scholarly journals Limbic Encephalitis Brain Damage Induced by Cocal Virus in Adult Mice Is Reduced by Environmental Enrichment: Neuropathological and Behavioral Studies

Viruses ◽  
2020 ◽  
Vol 13 (1) ◽  
pp. 48
Author(s):  
Priscilla dos Santos Lieuthier Freitas ◽  
Ana Victória de Lima Lima ◽  
Karina Glazianne Barbosa Carvalho ◽  
Tatyane da Silva Cabral ◽  
Alexandre Maia de Farias ◽  
...  

We previously demonstrated, using the Piry virus model, that environmental enrichment promotes higher T-cell infiltration, fewer microglial changes, and faster central nervous system (CNS) virus clearance in adult mice. However, little is known about disease progression, behavioral changes, CNS cytokine concentration, and neuropathology in limbic encephalitis in experimental models. Using Cocal virus, we infected C57Bl6 adult mice and studied the neuroanatomical distribution of viral antigens in correlation with the microglial morphological response, measured the CNS cytokine concentration, and assessed behavioral changes. C57Bl6 adult mice were maintained in an impoverished environment (IE) or enriched environment (EE) for four months and then subjected to the open field test. Afterwards, an equal volume of normal or virus-infected brain homogenate was nasally instilled. The brains were processed to detect viral antigens and microglial morphological changes using selective immunolabeling. We demonstrated earlier significant weight loss and higher mortality in IE mice. Additionally, behavioral analysis revealed a significant influence of the environment on locomotor and exploratory activity that was associated with less neuroinvasion and a reduced microglial response. Thus, environmental enrichment was associated with a more effective immune response in a mouse model of limbic encephalitis, allowing faster viral clearance/decreased viral dissemination, reduced disease progression, and less CNS damage.

2017 ◽  
Vol 2017 ◽  
pp. 1-18 ◽  
Author(s):  
J. Bento-Torres ◽  
L. L. Sobral ◽  
R. R. Reis ◽  
R. B. de Oliveira ◽  
D. C. Anthony ◽  
...  

Because enriched environment (EE) and exercise increase and aging decreases immune response, we hypothesized that environmental enrichment and aging will, respectively, delay and increase prion disease progression. Mice dorsal striatum received bilateral stereotaxic intracerebral injections of normal or ME7 prion infected mouse brain homogenates. After behavior analysis, animals were euthanized and their brains processed for astrocyte GFAP immunolabeling. Our analysis related to the environmental influence are limited to young adult mice, whereas age influence refers to aged mice raised on standard cages. Burrowing activity began to reduce in ME7-SE two weeks before ME7-EE, while no changes were apparent in ME7 aged mice (ME7-A). Object placement recognition was impaired in ME7-SE, NBH-A, and ME7-A but normal in all other groups. Object identity recognition was impaired in ME7-A. Cluster analysis revealed two morphological families of astrocytes in NBH-SE animals, three in NBH-A and ME7-A, and four in NBH-EE, ME7-SE, and ME7-EE. As compared with control groups, astrocytes from DG and CA3 prion-diseased animals show significant numerical and morphological differences and environmental enrichment did not reverse these changes but induced different morphological changes in GFAP+ hippocampal astroglia. We suggest that environmental enrichment and aging delayed hippocampal-dependent behavioral and neuropathological signs of disease progression.


2021 ◽  
Vol 12 ◽  
Author(s):  
Dario Carvalho-Paulo ◽  
João Bento Torres Neto ◽  
Carlos Santos Filho ◽  
Thais Cristina Galdino de Oliveira ◽  
Aline Andrade de Sousa ◽  
...  

