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1.
Proc Natl Acad Sci U S A ; 113(22): E3130-9, 2016 May 31.
Article in English | MEDLINE | ID: mdl-27185913

ABSTRACT

The prevalence of inflammatory diseases is increasing in modern urban societies. Inflammation increases risk of stress-related pathology; consequently, immunoregulatory or antiinflammatory approaches may protect against negative stress-related outcomes. We show that stress disrupts the homeostatic relationship between the microbiota and the host, resulting in exaggerated inflammation. Repeated immunization with a heat-killed preparation of Mycobacterium vaccae, an immunoregulatory environmental microorganism, reduced subordinate, flight, and avoiding behavioral responses to a dominant aggressor in a murine model of chronic psychosocial stress when tested 1-2 wk following the final immunization. Furthermore, immunization with M. vaccae prevented stress-induced spontaneous colitis and, in stressed mice, induced anxiolytic or fear-reducing effects as measured on the elevated plus-maze, despite stress-induced gut microbiota changes characteristic of gut infection and colitis. Immunization with M. vaccae also prevented stress-induced aggravation of colitis in a model of inflammatory bowel disease. Depletion of regulatory T cells negated protective effects of immunization with M. vaccae on stress-induced colitis and anxiety-like or fear behaviors. These data provide a framework for developing microbiome- and immunoregulation-based strategies for prevention of stress-related pathologies.


Subject(s)
Anxiety/complications , Bacterial Vaccines/administration & dosage , Behavior, Animal , Colitis/prevention & control , Mycobacterium/growth & development , Stress, Psychological/complications , Vaccines, Inactivated/administration & dosage , Animals , Anxiety/physiopathology , Colitis/etiology , Colitis/pathology , Immunization , Male , Mice , Mice, Inbred C57BL , Stress, Psychological/physiopathology , T-Lymphocytes, Regulatory/immunology
2.
Stress ; 18(1): 76-87, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25556980

ABSTRACT

Previous studies suggest that multiple corticolimbic and hypothalamic structures are involved in glucocorticoid-mediated feedback inhibition of the hypothalamic-pituitary-adrenal (HPA) axis, including the dorsomedial hypothalamus (DMH), but a potential role of the DMH has not been directly tested. To investigate the role of the DMH in glucocorticoid-mediated negative feedback, adult male Sprague Dawley rats were implanted with jugular cannulae and bilateral guide cannulae directed at the DMH, and finally were either adrenalectomized (ADX) or were subjected to sham-ADX. ADX rats received corticosterone (CORT) replacement in the drinking water (25 µg/mL), which, based on initial studies, restored a rhythm of plasma CORT concentrations in ADX rats that was similar in period and amplitude to the diurnal rhythm of plasma CORT concentrations in sham-ADX rats, but with a significant phase delay. Following recovery from surgery, rats received microinjections of either CORT (10 ng, 0.5 µL, 0.25 µL/min, per side) or vehicle (aCSF containing 0.2% EtOH), bilaterally, directly into the DMH, prior to a 40-min period of restraint stress. In sham-ADX rats, bilateral intra-DMH microinjections of CORT, relative to bilateral intra-DMH microinjections of vehicle, decreased restraint stress-induced elevation of endogenous plasma CORT concentrations 60 min after the onset of intra-DMH injections. Intra-DMH CORT decreased the overall area under the curve for plasma CORT concentrations during the intermediate time frame of glucocorticoid negative feedback, from 0.5 to 2 h following injection. These data are consistent with the hypothesis that the DMH is involved in feedback inhibition of HPA axis activity at the intermediate time frame.


Subject(s)
Corticosterone/administration & dosage , Dorsomedial Hypothalamic Nucleus/drug effects , Glucocorticoids/administration & dosage , Hormone Replacement Therapy , Hypothalamo-Hypophyseal System/drug effects , Pituitary-Adrenal System/drug effects , Adrenalectomy , Animals , Circadian Rhythm/drug effects , Disease Models, Animal , Dorsomedial Hypothalamic Nucleus/metabolism , Dorsomedial Hypothalamic Nucleus/physiopathology , Feedback, Physiological , Hydrocortisone/blood , Hypothalamo-Hypophyseal System/metabolism , Hypothalamo-Hypophyseal System/physiopathology , Male , Pituitary-Adrenal System/metabolism , Pituitary-Adrenal System/physiopathology , Rats, Sprague-Dawley , Restraint, Physical/psychology , Signal Transduction/drug effects , Stress, Psychological/blood , Stress, Psychological/physiopathology , Stress, Psychological/psychology , Time Factors
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