Acute inflammatory proteins constitute the organic matrix of prostatic corpora amylacea and calculi in men with prostate cancer
- 3 March 2009
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (9), 3443-3448
- https://doi.org/10.1073/pnas.0810473106
Abstract
Corpora amylacea (CA) are a frequent microscopic finding in radical prostatectomy specimens from men undergoing treatment for prostate cancer. Although often observed histologically to be associated with inflammation, the contribution of CA to prostatitis-related symptoms of unknown etiology or to prostate carcinogenesis remains unclear. Prostatic calculi (PC), which potentially represent calcified forms of CA, are less common but can cause urological disease including urinary retention and prostatitis. We conducted a comprehensive compositional analysis of CA/PC to gain insight into their biogenesis. Infrared spectroscopy analysis of calculi collected from 23 patients confirmed a prevalence of calcium phosphate in the form of hydroxyapatite. This result sets PC apart from most urinary stones, which largely are composed of calcium oxalate. Tandem mass spectrometry-based proteomic analysis of CA/PC revealed that lactoferrin is the predominant protein component, a result that was confirmed by Western blot analysis. Other proteins identified, including calprotectin, myeloperoxidase, and alpha-defensins, are proteins contained in neutrophil granules. Immunohistochemistry (IHC) suggested the source of lactoferrin to be prostate-infiltrating neutrophils as well as inflamed prostate epithelium; however, IHC for calprotectin suggested prostate-infiltrating neutrophils as a major source of the protein, because it was absent from other prostate compartments. This study represents a definitive analysis of the protein composition of prostatic CA and calculi and suggests that acute inflammation has a role in their biogenesis--an intriguing finding, given the prevalence of CA in prostatectomy specimens and the hypothesized role for inflammation in prostate carcinogenesis.Keywords
This publication has 52 references indexed in Scilit:
- Proteomic analysis of renal calculi indicates an important role for inflammatory processes in calcium stone formationAmerican Journal of Physiology-Renal Physiology, 2008
- Phenotypic Analysis of Prostate-Infiltrating Lymphocytes Reveals TH17 and Treg SkewingClinical Cancer Research, 2008
- Metal Chelation and Inhibition of Bacterial Growth in Tissue AbscessesScience, 2008
- Mass spectroscopic characteristics of low molecular weight proteins extracted from calcium oxalate stones: preliminary studyJournal of Clinical Laboratory Analysis, 2008
- Mast cells are an essential hematopoietic component for polyp developmentProceedings of the National Academy of Sciences, 2007
- Inflammation in prostate carcinogenesisNature Reviews Cancer, 2007
- Calcium-Binding Proteins S100A8 and S100A9 as Novel Diagnostic Markers in Human Prostate CancerClinical Cancer Research, 2005
- Localization of Beta-2-Microglobulin in Prostatic Corpora amylacea of Prostatic Hypertrophy PatientsNephron, 1996
- Prostatic calcification in a 4-year-old boyArchives of Disease in Childhood, 1980
- The Crystalline Composition of Prostatic CalculiBritish Journal of Urology, 1974