TY - JOUR
T1 - Potential contribution of vasoconstriction to suppression of heat loss and homeothermic regulation in UCP1-deficient mice
AU - Wang, Youxue
AU - Kimura, Kazuhiro
AU - Inokuma, Ken Ichi
AU - Saito, Masayuki
AU - Kontani, Yasuhide
AU - Kobayashi, Yoshinori
AU - Mori, Nozomu
AU - Yamashita, Hitoshi
PY - 2006/6
Y1 - 2006/6
N2 - To investigate the thermoregulatory mechanism in mice lacking uncoupling protein 1 (UCP1) from the viewpoint of heat loss, we measured oxygen consumptions (VO2), skin-surface temperatures (Tskin, an index of heat release), blood flows in the tails, and rectal temperatures (Trectal) of mice housed in an animal room under the standard thermal condition of ∼23°C. Compared with wildtype (Ucp1+/+) mice, adult UCP1-deficient (Ucp1 -/-) mice tended to show a reduced VO2. Thermograhic analysis of the acute response of Ucp1-/- mice to a small change (a drop of 1-2°C) in the ambient temperature revealed a sustained fall in the Tskin of Ucp1-/- mice; but this fall was only transient in Ucp1+/+ mice. Analysis of tail blood flow under anesthesia clearly showed a stronger vasoconstrictor response in Ucp1-/- mice than in Ucp1+/+ mice. Administration of a vasodilator, evodiamine, transiently increased Tskin in Ucp1+/+ and Ucp1-/- mice similarly; whereas the induction of vasodilation caused a greater and more prolonged reduction in Trectal in Ucp1-/- mice than in Ucp1+l+ mice. These results indicate that Ucp1-/- mice highly, or at least partly, rely on vasoconstriction for heat conservation to compensate for their UCP1 deficiency and to maintain homeothermy under the condition of normal housing temperature.
AB - To investigate the thermoregulatory mechanism in mice lacking uncoupling protein 1 (UCP1) from the viewpoint of heat loss, we measured oxygen consumptions (VO2), skin-surface temperatures (Tskin, an index of heat release), blood flows in the tails, and rectal temperatures (Trectal) of mice housed in an animal room under the standard thermal condition of ∼23°C. Compared with wildtype (Ucp1+/+) mice, adult UCP1-deficient (Ucp1 -/-) mice tended to show a reduced VO2. Thermograhic analysis of the acute response of Ucp1-/- mice to a small change (a drop of 1-2°C) in the ambient temperature revealed a sustained fall in the Tskin of Ucp1-/- mice; but this fall was only transient in Ucp1+/+ mice. Analysis of tail blood flow under anesthesia clearly showed a stronger vasoconstrictor response in Ucp1-/- mice than in Ucp1+/+ mice. Administration of a vasodilator, evodiamine, transiently increased Tskin in Ucp1+/+ and Ucp1-/- mice similarly; whereas the induction of vasodilation caused a greater and more prolonged reduction in Trectal in Ucp1-/- mice than in Ucp1+l+ mice. These results indicate that Ucp1-/- mice highly, or at least partly, rely on vasoconstriction for heat conservation to compensate for their UCP1 deficiency and to maintain homeothermy under the condition of normal housing temperature.
KW - Heat release
KW - Knockout mouse
KW - Thermoregulation
KW - Uncoupling protein 1
KW - Vasoconstriction
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U2 - 10.1007/s00424-005-0036-3
DO - 10.1007/s00424-005-0036-3
M3 - Article
C2 - 16395600
AN - SCOPUS:33646889313
SN - 0031-6768
VL - 452
SP - 363
EP - 369
JO - Pflugers Archiv fur die gesamte Physiologie des Menschen und der Tiere
JF - Pflugers Archiv fur die gesamte Physiologie des Menschen und der Tiere
IS - 3
ER -