Microglial immunosurveillance of the brain parenchyma to detect local perturbations in homeostasis, in all species, results in the adoption of a spectrum of morphological changes that reflect functional adaptations. Here, we review the contribution of these changes in microglia morphology in distantly related species, in homeostatic and non-homeostatic conditions, with three principal goals (1): to review the phylogenetic influences on the morphological diversity of microglia during homeostasis (2); to explore the impact of homeostatic perturbations (Dengue virus challenge) in distantly related species (Mus musculus and Callithrix penicillata) as a proxy for the differential immune response in small and large brains; and (3) to examine the influences of environmental enrichment and aging on the plasticity of the microglial morphological response following an immunological challenge (neurotropic arbovirus infection). Our findings reveal that the differences in microglia morphology across distantly related species under homeostatic condition cannot be attributed to the phylogenetic origin of the species. However, large and small brains, under similar non-homeostatic conditions, display differential microglial morphological responses, and we argue that age and environment interact to affect the microglia morphology after an immunological challenge; in particular, mice living in an enriched environment exhibit a more efficient immune response to the virus resulting in earlier removal of the virus and earlier return to the homeostatic morphological phenotype of microglia than it is observed in sedentary mice.


2020 ◽  
pp. 66-71
Author(s):  
Татьяна Геннадьевна Боровая ◽  
Владимир Григорьевич Жуховицкий ◽  
Мария Николаевна Черкасова

Цель - выявление реактивных изменений гистологических элементов печени и почек у мышей в экспериментальных моделях сепсиса, вызванного штаммами 1840 и 1623 Pseudomonas aeruginosa (PsA1840, 1623). Материал и методы. Сепсис моделировали на двух группах половозрелых самцов мышей линии C57Bl/6 интраперитонеальным введением Pseudomonas aeruginosa. Животным 1-й группы (8 особей) вводили штамм 1840, животным 2-й группы (12 особей) - штамм 1623. Контрольная группа состояла из 3 животных. Перед началом опыта штаммы тестировали на присутствие генов экзотоксинов U, S, T, Y (ExoU, ExoS, ExoT, ExoY) с помощью полимеразной цепной реакции (ПЦР). Для визуализации продуктов ПЦР применяли электрофорез в горизонтальном 1,5 % агарозном геле. Животных вскрывали на терминальной стадии сепсиса. Серийные парафиновые срезы печени и почек толщиной 4 мкм окрашивали гематоксилином - эозином, анализировали особенности гистоструктуры органов и фотографировали в световом микроскопе «AxioPlus» (фирма Zeiss, Германия). Результаты. Штамм PsA 1840, имеющий ген exoU, вызывал выраженные деструктивные изменения пластинок гепатоцитов и замещение участков паренхимы печени гомогенным эозинофильным веществом. Присутствовали признаки стаза крови в синусоидных капиллярах, расширение и тромбоз центральных вен, немногочисленные скопления лейкоцитов. Морфологические изменения нефронов состояли в локальных деструктивных изменениях проксимальных канальцев на периферии коркового вещества почек. При введении PsA1623, имеющего ген exoS, возникали массовая гибель почечных телец и дегенерация канальцев нефронов. В печени дольковая гистоархитектура в основном сохранялась. Выводы. Предполагается связь выявленных различий в реактивных изменениях гистологических элементов печени и почек в подопытных группах с особенностями геномов штаммов PsA, использованных для моделирования сепсиса. Objective - to identify reactive changes of liver and kidney histological elements in experimental models of sepsis in mice caused by 1840 and 1623 Pseudomonas aeruginosa strains (PsA1840, 1623). Material and methods. Sepsis was modeled in two groups of mature male C57Bl/6 mice by intraperitoneal administration of Pseudomonas aeruginosa. Strain 1840 was administered to animals of the first group (n=8), animals of the second group (n=12) were administered strain 1623; the control group consisted of 3 animals. Before the experiment, the strains were tested for the presence of genes of exotoxins U, S, T, Y (ExoU, ExoS, ExoT, ExoY) using polymerase chain reaction (PCR). Electrophoresis in horizontal 1,5 % agarose gel was used to visualize PCR products. The animals were euthanized at the terminal stage of sepsis. The extracted liver and kidneys were fixed according to the generally accepted histological method, and embedded into paraffin blocks. Serial 4 μm thick sections of organs were stained with hematoxylin and eosin, analyzed and photographed using «AxioPlus» light microscope (Zeiss, Germany). Results. Strain PsA 1840, carrying the gene of exotoxin U (ExoU), caused severe destructive changes of hepatocytes plates and the replacement of the liver parenchyma with homogeneous eosinophilic substance. There were signs of blood stasis in sinusoidal capillaries, expansion and thrombosis of central veins, a few accumulations of leukocytes. Morphological changes of nephrons consisted of local destructive changes in the proximal tubules at the periphery of kidney cortical substance. After the introduction of PsA1623, carrying the gene of exotoxin S (ExoS), the massive death of renal corpuscles and degeneration of nephron tubules were registered. However, the lobular histoarchitecture in the liver remained mostly unaltered. Conclusions. It is supposed that there is a possible connection of the observed differences in reactive changes of liver and kidney histological elements in two experimental groups with genome features of PsA strains used for the sepsis modeling.


