Éliane Beauregard-Lacroix, Patricia Dubot, Alexey V Pshezhetsky, Philippe M Campeau
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引用次数: 0
摘要
粘多糖病IIIB型(Mucopolysaccharidosis type IIIB, MPS IIIB)又称Sanfilippo综合征B,是一种由硫酸肝素异常降解引起的溶酶体贮积病。其特点是进行性神经退化,伴发育倒退和行为异常。其他临床表现包括肌肉骨骼异常、听力损失、呼吸道异常和心血管疾病。在这里,我们报告了第二位患有MPS IIIB和慢性全血细胞减少症的患者。为了支持我们关于这些临床发现之间的病理生理关系的假设,我们在MPS IIIB Naglu-/-小鼠中进行了血液学研究,结果显示小细胞性贫血和单核细胞计数减少,没有血小板减少。尽管确切的病理生理机制仍有待确定,但血液学结果被认为是继发于MPS IIIB的。虽然这可能是一种不常见的临床特征,但我们建议全血细胞计数应被视为MPS IIIB患者临床监测的一部分。
Mucopolysaccharidosis Type IIIB With Pancytopenia: A Case Report and Hematological Correlations in Mice.
Mucopolysaccharidosis type IIIB (MPS IIIB), also called Sanfilippo syndrome B, is a lysosomal storage disease caused by abnormal degradation of heparan sulfate. It is characterized by progressive neurological deterioration with developmental regression and behavioral abnormalities. Additional clinical manifestations can include musculoskeletal anomalies, hearing loss, respiratory tract anomalies, and cardiovascular disease. Here, we report a second individual with MPS IIIB and chronic pancytopenia. To support our hypothesis of a pathophysiological relationship between these clinical findings, we performed hematological studies in MPS IIIB Naglu-/- mice, which revealed a microcytic anemia as well as a decreased monocyte count, without thrombocytopenia. Hematological findings are thought to be secondary to MPS IIIB even though the exact pathophysiological mechanism remains to be determined. Although it likely represents an uncommon clinical feature, we suggest that complete blood count should be considered as part of the clinical surveillance for individuals with MPS IIIB.
期刊介绍:
Clinical Genetics links research to the clinic, translating advances in our understanding of the molecular basis of genetic disease for the practising clinical geneticist. The journal publishes high quality research papers, short reports, reviews and mini-reviews that connect medical genetics research with clinical practice.
Topics of particular interest are:
• Linking genetic variations to disease
• Genome rearrangements and disease
• Epigenetics and disease
• The translation of genotype to phenotype
• Genetics of complex disease
• Management/intervention of genetic diseases
• Novel therapies for genetic diseases
• Developmental biology, as it relates to clinical genetics
• Social science research on the psychological and behavioural aspects of living with or being at risk of genetic disease