...
首页> 外文期刊>Molecular Genetics and Metabolism Reports >Characterization of the {MPS} I-H knock-in mouse reveals increased femoral biomechanical integrity with compromised material strength and altered bone geometry
【24h】

Characterization of the {MPS} I-H knock-in mouse reveals increased femoral biomechanical integrity with compromised material strength and altered bone geometry

机译:{MPS} I-H敲入小鼠的特征揭示了股骨生物力学完整性提高,同时材料强度受损,骨骼几何形状改变

获取原文

摘要

Abstract Mucopolysaccharidosis type I (MPS I), is an autosomal recessive lysosomal storage disorder caused by a deficiency in the α-L-iduronidase enzyme, resulting in decreased enzymatic activity and accumulation of glycosaminoglycans. The disorder phenotypically manifests with increased urine glycosaminoglycan excretion, facial dysmorphology, neuropathology, cardiac manifestations, and bone deformities. While the development of new treatment strategies have shown promise in attenuating many symptoms associated with the disorder, the bone phenotype remains unresponsive. The aim of this study was to investigate and further characterize the skeletal manifestations of the Idua-W392X knock-in mouse model, which carries a nonsense mutation corresponding to the IDUA-W402X mutation found in Hurler syndrome (MPS I-H) patients. μCT analysis of the microarchitecture demonstrated increased cortical thickness, trabecular number, and trabecular connectivity along with decreased trabecular separation in the tibiae of female homozygous Idua-W392X knock-in (IDUA?/?) mice, and increased cortical thickness in male IDUA?/? tibiae. Cortical density, as determined by μCT, and bone mineral density distribution, as determined by quantitative backscattered microscopy, were equivalent in IDUA?/? and wildtype (Wt) bone. However, tibial porosity was increased in IDUA?/? cortical bone. Raman spectroscopy results indicated that tibiae from female IDUA?/? had decreased phosphate to matrix ratios and increased carbonate to phosphate ratios compared to Wt female tibiae, whereas these ratios remained equivalent in male IDUA?/? and Wt tibiae. Femora demonstrated altered geometry and upon torsional loading to failure analysis, female IDUA?/? mouse femora exhibited increased torsional ultimate strength, with a decrease in material strength relative to Wt littermates. Taken together, these findings suggest that the IDUA?/? mutation results in increased bone torsional strength by altering the overall bone geometry and the microarchitecture which may be a compensatory response to increased porosity, reduced bone tensile strength and altered physiochemical composition.
机译:摘要I型粘多糖贮积病(MPS I)是一种常染色体隐性溶酶体贮积病,由α-L-异丁糖苷酸酶的缺乏引起,导致酶活性下降和糖胺聚糖的积累。该疾病的表型表现为尿糖胺聚糖排泄增加,面部畸形,神经病理学,心脏表现和骨畸形。尽管开发新的治疗策略已显示出有望减轻与该疾病有关的许多症状,但骨表型仍然没有反应。这项研究的目的是调查并进一步鉴定Idua-W392X敲入小鼠模型的骨骼表现,该模型携带无意义的突变,该突变与Hurler综合征(MPS I-H)患者中发现的IDUA-W402X突变相对应。对微结构的μCT分析表明,雌性纯合Idua-W392X敲入(IDUA?/?)小鼠胫骨的皮质厚度,小梁数目和小梁连接性增加,小梁间距减小,而雄性IDUA?/?的皮质厚度增加。 ?胫骨用μCT测定的皮层密度和用定量反向散射显微镜测定的骨矿物质密度分布在IDUA /β中是等效的。和野生型(Wt)骨骼。但是,IDUAα/β增加了胫骨孔隙度。皮质骨。拉曼光谱结果表明,雌性IDUAα/β是胫骨。与Wt雌性胫骨相比,磷酸盐与基质的比率降低,而碳酸盐与磷酸盐的比率增加,而雄性IDUAα/β的这些比率保持相等。和胫骨股骨表现出改变的几何形状,并且在扭转载荷下进行失效分析时,使用女性IDUA?/?。小鼠股骨表现出增加的扭转极限强度,相对于Wt同窝幼仔而言材料强度下降。综上所述,这些发现表明IDUA?突变通过改变整体骨骼的几何形状和微结构而导致骨骼抗扭强度的提高,这可能是对孔隙率增加,骨骼抗张强度降低和理化成分改变的补偿性反应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号