Objective: The purpose of this experimental study was to elucidate alterations in fetal energy metabolism in relation to ECG changes during extreme fetal asphyxia, postnatal resuscitation and the immediate post-resuscitatory phase.
Study Design: Five near-term fetal sheep were subjected to umbilical cord occlusion until cardiac arrest followed by delivery, resuscitation and postnatal pressure-controlled ventilation. Four sheep served as sham controls and were delivered immediately after ligation of the umbilical cord. Fetal ECG was analysed online for changes of the ST segment. Fetal metabolism was monitored by intracerebral and subcutaneous microdialysis catheters.
Results: Fetal ECG reacted on cord occlusion with an increase in the T-wave height followed by changes in intracerebral levels of oxidative parameters. Cerebral lactate/pyruvate ratio and glutamate increased to median (range) of 240 (200-744) and 34.0 (22.6-60.5) mmol/l, respectively; both parameters returned to baseline after resuscitation. Cerebral glucose decreased to 0.1 (0.08-0.12) mmol/l after occlusion and increased above baseline upon resuscitation. In subcutaneous tissue as well as blood the increase in lactate occurred with a delay compared to cerebral levels.
Conclusion: The fetal ECG changes related to asphyxia preceded the increase in excitotoxicity as determined by increase in cerebral glutamate during asphyxia. Cerebral lactate increase was superior to subcutaneous lactate increase.
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http://dx.doi.org/10.3109/14767050903067360 | DOI Listing |
Radiol Case Rep
March 2025
Department of Psychiatry, Datta Meghe Institute of Medical Sciences, Sawangi, Wardha, Maharashtra 442001, India.
Gastroschisis represents a congenital malformation characterized by the herniation of abdominal contents through a defect in the abdominal wall, predominantly situated to the right of the umbilical cord. The defect is characterized by the absence of a covering membrane, resulting in the free floating of extruded abdominal contents. Major complications associated with this condition include stillbirth, preterm delivery, and intrauterine growth restriction.
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December 2024
Pediatric Surgery, Combined Military Hospital (CMH) Lahore Medical College, Institute of Dentistry, Lahore, PAK.
An umbilical granuloma (UG) is one of the most common umbilical anomalies seen in infants, mostly due to delayed cord separation. It is usually treated with silver nitrate; however, topical application of silver nitrate can cause chemical burns, creating concern among parents. We present a similar case in a two-month-old baby boy with a giant UG, which was treated with topical silver nitrate application, producing significant chemical burns around the umbilicus and on the anterior abdominal wall.
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January 2025
Stem Cell Biology and Regenerative Medicine Institution, Yi-Chuang Institute of Bio-Industry, Beijing, China.
Rheumatoid arthritis (RA) is a systemic, chronic inflammatory disease characterized by altered levels of inflammatory cytokines. One of the key cytokines involved in the pathogenesis of RA is tumor necrosis factor α (TNF-α), which plays a crucial role in the differentiation of T cells and B cells and serves as a primary trigger of inflammation and joint damage in RA. Human umbilical cord-derived mesenchymal stem cells (hUC-MSCs) have shown potential in alleviating the symptoms of RA.
View Article and Find Full Text PDFFront Pharmacol
January 2025
Department of Pathophysiology, College of Basic Medical Sciences, China Medical University, Shenyang, Liaoning, China.
Introduction: The risk of kidney fibrosis is significantly elevated in individuals with diabetes, chronic nephritis, trauma, and other underlying conditions. Concurrently, human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs) and their extracellular vesicles (MSC-Exos) have gained prominence in regenerative medicine. In light of these observations, we are undertaking a meta-analysis to elucidate the influence of hUCB-MSCs and MSC-Exos on kidney fibrosis.
View Article and Find Full Text PDFGlobally, there are 15 million stroke patients each year who have significant neurological deficits. Today, there are no treatments that directly address these deficits. With demographics shifting to an older population, the problem is worsening.
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