Lithium ameliorates sleep deprivation-induced mania-like behavior, hypothalamic-pituitary-adrenal (HPA) axis alterations, oxidative stress and elevations of cytokine concentrations in the brain and serum of mice

2017 ◽  
Vol 19 (4) ◽  
pp. 246-258 ◽  
Author(s):  
Samira S. Valvassori ◽  
Wilson R. Resende ◽  
Gustavo Dal-Pont ◽  
Heron Sangaletti-Pereira ◽  
Fernanda F. Gava ◽  
...  
2021 ◽  
Vol 15 ◽  
Author(s):  
Svetlana Trifunovic ◽  
Ivana Stevanovic ◽  
Ana Milosevic ◽  
Natasa Ristic ◽  
Marija Janjic ◽  
...  

Multiple sclerosis (MS) is an inflammatory, demyelinating disease with an unknown origin. Previous studies showed the involvement of the hypothalamic–pituitary–adrenal (HPA) axis to susceptibility to autoimmune diseases, including MS, and its best-characterized animal model, experimental autoimmune encephalomyelitis (EAE). During MS/EAE, innate immune cells are activated and release cytokines and other inflammatory mediators, leading to a vicious cycle of inflammation. In response to inflammation, the activated HPA axis modulates immune responses via glucocorticoid activity. Because the mechanisms involving oxidative stress to the HPA axis are relatively unrevealed, in this study, we investigate the inflammatory and oxidative stress status of HPA axis during EAE. Our results reveal an upregulation of Pomc gene expression, followed by POMC and ACTH protein increase at the peak of the EAE in the pituitary. Also, prostaglandins are well-known contributors of HPA axis activation, which increases during EAE at the periphery. The upregulated Tnf expression in the pituitary during the peak of EAE occurred. This leads to the activation of oxidative pathways, followed by upregulation of inducible NO synthase expression. The reactive oxidant/nitrosative species (ROS/RNS), such as superoxide anion and NO, increase their levels at the onset and peak of the disease in the pituitary and adrenal glands, returning to control levels at the end of EAE. The corticotrophs in the pituitary increased in number and volume at the peak of EAE that coincides with high lipid peroxidation levels. The expression of MC2R in the adrenal glands increases at the peak of EAE, where strong induction of superoxide anion and malondialdehyde (MDA), reduced total glutathione (GSH) content, and catalase activity occurred at the peak and end of EAE compared with controls. The results obtained from this study may help in understanding the mechanisms and possible pharmacological modulation in MS and demonstrate an effect of oxidative stress exposure in the HPA activation during the course of EAE.


2001 ◽  
Vol 35 (4) ◽  
pp. 239-247 ◽  
Author(s):  
Cornelius Schüle ◽  
Thomas Baghai ◽  
Peter Zwanzger ◽  
Christo Minov ◽  
Frank Padberg ◽  
...  

2020 ◽  
Vol 11 (10) ◽  
pp. 8978-8986
Author(s):  
Hai-rui Zhou ◽  
Jing-ru Wu ◽  
Lei Bei ◽  
Bai-xin Wang ◽  
Hui Xu ◽  
...  

Extract of Abelmoschus manihot flower (EAM) has the potential to ameliorate learning and memory deficit, in part through inhibiting oxidative stress in the brain.


