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1.
BMC Neurol ; 24(1): 154, 2024 May 07.
Article En | MEDLINE | ID: mdl-38714961

BACKGROUND: Fragile X-associated tremor/ataxia syndrome (FXTAS) is a neurodegenerative disorder caused by CGG repeat expansion of FMR1 gene. Both FXTAS and neuronal intranuclear inclusion disease (NIID) belong to polyglycine diseases and present similar clinical, radiological, and pathological features, making it difficult to distinguish these diseases. Reversible encephalitis-like attacks are often observed in NIID. It is unclear whether they are presented in FXTAS and can be used for differential diagnosis of NIID and FXTAS. CASE PRESENTATION: A 63-year-old Chinese male with late-onset gait disturbance, cognitive decline, and reversible attacks of fever, consciousness impairment, dizziness, vomiting, and urinary incontinence underwent neurological assessment and examinations, including laboratory tests, electroencephalogram test, imaging, skin biopsy, and genetic test. Brain MRI showed T2 hyperintensities in middle cerebellar peduncle and cerebrum, in addition to cerebellar atrophy and DWI hyperintensities along the corticomedullary junction. Lesions in the brainstem were observed. Skin biopsy showed p62-positive intranuclear inclusions. The possibilities of hypoglycemia, lactic acidosis, epileptic seizures, and cerebrovascular attacks were excluded. Genetic analysis revealed CGG repeat expansion in FMR1 gene, and the number of repeats was 111. The patient was finally diagnosed as FXTAS. He received supportive treatment as well as symptomatic treatment during hospitalization. His encephalitic symptoms were completely relieved within one week. CONCLUSIONS: This is a detailed report of a case of FXTAS with reversible encephalitis-like episodes. This report provides new information for the possible and rare features of FXTAS, highlighting that encephalitis-like episodes are common in polyglycine diseases and unable to be used for differential diagnosis.


Ataxia , Encephalitis , Fragile X Syndrome , Tremor , Humans , Male , Middle Aged , Tremor/diagnosis , Tremor/genetics , Tremor/etiology , Fragile X Syndrome/genetics , Fragile X Syndrome/diagnosis , Fragile X Syndrome/complications , Ataxia/diagnosis , Ataxia/genetics , Encephalitis/diagnosis , Encephalitis/complications , Encephalitis/genetics , Encephalitis/pathology , Fragile X Mental Retardation Protein/genetics , Diagnosis, Differential , Intranuclear Inclusion Bodies/pathology , Neurodegenerative Diseases/diagnosis , Neurodegenerative Diseases/genetics , Neurodegenerative Diseases/complications
2.
Curr Opin Neurol ; 37(3): 329-337, 2024 Jun 01.
Article En | MEDLINE | ID: mdl-38483154

PURPOSE OF REVIEW: We summarize the recent discoveries on genetic predisposition to autoimmune encephalitis and paraneoplastic neurological syndromes (PNS), emphasizing clinical and pathophysiological implications. RECENT FINDINGS: The human leukocyte antigen (HLA) is the most studied genetic factor in autoimmune encephalitis and PNS. The HLA haplotype 8.1, which is widely known to be related to systemic autoimmunity, has been only weakly associated with a few types of autoimmune encephalitis and PNS. However, the strongest and most specific associations have been reported in a subgroup of autoimmune encephalitis that comprises antileucine-rich glioma-inactivated 1 (LGI1) limbic encephalitis, associated with DRB1∗07 : 01 , anticontactin-associated protein-like 2 (CASPR2) limbic encephalitis, associated with DRB1∗11 : 01 , and anti-IgLON5 disease, associated with DRB1∗10 : 01∼DQA1∗01∼DQB1∗05 . Non-HLA genes have been poorly investigated so far in autoimmune encephalitis, mainly in those lacking HLA associations such as anti-N-methyl-D-aspartate receptor (NMDAR) encephalitis, with only a few genome-wide association studies (GWAS) reporting equivocal results principally limited by small sample size. SUMMARY: Genetic predisposition seems to be driven mostly by HLA in a group of autoimmune encephalitis characterized by being nonparaneoplastic and having predominantly IgG4 autoantibodies. The contribution of non-HLA genes, especially in those diseases lacking known or strong HLA associations, will require large cohorts enabling GWAS to be powerful enough to render meaningful results.


