PhD Scientific Days 2023

Budapest, 22-23 June 2023

Neurosciences - Posters G

Disturbed hypothalamic-pituitary-thyroid axis in the 3xTg-AD mice model of Alzheimer’s disorder

Előadó neve

Szabó, Adrienn

Neptun code

IGQF8G

Előadó munkahelye

University of Pécs, Medical School, Institute of Physiology, Laboratory of Behavioural and Stress Studies, Pécs, Hungary

Előadó telefonszáma

06204615158

Előadó e-mail címe

szabo.adrienne93@gmail.com

Az előadás címe

Disturbed hypothalamic-pituitary-thyroid axis in the 3xTg-AD mice model of Alzheimer’s disorder

Szerző(k) neve és munkahelye

Adrienn Szabó 1,2,4, Szidónia Farkas 1, Tamás Kovács 1, Veronika Penksza 3, Andrea Kádár 3, Panna Hegedűs 3, Csaba Fekete 3, Dóra Zelena 1,2
1 University of Pécs, Medical School, Institute of Physiology, Laboratory of Behavioural and Stress Studies, Pécs, Hungary
2 Institute of Experimental Medicine, Laboratory of Behavioural and Stress Studies, Budapest, Hungary
3 Institute of Experimental Medicine, Laboratory of Integrative Neuroendocrinology, Budapest, Hungary
4 János Szentágothai School of Neurosciences, Semmelweis University, Budapest, Hungary

Bemutatás módja

Poszter

Szekció

Neurosciences - Posters G

Language of the presentation

English

Preferred session

Neurosciences

Összefoglaló szövege

Introduction: Alzheimer's disease (AD) is an age-related neurodegenerative disease with
progressive memory decline that may be aggravated by other factors such as abnormalities in
the hypothalamic–pituitary–thyroid (HPT) axis. Transgenic mouse models are promising tools
for understanding the underlying mechanisms.
Aims: During our experiments, we found that male, 6-month-old triple transgenic (3xTg-AD)
mice performed better in food-motivated cognitive tests compared to the control group. In the
background of this, we assumed an imbalance in the HPT axis.
Methods: First blood glucose leves as well as free thyroxine (FT4) and free triiodothyronine
(FT3) level were detected in serum. Then changes in major genes of HPT axis was observed
by qPCR.
Results: The blood glucose level was increased while FT4 showed a decrease compared to
the control group. A significant increase in thyrotropin-releasing hormone mRNA expression
was detected in the paraventricular nucleus of hypothalamus. The thyrotropin-stimulating
hormone mRNA expression level in the pituitary gland did not change compared to the values
of the control mice, while the thyroid hormone β2 receptor mRNA expression decreased
significantly. The mRNA expression levels of the deiodinase enzymes in the pituitary gland
and MBH varied.
Conclusion: In summary, the results of the abnormal HPT axis might be the background for
this „food craving”. Our results further support the idea that AD is a metabolic disease. When
interpreting the outcome of food-driven learning tests, it is also important to examine the
motivation of individuals, including their HPT axis.

University and Doctoral School

Semmelweis University, János Szentágothai Doctoral School of Neurosciences

Other university and doctoral school, not listed above

-

Supervisor

Dóra Zelena, MD, PhD, DSc.

Publication of my abstract

I give consent to the publication of my abstract on the website of the congress.

Kind

Szabad

Status

elfogadva

Accepted presentation method

poszter

Előadás fájl jóváhagyás

nem rendelkezett róla

Előadó

4758

Start

11:06

End

11:11

Authors (legacy)

Adrienn Szabó 1,2,4, Szidónia Farkas 1, Tamás Kovács 1, Veronika Penksza 3, Andrea Kádár 3, Panna Hegedűs 3, Csaba Fekete 3, Dóra Zelena 1,2
1 University of Pécs, Medical School, Institute of Physiology, Laboratory of Behavioural and Stress Studies, Pécs, Hungary
2 Institute of Experimental Medicine, Laboratory of Behavioural and Stress Studies, Budapest, Hungary
3 Institute of Experimental Medicine, Laboratory of Integrative Neuroendocrinology, Budapest, Hungary
4 János Szentágothai School of Neurosciences, Semmelweis University, Budapest, Hungary