scholarly journals Expression of HSP47 in Usual Interstitial Pneumonia and Nonspecific Interstitial Pneumonia

2005 ◽  
Vol 6 (1) ◽  
Author(s):  
Tomoyuki Kakugawa ◽  
Hiroshi Mukae ◽  
Tomayoshi Hayashi ◽  
Hiroshi Ishii ◽  
Seiko Nakayama ◽  
...  
2021 ◽  
Vol 80 (Suppl 1) ◽  
pp. 1002.1-1002
Author(s):  
F. Bozzao ◽  
P. Tomietto ◽  
E. Baratella ◽  
F. Giudici ◽  
M. Kodric ◽  
...  

Background:It is unknown whether patients with interstitial lung disease (ILD) and only some features of autoimmunity have a different natural history from those with a defined connective tissue disease (CTD-ILD). The classification criteria for “ILD with autoimmune features” (IPAF) may not be able to characterize all these patients, especially those with a usual interstitial pneumonia (UIP) pattern [1].Objectives:To determine clinical characteristics and predictive factors for progression in a cohort of ILD patients with features of autoimmunity, through the application of classification criteria for IPAF and specific CTD, whenever possible.Methods:We retrospectively selected a cohort of consecutive patients with ILD as onset manifestation and features of autoimmunity (at least 1 autoantibody and/or 1 clinical sign/symptom), evaluated by our multidisciplinary unit from March 2009 to March 2020. All the final diagnoses were revised according to the latest CTD and IPAF criteria. Patients were followed up for 33 (16.5-69.5) months.Results:Of the 101 patients enrolled (67.4±10.9 yrs, F/M ratio 65/36), 53 (52.5%) and 37 (36.6%) respectively satisfied the CTD and IPAF criteria. Eleven patients (10.9%) did not satisfy IPAF criteria because of only 1 item (clinical or serologic) within the IPAF domains and a UIP pattern; we defined this group as “autoimmune” UIP (AI-UIP). All the 8 patients initially classified as undifferentiated CTD had sufficient IPAF criteria. Among the IPAF patients (68.2±10.1 years, F/M ratio 20/17), the most common findings were: Nonspecific interstitial pneumonia pattern (56.8%), antinuclear antibodies positivity (43.2%) and arthritis (24.3%). The combination of a positive morphologic and serologic domain was the most common to reach the diagnosis (48.6%). Some IPAF patients had features not included in IPAF criteria, such as non-anti-synthetase myositis-specific antibodies (21.6%), objective sicca syndrome (13.5%) and anti-myeloperoxidase antibodies (2.7%). Over a median of 17 months, 2 IPAF patients (5.4%) developed a definite UIP pattern, while 4 (10.8%) a specific CTD. Comparing the IPAF, CTD-ILD and AI-UIP groups, no statistically significant differences were found in the mean age, sex distribution, smoking habits and mean duration of the disease. However, IPAF patients had a significantly higher prevalence of arterial hypertension and left-sided heart failure and a lower predominance of UIP pattern as expected (10.8% vs. 32.1% vs. 100%, p<0.01). Although no differences were found at the diagnosis, at 1 year the proportion of IPAF patients with radiological progression of the fibrosis and/or functional deterioration (defined by a decline in FVC of ≥ 10% and/or DLCO of ≥ 15% predicted) was lower to that of CTD-ILD and AI-UIP (17.1% vs. 31.4% vs. 63.6%, p 0.01). Fewer IPAF patients needed oxygen support (8.6% vs. 31.4% vs. 36.4, p 0.02). Considering the overall 101 patients, having an IPAF and a UIP pattern respectively predicted a slower (OR: 0.37, p 0.04) and a faster (OR: 3.56, p 0.01) ILD progression at the multivariate analysis.Conclusion:In our cohort, IPAF criteria were useful to identify a subset of patients with a slower ILD progression and a possible evolution to CTD (10-15% of cases) [2]. These criteria do not characterize all the patients with a UIP pattern and limited features of autoimmunity, which seem to have a worse prognosis, independently from the final diagnosis. Further studies are needed to clarify if the prognosis of AI-UIP is different from that of idiopathic pulmonary fibrosis.References:[1]Graney, et al. Ann Am Thorac Soc 2019;16(5):525-33.[2]Sebastiani, et al. Biomedicines 2021,9,17.Disclosure of Interests:None declared


