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Microglial cell response to experimental periodontal disease | Journal of Neuroinflammation

Microglial activation is critical for modulating the neuroinflammatory process and the pathological progression of neurodegenerative diseases, such as Alzheimer's disease (AD). Microglia are involved in forming barriers around extracellular neuritic plaques and the phagocytosis of β-amyloid peptide (Aβ). In this study, we tested the hypothesis that periodontal disease (PD) as a source of infection alters inflammatory activation and Aβ phagocytosis by the microglial cells. Experimental PD was induced using ligatures in C57BL/6 mice for 1, 10, 20, and 30 days to assess the progression of PD. Animals without ligatures were used as controls. Maxillary bone loss and local periodontal tissue inflammation associated with the development of PD were confirmed by morphometric bone analysis and cytokine expression, respectively. The frequency and the total number of activated microglia (CD45+ CD11b+ MHCII+) in the brain were analyzed by flow cytometry. Mouse m ....

United States , La Jolla , San Diego , Miltenyi Biotec , Dnasei Zymo Research , Hbss Rd Systems Inc , Sigma Aldrich , Graphpad Software , Roswell Park Memorial Institute , Graphpad Prism Software , Committee Of The Forsyth Institute , Institutional Animal Care , Use Committee , Forsyth Institute , Life Technologies , Thermofisher Scientific , Transcription Kit , Applied Biosystems , Steponeplus Real Time , Fast Advanced Master Mix , Taqman Gene Expression Assays , Zymo Research , Fetal Bovine Serum , Fixable Viability Kit , Distributed Stochastic Neighbor Embedding , Soy Agar ,

Liver microRNA transcriptome reveals miR-182 as link between type 2 diabetes and fatty liver disease in obesity

Liver microRNA transcriptome reveals miR-182 as link between type 2 diabetes and fatty liver disease in obesity
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France General , United States , United Kingdom , Eteläuomen Läi , Foster City , San Diego , Nordrhein Westfalen , Katharina Iben , Anna Judycka , Kerstin Stemmer , Janh Britsemmer , Pault Pfluger , Ingolf Cascorbi , Meike Kaehler , Jonas Wagner , Sonjac Schriever , Natalie Taege , Christin Krause , Henriette Kirchner , Hendrik Lehnert , Oliver Mann , Anna Molenaar , Katrin Huber , Miriam Bernecker , Akt Ser , Stefan Wolter ,

Six-hour time-restricted feeding inhibits lung cancer progression and reshapes circadian metabolism | BMC Medicine

Accumulating evidence has suggested an oncogenic effect of diurnal disruption on cancer progression. To test whether targeting circadian rhythm by dietary strategy suppressed lung cancer progression, we adopted 6-h time-restricted feeding (TRF) paradigm to elucidate whether and how TRF impacts lung cancer progression. This study used multiple lung cancer cell lines, two xenograft mouse models, and a chemical-treated mouse lung cancer model. Stable TIM-knockdown and TIM-overexpressing A549 cells were constructed. Cancer behaviors in vitro were determined by colony formation, EdU proliferation, wound healing, transwell migration, flow cytometer, and CCK8 assays. Immunofluorescence, pathology examinations, and targeted metabolomics were also used in tumor cells and tissues. mCherry-GFP-LC3 plasmid was used to detect autophagic flux. We found for the first time that compared to normal ad libitum feeding, 6-h TRF inhibited lung cancer progression and reprogrammed the rhythms of metabolites ....

United States , A Puro Cyagen Biosciences , Cyagen Biosciences , Lin Yong , Sigma Aldrich , Ethics Committee Of Chongqing Medical University , Graphpad Software , Bioscience Co Ltd , Chinese Academy Of Sciences Cell Bank Shanghai , Aldrich Inc , Protein Technology , Vital River Laboratory Animal Technology Company Ltd , Agilent Technologies , Laboratory Animals , Beckman Coulter , American Type Culture Collection , Chinese Academy , Sciences Cell Bank , Chinese Tissue Culture Collections , Medical Ethics Committee , Chongqing Medical University , Vital River Laboratory Animal Technology Company , Click Additive Solution , Thermo Finnigan , Blocking Buffer , Immunol Staining ,

Apoptotic stress causes mtDNA release during senescence and drives the SASP

Senescent cells drive age-related tissue dysfunction partially through the induction of a chronic senescence-associated secretory phenotype (SASP)1. Mitochondria are major regulators of the SASP; however, the underlying mechanisms have not been elucidated2. Mitochondria are often essential for apoptosis, a cell fate distinct from cellular senescence. During apoptosis, widespread mitochondrial outer membrane permeabilization (MOMP) commits a cell to die3. Here we find that MOMP occurring in a subset of mitochondria is a feature of cellular senescence. This process, called minority MOMP (miMOMP), requires BAX and BAK macropores enabling the release of mitochondrial DNA (mtDNA) into the cytosol. Cytosolic mtDNA in turn activates the cGAS–STING pathway, a major regulator of the SASP. We find that inhibition of MOMP in vivo decreases inflammatory markers and improves healthspan in aged mice. Our results reveal that apoptosis and senescence are regulated by similar mitochondria-depende ....

United Kingdom , Adooq Biosciences , Tocris Bioscience , Antifade Mountant , Gencode Grch , Bruker Ct , Rnalater Qiagen , Dynabeads Invitrogen , Skyscan Nrecon , Zeiss Airyscan , Octo Dissociator Miltenyi , Analysis Software , Imol Polish Academy Of Sciences , Huygens Deconvolution Software , University Of Glasgow Animal Welfare , Pall Corporation , Thermo Fisher , National Institute On Aging , United Kingdom Home Office , Thermo Fisher Scientific , Atlanta Biological , Absolute Human Mitochondrial , Number Quantification , Tissue Kit , Qiaquick Nucleotide Removal Kit , Agilent Seahorse ,