RGX-121 gene therapy for severe mucopolysaccharidosis type II (MPS II): Interim results of an ongoing first in human trial

2021 ◽  
Vol 132 (2) ◽  
pp. S76
Author(s):  
Marie-Laure Nevoret ◽  
Maria Escolar ◽  
Can Ficicioglu ◽  
Roberto Giugliani ◽  
Paul Harmatz ◽  
...  
2021 ◽  
Vol 132 ◽  
pp. S147
Author(s):  
Kruti Patel ◽  
Laura Smith ◽  
Tania Seabrook ◽  
Alec Tzianabos ◽  
Lindsay Schulman ◽  
...  

2021 ◽  
Vol 22 (11) ◽  
pp. 5490
Author(s):  
Paweł Zapolnik ◽  
Antoni Pyrkosz

Mucopolysaccharidosis type II (MPS II) is a lysosomal storage disorder based on a mutation in the IDS gene that encodes iduronate 2-sulphatase. As a result, there is an accumulation of glycosaminoglycans—heparan sulphate and dermatan sulphate—in almost all body tissues, which leads to their dysfunction. Currently, the primary treatment is enzyme replacement therapy, which improves the course of the disease by reducing somatic symptoms, including hepatomegaly and splenomegaly. The enzyme, however, does not cross the blood–brain barrier, and no improvement in the function of the central nervous system has been observed in patients with the severe form of the disease. An alternative method of treatment that solves typical problems of enzyme replacement therapy is gene therapy, i.e., delivery of the correct gene to target cells through an appropriate vector. Much progress has been made in applying gene therapy for MPS II, from cellular models to human clinical trials. In this article, we briefly present the history and basics of gene therapy and discuss the current state of knowledge about the methods of this therapy in mucopolysaccharidosis type II.


2021 ◽  
Vol 132 (2) ◽  
pp. S82
Author(s):  
Kruti Patel ◽  
Laura Smith ◽  
Jacinthe Gingras ◽  
Alec Tzianabos ◽  
Lindsay Schulman ◽  
...  

2010 ◽  
Vol 30 (1) ◽  
pp. 13-18 ◽  
Author(s):  
Sung-Chul Jung ◽  
Eun-Sook Park ◽  
Eun Nam Choi ◽  
Chi Hwa Kim ◽  
Su Jin Kim ◽  
...  

Author(s):  
Miguel Sampayo-Cordero ◽  
Bernat Miguel-Huguet ◽  
Andrea Malfettone ◽  
José Manuel Pérez-García ◽  
Antonio Llombart-Cussac ◽  
...  

Background: Case reports are usually excluded from systematic reviews. Patients with rare diseases are more dependent on novel individualized strategies than patients with common diseases. We reviewed and summarized the novelties reported by case reports in mucopolysaccharidosis type II (MPS-II) patients treated with enzyme replacement therapy (ERT). Methods: We selected the case reports included in a previous meta-analysis of patients with MPS-II treated with ERT. Later clinical studies evaluating the same topic of those case reports were reported. Our primary aim was to summarize novelties reported in previous case reports. Secondary objectives analyzed the number of novelties evaluated in subsequent clinical studies and the time elapsed between the publication of the case report to the publication of the clinical study. Results: We identified 11 innovative proposals in case reports that had not been previously considered in clinical studies. Only two (18.2%) were analyzed in subsequent nonrandomized cohort studies. The other nine novelties (81.8%) were analyzed in later case reports (five) or were not included in ulterior studies (four) after more than five years from their first publication. Conclusions: Case reports should be included in systematic reviews of rare disease to obtain a comprehensive summary of the state of research and offer valuable information for healthcare practitioners.


Life ◽  
2020 ◽  
Vol 10 (11) ◽  
pp. 263
Author(s):  
Laura Rigon ◽  
Nicole Kucharowski ◽  
Franka Eckardt ◽  
Reinhard Bauer

Mucopolysaccharidosis type II (MPS II) is a lysosomal storage disorder that occurs due to the deficit of the lysosomal enzyme iduronate 2-sulfatase (IDS) that leads to the storage of the glycosaminoglycan heparan- and dermatan-sulfate in all organs and tissues. It is characterized by important clinical features and the severe form presents with a heavy neurological involvement. However, almost nothing is known about the neuropathogenesis of MPS II. To address this issue, we developed a ubiquitous, neuronal, and glial-specific knockdown model in Drosophila melanogaster by using the RNA interference (RNAi) approach. Knockdown of the Ids/CG12014 gene resulted in a significant reduction of the Ids gene expression and enzymatic activity. However, glycosaminoglycan storage, survival, molecular markers (Atg8a, Lamp1, Rab11), and locomotion behavior were not affected. Even strongly reduced, IDS-activity was enough to prevent a pathological phenotype in a MPS II RNAi fruit fly. Thus, a Drosophila MPS II model requires complete abolishment of the enzymatic activity.


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