2004 ◽  
Vol 11 (6) ◽  
pp. 437-440 ◽  
Author(s):  
D Jeffrey Moore ◽  
Colm P McParland ◽  
Martin J Bullock ◽  
Yannick Cartier ◽  
Paul Hernandez

The present case report describes a 44-year-old woman who presented with dyspnea due to diffuse interstitial lung disease. High-resolution computed tomography showed features of usual interstitial pneumonia, but the lung biopsy obtained by video-assisted thoracoscopy was consistent with a histological pattern of nonspecific interstitial pneumonia. Following the procedure, the patient developed progressive respiratory distress and died on postoperative day 13 with a clinical picture of acute interstitial pneumonia. The autopsy showed evidence of diffuse alveolar damage superimposed on the background pattern of nonspecific interstitial pneumonia. The present case report supports the notion that patients with a variety of subtypes of idiopathic interstitial pneumonias may be at risk of exacerbation of their underlying disease following thoracic procedures, including video-assisted thoracoscopic lung biopsy.


2004 ◽  
Vol 98 (10) ◽  
pp. 945-951 ◽  
Author(s):  
Sumako Yoshioka ◽  
Hiroshi Mukae ◽  
Kanako Sugiyama ◽  
Tomoyuki Kakugawa ◽  
Noriho Sakamoto ◽  
...  

Chest Imaging ◽  
2019 ◽  
pp. 459-462
Author(s):  
Cylen Javidan-Nejad

Nonspecific interstitial pneumonia (NSIP) represents a less common idiopathic interstitial pneumonia than usual interstitial pneumonia (UIP) with a much better prognosis. Most cases of NSIP are secondary to collagen vascular disease, hypersensitivity or drug toxicity. These secondary forms of NSIP help to explain why it is more often seen on CT than UIP. Unlike UIP, NSIP is characterized by a paucity of honeycombing on CT and greater ground-glass opacity and reticulation. Subpleural sparing when present may suggest the diagnosis. Unlike UIP, NSIP tends to exhibit histologic spatial and temporal homogeneity. When extensive bronchiectasis is seen in association with an NSIP pattern, collagen vascular disease must be considered. When air trapping is encountered, hypersensitivity pneumonitis must be excluded. Biopsy is usually reserved for those patients with an NSIP pattern who do not have a known underlying condition. If the diagnosis of NSIP can be made, immunotherapy may prevent progression and may even reverse some CT findings.


2013 ◽  
Vol 66 (suppl. 1) ◽  
pp. 29-33
Author(s):  
Ruza Stevic ◽  
Vucinic Mihailovic ◽  
Dragana Jovanovic ◽  
Nada Vasic

Introduction. Interstitial lung diseases include the entities of idiopathic pulmonary fibrosis, nonspecific interstitial pneumonia, cryptogenic organizing pneumonia, acute interstitial pneumonia, respiratory bronchiolitis-associated interstitial lung disease, desquamative interstitial pneumonia, and lymphocytic interstitial pneumonia. Recent introduction of high-resolution computed tomography has made the diagnosis of interstitial lung disease much easier. Usual interstitial pneumonia A predominantly subpleural reticulation and honeycombing at the basal posterior part of the lung with a progression to anterior and superior parts are characteristic of usual interstitial pneumonia/ idiopathic pulmonary fibrosis. Nonspecific interstitial pneumonia Typical findings of nonspecific interstitial pneumonia are bilateral, relatively symmetrical subpleural ground glass opacifications and irregular linear opacities. Desquamative interstitial pneumonia is characterized by diffuse symmetrical ground glass opacifications. Respiratory bronchiolitisassociated interstitial lung disease Centrilobular nodules and irregular ground glass opacifications are present. Cryptogenic organizing pneumonia Subpleural and peribronchial consolidations are prominent findings that are not present in other idiopathic interstitial pneumonias. Acute interstitial pneumonia. Bilateral ground-glass opacifications are present and areas of peripheral consolidations may also be seen in acute interstitial pneumonia. Lymphocytic interstitial pneumonia. Diffuse or patchy areas of ground glass opacification with centrilobular nodules and occasionally well-defined cysts are seen. Conclusion. Imaging plays a crucial role in identifying interstitial lung diseases but precise diagnosis requires a dynamic interdisciplinary approach that correlates clinical, radiological and pathologic features.


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