| Literature DB >> 26646313 |
Viktor Szatmári1, Erik Teske2, Peter G J Nikkels3, Matthias Griese4, Pim A de Jong5, Guy Grinwis6, Dirk Theegarten7, Stefanie Veraa8, Frank G van Steenbeek9, Marjolein Drent10, Francesco Bonella11.
Abstract
BACKGROUND: <span class="Disease">Pulmonary alveolar proteinosis is an extremely rare lung disease in animals and humans. It is characterized by the deposition of a large amount of phospholipoproteinaceous material in the alveoli. There are several possible etiologies, both congenital and acquired. Alveolar macrophages play an important role in the clearance of surfactant. This is the first report of pulmonary alveolar proteinosis in the feline species. CASEEntities:
Mesh:
Year: 2015 PMID: 26646313 PMCID: PMC4673770 DOI: 10.1186/s12917-015-0613-4
Source DB: PubMed Journal: BMC Vet Res ISSN: 1746-6148 Impact factor: 2.741
Fig. 1Thoracic radiographs show diffuse patchy alveolar and interstitial lung pattern. a Left lateral projection b Dorso-ventral projection
Fig. 2Bronchoalveolar lavage fluid. a Macroscopic milky appearance. b After a couple of hours a clear separation of milky sediment and supernatant was evident
Fig. 3Cytology of the bronchoalveolar lavage fluid. a Increased number of neutrophil granulocytes and macrophages. In addition to the increased cellular components there are several crystals and cell debris. Hemacolor stain. b The alveolar macrophages have a foamy aspect and are filled with PAS-positive material
Fig. 4Computed tomography (CT) scan of the lung shows areas of ground glass opacity and interlobular septal thickening along with normal areas. This pattern is also known as crazy paving
Fig. 5Necropsy shows a diffusely pale, poorly collapsed and firm lung
Fig. 6Photomicrographs of the lung. a The alveoli and bronchi are filled with eosinophilic material. Hematoxilin & eosin staining. b The cuboidal type II alveolar epithelial cells have a foamy appearance. Hematoxilin & eosin staining. c In the eosinophilic material crystals can be recognized. Hematoxilin & eosin staining. d No extensive fibrous tissue present. Masson’s trichrome staining
Fig. 7Transmission electron microscopy of the content of the alveoli. a Amorphous material and the presence of crystals can be appreciated. b Multilamellated structures, compatible with abnormal surfactant forms. 22000 × magnification
Fig. 8Scanning electron microscopic image of the alveolar content. a Negative backscattered electron image obtained with the scanning electron microscope in an area of proteinosis shows dark particles within the respiratory size range, ie less than 5 nm (magnification × 2400). b At higher magnification (x4000) the black particles appear angulated and fragmented
Fig. 9Energy dispersive X-ray analysis of the alveolar content. Energy dispersive X-ray analysis of several particles (see Fig. 8) identified two principal elements: silicon (Si) and arsenic (As). A representative energy dispersive spectrum from one of these particles shows a high peak for silicon and multiple peaks for arsenic (including the small peak at 10.500 keV). Other elements were not always present in the particles
Detected coding variants in the DNA of the alpha and beta chains of the Granulocyte-Macrophage Colony - Stimulating Factor receptor (CSF2RA and CSF2RB)
| gene | mRNA change | codon change | affected | unaffecteds | healthy population |
|---|---|---|---|---|---|
| CSF2RA | G282A | V95M | G | R,R,R | NA |
| CSF2RB | A652G | H218R | R | A,A,A | 29 % A; 52 % R; 19 % G |
| CSF2RB | G2674A | E892K | A | G,G,G | 34 % A; 7 % R; 59 % G |