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Targeting Neurological Aspects of Mucopolysaccharidosis Type II: Enzyme Replacement Therapy and Beyond
Alessandra Zanetti1,2, Rosella Tomanin3,4
1Laboratory of Diagnosis and Therapy of Lysosomal Disorders, Department of Women's and Children's Health SDB, University of Padova, Via Giustiniani, 3, 35128, Padua, Italy.
Abstract:
Mucopolysaccharidosis type II (MPS II) is a rare, pediatric, neurometabolic disorder due to the lack of activity of the lysosomal hydrolase iduronate 2-sulfatase (IDS), normally degrading heparan sulfate and dermatan sulfate within cell lysosomes. The deficit of activity is caused by mutations affecting the IDS gene, leading to the pathological accumulation of both glycosaminoglycans in the lysosomal compartment and in the extracellular matrix of most body districts. Although a continuum of clinical phenotypes is described, two main forms are commonly recognized-attenuated and severe-the latter being characterized by an earlier and faster clinical progression and by a progressive impairment of central nervous system (CNS) functions. However, attenuated forms have also been recently described as presenting some neurological involvement, although less deep, such as deficits of attention and hearing loss. The main treatment for the disease is represented by enzyme replacement therapy (ERT), applied in several countries since 2006, which, albeit showing partial efficacy on some peripheral organs, exhibited a very poor efficacy on bones and heart, and a total inefficacy on CNS impairment, due to the inability of the recombinant enzyme to cross the blood-brain barrier (BBB). Together with ERT, whose design enhancements, performed in the last few years, allowed a possible brain penetration of the drug through the BBB, other therapeutic approaches aimed at targeting CNS involvement in MPS II were proposed and evaluated in the last decades, such as intrathecal ERT, intracerebroventricular ERT, ex vivo gene therapy, or adeno-associated viral vector (AAV) gene therapy. The aim of this review is to summarize the main clinical aspects of MPS II in addition to current therapeutic options, with particular emphasis on the neurological ones and on the main CNS-targeted therapeutic approaches explored through the years.
Insights
Mucopolysaccharidosis type II (MPS II) is a rare neurometabolic disorder. This review summarizes MPS II clinical aspects and CNS-targeted therapies, including enzyme replacement therapy (ERT) and gene therapy, to address treatment challenges.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Mucopolysaccharidosis type II (MPS II) is a rare pediatric neurometabolic disorder caused by iduronate 2-sulfatase (IDS) deficiency.
- This deficiency leads to the pathological accumulation of glycosaminoglycans, impacting multiple body systems and causing progressive neurological impairment, particularly in severe forms.
Purpose of the Study:
- To review the clinical manifestations of MPS II, focusing on neurological involvement.
- To summarize current and emerging therapeutic strategies for MPS II, with an emphasis on treatments targeting the central nervous system (CNS).
Main Methods:
- Literature review of clinical aspects and therapeutic approaches for MPS II.
- Analysis of enzyme replacement therapy (ERT) efficacy and limitations, especially regarding blood-brain barrier (BBB) penetration.
- Evaluation of various CNS-targeted strategies, including intrathecal ERT, gene therapy (ex vivo and AAV-based).
Main Results:
- Enzyme replacement therapy (ERT) shows limited efficacy for bone and heart issues and is ineffective for CNS impairment due to the inability to cross the BBB.
- Recent ERT enhancements aim to improve BBB penetration.
- Alternative CNS-targeted therapies like intrathecal ERT and gene therapy show promise but require further evaluation.
Conclusions:
- MPS II presents a spectrum of clinical phenotypes with significant neurological involvement, necessitating effective CNS-targeted treatments.
- While ERT has limitations, ongoing advancements and alternative strategies like gene therapy offer potential for improved management of neurological complications in MPS II.
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