Key result
12 months of enzyme replacement therapy did not improve myocardial perfusion reserve, though pretreatment relative wall thickness correlated negatively with changes in flow reserve (r = -0.76, p=0.05).
Why the study?
Does enzyme replacement therapy improve myocardial perfusion reserve in patients with Fabry disease?
Does enzyme replacement therapy improve myocardial perfusion reserve in patients with Fabry disease?
In patients with Fabry disease, 12 months of enzyme replacement therapy did not improve myocardial perfusion reserve despite reducing plasma Gb(3) levels, with response potentially dependent on the degree of cardiac hypertrophy.
No improvement in myocardial perfusion reserve with ERT in Fabry disease; leaves open whether baseline hypertrophy modifies response.
Fabry disease (McKusick 301500) is an X-linked lysosomal storage disorder secondary to deficient alpha-galactosidase A activity which leads to the widespread accumulation of globotriaosylceramide (Gb(3)) and related glycosphingolipids, especially in vascular smooth-muscle and endothelial cells. We have recently shown that the myocardial perfusion reserve of Fabry patients is significantly decreased. Thus, in the present study we investigated, whether it can be improved with enzyme replacement therapy (ERT). Ten patients (7 male, 3 female; mean age 34, range 19-49 years) with confirmed Fabry disease were approved for this uncontrolled, open-label study. Myocardial perfusion was measured at rest and during dipyridamole-induced hyperaemia by positron emission tomography and radiowater. Myocardial perfusion reserve was calculated as the ratio between maximal and resting perfusion. Perfusion measurements were performed before and after 6 and 12 months of ERT by recombinant human alpha-galactosidase A (Fabrazyme, Genzyme). Plasma Gb(3) concentration decreased significantly and the patients reported that they felt better and suffered less pain after the ERT. However, neither resting or dipyridamole-stimulated myocardial perfusion nor myocardial perfusion reserve changed during the ERT. Pretreatment relative wall thickness correlated negatively with posttreatment changes in flow reserve (r = -0.76, p = 0.05) and positively with posttreatment changes in minimal coronary resistance (r = 0.80, p = 0.03). This study shows that 12 months of ERT does not improve myocardial perfusion reserve, although the plasma Gb(3) concentration decreases. However, individual variation in the response to therapy was large and the results suggest that the success of the therapy may depend on the degree of cardiac hypertrophy.
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Kalliokoski et al. (2006) studied Fabry disease (n=10). Enzyme replacement therapy (recombinant human alpha-galactosidase A) was evaluated on Myocardial perfusion reserve. 12 months of enzyme replacement therapy did not improve myocardial perfusion reserve, though pretreatment relative wall thickness correlated negatively with changes in flow reserve (r = -0.76, p=0.05).
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