Encephalitis , Genetic Predisposition to Disease , Paraneoplastic Syndromes, Nervous System , Humans , Genetic Predisposition to Disease/genetics , Paraneoplastic Syndromes, Nervous System/genetics , Paraneoplastic Syndromes, Nervous System/immunology , Encephalitis/genetics , Encephalitis/immunology , Hashimoto Disease/genetics , Hashimoto Disease/immunology , HLA Antigens/genetics , HLA Antigens/immunology , Autoantibodies/immunology
3.
J Neuroimmunol ; 378: 578084, 2023 05 15.
Article En | MEDLINE | ID: mdl-37037125

Here we describe the second ever-reported case of familial anti-leucine-rich glioma-inactivated protein 1 (LGI1) limbic encephalitis (LE). Two elderly Caucasian sisters presented with psychiatric symptoms and cognitive impairment, followed by faciobrachial dystonic seizures. Anti-LGI1 antibodies were detected in their serum. Considering they had been living in distant regions for decades, environmental factors could be ruled out. Human leukocyte antigen (HLA) genotyping revealed that both carried HLA-DRB1*07, found in 90% of anti-LGI1 encephalitis patients, HLA-DQA1*02:01 and HLA-DQB1*03:03, commonly associated with DRB1*07:01. Considering the exceptional nature of familial cases, as-yet-unknown genetic contributors other than HLA might play a role in our siblings.


Encephalitis , Limbic Encephalitis , Humans , Aged , Intracellular Signaling Peptides and Proteins , Encephalitis/genetics , Encephalitis/complications , Seizures , HLA-DRB1 Chains/genetics , Autoantibodies
4.
Mol Brain ; 16(1): 14, 2023 01 25.
Article En | MEDLINE | ID: mdl-36694204

Status epilepticus (SE) in humans is characterized by prolonged convulsive seizures that are generalized and often difficult to control. The current antiseizure drugs (ASDs) aim to stop seizures quickly enough to prevent the SE-induced brain inflammation, injury, and long-term sequelae. However, sole reliance on acute therapies is imprudent because prompt treatment may not always be possible under certain circumstances. The pathophysiological mechanisms underlying the devastating consequences of SE are presumably associated with neuroinflammatory reactions, where prostaglandin E2 (PGE2) plays a pivotal role. As the terminal synthase for pathogenic PGE2, the microsomal prostaglandin E synthase-1 (mPGES-1) is rapidly and robustly induced by prolonged seizures. Congenital deletion of mPGES-1 in mice is neuroprotective and blunts gliosis following chemoconvulsant seizures, suggesting the feasibility of mPGES-1 as a potential antiepileptic target. Herein, we investigated the effects of a dual species mPGES-1 inhibitor in a mouse pilocarpine model of SE. Treatment with the mPGES-1 inhibitor in mice after SE that was terminated by diazepam, a fast-acting benzodiazepine, time-dependently abolished the SE-induced PGE2 within the brain. Its negligible effects on cyclooxygenases, the enzymes responsible for the initial step of PGE2 biosynthesis, validated its specificity to mPGES-1. Post-SE inhibition of mPGES-1 also blunted proinflammatory cytokines and reactive gliosis in the hippocampus and broadly prevented neuronal damage in a number of brain areas. Thus, pharmacological inhibition of mPGES-1 by small-molecule inhibitors might provide an adjunctive strategy that can be implemented hours after SE, together with first-line ASDs, to reduce SE-provoked brain inflammation and injury.


Encephalitis , Status Epilepticus , Animals , Mice , Dinoprostone , Disease Models, Animal , Encephalitis/genetics , Encephalitis/metabolism , Encephalitis/prevention & control , Gliosis/complications , Gliosis/drug therapy , Prostaglandin-E Synthases , Seizures/drug therapy , Seizures/genetics , Seizures/metabolism , Status Epilepticus/drug therapy , Status Epilepticus/genetics , Status Epilepticus/metabolism
5.
Acta Neuropathol Commun ; 10(1): 168, 2022 11 21.
Article En | MEDLINE | ID: mdl-36411471

Rasmussen encephalitis (RE) is a rare childhood neurological disease characterized by progressive unilateral loss of function, hemispheric atrophy and drug-resistant epilepsy. Affected brain tissue shows signs of infiltrating cytotoxic T-cells, microglial activation, and neuronal death, implicating an inflammatory disease process. Recent studies have identified molecular correlates of inflammation in RE, but cell-type-specific mechanisms remain unclear. We used single-nucleus RNA-sequencing (snRNA-seq) to assess gene expression across multiple cell types in brain tissue resected from two children with RE. We found transcriptionally distinct microglial populations enriched in RE compared to two age-matched individuals with unaffected brain tissue and two individuals with Type I focal cortical dysplasia (FCD). Specifically, microglia in RE tissues demonstrated increased expression of genes associated with cytokine signaling, interferon-mediated pathways, and T-cell activation. We extended these findings using spatial proteomic analysis of tissue from four surgical resections to examine expression profiles of microglia within their pathological context. Microglia that were spatially aggregated into nodules had increased expression of dynamic immune regulatory markers (PD-L1, CD14, CD11c), T-cell activation markers (CD40, CD80) and were physically located near distinct CD4+ and CD8+ lymphocyte populations. These findings help elucidate the complex immune microenvironment of RE.


