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Carcinoembryonic antigen, alpha 1-antitrypsin, and alpha-fetoprotein in the pancreas of patients with cystic fibrosis.

The ductular accumulation of "abnormal mucus" is the key histologic feature in cystic fibrosis. This material is periodic acid-Schiff positive and diastase resistant, suggesting that it is glycoprotein in nature. We used the avidin-biotin-peroxidase method to identify this material using antibodies to the serum glycoproteins carcinoembryonic antigen, alpha 1-antitrypsin, and alpha-fetoprotein on paraffin sections of pancreas obtained from a total of 21 patients: 9 with cystic fibrosis, 5 with chronic pancreatitis, and 7 controls. The control patients had normal pancreatic histologic findings, no alpha 1-antitrypsin or alpha-fetoprotein was demonstrated, and only the ductular epithelium reacted weakly for carcinoembryonic antigen. The pancreas in pancreatitis showed fibrosis, acinar atrophy, and ectasia of the ducts that contained only a small amount of periodic acid-Schiff-positive material. This material reacted weakly for carcinoembryonic antigen and alpha 1-antitrypsin. The appearance of the pancreas in cystic fibrosis was similar to that in chronic pancreatitis. However, the ducts contained a greater amount of periodic acid-Schiff-positive material, mostly in the form of globules that reacted strongly for carcinoembryonic antigen and alpha 1-antitrypsin and weakly for alpha-fetoprotein, as did the ductular epithelium. This study shows that the periodic acid-Schiff-positive material in cystic fibrosis contains at least the three serum glycoproteins and that the accumulation may represent a possible defect in cellular synthesis, assembly, or transport of glycoproteins in the ducts.

Adolescent↗

Molecular species compositions of lung and pancreas phospholipids in the cftr(tm1HGU/tm1HGU) cystic fibrosis mouse.

Fatty acid analysis of phospholipid compositions of lung and pancreas cells from a cystic fibrosis transmembrane regulator (CFTR) negative mouse (cftr(-/-))suggested that a decreased concentration of docosahexaenoate (22:6(n-3)) and increased arachidonate (20:4(n-6)) may be related to the disease process in cystic fibrosis (CF). Consequently, we have determined compositions of the major phospholipids of lung, pancreas, liver, and plasma from a different mouse model of CF, the cftr(tm1HGU/tm1HGU) mouse, compared with ZTM:MF-1 control mice. Electrospray ionization mass spectrometry permitted the quantification of all of the individual molecular species of phosphatidylcholine (PtdCho), phosphatidylethanolamine (PtdEtn), phosphatidylglycerol (PtdGly), phosphatidylserine (PtdSer), and phosphatidylinositol (PtdIns). There was no deficiency of 22:6(n-3) in any phospholipid class from lung, pancreas, or liver from mice with the cftr(tm1HGU/tm1HGU). Instead, the concentration of 20:4(n-6) was significantly decreased in plasma PtdCho species and in pancreas and lung species of PtdEtn, PtdSer, and PtdIns. These results demonstrate the variability of membrane phospholipid compositions in different mouse models of CF and suggest that in cftr(tm1HGU/tm1HGU) mice, the apparent deficiency was of 20:4n-6- rather than of 22:6n-3-containing phospholipid species. They highlight a need for detailed phospholipid molecular species analysis of cells expressing mutant CFTR from children with CF before the therapeutic effects of administering high doses of 22:6(n-3)-containing oils to children with CF can be fully evaluated.

Animals↗

Cystic fibrosis and related diseases of the pancreas.

The discovery of the gene for cystic fibrosis (CF), the cystic fibrosis transmembrane conductance regulator (CFTR), brought about a new era in the study of this disease. Identification of the molecular target has yielded a flood of data that add to our understanding of the pathogenesis, diagnosis and treatment of CF. The CFTR protein is a cAMP-regulated Cl(-) channel with multiple functions in epithelial cells. In the exocrine pancreas the CFTR plays a key role in the apical Cl(-), HCO(3)(-), and water transport in duct cells. The severe loss of functions, caused by mutations of the CFTR gene, leads to pathological lesions of the pancreas. Over 1200 CFTR mutations and polymorphisms have been identified and their diversity may explain the high level of heterogeneity in the CF phenotype. Mutation analyses of the CFTR gene have revealed a spectrum of CFTR-related diseases that do not fit the classical CF picture but are associated with dysfunction of CFTR, such as chronic pancreatitis.

Chronic Disease↗

Ultrasound characteristics of the pancreas in children with cystic fibrosis.

Eighteen patients (3 months to 16 years) with cystic fibrosis (CF) were examined with a real-time mechanical sector-scanner (5 MH transducer). Compared with age-matched controls, each CF patient showed morphologic changes in the pancreas on abdominal ultrasound examination. A very common finding was a decrease in organ anterior-posterior diameters (CF versus controls: head, 1.25 +/- 0.38 cm versus 2.44 +/- 0.39 cm; body, 0.56 +/- 0.35 cm versus 0.98 +/- 0.3 cm; tail, 0.83 +/- 0.28 cm versus 1.81 +/- 0.38 cm) and a pronounced, age-independent increase in tissue echogenicity. In younger patients, small cystic degenerations could be observed in the pancreatic tail. No correlation could be found between ultrasound morphology, especially pancreatic duct imaging, and exocrine pancreatic function.

Adolescent↗