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In Vitro Enzyme Measurement to Test Pharmacological Chaperone Responsiveness in Fabry and Pompe Disease
Published on: December 20, 2017
Vasculopathy in patients with Fabry disease: current controversies and research directions
S M Rombach1, Th B Twickler, J M F G Aerts
1Department of Endocrinology and Metabolism, Academic Medical Center, Amsterdam, The Netherlands.
Insights
Fabry disease, a lysosomal disorder, causes vascular complications. Smooth muscle cell hypertrophy and fibrotic changes, not typical atherosclerosis, likely drive arterial disease progression despite enzyme replacement therapy.
Area of Science:
- Genetics and rare diseases
- Cardiovascular medicine
- Lysosomal storage disorders
Background:
- Fabry disease is an X-linked disorder caused by alpha-galactosidase A deficiency, leading to glycosphingolipid accumulation.
- Cardiovascular, renal, and cerebrovascular complications are key manifestations, but the underlying vasculopathy is not fully understood.
- Current enzyme replacement therapy effectively removes cellular storage but often fails to halt vascular disease progression.
Purpose of the Study:
- To review existing literature on vascular function, imaging, and pathology in Fabry disease.
- To propose a hypothesis for the evolution of arterial complications in this condition.
- To elucidate the pathophysiology of Fabry disease-associated vasculopathy.
Main Methods:
- Literature review of vascular function tests.
- Analysis of imaging studies related to vascular changes.
- Examination of pathology studies detailing arterial alterations.
Main Results:
- Smooth muscle cell hypertrophy appears to be an early feature, preceding significant endothelial storage.
- Vascular changes involve neointima formation with fibrotic structures, differing from typical atherosclerotic plaque.
- A hyperdynamic circulation and reduced vascular compliance may activate the renin-angiotensin system, promoting inflammation and thrombosis.
Conclusions:
- The pathophysiology of Fabry disease vasculopathy involves smooth muscle cell hypertrophy and fibrotic changes, not classic atherosclerosis.
- Activation of the renin-angiotensin system and pro-thrombotic factors contribute to vascular complications.
- Understanding these mechanisms is crucial for developing more effective treatments for Fabry disease vascular complications.
Abstract:
Fabry disease is an X-linked lysosomal storage disorder due to deficiency of the enzyme alpha-galactosidase A. The principal clinical manifestations of Fabry disease consist of cardiovascular complications including cerebrovascular, renal and cardiac disease but the pathophysiology of this specific vasculopathy is unclear. With the development of targeted treatment for Fabry disease, i.e. enzyme replacement therapy, it has become apparent that the removal of stored glycosphingolipid from the endothelial cells does not prevent progression of vascular disease in many patients. The aim of this study is to review the current available literature on vascular function tests, imaging and pathology studies and propose a hypothesis on the evolution of arterial complications in Fabry disease. Clearly, although premature atherosclerosis is suggested to occur, most studies describe absence of characteristic plaque formation. Smooth muscle cell hypertrophy, is probably the earliest feature of a complex vasculopathy, as in females and atypical cardiac variants, who have residual enzyme activity, no endothelial storage of significance is found. Subsequently, processes occur as observed in neo intima formation however with formation of more fibrotic structures. In the presence of a hyperdynamic circulation in combination with a less compliant vascular wall, it is hypothesized that upregulation of local renin angiotensine systems may occur. Angiotensin II is known to increase adhesion molecules, cytokines and chemokines and exerts a pro-inflammatory effect on leucocytes, endothelial cells and vascular smooth muscle cells. This enhances release of pro-thrombotic factors and opposes actions mediated through angiotensin 2 (AT2) receptor, including the release of nitric oxide (NO). A combination of reduced vascular compliance and activation of pro-thrombotic factors can lead to vascular complications in Fabry disease.
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