Impact of eggshell membrane on metabolism and cell adhesion in oxidatively stressed canine chondrocytes.

IF 2.9 2区 农林科学 Q1 VETERINARY SCIENCES Frontiers in Veterinary Science Pub Date : 2025-01-08 eCollection Date: 2024-01-01 DOI:10.3389/fvets.2024.1517349
Juraj Vozar, Nikola Hudakova, Natalia Nosalova, Mykhailo Huniadi, Dana Marcincakova, Slavomir Hornak, Lubica Hornakova, Petra Majerova, Dasa Cizkova
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Abstract

Eggshell membrane (ESM) is a rich source of bioactive compounds, including proteins, peptides, and antioxidants, contributing to its potential therapeutic benefits. These natural antioxidants might help neutralize reactive oxygen species (ROS) and modulate inflammatory responses, which are often linked with chondrocyte damage in osteoarthritis. In this study, we investigated the functional effects of ESM proteins on H2O2-induced oxidative stress in a neonatal canine chondrocytes. The isolated neonatal chondrocytes demonstrated a high proliferation rate and increased glycosaminoglycan (GAG) production during cultivation. In addition, the expression of key cartilage markers, including collagen types II and IX, and aggrecan, confirmed the retention of the chondrocyte phenotype. Under in vitro conditions, post-treatment with ESM improved chondrocyte viability, indicating that ESM may have a reparative role in mitigating oxidative damage. This significant therapeutic potential was validated through XTT assays, which measured cell metabolic activity at 24 h, and Real-time Cell Analysis (RTCA), providing continuous monitoring over 98 h. In contrast, the preventive effects of ESM against stress were observed exclusively in the XTT analysis. By investigating these aspects, we provide insight into the potential of ESM proteins to protect chondrocytes from oxidative damage, particularly in cartilage repair and joint health. This study is one of the first to create a vital platform based on canine neonatal chondrocytes for monitoring dietary supplements designed to prevent or repair dog cartilage damage. Thus, the study offers a valuable contribution to understanding how ESM bioactive compounds can be used therapeutically, bridging the gap between in vitro findings and practical applications in veterinary medicine.

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蛋壳膜对氧化应激犬软骨细胞代谢和细胞粘附的影响。
蛋壳膜(ESM)是生物活性化合物的丰富来源,包括蛋白质、肽和抗氧化剂,有助于其潜在的治疗效益。这些天然抗氧化剂可能有助于中和活性氧(ROS)和调节炎症反应,这通常与骨关节炎的软骨细胞损伤有关。在这项研究中,我们研究了ESM蛋白对h2o2诱导的新生犬软骨细胞氧化应激的功能影响。分离的新生软骨细胞在培养过程中表现出高增殖率和糖胺聚糖(GAG)产量的增加。此外,关键软骨标志物(包括II型和IX型胶原)和聚集蛋白的表达证实了软骨细胞表型的保留。在体外条件下,ESM治疗后提高了软骨细胞活力,表明ESM可能在减轻氧化损伤方面具有修复作用。这种显著的治疗潜力通过XTT试验得到了验证,XTT试验测量了24 h的细胞代谢活性,实时细胞分析(RTCA)提供了98 h的连续监测。相比之下,ESM对应激的预防作用仅在XTT分析中观察到。通过对这些方面的研究,我们深入了解了ESM蛋白保护软骨细胞免受氧化损伤的潜力,特别是在软骨修复和关节健康方面。这项研究是第一个建立一个基于犬新生软骨细胞的重要平台,用于监测旨在预防或修复犬软骨损伤的膳食补充剂。因此,该研究为了解ESM生物活性化合物如何用于治疗提供了宝贵的贡献,弥合了体外研究结果与兽药实际应用之间的差距。
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来源期刊
Frontiers in Veterinary Science
Frontiers in Veterinary Science Veterinary-General Veterinary
CiteScore
4.80
自引率
9.40%
发文量
1870
审稿时长
14 weeks
期刊介绍: Frontiers in Veterinary Science is a global, peer-reviewed, Open Access journal that bridges animal and human health, brings a comparative approach to medical and surgical challenges, and advances innovative biotechnology and therapy. Veterinary research today is interdisciplinary, collaborative, and socially relevant, transforming how we understand and investigate animal health and disease. Fundamental research in emerging infectious diseases, predictive genomics, stem cell therapy, and translational modelling is grounded within the integrative social context of public and environmental health, wildlife conservation, novel biomarkers, societal well-being, and cutting-edge clinical practice and specialization. Frontiers in Veterinary Science brings a 21st-century approach—networked, collaborative, and Open Access—to communicate this progress and innovation to both the specialist and to the wider audience of readers in the field. Frontiers in Veterinary Science publishes articles on outstanding discoveries across a wide spectrum of translational, foundational, and clinical research. The journal''s mission is to bring all relevant veterinary sciences together on a single platform with the goal of improving animal and human health.
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