Picard F
Centre de recherche de l'Institut universitaire de cardiologie et de pneumologie de Québec (CRIUCPQ), Université Laval , Québec, QC, Canada.
Int J Obes Suppl. 2015 Aug;5(Suppl 1):S4-6. doi: 10.1038/ijosup.2015.2. Epub 2015 Aug 4.
After a long drought caused by misjudged irrelevance to human biology, the research field of brown adipose tissue has seen a period of resurgence since 2009 when discoveries of brown fat in adults were reported. However, the molecular and physiological regulators of the different types of adipose tissues-white, beige or brown-are still far from being fully determined. Speakers of the morning session of the 16th Annual Symposium of the Université Laval's Chair in Obesity, a series interestingly launched in 1998 precisely on the topic of uncoupling proteins, presented past and recent findings on non-adrenergic signaling pathways-both upstream and downstream-regulating the metabolic and thermogenic activities of adipose tissue. They went on to show that these pathways are altered in the contexts of obesity and aging, the latter being a very important factor involved in the decline of non-shivering thermogenesis. Whereas opinions diverged on readily applicable solutions for development of candidate therapeutics, the panelists agreed that the new factors involved in the control of the adipose thermogenic program hold great promise for innovation. This will likely depend on how this novel knowledge is integrated into the complex regulation of thermogenesis, which will be achieved through better-defined experimental protocols, both in humans and non-human models.
在因被误判与人类生物学无关而经历长期沉寂之后,自2009年报道发现成人棕色脂肪以来,棕色脂肪组织研究领域迎来了一段复兴期。然而,白色、米色或棕色等不同类型脂肪组织的分子和生理调节因子仍远未完全明确。拉瓦尔大学肥胖症研究主席第16届年度研讨会上午场的发言人介绍了过去和近期关于非肾上腺素能信号通路(包括上游和下游)调节脂肪组织代谢和产热活动的研究结果。该研讨会系列于1998年有趣地以解偶联蛋白为主题启动。他们进而表明,在肥胖和衰老的情况下,这些信号通路会发生改变,而衰老正是参与非寒战产热下降的一个非常重要的因素。尽管对于开发候选疗法的切实可行解决方案存在不同意见,但小组成员一致认为,参与控制脂肪产热程序的新因素具有巨大的创新潜力。这可能取决于如何将这一新知识整合到产热的复杂调节中,而这将通过在人类和非人类模型中更明确的实验方案来实现。