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Absence of LTBP-3 attenuates the aneurysmal phenotype but not spinal effects on the aorta in Marfan syndrome

机译:没有LTBP-3衰减动脉瘤表型,但在马法综合征中的主动脉上没有脊髓效应

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摘要

Fibrillin-1 is an elastin-associated glycoprotein that contributes to the long-term fatigue resistance of elastic fibers as well as to the bioavailability of transforming growth factor-beta (TGF) in arteries. Altered TGF bioavailability and/or signaling have been implicated in aneurysm development in Marfan syndrome (MFS), a multi-system condition resulting from mutations to the gene that encodes fibrillin-1. We recently showed that the absence of the latent transforming growth factor-beta binding protein-3 (LTBP-3) in fibrillin-1-deficient mice attenuates the fragmentation of elastic fibers and focal dilatations that are characteristic of aortic root aneurysms in MFS mice, at least to 12weeks of age. Here, we show further that the absence of LTBP-3 in this MFS mouse model improves the circumferential mechanical properties of the thoracic aorta, which appears to be fundamental in preventing or significantly delaying aneurysm development. Yet, a spinal deformity either remains or is exacerbated in the absence of LTBP-3 and seems to adversely affect the axial mechanical properties of the thoracic aorta, thus decreasing overall vascular function despite the absence of aneurysmal dilatation. Importantly, because of the smaller size of mice lacking LTBP-3, allometric scaling facilitates proper interpretation of aortic dimensions and thus the clinical phenotype. While this study demonstrates that LTBP-3/TGF directly affects the biomechanical function of the thoracic aorta, it highlights that spinal deformities in MFS might indirectly and adversely affect the overall aortic phenotype. There is a need, therefore, to consider together the vascular and skeletal effects in this syndromic disease.
机译:Fiblillin-1是弹性蛋白相关的糖蛋白,其有助于弹性纤维的长期疲劳性,以及转化动脉中生长因子-β(TGF)的生物利用度。改变的TGF生物利用度和/或信号传导在马法综合征(MFS)中的动脉瘤显影中涉及,该多系统条件是由编码纤维蛋白-1的基因的突变导致的多系统条件。我们最近表明,在纤维蛋白-1缺陷小鼠中没有潜在的转化生长因子-β结合蛋白-3(LTBP-3)衰减弹性纤维和局灶性膨胀的裂缝,其是MFS小鼠主动脉根动脉瘤的特征,至少为12周的年龄。这里,我们进一步表明,在该MFS小鼠模型中没有LTBP-3改善了胸主动脉的周向力学性质,这似乎是预防或显着延迟动脉瘤发育的基础。然而,在没有带LTBP-3的情况下保持或加剧脊柱畸形,并且似乎对胸主动脉的轴向力学性能产生不利影响,因此尽管没有动脉瘤扩张,但仍可降低整体血管功能。重要的是,由于缺乏LTBP-3的小鼠尺寸较小,因此促进对主动脉尺寸的正确解释,因此有助于临床表型。虽然该研究表明LTBP-3 / TGF直接影响胸主动脉的生物力学功能,但它突出显示MFS中的脊柱畸形可能间接地影响整个主动脉表型。因此,需要考虑这种综合征疾病的血管和骨骼效应。

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