2020 ◽  
pp. 089198872094423
Author(s):  
Thaís Bento Lima-Silva ◽  
Eneida Mioshi ◽  
Valéria Santoro Bahia ◽  
Mário Amore Cecchini ◽  
Luciana Cassimiro ◽  
...  

Introduction: There is a shortage of validated instruments to estimate disease progression in frontotemporal dementia (FTD). Objectives: To evaluate the ability of the FTD Rating Scale (FTD-FRS) to detect functional and behavioral changes in patients diagnosed with the behavioral variant of FTD (bvFTD), primary progressive aphasia (PPA), and Alzheimer disease (AD) after 12 months of the initial evaluation, compared to the Clinical Dementia Rating scale−frontotemporal lobar degeneration (CDR-FTLD) and the original Clinical Dementia Rating scale (CDR). Methods: The sample consisted of 70 individuals, aged 40+ years, with at least 2 years of schooling, 31 with the diagnosis of bvFTD, 12 with PPA (8 with semantic variant and 4 with non-fluent variant), and 27 with AD. The FTD-FRS, the CDR, and the 2 additional CDR-FTLD items were completed by a clinician, based on the information provided by the caregiver with frequent contact with the patient. The Addenbrooke Cognitive Examination-Revised was completed by patients. After 12 months, the same protocol was applied. Results: The FTD-FRS, CDR-FTLD, and CDR detected significant decline after 12 months in the 3 clinical groups (exception: FTD-FRS for PPA). The CDR was less sensitive to severe disease stages. Conclusions: The FTD-FRS and the CDR-FTLD are especially useful tools for dementia staging in AD and in the FTD spectrum.


2019 ◽  
Vol 23 (3-4) ◽  
pp. 37-40
Author(s):  
A.D. Shkodina ◽  
R.M. Hrinko ◽  
I.I. Starchenko

The interaction between a body and an environment provides the main aspects of human life. The study of the functional structure of the olfactory analyzer plays an important role both in clinical and in experimental studies, but the question of its features in humans needs detailed research. The paper presents the modern data of the structural and functional organization of the olfactory analyzer. Particular attention is paid to the structural organization of olfactory bulbs as most complicated and least studied component of the olfactory analyzer. The morphological and functional changes of the olfactory analyzer are developing in some diseases and in action of adverse environmental factors are described while the accentuation is placed on the differences of the mechanism in the pathogenesis of damage to the olfactory analyzer, depending on the nature of the influence of pathogenic factors. In this way as the result of short-term intense effects of the pollutant, irreversible atrophic changes are primarily affected to the olfactory epithelium, thus, to some extent, preventing the spread of the toxin to other analyzer structures. Conversely, a long-term exposure to low doses usually retains the functional activity of the olfactory epithelium, while harmful substances penetrate the central unit of the olfactory analyzer. In such cases, the olfactory dysfunction can be diagnosed after a long time after the start of the cohort with certain pollutants. Currently, studies of the influence of exogenous toxins on various parts of the olfactory analyzer on animal experimental models are quite active. At the same time, the issue of functional and morphological changes in various structural components of the human olfactory analyzer under the influence of negative environmental factors remains poorly understood and requires further morphological and biochemical studies, in order to be able to further develop effective therapeutic and prophylactic means.


2018 ◽  
Author(s):  
Michael K. Watters ◽  
Victor Manzanilla ◽  
Holly Howell ◽  
Alexander Mehreteab ◽  
Erik Rose ◽  
...  