Encephalitis , Microglia , Child , Humans , Microglia/pathology , Proteomics , Encephalitis/genetics , Encephalitis/complications , Inflammation/metabolism
6.
Genes Immun ; 23(7): 235-239, 2022 11.
Article En | MEDLINE | ID: mdl-36198812

Pediatric encephalitis has significant morbidity and mortality, yet 50% of cases are unexplained. Host genetics plays a role in encephalitis' development; however, the contributing variants are poorly understood. One child with anti-NMDA receptor encephalitis and ten with unexplained encephalitis underwent whole genome sequencing to identify rare candidate variants in genes known to cause monogenic immunologic and neurologic disorders, and polymorphisms associated with increased disease risk. Using the professional Human Genetic Mutation Database (Qiagen), we divided the candidate variants into three categories: monogenic deleterious or potentially deleterious variants (1) in a disease-consistent inheritance pattern; (2) in carrier states; and (3) disease-related polymorphisms. Six patients (55%) had a deleterious or potentially deleterious variant in a disease-consistent inheritance pattern, five (45%) were heterozygous carriers for an autosomal recessive condition, and six (55%) carried a disease-related polymorphism. Finally, seven (64%) had more than one variant, suggesting possible polygenetic risk. Among variants identified were those implicated in atypical hemolytic uremic syndrome, common variable immunodeficiency, hemophagocytic lymphohistiocytosis, and systemic lupus erythematosus. This preliminary study shows genetic variation related to inborn errors of immunity in acute pediatric encephalitis. Future research is needed to determine if these variants play a functional role in the development of unexplained encephalitis.


Encephalitis , Lymphohistiocytosis, Hemophagocytic , Humans , Child , Mutation , Heterozygote , Polymorphism, Genetic , Encephalitis/genetics , Genetic Variation
8.
Dev Med Child Neurol ; 64(8): 1008-1016, 2022 08.
Article En | MEDLINE | ID: mdl-35108406

AIM: To evaluate clinical and imaging features in patients with acute necrotizing encephalopathy of childhood (ANEC) to identify predictors of RANBP2 mutations, influenza association, and long-term outcomes. METHOD: A retrospective chart review in patients with ANEC (2012-2020) seen at a tertiary pediatric center was performed. Children were included if they had acute inflammatory lesions in the basal ganglia and pons. Variables included presenting features, imaging characteristics, RANBP2 gene testing, nasopharyngeal swab findings, therapies, and long-term outcomes. RESULTS: Twenty patients were included (average age at presentation 3y 6mo, interquartile range  3y 7mo, SD  2y 8mo; 14 females, six males). Three of the 20 experienced recurrences; one of the 20 died. Ten patients were influenza positive. Seven patients were RANBP2 mutation positive. A higher likelihood of hemorrhage was observed in patients who were influenza positive compared to influenza negative (p=0.048). Patients with influenza had a higher degree of thalamic hemorrhage (2, p=0.035) and greater extent of diffusion restriction (3, p=0.035) in semiquantitive analysis. INTERPRETATION: Children with ANEC who are positive for influenza are more likely to have hemorrhage and greater thalamic swelling. RANBP2 status was predictive of relapse but not predictive of overall outcome.


Encephalitis , Influenza, Human , Leukoencephalitis, Acute Hemorrhagic , Molecular Chaperones , Nuclear Pore Complex Proteins , Acute Disease , Child , Encephalitis/genetics , Female , Humans , Influenza, Human/complications , Influenza, Human/genetics , Leukoencephalitis, Acute Hemorrhagic/genetics , Male , Molecular Chaperones/genetics , Mutation , Nuclear Pore Complex Proteins/genetics , Retrospective Studies
9.
Article En | MEDLINE | ID: mdl-35115410