2015 ◽  
Vol 34 (1) ◽  
pp. 90
Author(s):  
Adnil Edwin Nurdin

AbstrakPsikoneuroimunologi merupakan konsep terintegrasi mengenai fungsi regulasi-imun untuk mempertahankan homeostasis. Untuk mempertahankan homeostasis, sistem imun berintegrasi dengan proses psikofisiologik otak, dan karena itu mempengaruhi dan dipengaruhi otak. Melalui pendekatan ini telah mulai dipahami mekanisme interaksi antara perilaku, sistem saraf, sistem endokrin, dan fungsi imun. Komponen perilaku dari interaksi ini melibatkan kondisioning Pavlov pada peningkatan maupun penekanan antibodi dan respon imun seluler. Kondisioning ini berekspresi sebagai efek pengalaman stress terhadap fungsi imun. Selanjutnya diketahui bahwa mekanisme terintegrasi ini berlangsung dalam ritme yang berkaitan dengan ritme lingkungan seperti ritme Sirkadian. Respon stress berkelanjutan berekspresi sebagai sindroma adaptasi umum. Sebagai respon akut dimulai dengan initial brief alarm reaction. Dalam tahap ini peningkatan sekresi cortisol pada aksis Hypothalamic-Pituitary-Adrenal (HPA) menimbulkan supresi pada sebagian besar fungsi imun dan peningkatan aktifitas sistem simpatis. Bila stress tidak dapat diatasi secara efektif, tahap kedua prolonged resistance period akan dimulai, dimana aktivasi aksis HPA akan menurun tetapi tidak pernah mencapai kondisi basal. Kegagalan berkelanjutan untuk mengatasi stress akan berakhir pada terminal stage of exhaustion and death. Aplikasi medis psikoneuroimunologi akan meningkatkan efektifitas terapi penyakit keganasan, gangguan kardiovaskular, penyakit infeksi, trauma fisik, transplantasi, dan gangguan jiwa.Kata kunci: aksis HPA, antibodi, aplikasi medis, cortisol, homeostasis, melawan atau lari, otak, Pavlov, perilaku, psikofisiologik, psikoneuroimunologi, sindroma adaptasi umum, sistem imun, sistem LS-NA, respon stress, ritme SirkadianAbstractPsychoneuroimmunology is an integrated concept of immune-regulatory function. To maintain homeostasis, the immune system is integrated with psychophysiological processes of the brain, and is therefore influenced by and capable of influencing the brain. Mechanism of interaction among behavior, neural, endocrine, and immune functions in adaptation to environmental stressors have come to light. The behavioral components of this interaction involve the Pavlov conditioning both in the enhancement and supression of antibody-and cell-mediated immune responses. This conditioning expressed as effects of stressful experiences on immune function. This integrated mechanism operated in a rhythmTINJAUAN PUSTAKA91related to environmental rhythm such as Circadian rhythm. Prolonged stress response will be expressed as general adaptation syndrome. As an acute response it will begin with initial brief alarm reaction. In this stage increased cortisol secretion in Hypothalamic-pituitary-adrenal (HPA) axis resulted in supression of main immune function and arousal of sympathetic system If the stress can not be coped effectivelly, a second stage of prolonged resistance period will begin, in which HPA axis activation will be decreased but never reach the basal condition. Continued failure to cope with the stress will end in terminal stage of exhaustion and death.Medical application of psychoimmunology can enchance the effectivity of the treatment of malignancy, cardiovascular disorder, infectious diseases, physical trauma, transplantation, and mental disorder.Key word : antibody, behavioral, brain, Circadian rhythm, cortisol, fight or flight, general adaptation syndrome, homeostasis, HPA axis, immune system, LC-NA system, medical application, Pavlov, psychoneuroimmunology, psychophysiological, stress responses


2004 ◽  
Vol 36 (05) ◽  
Author(s):  
D Eser ◽  
P Zwanzger ◽  
S Aicher ◽  
C Schüle ◽  
TC Baghai ◽  
...  

2020 ◽  
Vol 0 (0) ◽  
Author(s):  
Abayomi Ololade Adelaja ◽  
Oluwafemi Gabriel Oluwole ◽  
Oritoke Modupe. Aluko ◽  
Solomon Umukoro

AbstractObjectivesRepeated exposure to anoxic stress damages the brain through cortisol-mediated increases in oxidative stress and cellular-antioxidants depletion. Thus, compounds with antioxidant property might confer protection against anoxic stress-induced brain injuries. In this study, we further examined the protective effect of methyl jasmonate (MJ), a potent anti-stress agent against anoxic stress-induced convulsions in mice.MethodsThirty-six male Swiss mice randomized into six groups (n=6) were given MJ (25, 50 and 100 mg/kg, i.p.) or vehicle (10 mL/kg, i.p.) 30 min before 15 min daily exposure to anoxic stress for 7 days. The latency(s) to anoxic convulsion was recorded on day 7. The blood glucose and serum corticosterone levels were measured afterwards. The brains were also processed for the determination of malondialdehyde, nitrite, and glutathione levels.ResultsMethyl jasmonate (MJ) delayed the latency to anoxic convulsion and reduced the blood glucose and serum corticosterone levels. The increased malondialdehyde and nitrite contents accompanied by decreased glutathione concentrations in mice with anoxic stress were significantly attenuated by MJ.ConclusionsThese findings further showed that MJ possesses anti-stress property via mechanisms relating to the reduction of serum contents of corticosterone and normalization of brain biomarker levels of oxidative stress in mice with anoxic stress.


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