Department of Biology, University of Florida, Gainesville, FL, USA.
Department of Molecular Genetics and Microbiology, University of Florida, Gainesville, FL, USA.
Biol Open. 2024 Jul 15;13(10). doi: 10.1242/bio.060565. Epub 2024 Oct 10.
The African spiny mouse (Acomys cahirinus) is a unique mammalian model of tissue regeneration, regenerating 4 mm ear-hole punches with cartilage, adipocytes, hair follicles, and muscle. However, the time to regenerate ear tissue varies from 20 to 90 days and muscle regeneration is inconsistent. Some report that older spiny mice have delayed regeneration without investigation on the regenerative capacity of muscle. We thought that delayed regeneration and inconsistent muscle regeneration could be linked via age-related nerve degeneration. While the current study found that spiny mice aged 6-9 months had delayed regeneration compared to 3-4 month-old spiny mice, the capacity of muscle regeneration was unrelated to age, and there was little evidence for age-related nerve degeneration. Instead, the regeneration of muscle, cartilage and adipocytes was spatially heterogeneous, declining in amount from the proximal to distal region of the regenerated tissue. Also, cartilage regeneration in the distal region was decreased in ≥22-month-old Acomys and adipocyte regeneration was decreased in those older than 6 months, compared to 3-4 month olds. While the underlying mechanisms for delayed and spatially heterogenous regeneration remain unclear, age and the spatial region of the regenerated tissue should be considered in experimental designs with spiny mice.
非洲刺毛鼠(Acomys cahirinus)是组织再生的独特哺乳动物模型,可再生带有软骨、脂肪细胞、毛囊和肌肉的 4mm 耳孔冲孔。然而,耳组织的再生时间从 20 天到 90 天不等,肌肉再生也不一致。一些研究报告称,老年刺毛鼠的再生延迟,但没有对肌肉的再生能力进行调查。我们认为,再生延迟和肌肉再生不一致可能与年龄相关的神经退化有关。虽然本研究发现 6-9 个月大的刺毛鼠与 3-4 个月大的刺毛鼠相比,再生时间延迟,但肌肉再生能力与年龄无关,且几乎没有证据表明存在与年龄相关的神经退化。相反,肌肉、软骨和脂肪细胞的再生存在空间异质性,从再生组织的近端到远端逐渐减少。此外,在≥22 个月大的 Acomys 中,远端软骨的再生减少,而在 6 个月以上的 Acomys 中,脂肪细胞的再生减少,与 3-4 个月大的 Acomys 相比。虽然延迟和空间异质再生的潜在机制尚不清楚,但在使用刺毛鼠进行实验设计时,应考虑年龄和再生组织的空间区域。