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Mucopolysaccharidoses (MPS) are rare genetic diseases caused by deficiency of specific lysosomal enzymes that affect catabolism of glycosaminoglycans (GAG). Accumulation of GAG in various organs and tissues in MPS patients results in a series of signs and symptoms, producing a multisystemic condition affecting bones and joints, the respiratory and cardiovascular systems and many other organs and tissues, including in some cases, cognitive performance. So far, eleven enzyme defects that cause seven different types of MPS have been identified. Before introduction of therapies to restore deficient enzyme activity, treatment of MPS focused primarily on prevention and care of complications, still a very important aspect in the management of these patients. In the 80's treatment of MPS with bone marrow transplantation/hematopoietic stem cells transplantation (BMT/HSCT) was proposed and in the 90's, enzyme replacement therapy (ERT),began to be developed and was approved for clinical use in MPS I, II and VI in the first decade of the 21st century. The authors of this paper are convinced that a better future for patients affected by mucopolysaccharidoses depends upon identifying, understanding and appropriately managing the multisystemic manifestations of these diseases. This includes the provision of support measures (which should be part of regular multidisciplinary care of these patients) and of specific therapies. Although inhibition of synthesis of GAG and the recovery of enzyme activity with small molecules also may play a role in the management of MPS, the breakthrough is the currently available intravenous ERT. ERT radically changed the setting for treatment of mucopolysaccharidosis I, II and VI in the last decade., Benefits can even be extended soon to MPS IV A (ERT for this condition is already in clinical development), with prediction for treatment of MPS III A and the cognitive deficit in MPS II by administration of the enzyme directly into the central nervous system (CNS). A large number of Brazilian services, from all regions of the country, already have experience with ERT for MPS I, II and VI. This experience was gained not only by treating patients but also with the participation of some groups in clinical trials involving ERT for these conditions. Summing up the three types of MPS, more than 250 patients have already been treated with ERT in Brazil. The experience of professionals coupled to the data available in international literature, allowed us to elaborate this document, produced with the goal of bringing together and harmonize the information available for the treatment of these severe and progressive diseases, which, fortunately, are now treatable, a situation which bring new perspectives for Brazilian patients, affected by these conditions.
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http://dx.doi.org/10.1590/s0104-42302010000300009 | DOI Listing |
Aquat Toxicol
September 2025
State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou 510655, China. Electronic address:
Microplastics (MPs) have emerged as ubiquitous environmental contaminants, while thallium (Tl), a highly toxic metalloid, is gaining attention as a novel pollutant due to its increasing release from electronic waste and mining activities. These pollutants frequently coexist in aquatic environments; however, their combined effects at environmentally relevant concentrations remain poorly understood. In this study, the adsorption behavior and joint neurotoxicity of polystyrene (PS) microplastics and Tl were systematically evaluated using Caenorhabditis elegans as a model organism.
View Article and Find Full Text PDFJ Adv Res
September 2025
National Medical Products Administration (NMPA) Key Laboratory for Safety Evaluation of Cosmetics, Guangdong Provincial Key Laboratory of Tropical Disease Research, Department of Toxicology, School of Public Health, Southern Medical University, Guangzhou, China. Electronic address: huangzhenlie85825
Introduction: The increasing use of biodegradable plastics has led to the inevitable human consumption of biodegradable microplastics (MPs). These MPs can be degraded and absorbed into various organs and tissues via the gastrointestinal tract, with the liver being the primary target for digestion and absorption.
Objectives: This study aimed to investigate the toxic effects and mechanisms of biodegradable MPs on the liver following gastrointestinal degradation.
J Hazard Mater
September 2025
National Engineering Lab for Advanced Municipal Wastewater Treatment and Reuse Technology, Department of Environmental Engineering, Beijing University of Technology, Beijing 100124, China.
Methylparaben (MeP), Benzethonium chloride (BZC) and microplastics (MPs) as emerging contaminants are frequently detected in the environment. Furthermore, MPs can be colonized by microorganisms to form a unique ecological niche known as the "plastisphere". In this study, three biofilm-based sulfur autotrophic denitrification (SAD) reactors were established, which were exposed to 0.
View Article and Find Full Text PDFJ Hazard Mater
August 2025
Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China. Electronic address:
Microplastics (MPs) and heavy metals (HMs), well-known environmental pollutants, have attracted widespread attention owing to their increasing threats. However, the interactions of MPs and chromium (Cr) at the microscale remain poorly understood, and the effects of environmental transformation on their toxicity remain controversial. The influences of light irradiation on their conversion were investigated using transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS).
View Article and Find Full Text PDFWater Res
August 2025
National Research and Development Institute for Industrial Ecology-ECOIND, Drumul Podu, Dambovitei Street, 57 -73, Sector 6, Bucharest, Romania. Electronic address:
Microplastics (MPs) are emerging vectors for hydrophobic organic pollutants, including polycyclic aromatic hydrocarbons (PAHs), in aquatic environments. Due to their high surface area and sorption potential, MPs can enhance the environmental persistence and bioavailability of toxic compounds, posing potential risks to both aquatic organisms and human health. This study investigates the distribution, sorption behavior, and effects on pollutant transport, distribution, and exposure pathways of PAHs-contaminated microplastics in two major Romanian rivers: the Prahova and Ialomita.
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