BACKGROUND AND OBJECTIVES: To study human leukocyte antigen (HLA) allele associations in anti-leucine-rich glioma-inactivated 1 (LGI1) encephalitis. METHODS: A multiethnic cohort of 269 patients with anti-LGI1 encephalitis and 1,359 controls was included. Four-digit HLA sequencing and genome wide association single-nucleotide polymorphism typing imputation (0.99 concordance) were used for HLA typing. Significance of primary and secondary associations was tested using χ2, Fisher exact tests, or logistic regression with the control of population stratification covariates when applicable. RESULTS: DRB1*07:01 and DQA1*02:01, 2 alleles in strong linkage disequilibrium, were associated with the disease (90% vs 24%, OR = 27.8, p < 10e-50) across ethnicity independent of variation at DRB3 and DQB1, 2 flanking HLA loci. DRB1*07:01 homozygosity was associated with a doubling of risk (OR = 2.1, p = 0.010), suggesting causality. DRB1*07:01 negative subjects were younger (p = 0.003) and more frequently female (p = 0.015). Three patients with malignant thymomas did not carry DRB1*07:01, whereas patients with other tumors had high DRB1*07:01 frequency, suggesting that the presence of tumors other than thymomas may be coincidental and not causal. In both DRB1*07:01 heterozygous individuals and DRB1*07:01 negative subjects, DRB1*04:02 was associated with anti-LGI1 encephalitis, indicating an independent effect of this allele (OR = 6.85, p = 4.57 × 10-6 and OR = 8.93, p = 2.50 × 10-3, respectively). DRB1*04:02 was also independently associated with younger age at onset (ß = -6.68, p = 9.78 × 10-3). Major histocompatibility complex peptide-binding predictions using LGI1-derived peptides revealed divergent binding propensities for DRB1*04:02 and DRB1*07:01 alleles, suggesting independent pathogenic mechanisms. DISCUSSION: In addition to the established primary DRB1*07:01 association in anti-LGI1 encephalitis, we observe a secondary effect of DRB1*04:02 with lower age at onset. Our study provides evidence for secondary effects within HLA locus that correlate with clinical phenotypes in anti-LGI1 encephalitis.


Autoimmune Diseases of the Nervous System , Encephalitis , Genome-Wide Association Study , HLA-DRB1 Chains/genetics , Intracellular Signaling Peptides and Proteins/immunology , Aged , Autoantibodies , Autoimmune Diseases of the Nervous System/genetics , Autoimmune Diseases of the Nervous System/immunology , Encephalitis/genetics , Encephalitis/immunology , Female , Genetic Association Studies , Humans , Male , Middle Aged , Polymorphism, Single Nucleotide
11.
Int J Mol Sci ; 22(24)2021 Dec 08.
Article En | MEDLINE | ID: mdl-34948033

This study was designed to determine the effect of acute caffeine (CAF) administration, which exerts a broad spectrum of anti-inflammatory activity, on the synthesis of pro-inflammatory cytokines and their receptors in the hypothalamus and choroid plexus (ChP) during acute inflammation caused by the injection of bacterial endotoxin-lipopolysaccharide (LPS). The experiment was performed on 24 female sheep randomly divided into four groups: control; LPS treated (iv.; 400 ng/kg of body mass (bm.)); CAF treated (iv.; 30 mg/kg of bm.); and LPS and CAF treated. The animals were euthanized 3 h after the treatment. It was found that acute administration of CAF suppressed the synthesis of interleukin (IL-1ß) and tumor necrosis factor (TNF)α, but did not influence IL-6, in the hypothalamus during LPS-induced inflammation. The injection of CAF reduced the LPS-induced expression of TNF mRNA in the ChP. CAF lowered the gene expression of IL-6 cytokine family signal transducer (IL6ST) and TNF receptor superfamily member 1A (TNFRSF1) in the hypothalamus and IL-1 type II receptor (IL1R2) in the ChP. Our study on the sheep model suggests that CAF may attenuate the inflammatory response at the hypothalamic level and partly influence the inflammatory signal generated by the ChP cells. This suggests the potential of CAF to suppress neuroinflammatory processes induced by peripheral immune/inflammatory challenges.


Caffeine/administration & dosage , Choroid Plexus/immunology , Cytokines/genetics , Encephalitis/drug therapy , Hypothalamus/immunology , Lipopolysaccharides/adverse effects , Administration, Intravenous , Animals , Caffeine/pharmacology , Choroid Plexus/drug effects , Disease Models, Animal , Encephalitis/chemically induced , Encephalitis/genetics , Female , Gene Expression Regulation/drug effects , Hypothalamus/drug effects , Interleukin-1beta/genetics , Interleukin-6/metabolism , Sheep , Tumor Necrosis Factor-alpha/genetics
12.
Int J Mol Sci ; 22(24)2021 Dec 20.
Article En | MEDLINE | ID: mdl-34948457

