Search PubMed⌕ Search

Biomedical subjects

V K Rehan

Publications and source records attributed to V K Rehan.

25 records · Page 2Linked to original sources

Neonatal portal vein thrombosis successfully treated by regional streptokinase infusion.

We report a case of portal vein thrombosis (PVT) in a term neonate following an exchange transfusion through an umbilical vein catheter which was left in situ for 16 h after the transfusion. The baby made a complete recovery after successful thrombolysis with regional streptokinase infusion. To our knowledge, this is the first reported case of a PVT following an indwelling portal venous catheter left in situ with complete resolution following thrombolysis with regional streptokinase infusion.

Humans↗

Neonatal renal candidal bezoar.

Renal candidal bezoar is uncommonly encountered in neonatal intensive care. An affected neonate who improved only after surgical removal of obstructive fungus from the renal pelvis and local irrigation with amphotericin B is described. The need for early consideration of surgical intervention is stressed.

Amphotericin B↗

Antenatal steroids: miracle drug for preemies.

Antenatal corticosteroid administration has been unequivocally demonstrated to reduce neonatal morbidity and mortality. In addition to its well-documented role in reducing respiratory distress syndrome, evidence is accumulating indicating the global maturational effect of this therapy in the growing fetus. New data demonstrates, the hitherto relatively not well known, beneficial effects of this mode of therapy on renal, cardiovascular, gastrointestinal, endocrinal and cerebral maturation. Despite its well proven efficacy and safety, this therapy is used only in a small fraction of eligible mothers. In this article, biological basis of antenatal steroids use, clinical benefits including those to extremely premature infants, indications for their administration, treatment regimens, practice variations in their administration, cost analysis, and some directions for future research are reviewed. It is hoped that given the evidence reviewed in this article, the use of antenatal steroids administration in proper clinical settings will increase with a significant impact in reducing the neonatal morbidity and mortality.

Central Nervous System↗

The role of fibroblast transdifferentiation in lung epithelial cell proliferation, differentiation, and repair in vitro.

Parathyroid hormone-related protein (PTHrP) expression is necessary for differentiation of mesenchymal lipofibroblasts, which induce epithelial type II (TII) cell differentiation, both of which are necessary for alveolarization. PTHrP deficiency may be associated with bronchopulmonary dysplasia (BPD), characterized by truncation of alveolarization among preterm infants. This is supported by the baboon model of BPD (failure of alveolarization) that manifests PTHrP deficiency. We provide evidence that TII cell PTHrP expression is downregulated by alveolar overdistension, resulting in the transdifferentiation of lipofibroblasts to myofibroblasts, characterized by progressive loss of PTHrP receptor expression and triglyceride content, and sequential upregulation of alpha-smooth muscle actin (alphaSMA), typifying fibrosis. PTHrP reverses the downregulation of the PTHrP receptor and upregulation of alphaSMA, reverting myofibroblasts to a lipofibroblast genotype. When TII cells are co-cultured with lipofibroblasts, they proliferate and differentiate, expressing surfactant protein-B; in contrast, TII cells co-cultured with myofibroblasts fail to develop, mimicking the failed alveolarization associated with BPD. Treatment of myofibroblasts with 15-deoxy-Delta 12, 14 prostaglandinJ(2) (PGJ(2)) stimulates ADRP expression, reconstituting the lipofibroblast phenotype. PGJ(2)-treated myofibroblasts promote TII cell growth and surfactant protein-B expression, indicating that failed alveolarization due to transdifferentiation is reversible. We conclude that alveolar overdistension can cause fibroblast transdifferentiation, resulting in failed alveolarization.

Animals↗