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Frontiers | Potential of Prebiotic Butyrogenic Fibers in Parkinson's Disease
Frontiers | Potential of Prebiotic Butyrogenic Fibers in Parkinson's Disease

SCFA: mechanisms and functional importance in the gut | Proceedings of the  Nutrition Society | Cambridge Core
SCFA: mechanisms and functional importance in the gut | Proceedings of the Nutrition Society | Cambridge Core

Cells | Free Full-Text | Butyrate and the Intestinal Epithelium: Modulation  of Proliferation and Inflammation in Homeostasis and Disease
Cells | Free Full-Text | Butyrate and the Intestinal Epithelium: Modulation of Proliferation and Inflammation in Homeostasis and Disease

Exploring the Unexplored Arena: Butyrate as a Dual Communicator in Gut–Brain  Axis | SpringerLink
Exploring the Unexplored Arena: Butyrate as a Dual Communicator in Gut–Brain Axis | SpringerLink

Frontiers | The Role of Short-Chain Fatty Acids From Gut Microbiota in Gut- Brain Communication
Frontiers | The Role of Short-Chain Fatty Acids From Gut Microbiota in Gut- Brain Communication

Frontiers | Sodium butyrate mediates histone crotonylation and alleviated  neonatal rats hypoxic–ischemic brain injury through gut–brain axis
Frontiers | Sodium butyrate mediates histone crotonylation and alleviated neonatal rats hypoxic–ischemic brain injury through gut–brain axis

Nutrients | Free Full-Text | Neuroprotective Effects of Sodium Butyrate by  Restoring Gut Microbiota and Inhibiting TLR4 Signaling in Mice with  MPTP-Induced Parkinson’s Disease
Nutrients | Free Full-Text | Neuroprotective Effects of Sodium Butyrate by Restoring Gut Microbiota and Inhibiting TLR4 Signaling in Mice with MPTP-Induced Parkinson’s Disease

Gut microbes and metabolites as modulators of blood-brain barrier integrity  - 생리학, 생화학 - 치료적 맞춤운동, 비타미네, 영성 연구소
Gut microbes and metabolites as modulators of blood-brain barrier integrity - 생리학, 생화학 - 치료적 맞춤운동, 비타미네, 영성 연구소

Role of microbiota-derived short-chain fatty acids in nervous system  disorders - ScienceDirect
Role of microbiota-derived short-chain fatty acids in nervous system disorders - ScienceDirect

Fecal Transplantation from db/db Mice Treated with Sodium Butyrate  Attenuates Ischemic Stroke Injury | Microbiology Spectrum
Fecal Transplantation from db/db Mice Treated with Sodium Butyrate Attenuates Ischemic Stroke Injury | Microbiology Spectrum

Brain Chat - Butyrate: Is a major energy source for colon cells. Has  anti-cancer effects Increases mitochondrial activity. Prevents toxins from  crossing the gut barrier. Prevents activation of intestinal glucose  production. Improves
Brain Chat - Butyrate: Is a major energy source for colon cells. Has anti-cancer effects Increases mitochondrial activity. Prevents toxins from crossing the gut barrier. Prevents activation of intestinal glucose production. Improves

Biomedicines | Free Full-Text | Gut Dysbiosis and Blood-Brain Barrier  Alteration in Hepatic Encephalopathy: From Gut to Brain
Biomedicines | Free Full-Text | Gut Dysbiosis and Blood-Brain Barrier Alteration in Hepatic Encephalopathy: From Gut to Brain

Short-Chain Fatty Acids in the Microbiota–Gut–Brain Axis: Role in  Neurodegenerative Disorders and Viral Infections | ACS Chemical Neuroscience
Short-Chain Fatty Acids in the Microbiota–Gut–Brain Axis: Role in Neurodegenerative Disorders and Viral Infections | ACS Chemical Neuroscience

Gut-brain axis: Focus on gut metabolites short-chain fatty acids
Gut-brain axis: Focus on gut metabolites short-chain fatty acids

Barrier–environment interactions along the gut–brain axis and their  influence on cognition and behaviour throughout the lifespan | JPN
Barrier–environment interactions along the gut–brain axis and their influence on cognition and behaviour throughout the lifespan | JPN

Short chain fatty acids: Microbial metabolites for gut-brain axis  signalling - ScienceDirect
Short chain fatty acids: Microbial metabolites for gut-brain axis signalling - ScienceDirect

Frontiers | Butyrate: Connecting the gut-lung axis to the management of  pulmonary disorders
Frontiers | Butyrate: Connecting the gut-lung axis to the management of pulmonary disorders

Cells | Free Full-Text | Mechanisms of Blood–Brain Barrier Protection  by Microbiota-Derived Short-Chain Fatty Acids
Cells | Free Full-Text | Mechanisms of Blood–Brain Barrier Protection by Microbiota-Derived Short-Chain Fatty Acids

Cells | Free Full-Text | Mechanisms of Blood–Brain Barrier Protection  by Microbiota-Derived Short-Chain Fatty Acids
Cells | Free Full-Text | Mechanisms of Blood–Brain Barrier Protection by Microbiota-Derived Short-Chain Fatty Acids

Schematic summary of butyrate effects on host physiology and brain... |  Download Scientific Diagram
Schematic summary of butyrate effects on host physiology and brain... | Download Scientific Diagram

Butyrate ameliorates chronic alcoholic central nervous damage by  suppressing microglia-mediated neuroinflammation and modulating the  microbiome-gut-brain axis - ScienceDirect
Butyrate ameliorates chronic alcoholic central nervous damage by suppressing microglia-mediated neuroinflammation and modulating the microbiome-gut-brain axis - ScienceDirect

The blood-brain barrier in aging and neurodegeneration | Molecular  Psychiatry
The blood-brain barrier in aging and neurodegeneration | Molecular Psychiatry

JCM | Free Full-Text | Gut-Induced Inflammation during Development May  Compromise the Blood-Brain Barrier and Predispose to Autism Spectrum  Disorder
JCM | Free Full-Text | Gut-Induced Inflammation during Development May Compromise the Blood-Brain Barrier and Predispose to Autism Spectrum Disorder

The blood-brain barrier in aging and neurodegeneration | Molecular  Psychiatry
The blood-brain barrier in aging and neurodegeneration | Molecular Psychiatry

Microbial-derived metabolites induce actin cytoskeletal rearrangement and  protect blood-brain barrier function - ScienceDirect
Microbial-derived metabolites induce actin cytoskeletal rearrangement and protect blood-brain barrier function - ScienceDirect

Microorganisms | Free Full-Text | Gut Bacteria and Neuropsychiatric  Disorders
Microorganisms | Free Full-Text | Gut Bacteria and Neuropsychiatric Disorders

Bifidobacterium breve HNXY26M4 Attenuates Cognitive Deficits and  Neuroinflammation by Regulating the Gut–Brain Axis in APP/PS1 Mice |  Journal of Agricultural and Food Chemistry
Bifidobacterium breve HNXY26M4 Attenuates Cognitive Deficits and Neuroinflammation by Regulating the Gut–Brain Axis in APP/PS1 Mice | Journal of Agricultural and Food Chemistry