High-fat diet (HFD)-induced comorbid cognitive and behavioural impairments are thought to be the result of persistent low-grade neuroinflammation. Metformin, a first-line medication for the treatment of type-2 diabetes, seems to ameliorate these comorbidities, but the underlying mechanism(s) are not clear. Pituitary adenylate cyclase-activating peptide (PACAP) and vasoactive intestinal peptide (VIP) are neuroprotective peptides endowed with anti-inflammatory properties. Alterations to the PACAP/VIP system could be pivotal during the development of HFD-induced neuroinflammation. To unveil the pathogenic mechanisms underlying HFD-induced neuroinflammation and assess metformin's therapeutic activities, (1) we determined if HFD-induced proinflammatory activity was present in vulnerable brain regions associated with the development of comorbid behaviors, (2) investigated if the PACAP/VIP system is altered by HFD, and (3) assessed if metformin rescues such diet-induced neurochemical alterations. C57BL/6J male mice were divided into two groups to receive either standard chow (SC) or HFD for 16 weeks. A further HFD group received metformin (HFD + M) (300 mg/kg BW daily for 5 weeks) via oral gavage. Body weight, fasting glucose, and insulin levels were measured. After 16 weeks, the proinflammatory profile, glial activation markers, and changes within the PI3K/AKT intracellular pathway and the PACAP/VIP system were evaluated by real-time qPCR and/or Western blot in the hypothalamus, hippocampus, prefrontal cortex, and amygdala. Our data showed that HFD causes widespread low-grade neuroinflammation and gliosis, with regional-specific differences across brain regions. HFD also diminished phospho-AKT(Ser473) expression and caused significant disruptions to the PACAP/VIP system. Treatment with metformin attenuated these neuroinflammatory signatures and reversed PI3K/AKT and PACAP/VIP alterations caused by HFD. Altogether, our findings demonstrate that metformin treatment rescues HFD-induced neuroinflammation in vulnerable brain regions, most likely by a mechanism involving the reinstatement of PACAP/VIP system homeostasis. Data also suggests that the PI3K/AKT pathway, at least in part, mediates some of metformin's beneficial effects.


Diet, High-Fat/adverse effects , Encephalitis/drug therapy , Metformin/administration & dosage , Pituitary Adenylate Cyclase-Activating Polypeptide/metabolism , Vasoactive Intestinal Peptide/metabolism , Amygdala/drug effects , Amygdala/metabolism , Animals , Case-Control Studies , Down-Regulation , Encephalitis/chemically induced , Encephalitis/genetics , Encephalitis/metabolism , Hippocampus/drug effects , Hippocampus/metabolism , Hypothalamus/drug effects , Hypothalamus/metabolism , Male , Metformin/pharmacology , Mice , Mice, Inbred C57BL , Pituitary Adenylate Cyclase-Activating Polypeptide/genetics , Prefrontal Cortex/drug effects , Prefrontal Cortex/metabolism , Signal Transduction/drug effects , Vasoactive Intestinal Peptide/genetics
13.
Am J Med Genet A ; 185(11): 3502-3506, 2021 11.
Article En | MEDLINE | ID: mdl-34405953

Biallelic pathogenic variants in RNU4ATAC have been linked to microcephalic osteodysplastic primordial dwarfism type 1 (MOPD1). Although children with MOPD1 have been reported to show profound, life-limiting clinical decompensation at the time of a febrile illness, these episodes including magnetic resonance imaging (MRI) findings have not been well characterized. We present acute MRI brain findings for a 10-year-old girl with homozygous variants in RNU4ATAC (NR_023343.1) n.55G>A, who presented with two episodes of clinical decompensation associated with a febrile illness in early childhood. The pathogenic variants were identified by whole genome sequencing as RNU4ATAC is not captured in most exome products. Her MRI of the brain revealed symmetric, diffusion restriction of the deep gray nuclei that initially pointed to a mitochondrial disease or acute necrotizing encephalopathy. Her phenotype included microcephaly and profound cognitive impairment that can be seen with MOPD1. However, she did not demonstrate clinical or radiographic evidence of a spondyloepimetaphyseal dysplasia or "primordial dwarfism" that is characteristic of this disease. As such, the predominant neurological presentation of this child represents an atypical variant of RNU4ATAC-associated disease and should be a diagnostic consideration for geneticists and neurologists caring for children, particularly in the event of an acute clinical decline.


Dwarfism/genetics , Encephalitis/genetics , Fetal Growth Retardation/genetics , Microcephaly/genetics , Osteochondrodysplasias/genetics , RNA, Small Nuclear/genetics , Brain/abnormalities , Brain/diagnostic imaging , Brain/pathology , Child , Child, Preschool , Dwarfism/diagnostic imaging , Dwarfism/pathology , Encephalitis/diagnostic imaging , Encephalitis/pathology , Exome/genetics , Female , Fetal Growth Retardation/diagnostic imaging , Fetal Growth Retardation/pathology , Genetic Predisposition to Disease , Humans , Infant , Infant, Newborn , Magnetic Resonance Imaging , Male , Microcephaly/diagnostic imaging , Microcephaly/pathology , Mutation/genetics , Osteochondrodysplasias/diagnostic imaging , Osteochondrodysplasias/pathology , Phenotype , Exome Sequencing , Whole Genome Sequencing
14.
Int J Mol Sci ; 22(11)2021 Jun 01.
Article En | MEDLINE | ID: mdl-34206009

