TY - JOUR
T1 - Skeletal consequences of preterm birth in pigs as a model for preterm infants
AU - Wilson, Brittany M
AU - Ko, Frank C
AU - Moran, Meghan M
AU - Adra, Amal
AU - Rasmussen, Martin B
AU - Thymann, Thomas
AU - Sangild, Per T
AU - Sumner, D Rick
N1 - © The Author(s) 2024. Published by Oxford University Press on behalf of the American Society for Bone and Mineral Research. All rights reserved. For permissions, please email: [email protected].
PY - 2024/7/23
Y1 - 2024/7/23
N2 - Preterm birth affects about 10% of all live births with many resultant health challenges, including metabolic bone disease of prematurity (MBDP), which is characterized by elevated alkaline phosphatase, suppressed phosphate, and deficient skeletal development. Because of the lack of an animal model, very little is known about bone structure, strength, and quality after preterm birth. This study investigated the utility of a pig model to replicate clinical features of preterm birth, including MBDP, and sought to determine if early postnatal administration of IGF-1 was an effective treatment. Preterm pigs, born by caesarean section at 90% gestation, were reared in intensive care facilities (respiratory, thermoregulatory, and nutritional support) and compared with sow-reared term pigs born vaginally. Preterm pigs were systemically treated with vehicle or IGF-1 (recombinant human IGF-1/BP-3, 2.25 mg/kg/d). Tissues were collected at postnatal days 1, 5, and 19 (the normal weaning period in pigs). Most bone-related outcomes were affected by preterm birth throughout the study period, whereas IGF-1 supplementation had almost no effect. By day 19, alkaline phosphatase was elevated, phosphate and calcium were reduced, and the bone resorption marker C-terminal crosslinks of type I collagen was elevated in preterm pigs compared to term pigs. Preterm pigs also had decrements in femoral cortical cross-sectional properties, consistent with reduced whole-bone strength. Thus, the preterm pig model replicates many features of preterm bone development in infants, including features of MBDP, and allows for direct interrogation of skeletal tissues, enhancing the field's ability to examine underlying mechanisms.
AB - Preterm birth affects about 10% of all live births with many resultant health challenges, including metabolic bone disease of prematurity (MBDP), which is characterized by elevated alkaline phosphatase, suppressed phosphate, and deficient skeletal development. Because of the lack of an animal model, very little is known about bone structure, strength, and quality after preterm birth. This study investigated the utility of a pig model to replicate clinical features of preterm birth, including MBDP, and sought to determine if early postnatal administration of IGF-1 was an effective treatment. Preterm pigs, born by caesarean section at 90% gestation, were reared in intensive care facilities (respiratory, thermoregulatory, and nutritional support) and compared with sow-reared term pigs born vaginally. Preterm pigs were systemically treated with vehicle or IGF-1 (recombinant human IGF-1/BP-3, 2.25 mg/kg/d). Tissues were collected at postnatal days 1, 5, and 19 (the normal weaning period in pigs). Most bone-related outcomes were affected by preterm birth throughout the study period, whereas IGF-1 supplementation had almost no effect. By day 19, alkaline phosphatase was elevated, phosphate and calcium were reduced, and the bone resorption marker C-terminal crosslinks of type I collagen was elevated in preterm pigs compared to term pigs. Preterm pigs also had decrements in femoral cortical cross-sectional properties, consistent with reduced whole-bone strength. Thus, the preterm pig model replicates many features of preterm bone development in infants, including features of MBDP, and allows for direct interrogation of skeletal tissues, enhancing the field's ability to examine underlying mechanisms.
KW - Alkaline Phosphatase/metabolism
KW - Animals
KW - Animals, Newborn
KW - Bone and Bones/drug effects
KW - Disease Models, Animal
KW - Female
KW - Humans
KW - Infant, Newborn
KW - Infant, Premature
KW - Insulin-Like Growth Factor I/metabolism
KW - Premature Birth
KW - Swine
KW - preterm birth
KW - IGF-1
KW - bone
KW - pig model
KW - metabolic bone disease of prematurity
UR - http://www.scopus.com/inward/record.url?scp=85199697299&partnerID=8YFLogxK
U2 - 10.1093/jbmr/zjae064
DO - 10.1093/jbmr/zjae064
M3 - Journal article
C2 - 38655758
SN - 0884-0431
VL - 39
SP - 791
EP - 803
JO - Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
JF - Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
IS - 6
ER -