ABSTRACTWhen subjected to rapid drops of temperature (cold shock), Neurospora responds with a dramatic, but temporary shift in its branching pattern. While the cold shock response has been described morphologically, it has yet to be examined genetically. This project aims to begin the genetic characterization of the cold shock response and the associated acclimatization to cold environments. We report here the results of a screen of mutants from the Neurospora knockout library for alterations in their morphological response to cold shock and thus, their ability to acclimatize to the cold. Three groups of knockouts were selected to be subject to this screen: genes previously suspected to be involved in hyphal development as well as knockouts resulting in morphological changes; transcription factors; and genes homologous to E. coli genes known to alter their expression in response to cold shock. Several strains were identified with altered responses. The genes impacted in these mutants are listed and discussed. A significant percentage (81%) of the knockouts of genes homologous to those previously identified in E. coli showed altered cold shock responses in Neurospora – suggesting that the response in these two organisms is largely shared in common.


2017 ◽  
Vol 52 (suppl_1) ◽  
pp. i4-i30
Author(s):  
R Camarini ◽  
A.B. Suárez ◽  
L.B. Hoffmann ◽  
A.V. Rueda ◽  
M.B. Rae ◽  
...  

2019 ◽  
Vol 67 (6) ◽  
pp. 419-439 ◽  
Author(s):  
Giovanni Freitas Gomes ◽  
Railana Deise da Fonseca Peixoto ◽  
Brenda Gonçalves Maciel ◽  
Kedma Farias dos Santos ◽  
Lohrane Rosa Bayma ◽  
...  

Peripheral inflammatory stimuli increase proinflammatory cytokines in the bloodstream and central nervous system and activate microglial cells. Here we tested the hypothesis that contrasting environments mimicking sedentary and active lives would be associated with differential microglial morphological responses, inflammatory cytokines concentration, and virus load in the peripheral blood. For this, mice were maintained either in standard (standard environment) or enriched cages (enriched environment) and then subjected to a single (DENV1) serotype infection. Blood samples from infected animals showed higher viral loads and higher tumor necrosis factor-α (TNFα) mRNA concentrations than control subjects. Using an unbiased stereological sampling approach, we selected 544 microglia from lateral septum for microscopic 3D reconstruction. Morphological complexity contributed most to cluster formation. Infected groups exhibited significant increase in the microglia morphological complexity and number, despite the absence of dengue virus antigens in the brain. Two microglial phenotypes (type I with lower and type II with higher morphological complexity) were found in both infected and control groups. However, microglia from infected mice maintained in enriched environment showed only one morphological phenotype. Two-way ANOVA revealed that environmental changes and infection influenced type-I and II microglial morphologies and number. Environmental enrichment and infection interactions may contribute to microglial morphological change to a point that type-I and II morphological phenotypes could no longer be distinguished in infected mice from enriched environment. Significant linear correlation was found between morphological complexity and TNFα peripheral blood. Our findings demonstrated that sedentary-like and active murine models exhibited differential microglial responses and peripheral inflammation to systemic non-neurotropic infections with DENV1 virus.


Author(s):  
SUSHMITA SINGH ◽  
IMTIYAZ ANSARI

Objective: The objective of the study is to evaluate the antiparkinsonian activity of hydroalcoholic extract of the seeds of Vigna aconitifolia (HEVA) in Wistar albino rat. Methods: In rats, catalepsy was induced using haloperidol (4 mg/kg i.p.). Treatment groups received bromocriptine (4 mg/kg) and HEVA at the dose of (100, 200, and 300 mg/kg) orally. Bar test for catalepsy, motor coordination test by rotarod, and locomotor activity by actophotometer were carried out to assess behavioral changes. Assay of dopamine and catalase was also carried out to assess biochemical parameters. Results: Bromocriptine and HEVA-treated groups showed a significant difference in behavioral and biochemical parameters as compared to haloperidol control group in the experimental models. Conclusion: Vigna aconitifolia seeds exhibited significant antiparkinsonian activity in haloperidol mouse model.


NeuroImage ◽  
2015 ◽  
Vol 109 ◽  
pp. 190-198 ◽  
Author(s):  
Jan Scholz ◽  
Rylan Allemang-Grand ◽  
Jun Dazai ◽  
Jason P. Lerch

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