Toll-like receptor (TLR) signaling plays a critical role in the induction and progression of autoimmune diseases such as rheumatoid arthritis, systemic lupus erythematous, experimental autoimmune encephalitis, type 1 diabetes mellitus and neurodegenerative diseases. Deciphering antigen recognition by antibodies provides insights and defines the mechanism of action into the progression of immune responses. Multiple strategies, including phage display and hybridoma technologies, have been used to enhance the affinity of antibodies for their respective epitopes. Here, we investigate the TLR4 antibody-binding epitope by computational-driven approach. We demonstrate that three important residues, i.e., Y328, N329, and K349 of TLR4 antibody binding epitope identified upon in silico mutagenesis, affect not only the interaction and binding affinity of antibody but also influence the structural integrity of TLR4. Furthermore, we predict a novel epitope at the TLR4-MD2 interface which can be targeted and explored for therapeutic antibodies and small molecules. This technique provides an in-depth insight into antibody-antigen interactions at the resolution and will be beneficial for the development of new monoclonal antibodies. Computational techniques, if coupled with experimental methods, will shorten the duration of rational design and development of antibody therapeutics.


Antibodies, Monoclonal/immunology , Arthritis, Rheumatoid/immunology , Encephalitis/immunology , Epitopes/genetics , Hashimoto Disease/immunology , Neurodegenerative Diseases/immunology , Toll-Like Receptor 4/genetics , Amino Acid Sequence/genetics , Antibodies, Monoclonal/genetics , Antibodies, Monoclonal/therapeutic use , Arthritis, Rheumatoid/drug therapy , Arthritis, Rheumatoid/genetics , Cell Surface Display Techniques , Encephalitis/genetics , Encephalitis/pathology , Epitope Mapping/methods , Epitopes/immunology , Hashimoto Disease/genetics , Hashimoto Disease/pathology , Humans , Neurodegenerative Diseases/drug therapy , Neurodegenerative Diseases/pathology , Protein Binding/genetics , Toll-Like Receptor 4/antagonists & inhibitors , Toll-Like Receptor 4/immunology
15.
Brain Res ; 1769: 147582, 2021 10 15.
Article En | MEDLINE | ID: mdl-34314729

Inflammation has been associated with cardiovascular diseases and the key point is the generation of reactive oxygen species (ROS). Exercise modulates medullary neurons involved in cardiovascular control. We investigated the effect of chronic exercise training (Tr) in treadmill running on gene expression (GE) of ROS and inflammation in commNTS and RVLM neurons. Male Wistar rats (N = 7/group) were submitted to training in a treadmill running (1 h/day, 5 days/wk/10 wks) or maintained sedentary (Sed). Superoxide dismutase (SOD), catalase (CAT), neuroglobin (Ngb), Cytoglobin (Ctb), NADPH oxidase (Nox), cicloxigenase-2 (Cox-2), and neuronal nitric oxide synthase (NOS1) gene expression were evaluated in commNTS and RVLM neurons by qPCR. In RVLM, Tr rats increased Ngb (1.285 ± 0.03 vs. 0.995 ± 0.06), Cygb (1.18 ± 0.02 vs.0.99 ± 0.06), SOD (1.426 ± 0.108 vs. 1.00 ± 0.08), CAT (1.34 ± 0.09 vs. 1.00 ± 0.08); and decreased Nox (0.55 ± 0.146 vs. 1.001 ± 0.08), Cox-2 (0.335 ± 0.05 vs. 1.245 ± 0.02), NOS1 (0.51 ± 0.08 vs. 1.08 ± 0.209) GE compared to Sed. In commNTS, Tr rats increased SOD (1.384 ± 0.13 vs. 0.897 ± 0.101), CAT GE (1.312 ± 0.126 vs. 0.891 ± 0.106) and decreased Cox-2 (0.052 ± 0.011 vs. 1.06 ± 0.207) and NOS1 (0.1550 ± 0.03559 vs. 1.122 ± 0.26) GE compared to Sed. Therefore, GE of proteins of the inflammatory process reduced while GE of antioxidant proteins increased in the commNTS and RVLM after training, suggesting a decrease in oxidative stress of downstream pathways mediated by nitric oxide.


