Institute of Physiology, Faculty of Medicine, Comenius University in Bratislava, Bratislava, Slovak Republic.
Physiol Res. 2019 Dec 20;68(Suppl 3):S307-S313. doi: 10.33549/physiolres.934349.
Biomechanical properties of erythrocytes play an important role in health and disease. Deformability represents intrinsic property of erythrocytes to undergo deformation that is crucial for their passage through the narrow capillaries. The erythrocyte damage can lead to compromised tissue perfusion and consequently play a role in the pathogenesis of various diseases including neurological ones. Data available in databases indicate that erythrocytes in autism spectrum disorder (ASD) are altered. This may affect the clinical symptoms of ASD. The aim of our study was to determine erythrocyte deformability in 54 children with ASD and correlate it with clinical symptoms. We found significant negative correlation between erythrocyte deformability and score in C domain of the Autism Diagnostic Interview-Revised (ADI-R) diagnostic tool describing the measure of restrictive, repetitive, and stereotyped behaviors and interests, mainly observable in C1 and C2, but not in C3 and C4 subdomains. This supports the findings of other authors and suggest that behavioral domain C comprises of more subcategories with different underlying etiology. Our results also indicate that abnormalities in erythrocyte deformability may be involved in ASD pathomechanisms and contribute to its clinical manifestation. Further research is necessary to bring more data and identify erythrocyte deformability as prognostic biomarker in ASD.
红细胞的生物力学特性在健康和疾病中起着重要作用。变形性代表红细胞发生变形的固有特性,这对于它们通过狭窄的毛细血管至关重要。红细胞损伤会导致组织灌注受损,从而在各种疾病的发病机制中发挥作用,包括神经疾病。数据库中的数据表明,自闭症谱系障碍 (ASD) 中的红细胞发生了改变。这可能会影响 ASD 的临床症状。我们的研究目的是确定 54 名 ASD 儿童的红细胞变形性,并将其与临床症状相关联。我们发现红细胞变形性与自闭症诊断访谈修订版 (ADI-R) 诊断工具的 C 域评分之间存在显著负相关,该工具描述了限制、重复和刻板行为和兴趣的衡量标准,主要在 C1 和 C2 中观察到,但不在 C3 和 C4 子域中观察到。这支持了其他作者的发现,并表明行为域 C 包含更多具有不同潜在病因的子类别。我们的结果还表明,红细胞变形性异常可能参与 ASD 的发病机制,并有助于其临床表现。需要进一步的研究来提供更多的数据,并确定红细胞变形性作为 ASD 的预后生物标志物。