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    Comprehensive Evaluation of Changes in Placentomes in the Second and Third Trimesters of Pregnancy in Cross‐Bred Hamdani Sheep
    (Wiley, 2025-01) Banu Kandil; Ali Osman Turgut; Davut Koca; Fatma Isbilir; Muhammed Zahid Atli; Barıs Can Guzel
    Background: A proper placentation is required for establishment and continuity of pregnancy. In sheep, placentomes are unique structures that enable nutrition and gas exchange between the mother and the foetus. Although placentomes are dynamic formations, there is limited knowledge of changes in placentomes during pregnancy. Objective: This study aimed to identify changes in sheep placentomes in the second and third trimesters of pregnancy using both macroscopic and microscopic methods. Methods: This study investigated 14 healthy cross-breed Hamdani sheep placentomes, comprising seven second and seven third trimesters of pregnancy. The histomorphometric analysis included measurements of capillary number and area in cotyledonary and caruncular regions, while morphometric assessments encompassed placentome dimensions such as number, length, width, and depth. Results: Placentomes were oval and circular in shape in the second and third trimesters. In the second trimester, they were observed as concave structures with thick edges, whereas in the third trimester, they were determined as thin-edged structures with a slight depression in the centre. In the third trimester, foetal and maternal tissues became more intertwined with increased branching of foetal villi and maternal crypts. Placental hematomas and erythrocytes in the cytoplasm of trophoblast cells were more prominent in the third trimester. Statistical analysis revealed no difference in placentome number between the second and third trimesters. However, the dimensions (length, width, and depth) of placentomes were greater in the third trimester compared to the second trimester (p < 0.001). Additionally, while there was no difference in the number of cotyledonary versus caruncular capillaries in the second trimester, cotyledonary capillaries outnumbered caruncular capillaries in the third trimester (p < 0.001). Furthermore, both cotyledonary and caruncular capillary areas increased in the third trimester compared to the second trimester, with the caruncular capillary area being consistently higher than the cotyledonary capillary area in both trimesters (p < 0.05). Conclusion: This study underscores the substantial structural and physiological transformations of placentomes in the second and third trimesters of pregnancy in sheep. These adaptations facilitate efficient flow exchange between the foetus and mother, highlighting the dynamic nature of placental development during late gestation.
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    Subclinical Pregnancy Toxemia Affects Blood Parameters of Ewes and Impairs Postnatal Growth and Development of Lambs
    (Wiley, 2025-04-22) Ali Osman Turgut; Mürsel Küçük; Mehmet Irmak; Cahit Özcan; Davut Koca; Erman Gülendağ; Muhammed Furkan Önen; Rahmi Doğan; Ali Ünver; İbrahim Halil Keskin
    Pregnancy toxemia (PT) is a common metabolic disorder that occurs in the last trimester of pregnancy. This study aimed to detect the effects of subclinical PT (SPT) on serum biochemical parameters of ewes and postnatal growth and development of lambs in Romanov sheep. A total of 40 ewes and 69 lambs were included in the study. Blood samples of ewes were collected at the time of parturition to evaluate serum beta-hydroxybutyric acid (βHBA), serum nonesterified fatty acid (NEFA), cholesterol, and triglyceride. Live weight and body measurements of lambs were recorded at birth (0th day), 30th day, and 60th (weaning) day. In the diagnosis of SPT serum βHBA concentrations were taken into account. A cut-off value of 0.8 mmol/L for βHBA was a critical concentration and ewes with 0.8-1.6 mmol/L βHBA were evaluated as SPT. There were no ewes with ΒHBA value higher than 1.6 mmol/L (clinical PT) in the study. There was no significant difference in serum βHBA, NEFA and cholesterol concentrations between ewes regarding birth type (single, twin, and triplet). However, triglyceride concentrations were higher (p < 0.001) in ewes giving birth to triplets compared to ewes giving birth to single lamb. Serum βHBA and triglyceride concentrations were higher (p < 0.01) in ewes with SPT (n = 14) compared to healthy ewes (n = 26). There was no significant difference between ewes with SPT and healthy ewes in serum NEFA and cholesterol. Repeated measures ANOVA results indicated that SPT negatively affected 0th, 30th, and 60th body weights of twin (p < 0.01) and triplet born lambs (p < 0.05). The effect of time on body weights was also found to be significant (p < 0.001). Similarly, most of the body measurements of twin and triplet born lambs were lower (p < 0.05) in the SPT group compared to healthy group. Overall results indicate that SPT may negatively affect postnatal growth and development in Romanov lambs. Because a decline in growth performance has many negative outcomes affecting production traits in sheep, these findings may be valuable for the veterinary field.
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    Öğe
    The Negative Effects of Subclinical Pregnancy Toxaemia on Fetal Skeletal Muscle Development and Evaluation of the Protective Effects of Dietary l‐Carnitine Supplementation in Sheep
    (Wiley, 2025-06) Ali Osman Turgut; Banu Kandil; Ebru Karakaya Bilen; Davut Koca; Ali Ünver; Fatma İşbilir; Özgür Özöner; Rahmi Doğan; Muhammed Furkan Önen; Mehmet Eroğlu; Sait Şendağ; Axel Wehrend
    This study evaluated the effects of subclinical pregnancy toxaemia (SPT) on fetal skeletal muscle development and assessed the potential protective role of L-carnitine supplementation during gestation. A total of 18 crossbred Hamdani ewes underwent oestrous synchronisation, natural mating and pregnancy confirmation via ultrasonography on day 45 post-mating. The ewes were managed according to NRC (2007) dietary guidelines until day 100 of gestation, after which they were assigned to three experimental groups: subclinical PT group (group 1; G1, n = 6), treatment group (subclinical PT + L-carnitine, group 2; G2, n = 6) and control group (group 3; G3, n = 6). Blood β-hydroxybutyrate (βHBA) concentrations were measured on day 100 and 138 of the gestation. Then, all ewes were slaughtered for fetal muscle sampling from the Musculus Longissimus Dorsi (MLD) and Vastus Lateralis (VL). Results indicated a significant reduction in muscle fibre number and fibre diameter in both MLD and VL in the SPT group (G1) compared to the control (G3) (p < 0.05). No significant differences were observed between G1 and G2 or between G2 and G3 for these parameters (p > 0.05). On the other hand, large effect sizes for group and pairwise comparisons imply that SPT may negatively affect prenatal muscle development and L-carnitine supports muscle development during the prepartum period. These findings highlight the negative effects of SPT and protective effects of L-carnitine supplementation on fetal skeletal muscle development in ewes with SPT. The observed deficits may negatively impact postnatal growth, survival rates and meat quality. Further investigations are warranted to optimise maternal nutrition strategies and evaluate therapeutic interventions aimed at mitigating the adverse impacts of SPT on fetal muscle development in ruminants. Furthermore, L-carnitine supplementation may be a useful in compensating for the negative effects of SPT.

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