Encephalitis/physiopathology , Medulla Oblongata/physiopathology , Oxidative Stress , Physical Conditioning, Animal/physiology , Solitary Nucleus/physiopathology , Animals , Antioxidants/metabolism , Encephalitis/genetics , Gene Expression , Male , Medulla Oblongata/metabolism , Oxidative Stress/genetics , Rats , Rats, Wistar , Reactive Oxygen Species/metabolism , Sedentary Behavior , Solitary Nucleus/metabolism
16.
Cell Death Dis ; 12(6): 616, 2021 06 15.
Article En | MEDLINE | ID: mdl-34131105

RTP801/REDD1 is a stress-regulated protein whose upregulation is necessary and sufficient to trigger neuronal death. Its downregulation in Parkinson's and Huntington's disease models ameliorates the pathological phenotypes. In the context of Alzheimer's disease (AD), the coding gene for RTP801, DDIT4, is responsive to Aß and modulates its cytotoxicity in vitro. Also, RTP801 mRNA levels are increased in AD patients' lymphocytes. However, the involvement of RTP801 in the pathophysiology of AD has not been yet tested. Here, we demonstrate that RTP801 levels are increased in postmortem hippocampal samples from AD patients. Interestingly, RTP801 protein levels correlated with both Braak and Thal stages of the disease and with GFAP expression. RTP801 levels are also upregulated in hippocampal synaptosomal fractions obtained from murine 5xFAD and rTg4510 mice models of the disease. A local RTP801 knockdown in the 5xFAD hippocampal neurons with shRNA-containing AAV particles ameliorates cognitive deficits in 7-month-old animals. Upon RTP801 silencing in the 5xFAD mice, no major changes were detected in hippocampal synaptic markers or spine density. Importantly, we found an unanticipated recovery of several gliosis hallmarks and inflammasome key proteins upon neuronal RTP801 downregulation in the 5xFAD mice. Altogether our results suggest that RTP801 could be a potential future target for theranostic studies since it could be a biomarker of neuroinflammation and neurotoxicity severity of the disease and, at the same time, a promising therapeutic target in the treatment of AD.


Alzheimer Disease/genetics , Encephalitis/genetics , Memory Disorders/genetics , Transcription Factors/physiology , Alzheimer Disease/complications , Alzheimer Disease/pathology , Animals , Case-Control Studies , Disease Models, Animal , Encephalitis/etiology , Encephalitis/pathology , Female , Humans , Male , Memory Disorders/etiology , Memory Disorders/pathology , Mice , Mice, Transgenic , Neuroimmunomodulation/genetics , Neurotoxicity Syndromes/etiology , Neurotoxicity Syndromes/genetics , Neurotoxicity Syndromes/pathology , Severity of Illness Index
17.
Int Immunopharmacol ; 96: 107808, 2021 Jul.
Article En | MEDLINE | ID: mdl-34162168

Alzheimer's disease is a devastating neurodegenerative disorder, with no disease-modifying treatment available yet. There is increasing evidence that neuroinflammation plays a critical role in the pathogenesis of AD. Andrographolide (Andro), a labdane diterpene extracted from the herb Andrographis paniculata, has been reported to exhibit neuroprotective property in central nervous system diseases. However, its effects on Aß and Aß-induced neuroinflammation have not yet been studied. In the present study, we found that Andro administration significantly alleviated cognitive impairments, reduced amyloid-ß deposition, inhibited microglial activation, and decreased the secretion of proinflammatory factors in APP/PS1 mice. Furthermore, transcriptome sequencing analysis revealed that Andro could significantly decrease the expression of Itgax, TLR2, CD14, CCL3, CCL4, TLR1, and C3ar1 in APP/PS1 mice, which was further validated by qRT-PCR. Our results suggest that Andro might be a potential therapeutic drug for AD by regulating neuroinflammation.


Anti-Inflammatory Agents/therapeutic use , Cognitive Dysfunction/drug therapy , Diterpenes/therapeutic use , Encephalitis/drug therapy , Neuroprotective Agents/therapeutic use , Amyloid beta-Peptides/metabolism , Amyloid beta-Protein Precursor/genetics , Animals , Anti-Inflammatory Agents/pharmacology , Behavior, Animal/drug effects , Cerebral Cortex/drug effects , Cerebral Cortex/metabolism , Cognitive Dysfunction/genetics , Cognitive Dysfunction/metabolism , Diterpenes/pharmacology , Encephalitis/genetics , Encephalitis/metabolism , Hippocampus/drug effects , Hippocampus/metabolism , Male , Mice, Transgenic , Neuroprotective Agents/pharmacology , Presenilin-1/genetics , Transcriptome/drug effects
18.
Sci Rep ; 11(1): 9711, 2021 05 06.
Article En | MEDLINE | ID: mdl-33958667

