of their disease, a worse prognosis for patients with lone IPF seems to emerge from this study.

Adolescent↗

Farmer's lung. Long-term outcome and lack of predictive value of bronchoalveolar lavage fibrosing factors.

This study evaluates the long-term outcome of farmer's lung (FL), adding high-resolution computed tomograms (HRCT) to previously reported procedures and verifying whether bronchoalveolar lavage (BAL) fluid markers or substrates of fibrosis (hyaluronic acid, Type III procollagen, fibronectin, and fibroblast growth factors) (FF) predict outcome. A total of 33 subjects with a history of FL dating back at least 6 yr were evaluated with pulmonary function tests, chest x-ray (CXR), and HRCT. All subjects had an initial evaluation, which included a BAL, 6 yr before the current study. Subjects were then either in acute FL (n = 19) or in clinical remission despite continued contact (n = 14). In the current study, pulmonary function tests revealed an obstructive profile in 13 subjects, restrictive changes in 1, an isolated decrease in lung diffusion capacity in 3, and normal values in 16. Chest radiographs (CXR) were normal in 22 subjects, abnormal with interstitial or reticulonodular changes in 6, and suggestive of emphysema in 5. HRCT revealed emphysema in 9 subjects; 3 had localized fibrotic changes, 2 a ground-glass pattern, and 19 were normal. There was a good correlation between the findings on pulmonary function tests and HRCT; however, CXR alone did not suggest the existence of emphysema in 4 subjects who had such findings on HRCT. No correlations were found between most outcome parameters and the level of the BAL FF measured 6 yr previously. We conclude that airflow obstruction with or without emphysema is an important long-term sequela of FL and that BAL FF do not predict outcome in this disease.

Acute Disease↗

Expression of a tumor necrosis factor-alpha transgene in murine lung causes lymphocytic and fibrosing alveolitis. A mouse model of progressive pulmonary fibrosis.

The murine TNF-alpha gene was expressed under the control of the human surfactant protein SP-C promoter in transgenic mice. A number of the SP-C TNF-alpha mice died at birth or after a few weeks with very severe lung lesions. Surviving mice transmitted a pulmonary disease to their offspring, the severity and evolution of which was related to the level of TNF-alpha mRNA in the lung; TNF-alpha RNA was detected in alveolar epithelium, presumably in type II epithelial cells. In a longitudinal study of two independent mouse lines, pulmonary pathology, at 1-2 mo of age, consisted of a leukocytic alveolitis with a predominance of T lymphocytes. Leukocyte infiltration was associated with endothelial changes and increased levels of mRNA for the endothelial adhesion molecule VCAM-1. In the following months, alveolar spaces enlarged in association with thickening of the alveolar walls due to an accumulation of desmin-containing fibroblasts, collagen fibers, and lymphocytes. Alveolar surfaces were lined by regenerating type II epithelial cells, and alveolar spaces contained desquamating epithelial cells in places. Platelet trapping in the damaged alveolar capillaries was observed. Pulmonary pathology in the SP-C TNF-alpha mice bears a striking resemblance to human idiopathic pulmonary fibrosis, in which increased expression of TNF-alpha in type II epithelial cells has also been noted. These mice provide a valuable animal model for understanding the pathogenesis of pulmonary fibrosis and exploring possible therapeutic approaches.

Animals↗