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Source of elastin-degrading enzymes in mycotic aortic aneurysms: bacteria or host inflammatory response?
M J Buckmaster1, J A Curci, P R Murray
1Department of Surgery, Washington University School of Medicine, St Louis, MI 63110, USA.
Abstract:
Elastolytic matrix metalloproteinases play a central role in the development of chronic atherosclerotic aortic aneurysms, but mycotic aortic aneurysms are a distinct and unusual form of aneurysm disease caused by bacterial infection. Mycotic aortic aneurysms follow a more rapid and unpredictable course than chronic aneurysm disease and they exhibit a predilection for the suprarenal aorta, further implying unique pathophysiologic mechanisms. The purpose of this study was to examine the nature and source of elastin-degrading enzymes in mycotic aortic aneurysm. Bacterial isolates and aortic tissues were obtained from four consecutive patients undergoing surgical repair of suprarenal mycotic aortic aneurysm. Using an in vitro 3H-labeled elastin degradation assay, elastin-degrading enzyme activity was only observed in the bacteria-conditioned medium from an isolate of Pseudomonas aeruginosa. Elastin-degrading enzyme activity in the aortic tissue homogenate of this patient was abolished by the serine protease inhibitor, phenylmethylsulfonyl fluoride, but it was not suppressed by the metalloproteinase inhibitor, ethylenediamine tetraacetic acid (EDTA). In contrast, elastin-degrading enzyme activity in the bacterial-conditioned medium was decreased by about half by both phenylmethylsulfonyl fluoride and EDTA. Elastin substrate zymography revealed two phenylmethylsulfonyl fluoride-inhibitable elastin-degrading enzyme activities in the aortic tissue homogenate that corresponded to human neutrophil elastase (approximately 30 kDa) and its stable complex with alpha 1-proteinase inhibitor (approximately 80 kDa), but no activity attributable to Pseudomonas elastase, a 33-kDa metal-dependent enzyme. Human neutrophil elastase was readily detected throughout mycotic aortic aneurysm tissues by immunohistochemistry, but elastolytic metalloproteinases were only occasionally observed. The results of this study suggest that the elastin-degrading enzyme produced in mycotic aortic aneurysm are largely serine proteases of host neutrophil origin, rather than elastases produced by the infecting microorganisms or the macrophage-derived metalloproteinases typically observed in atherosclerotic aneurysm disease. Further studies will be needed to extend these findings to a larger number of patients with mycotic aortic aneurysm and those caused by additional microorganisms.
Insights
Mycotic aortic aneurysms involve host neutrophil serine proteases, not bacterial or metalloproteinases. This finding differs from atherosclerotic aneurysms, highlighting unique mechanisms in infectious aortic disease.
Area of Science:
- Vascular Biology
- Infectious Diseases
- Enzymology
Background:
- Mycotic aortic aneurysms, caused by bacterial infection, differ pathologically from chronic atherosclerotic aneurysms.
- These infectious aneurysms exhibit rapid progression and a predilection for the suprarenal aorta, suggesting distinct underlying mechanisms.
- Elastolytic matrix metalloproteinases are implicated in chronic aneurysms, but their role in mycotic aneurysms is less understood.
Purpose of the Study:
- To investigate the nature and origin of elastin-degrading enzymes in mycotic aortic aneurysms.
- To differentiate between microbial and host-derived enzymes responsible for elastin degradation in this condition.
Main Methods:
- Collected bacterial isolates and aortic tissues from four patients with mycotic aortic aneurysm.
- Utilized in vitro 3H-labeled elastin degradation assays and elastin substrate zymography.
- Employed protease inhibitors (phenylmethylsulfonyl fluoride and EDTA) and immunohistochemistry.
Main Results:
- Elastin-degrading activity was primarily linked to host neutrophil elastase (serine protease) in aortic tissues.
- Bacterial isolates, including Pseudomonas aeruginosa, showed some elastin-degrading activity, but it was less significant than host-derived enzymes.
- Metalloproteinase activity, common in atherosclerotic aneurysms, was minimal in mycotic aneurysm tissues.
Conclusions:
- The primary elastin-degrading enzymes in mycotic aortic aneurysms are serine proteases from host neutrophils.
- This contrasts with the metalloproteinases typically found in atherosclerotic aneurysms.
- Further research is needed to confirm these findings in a larger cohort and with diverse microorganisms.