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P Khoo

Publications and source records attributed to P Khoo.

3 recordsLinked to original sources

The morphogenetic role of midline mesendoderm and ectoderm in the development of the forebrain and the midbrain of the mouse embryo.

The anterior midline tissue (AML) of the late gastrula mouse embryo comprises the axial mesendoderm and the ventral neuroectoderm of the prospective forebrain, midbrain and rostral hindbrain. In this study, we have investigated the morphogenetic role of defined segments of the AML by testing their inductive and patterning activity and by assessing the impact of their ablation on the patterning of the neural tube at the early-somite-stage. Both rostral and caudal segments of the AML were found to induce neural gene activity in the host tissue; however, the de novo gene activity did not show any regional characteristic that might be correlated with the segmental origin of the AML. Removal of the rostral AML that contains the prechordal plate resulted in a truncation of the head accompanied by the loss of several forebrain markers. However, the remaining tissues reconstituted Gsc and Shh activity and expressed the ventral forebrain marker Nkx2.1. Furthermore, analysis of Gsc-deficient embryos reveals that the morphogenetic function of the rostral AML requires Gsc activity. Removal of the caudal AML led to a complete loss of midline molecular markers anterior to the 4th somite. In addition, Nkx2.1 expression was not detected in the ventral neural tube. The maintenance and function of the rostral AML therefore require inductive signals emanating from the caudal AML. Our results point to a role for AML in the refinement of the anteroposterior patterning and morphogenesis of the brain.

Animals↗

Perioperative maternal and neonatal acid-base status and glucose metabolism in patients with insulin-dependent diabetes mellitus.

Maternal and neonatal acid-base status and glucose metabolism were studied in 20 patients with insulin-dependent diabetes mellitus (group 1) undergoing elective cesarean section under lumbar epidural anesthesia. All patients were given glucose/insulin infusion before delivery. Fifteen healthy patients with iatrogenic hyperglycemia (group 2) and 15 healthy euglycemic patients (group 3) served as controls. Results were expressed as mean +/- 1 SE and were analyzed using analysis of variance and chi 2 analysis at P less than 0.05. No significant differences were seen at delivery either in maternal arterial and neonatal umbilical venous and arterial blood acid-base status or in neonatal Apgar scores among the three groups. Patients in groups 1 and 2 had larger blood glucose concentrations than those in group 3 (P = 0.01). Diabetic mothers and their neonates had a 25%-50% reduction in pyruvate concentration in maternal venous, and neonatal umbilical venous and arterial blood compared with that in the other two groups (P = 0.001). Postpartum neonatal hypoglycemia (less than 30 mg/dL) developed in seven of the group 1 neonates (P = 0.05). Thus, epidural anesthesia in diabetic women is associated with normal acid-base status in the mother and in the neonate. The data also show an increased incidence of neonatal hypoglycemia and altered maternal and neonatal glycolysis in patients with diabetes mellitus.

Adult↗