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1.
Clin Case Rep ; 8(12): 3621-3622, 2020 Dec.
Article in English | MEDLINE | ID: mdl-33364007

ABSTRACT

Rod-like inclusions have rarely been described in cases of monoclonal gammopathy of renal significance or multiple myeloma. The key finding in our case is the strong κ-light chain positivity of rod-like inclusions in plasma cells, which confirms their immunoglobulin nature. Therapeutic benefit of bortezomib was also observed.

3.
Histol Histopathol ; 31(11): 1251-8, 2016 11.
Article in English | MEDLINE | ID: mdl-26975967

ABSTRACT

BACKGROUND: Continuous exposure to peritoneal dialysis fluids (PDFs) is associated with pathological responses such as persistent micro-inflammation, which leads to ultrafiltration failure. Pentraxin-3 (PTX3), a multifunctional soluble pattern recognition receptor, is produced at sites of inflammation by a wide range of cell types. This study investigates the in vivo expression of PTX3 in the peritoneal membrane of a rat continuous peritoneal dialysis (PD) model, as well as the effect of high glucose on the in vitro expression of PTX3. METHODS: The expression of PTX3 was analyzed using RT-PCR, real-time PCR, immunohistochemistry and western blotting in a PD rat model receiving saline or conventional PDF containing 3.86% glucose for 8 weeks. The effects of high glucose on the expression of PTX3 were examined in cultured rat peritoneal mesothelial cells (RPMCs), mouse macrophage-like cells, and mouse fibroblasts. RESULTS: In a rat model of PD, eight-week instillation of the conventional PDF produced increased submesothelial thickening, followed by substantially enhanced PTX3 protein levels in the submesothelial layer of peritoneal membrane. PTX3 was detected in peritoneal mesothelial cells, macrophages and fibroblasts in the thickened submesothelial area. Glucose was found to induce PTX3 protein expression in RPMCs as well as macrophage-like cells and fibroblasts. CONCLUSION: Continuous exposure to conventional PDF induces PTX3 expression in the peritoneal membrane of rats. High glucose may be involved in the mechanism of PDF-induced local micro-inflammation in the peritoneum.


Subject(s)
C-Reactive Protein/biosynthesis , Dialysis Solutions/chemistry , Glucose/administration & dosage , Peritoneal Dialysis, Continuous Ambulatory/adverse effects , Peritoneal Dialysis, Continuous Ambulatory/methods , Serum Amyloid P-Component/biosynthesis , Animals , Blotting, Western , Disease Models, Animal , Immunohistochemistry , Inflammation/etiology , Peritoneum/metabolism , Polymerase Chain Reaction , Rats , Rats, Wistar
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