Vergara-Hernandez Fernando B, Nielsen Brian D, Colbath Aimee C
Department of Animal Science, Michigan State University, 474 S. Shaw Ln, East Lansing, MI 48824, USA.
Department of Large Animal Clinical Sciences, College of Veterinary Medicine, Michigan State University, 736 Wilson Ave, East Lansing, MI 48864, USA.
Animals (Basel). 2022 Jul 3;12(13):1722. doi: 10.3390/ani12131722.
Osteoclasts are unique and vital bone cells involved in bone turnover. These cells are active throughout the individual's life and play an intricate role in growth and remodeling. However, extra-label bisphosphonate use may impair osteoclast function, which could result in skeletal microdamage and impaired healing without commonly associated pain, affecting bone remodeling, fracture healing, and growth. These effects could be heightened when administered to growing and exercising animals. Bisphosphonates (BPs) are unevenly distributed in the skeleton; blood supply and bone turnover rate determine BPs uptake in bone. Currently, there is a critical gap in scientific knowledge surrounding the biological impacts of BP use in exercising animals under two years old. This may have significant welfare ramifications for growing and exercising equids. Therefore, future research should investigate the effects of these drugs on skeletally immature horses.
破骨细胞是参与骨转换的独特且重要的骨细胞。这些细胞在个体的一生中都很活跃,在生长和重塑过程中发挥着复杂的作用。然而,超适应症使用双膦酸盐可能会损害破骨细胞功能,这可能导致骨骼微损伤和愈合受损,且通常无相关疼痛,影响骨重塑、骨折愈合和生长。当给生长和运动的动物使用时,这些影响可能会加剧。双膦酸盐(BPs)在骨骼中的分布不均匀;血液供应和骨转换率决定了BPs在骨中的摄取。目前,关于两岁以下运动动物使用BPs的生物学影响的科学知识存在关键空白。这可能对生长和运动的马科动物的福利产生重大影响。因此,未来的研究应该调查这些药物对骨骼未成熟马匹的影响。