Akam Eman A, Bergemann David, Ridley Sterling J, To Samantha, Andrea Brittany, Moon Brianna, Ma Hua, Zhou Yirong, Aguirre Aaron, Caravan Peter, Gonzalez-Rosa Juan Manuel, Sosnovik David E
bioRxiv. 2023 Jul 25:2023.07.25.549713. doi: 10.1101/2023.07.25.549713.
In mammalian hearts myocardial infarction produces a permanent collagen-rich scar. Conversely, in zebrafish a collagen-rich scar forms but is completely resorbed as the myocardium regenerates. The formation of cross-links in collagen hinders its degradation but cross-linking has not been well characterized in zebrafish hearts. Here, a library of fluorescent probes to quantify collagen oxidation, the first step in collagen cross-link (CCL) formation, was developed. Myocardial injury in mice or zebrafish resulted in similar dynamics of collagen oxidation in the myocardium in the first month after injury. However, during this time, mature CCLs such as pyridinoline and deoxypyridinoline developed in the murine infarcts but not in the zebrafish hearts. High levels of newly oxidized collagen were still seen in murine scars with mature CCLs. These data suggest that fibrogenesis remains dynamic, even in mature scars, and that the absence of mature CCLs in zebrafish hearts may facilitate their ability to regenerate.
在哺乳动物心脏中,心肌梗死会形成永久性的富含胶原蛋白的瘢痕。相反,在斑马鱼中,虽然会形成富含胶原蛋白的瘢痕,但随着心肌再生,该瘢痕会被完全吸收。胶原蛋白中交联的形成会阻碍其降解,但斑马鱼心脏中交联的特征尚未得到充分研究。在此,我们开发了一个荧光探针库,用于量化胶原蛋白氧化,这是胶原蛋白交联(CCL)形成的第一步。小鼠或斑马鱼的心肌损伤在损伤后的第一个月内导致心肌中胶原蛋白氧化的动态变化相似。然而,在此期间,吡啶啉和脱氧吡啶啉等成熟的CCL在小鼠梗死灶中形成,而在斑马鱼心脏中则未形成。在具有成熟CCL的小鼠瘢痕中仍可看到高水平的新氧化胶原蛋白。这些数据表明,即使在成熟瘢痕中,纤维生成仍然是动态的,并且斑马鱼心脏中缺乏成熟的CCL可能有助于它们的再生能力。