An evaluation of the APPswe/PS1dE9 transgenic AD mouse, presenting with the toxic Aß1-42 deposition found in human AD, allowed us to characterize time-dependent changes in inflammatory and cholinergic markers present in AD. Astrogliosis was observed in cortex and hippocampus, with cellular loss occurring in the same areas in which Aß plaques were present. In this setting, we found early significantly elevated levels of IL-1ß and TNFα gene expression; with the hippocampus showing the highest IL-1ß expression. To investigate the cholinergic anti-inflammatory pathway, the expression of nicotinic receptors (nAChRs) and cholinesterase enzymes also was evaluated. The anti-inflammatory nAChRα7, α4, and ß2 were particularly increased at 6 months of age in the hippocampus, potentially as a strategy to counteract Aß deposition and the ensuing inflammatory state. A time-dependent subunit switch to the α3ß4 type occurred. Whether α3, ß4 subunits have a pro-inflammatory or an inhibitory effect on ACh stimulation remains speculative. Aß1-42 deposition, neuronal loss and increased astrocytes were detected, and a time-dependent change in components of the cholinergic anti-inflammatory pathway were observed. A greater understanding of time-dependent Aß/nAChRs interactions may aid in defining new therapeutic strategies and novel molecular targets.


Amyloid beta-Protein Precursor/genetics , Encephalitis/metabolism , Receptors, Nicotinic/genetics , Acetylcholinesterase/metabolism , Alzheimer Disease/enzymology , Alzheimer Disease/metabolism , Animals , Astrocytes/metabolism , Butyrylcholinesterase/metabolism , Cerebral Cortex/metabolism , Cerebral Cortex/pathology , Cytokines/genetics , Encephalitis/genetics , Gene Expression Profiling , Hippocampus/metabolism , Hippocampus/pathology , Mice , Mice, Transgenic , Neurons/metabolism
19.
Pediatr Neurol ; 120: 27-32, 2021 07.
Article En | MEDLINE | ID: mdl-33964702

Autoimmune encephalitis (AE) is an increasingly recognized inflammatory disorder of the central nervous system and is most often characterized by antibodies against intracellular and neuronal surface antigens. AE is a devastating disease that may result in developmental delay or regression in children. However, the pathogenesis of AE is not clear, and immune system disorders after infection likely play an important role in AE. Many studies have reported that patients with herpes simplex virus encephalitis develop anti-N-methyl-d-aspartate receptor encephalitis after antiviral treatment. It is critical to recognize pediatric AE early and to distinguish it from infectious forms because AE is treatable and responsive to immunotherapies. In this review, we discuss the clinical features of pediatric AE and focus on the relationship between AE and postinfection status. In addition, we review the probable mechanisms underlying infection-triggered AE, which include molecular mimicry, bystander activation, epitope spreading, immune system disorder, and genetic susceptibility.


Autoimmune Diseases of the Nervous System , Encephalitis , Genetic Predisposition to Disease , Infectious Encephalitis , Autoimmune Diseases of the Nervous System/etiology , Autoimmune Diseases of the Nervous System/genetics , Autoimmune Diseases of the Nervous System/immunology , Child , Encephalitis/etiology , Encephalitis/genetics , Encephalitis/immunology , Humans , Infectious Encephalitis/complications
20.
Am J Hum Genet ; 108(7): 1301-1317, 2021 07 01.
Article En | MEDLINE | ID: mdl-34038740

Human C2orf69 is an evolutionarily conserved gene whose function is unknown. Here, we report eight unrelated families from which 20 children presented with a fatal syndrome consisting of severe autoinflammation and progredient leukoencephalopathy with recurrent seizures; 12 of these subjects, whose DNA was available, segregated homozygous loss-of-function C2orf69 variants. C2ORF69 bears homology to esterase enzymes, and orthologs can be found in most eukaryotic genomes, including that of unicellular phytoplankton. We found that endogenous C2ORF69 (1) is loosely bound to mitochondria, (2) affects mitochondrial membrane potential and oxidative respiration in cultured neurons, and (3) controls the levels of the glycogen branching enzyme 1 (GBE1) consistent with a glycogen-storage-associated mitochondriopathy. We show that CRISPR-Cas9-mediated inactivation of zebrafish C2orf69 results in lethality by 8 months of age due to spontaneous epileptic seizures, which is preceded by persistent brain inflammation. Collectively, our results delineate an autoinflammatory Mendelian disorder of C2orf69 deficiency that disrupts the development/homeostasis of the immune and central nervous systems.


Encephalitis/genetics , Mitochondrial Diseases/genetics , Animals , Biological Evolution , CRISPR-Cas Systems , Cell Line , Encephalitis/mortality , Female , Genes, Recessive , Glycogen/metabolism , Humans , Inflammation/genetics , Male , Membrane Proteins/genetics , Mitochondrial Diseases/mortality , Pedigree , Seizures/genetics , Seizures/mortality , Zebrafish/genetics
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