Skip to search boxSkip to navigationSkip to main content

Hippocampal brain-derived neurotrophic factor determines recruitment of anatomically connected networks after stress in diabetic mice

  • Marlena Wosiski-Kuhn
    ,
  • Mihail Bota
    ,
  • Christina A. Snider
    ,
  • Steven P. Wilson
    ,
  • Kannan U. Venkataraju
    ,
  • Pavel Osten
*Corresponding author for this work
Scholary Output:
Contribution to journal
Article
Peer-review

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Abstract

Diabetes increases adrenal steroids in humans and animal models, but potential interactions with psychological stress remain poorly understood. Diabetic rodents exhibit anxiety and reductions in hippocampal brain-derived neurotrophic factor (BDNF) expression, and these studies investigated whether loss of BDNF-driven hippocampal activity promotes anxiety and disinhibits the HPA axis. Mice with genetic obesity and diabetes (db/db) received intrahippocampal injections of lentivirus for BDNF overexpression (db/db-BDNFOE), and Wt mice received lentiviral constructs for BDNF knockdown (Wt-BDNFKD). Behavioral anxiety and glucocorticoid responses to acute restraint were compared with mice that received a fluorescent reporter (Wt-GFP, db/db-GFP). These experiments revealed that changes in hippocampal BDNF were necessary and sufficient for behavioral anxiety and HPA axis disinhibition. To examine patterns of stress-induced regional activity, we used algorithmic detection of cFos and automated segmentation of forebrain regions to generate maps of functional covariance, which were subsequently aligned with anatomical connectivity weights from the Brain Architecture Management database. db/db-GFP mice exhibited reduced activation of the hippocampal ventral subiculum (vSub) and anterior bed nucleus of stria terminalis (aBNST), and increases in the paraventricular hypothalamus (PVH), relative to Wt-GFP. BDNFKD recapitulated this pattern in Wt mice, and BDNFOE normalized activation of the vSub > aBNST > PVH pathway in db/db mice. Analysis of forebrain activation revealed largely overlapping patterns of network disruption in db/db-GFP and Wt-BDNFKD mice, implicating BDNF-driven hippocampal activity as a determinant of stress vulnerability in both the intact and diabetic brain.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 900-912 (13 pages)

Journal (Volume, Issue Number)

Hippocampus (Volume 28, Issue 12)

Publication milestones

  • Accepted/In press - 01/01/2018
  • Published - 12/2018

Publication status

Published - 12/2018

ISSN

1050-9631

Publication IDs

  • Scopus: 85056124151
  • PubMed: 30098276

Publication metrics

Metrics

SciVal
FWCI
0.17
SciVal
Author count
7
SciVal
citations
2
SciVal
Paper percentile
49
Fractional count
1
Fractional count
0.14
Fractional count
6
Fractional count
0.86
Fractional count
1
Fractional count
1
Scopus
citations

PlumX, opens in new tab

Captures
32
Citation count
7

Funding Details

information NIH/NIDDK, Grant/Award Number: R03DK101817; Medical College of GeorgiaWe are grateful to Christopher Bunting for assistance with stereological cell counts, and to Dr. Xin-Yun Lu and Anilkumar Pillai for critical reading of the article. This work was supported by a grant from the NIDDK to AMS (R03DK101817), and by intramural funding from the Medical College of Georgia. We are grateful to Christopher Bunting for assistance with stereological cell counts, and to Dr. Xin-Yun Lu and Anilkumar Pillai for critical reading of the article. This work was supported by a grant from the NIDDK to AMS (R03DK101817), and by intramural funding from the Medical College of Georgia.