Role and characteristics of hippocampal region microglial activation in poststroke depression

Author(s):  
Li Wei ◽  
Jing Guo ◽  
Xiaopeng Yu ◽  
Hui Chen ◽  
Yupeng Du ◽  
...  
2021 ◽  
Vol 13 ◽  
Author(s):  
Li Wei ◽  
Yupeng Du ◽  
Yirui Xie ◽  
Xiaopeng Yu ◽  
Hui Chen ◽  
...  

Background and Purpose: Microglia play important role in poststroke depression (PSD), however, the exact mechanism was still unclear. The purpose of the study was to study the mechanism of microglial activation in PSD.Methods: 24 rats were randomly divided into three groups: the PSD group (n = 10), the poststroke (PS) group (n = 7), and the sham group (n = 7). Primary hippocampal microglia were isolated and cultured, and recombined LCN2 protein was used to stimulate the cultured microglia. The protein expression of Iba1, P38 MAPK and PP38 MAPK was analyzed by western blotting; the LCN2 expression was measured by RT-qPCR, the serum LCN2 level and the NO level were analyzed by ELISA.Results: Open field test scores (horizontal score, vertical score, and self-grooming score) and the serum LCN2 level were significantly decreased in the PSD group compared with the other two groups (P < 0.05). The serum LCN2 level was positively correlated with the horizontal score and negatively correlated with the self-grooming score in the open field test (P < 0.05). The relative protein level of Iba1 and the LCN2 mRNA level were significantly increased in the hippocampal region compared with other brain regions (P < 0.05), while the relative protein level of Iba1 and the LCN2 mRNA level were significantly increased in the PSD group compared with the other two groups (P < 0.05). The length, supernatant NO level, phagocytic ability and migration ability of LCN2-treated microglia were significantly increased compared with those of untreated microglia (P < 0.05). The relative protein levels of P38 MAPK and the PP38 MAPK significantly increased in hippocampal region in the PSD group and LCN2-treated hippocampal microglia (P < 0.05).Conclusion: Hippocampal microglia are activated during PSD; LCN2 may regulate hippocampal microglial activation by the P38 MAPK pathway in the process of PSD.


2001 ◽  
Vol 12 (4) ◽  
pp. 247-255 ◽  
Author(s):  
Wolfgang Kringler

Zusammenfassung: Schlaganfall ist nach Herzinfarkt und Krebs die dritthäufigste Todesursache in der Bundesrepublik Deutschland. Je nach Quelle variieren die Jahresprävalenzen zwischen 250.000 und 1.5 Millionen Schlaganfallpatienten. Zahlreiche Patienten, die einen Schlaganfall überleben, entwickeln meist initial oder im Verlauf eine depressive Symptomatik. Genaue Häufigkeitsangaben über das Auftreten dieser sogenannten Poststroke-Depression gibt es aber bisher nicht: die Angaben schwanken zwischen 11 und 79 %. Präzise Häufigkeitsangaben werden erschwert durch eine Konfundierung mit der Lebenszeitprävalenz von Depression sowie durch Koinzidenz mit Symptomen anderer Erkrankungen der meist älteren Patienten. Problematisch für die Differentialdiagnostik bei multiplen überlagerten Symptomen sind unterschiedliche Definitionen des Begriffs “Schlaganfall”, nicht einheitliche Verwendung von Diagnosekriterien und -systemen und Untersuchungsverfahren, unterschiedliche Ausbildungsgrade der Untersucher sowie unterschiedliche Untersuchungszeitpunkte im Behandlungsverlauf.


2015 ◽  
Vol 223 (3) ◽  
pp. 157-164 ◽  
Author(s):  
Georg Juckel

Abstract. Inflammational-immunological processes within the pathophysiology of schizophrenia seem to play an important role. Early signals of neurobiological changes in the embryonal phase of brain in later patients with schizophrenia might lead to activation of the immunological system, for example, of cytokines and microglial cells. Microglia then induces – via the neurotoxic activities of these cells as an overreaction – a rarification of synaptic connections in frontal and temporal brain regions, that is, reduction of the neuropil. Promising inflammational animal models for schizophrenia with high validity can be used today to mimic behavioral as well as neurobiological findings in patients, for example, the well-known neurochemical alterations of dopaminergic, glutamatergic, serotonergic, and other neurotransmitter systems. Also the microglial activation can be modeled well within one of this models, that is, the inflammational PolyI:C animal model of schizophrenia, showing a time peak in late adolescence/early adulthood. The exact mechanism, by which activated microglia cells then triggers further neurodegeneration, must now be investigated in broader detail. Thus, these animal models can be used to understand the pathophysiology of schizophrenia better especially concerning the interaction of immune activation, inflammation, and neurodegeneration. This could also lead to the development of anti-inflammational treatment options and of preventive interventions.


2017 ◽  
Author(s):  
Jufang Li ◽  
Linda Denise Oakley ◽  
Yun Li ◽  
Yong Luo

2014 ◽  
Vol 45 (S 01) ◽  
Author(s):  
S. Jung ◽  
D. Frey ◽  
F. Brackmann ◽  
M. Richter-Kraus ◽  
R. Trollmann

Author(s):  
B. Damião ◽  
W. C. Rossi-Junior ◽  
F. D. R. Guerra ◽  
P. P. Marques ◽  
D. A. Nogueira ◽  
...  

Abstract Anabolic substances have been increasingly used by bodybuilders and athletes with the goal of improving performance and aesthetics. However, this practice has caused some concern to physicians and researchers because of unknowledge of consequences that the indiscriminate and illicit use of these substances can cause. Thus, this study analyzed the effects of two commercially available anabolic steroids (AS), Winstrol Depot® (Stanozolol) and Deposteron® (Testosterone Cypionate), in the neuronal density of limbic, motor and sensory regions on the cerebral cortex and in CA1, CA2, CA3 regions of the hippocampus. A total of 60 Swiss mice were used (30 males and 30 females), separated into three groups: control and two experimental groups, which received the AAS. From each brain, homotypic and semi-serial samples were taken in frontal sections from areas established for the study. The results showed that females treated with testosterone cypionate presented a reduction in all regions tested and the ones treated with Stanozolol showed a decrease in some hippocampal areas. Regarding male animals, stanozolol led to a decrease in neuron number in one hippocampal region. These data allow us to conclude that supra-physiological doses of steroids used in this study, can cause considerable damage to nervous tissue with ultrastructural and consequently behavioral impairment. These changes could interfere with the loss of physical yield and performance of athletes and non-athletes and may cause irreparable damage to individuals making irresponsible use of anabolic steroids.


Diabetes ◽  
2020 ◽  
Vol 69 (Supplement 1) ◽  
pp. 1769-P
Author(s):  
KELLY M. NESS ◽  
JOHN DOUGLASS ◽  
MARTIN VALDEARCOS-CONTRERAS ◽  
MAURICIO D. DORFMAN ◽  
ANZELA NIRAULA ◽  
...  

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