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Biomedical subjects

P Philippidis

Publications and source records attributed to P Philippidis.

9 recordsLinked to original sources

Hemoglobin scavenger receptor CD163 mediates interleukin-10 release and heme oxygenase-1 synthesis: antiinflammatory monocyte-macrophage responses in vitro, in resolving skin blisters in vivo, and after cardiopulmonary bypass surgery.

The recently described hemoglobin scavenger receptor CD163 mediates the endocytosis of hemoglobin:haptoglobin (Hb:Hp) complexes and thereby counters Hb-induced oxidative tissue damage after hemolysis. Although CD163 has been indirectly associated with antiinflammatory and atheroprotective activity, no ligand-receptor-effector pathway has yet been described for this receptor. To understand the significance of CD163 and more clearly define downstream pathways linked to inflammatory resolution, we studied the expression and function of CD163 in human monocytes/macrophages using both in vitro and in vivo models. Differentiation of human blood monocytes into macrophages either by in vitro culture or in resolving cantharidin-induced skin blisters led to an equivalent increase (>15x) in CD163 expression. Elevated CD163 levels were also noted on circulating monocytes in cardiac surgical patients during the resolution phase of the systemic inflammatory response to cardiopulmonary bypass surgery. In each case, binding of Hb:Hp to CD163-bearing cells elicited potent interleukin-10 secretion, and this was inhibited by the anti-CD163 antibody RM3/1. Release of interleukin-10, in turn, induced heme oxygenase-1 stress protein synthesis via an autocrine mechanism. Such induction of heme oxygenase-1 was observed in vivo 24 to 48 hours after the onset of cardiopulmonary bypass surgery. These results identify novel antiinflammatory and cytoprotective effector pathways in human monocytes/macrophages related to Hb scavenging and metabolism, which may have relevance in atheroprotection, wound healing, and patient recovery postoperatively.

Aged↗

Sexual maturation of Greek boys.

BACKGROUND: Sexual maturation is dependent on genetic and environmental factors, therefore each ethnic group has to have its own normative data. AIM: This study describes the sexual maturation of Greek boys. SUBJECTS AND METHODS: We examined cross-sectionally 1266 healthy boys, aged 8-16 years. Pubertal staging in each boy was assessed according to Tanner's classification. Our data were also compared with those of a study performed in 1968. RESULTS: The first pubertal sign was genital enlargement (G2) that occurred at a mean age of 11.0 (+/- 1.3) years followed by pubic hair development (PH2) at 11.5 (+/- 1.5) years of age. There was no clear change in pubertal maturation from the 1968 study. CONCLUSIONS: The age at which genital development occurs in Greek boys is no different from that of other Caucasian populations. However, pubic hair in Greek boys develops significantly earlier.

Adolescent↗

Age at menarche in Greek girls.

This study reports menarcheal age in 1134 contemporary Greek girls and the duration of their menstrual cycle. Comparison with a similar study performed 15 years ago shows that in Greek girls there is still a secular trend, although a small one, towards earlier menarcheal age.

Adolescent↗

Adipsic hypernatremia syndrome in infancy.

We report on an infant with chronic hypernatremia due to a congenital defect in osmo-regulation of thirst and the secretion of arginine vasopressin (AVP). A 12 month-old female infant who presented with irritability and signs of dehydration was found to have hypertonic dehydration; plasma osmolality was 430 mOsm/kg B.W. Despite rehydration she remained hypernatremic (serum Na+ 152-158 mEq/l). Lack of signs of thirst led us to the diagnosis of chronic hypernatremia due to adipsia. Laboratory investigation showed: 1. plasma AVP levels were low for plasma osmolality; 2. urine osmolality was normal for plasma AVP, and 3, there was a significant correlation of plasma to urine osmolality (r = 0.72, p < 0.02); however, the slope was markedly reduced indicating partial destruction of the AVP osmoreceptors.

Arginine Vasopressin↗