4.5 Article

Functional correlates of activity in neurons projecting from the lamina terminalis to the ventrolateral periaqueductal gray

期刊

EUROPEAN JOURNAL OF NEUROSCIENCE
卷 30, 期 12, 页码 2347-2355

出版社

WILEY
DOI: 10.1111/j.1460-9568.2009.07024.x

关键词

osmotic; preoptic; rat; sleep; thermoregulation

资金

  1. NHMRC [454601, 454369]
  2. Medical Research Service of the Department of Veterans Affairs
  3. NIH [MH63323]
  4. NATIONAL INSTITUTE OF MENTAL HEALTH [R01MH063323] Funding Source: NIH RePORTER

向作者/读者索取更多资源

The lamina terminalis (LT) consists of the organum vasculosum of the LT (OVLT), the median preoptic nucleus (MnPO) and the subfornical organ (SFO). All subdivisions of the LT project to the ventrolateral periaqueductal gray (vlPAG). The LT and the vlPAG are implicated in several homeostatic and behavioral functions, including body fluid homeostasis, thermoregulation and the regulation of sleep and waking. By combining visualization of c-Fos protein and retrograde neuroanatomical tracer we have examined the functional correlates of LT-vlPAG projection neurons. Rats were injected with retrograde tracer into the vlPAG and, following a 1-week recovery period, they were subjected to either hypertonic saline administration (0.5 m NaCl, 1 mL/100 g i.p.), 24-h water deprivation, isoproterenol administration (increases circulating angiotensin II; 50 mu g/kg s.c.), heat exposure (39 degrees C for 60 min) or permitted 180 min spontaneous sleep. Retrogradely labeled neurons from the vlPAG and double-labelled neurons were then identified and quantified throughout the LT. OVLT-vlPAG projection neurons were most responsive to hypertonic saline and water deprivation. SFO-vlPAG projection neurons were most active following isoproterenol administration, and MnPO-vlPAG projection neurons displayed significantly more Fos immunostaining following water deprivation, heat exposure and sleep. These results support the existence of functional subdivisions of LT-vlPAG-projecting neurons, and indicate three patterns of activity that correspond to thermal and sleep wake regulation, osmotic or hormonal stimuli.

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