Publications by authors named "A Karlen"

Article Synopsis
  • Mucopolysaccharidosis type I (MPS I) is a rare condition caused by a deficiency in the enzyme α-L-iduronidase (IDUA), leading to the buildup of glycosaminoglycans and various health issues.
  • Current treatments like stem cell transplants and enzyme replacement often fall short in addressing all patient symptoms.
  • In a study with MPS I mice, administering a specific viral vector (RGX-111) at a minimal dose of 10 vector genomes showed significant metabolic improvement and reduced severe symptoms, suggesting a promising approach for human therapy.
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New antibacterial compounds are urgently needed, especially for infections caused by the top-priority Gram-negative bacteria that are increasingly difficult to treat. Lipid A is a key component of the Gram-negative outer membrane and the LpxH enzyme plays an important role in its biosynthesis, making it a promising antibacterial target. Inspired by previously reported ortho-N-methyl-sulfonamidobenzamide-based LpxH inhibitors, novel benzamide substitutions were explored in this work to assess their in vitro activity.

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Here, we describe the identification of an antibiotic class acting via LpxH, a clinically unexploited target in lipopolysaccharide synthesis. The lipopolysaccharide synthesis pathway is essential in most Gram-negative bacteria and there is no analogous pathway in humans. Based on a series of phenotypic screens, we identified a hit targeting this pathway that had activity on efflux-defective strains of .

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Mucopolysaccharidosis type II (MPS II) is an X-linked recessive lysosomal disease caused by iduronate-2-sulfatase (IDS) deficiency, leading to accumulation of glycosaminoglycans (GAGs) and the emergence of progressive disease. Enzyme replacement therapy is the only currently approved treatment, but it leaves neurological disease unaddressed. Cerebrospinal fluid (CSF)-directed administration of AAV9.

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