Mucopolysaccharidosis II (MPS II; Hunter syndrome) is a rare, X-linked, recessive lysosomal storage disorder that impacts approximately 1:162000 live births. It is caused by deficiencies in the lysosomal enzyme iduronate-2-sulfatase (I2S), resulting in harmful accumulation of specific glycosaminoglycans in cells, tissues and organs throughout the body. Clinical manifestations are varied and include airway obstruction, impaired mobility and, in two-thirds of cases, neurocognitive impairment (neuronopathic MPS II). Intravenous idursulfase enzyme replacement therapy (elaprase), improves many physical symptoms and signs of the disease but has limited neurological efficacy due to impaired crossing of the blood-brain barrier. TAK-609 is an intrathecal formulation of idursulfase (idursulfase-IT) that is delivered directly to the cerebrospinal fluid (CSF) of patients with neuronopathic MPS II to attenuate the neurocognitive decline. This study investigated the relationship between clinical outcomes of patients treated with TAK-609 and levels of neurofilament light chain (NfL), a component of the neuronal cytoskeleton that accumulates under neurodegenerative conditions. We report an association between the severity of I2S gene (IDS) variants and baseline CSF NfL levels in patients with neuronopathic MPS II that corresponded to primary substrate burden as measured by heparan sulfate and total GAGs. Supraphysiological (high) NfL levels corresponded to a more rapid rate of cognitive decline than physiological (normal) baseline levels. Taken together, this study establishes a clear link between genetic status, accumulation of primary substrate and circulating CSF NfL levels, allowing for bioanalytical stratification of patient outcomes in MPS II. TAKE-HOME MESSAGE: Baseline cerebrospinal neurofilament light chain levels correspond to the severity of iduronate-2-sulfatase gene (IDS) genotype, the degree of primary substrate burden and subsequent clinical outcomes in patients with neuronopathic mucopolysaccharidosis II, and can complement clinical assessments of disease heterogeneity.
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http://dx.doi.org/10.1016/j.ymgme.2025.109055 | DOI Listing |
J Am Chem Soc
March 2025
Department of Pharmacology and Chemical Biology, Institute of Molecular Medicine, Collaborative Innovation Center for Clinical and Translational Science by Chinese Ministry of Education & Shanghai, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China.
Raman-based theranostics has demonstrated great potential for sensitive real-time imaging and treatment. However, these advanced materials, primarily depending on the SERS technique, encounter clinical concerns regarding substrate biosafety. Herein, we molecularly engineered a substrate-free SICTERS small molecule, namely BTT-TPA (bis-thienyl-substituted benzotriazole selenadiazole derivative structures), possessing both ultrasensitive Raman signals and excellent photothermal effects based on self-stacking.
View Article and Find Full Text PDFScand J Med Sci Sports
March 2025
Department of Internal Medicine B, University Medicine Greifswald, Greifswald, Germany.
High cardiorespiratory fitness (CRF) is associated with better overall health. This study aimed to find a metabolic signature associated with CRF to identify health-promoting effects. CRF based on cardiopulmonary exercise testing, targeted and untargeted metabolomics approaches based on mass spectrometry, and clinical data from two independent cohorts of the Study of Health in Pomerania (SHIP) were used.
View Article and Find Full Text PDFIn the current work, a palladium-catalyzed C-C bond cleavage reaction of primary alcohols has been developed. This transformation was characterized by a broad substrate scope, superior functional group tolerance, and high efficiency for selective C-C bond cleavage and was then followed by alkynyl-aryl cross coupling. Mechanism studies indicated that the propargyl alcohols underwent β-H elimination to form aldehydes rather than having undergone β-C elimination.
View Article and Find Full Text PDFJ Mol Graph Model
March 2025
Department of Chemical Engineering, Faculty of Chemical and Petroleum Engineering, University of Tabriz, Tabriz, Iran. Electronic address:
Covalent Organic Frameworks (COFs) are a new class of highly porous crystalline substances which have demonstrated excellent potential as novel adsorbents for efficient depollution of pharmaceutical compounds from wastewater. Herein, the molecular mechanism involved in the removal process of non-steroidal anti-inflammatory drug residues, Ibuprofen (IBP) and Naproxen (NPX), from polluted water by an emerging novel COF functionalized with vinyl groups (COF-V), is evaluated through molecular dynamics (MD) simulations under various external electric fields (EFs). MD analyses show that COF-V is efficient in drug loading capacity of % 100 with total interaction energy value of -519.
View Article and Find Full Text PDFLangmuir
March 2025
Department of Chemical Sciences, Tata Institute of Fundamental Research, Dr. Homi Bhabha Road, Colaba 400005, Mumbai, India.
Despite the widespread use of imidazolium-based ionic liquids (ILs) in biotechnology, pharmaceuticals, and green chemistry, their detailed interactions with proteins, particularly affecting structural stability, remain poorly understood. This study examines the effects of ILs on ubiquitin, a thermodynamically robust protein with a β-grasp structure. We found that IL-induced destabilization follows a consistent order with previous findings: [BMIM] > [BMPyr] > [EMIM] for cations and [BF] > [MeSO] > [Cl] for anions.
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