There is currently some understanding of the mechanisms that underpin the interactions between circadian rhythmicity and immunity, metabolism and immune response, and circadian rhythmicity and metabolism. In addition, a wealth of studies have led to the conclusion that the commensal microbiota (mainly bacteria) within the intestine contributes to host homeostasis by regulating circadian rhythmicity, metabolism, and the immune system. Experimental studies on how these four biological domains interact with each other have mainly focused on any two of those domains at a time and only occasionally on three. However, a systematic analysis of how these four domains concurrently interact with each other seems to be missing. We have analyzed curren...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...
Life on Earth anticipates recurring 24-hour environmental cycles via genetically encoded molecular c...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...
There is currently some understanding of the mechanisms that underpin the interactions between circa...
Advances in high-throughput sequencing technologies in the past decade has led to a tremendous growt...
Circadian rhythms influence daily molecular oscillations in gene/protein expression and aspects of b...
Metabolic diseases, including type 2 diabetes and cardiovascular disease, are a worsening epidemic, ...
Circadian rhythms influence virtually all life forms on our planet, a notion that opens the question...
Circadian clocks are endogenous timekeeping systems that adapt in an anticipatory fashion the physio...
The microbiota-gut-brain axis encompasses a bidirectional mode of communication between the microorg...
The molecular circadian clock and symbiotic host-microbe relationships both evolved as mechanisms th...
The circadian system is composed of coupled endogenous oscillators that allow living beings, includi...
In the past few years mounting evidences have highlighted the tight correlation between circadian rh...
Circadian rhythms provide a selective advantage by anticipating organismal nutrient needs and guaran...
Every mammalian cell in the body contains a timekeeper – a molecular clock that tracks time-of-day i...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...
Life on Earth anticipates recurring 24-hour environmental cycles via genetically encoded molecular c...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...
There is currently some understanding of the mechanisms that underpin the interactions between circa...
Advances in high-throughput sequencing technologies in the past decade has led to a tremendous growt...
Circadian rhythms influence daily molecular oscillations in gene/protein expression and aspects of b...
Metabolic diseases, including type 2 diabetes and cardiovascular disease, are a worsening epidemic, ...
Circadian rhythms influence virtually all life forms on our planet, a notion that opens the question...
Circadian clocks are endogenous timekeeping systems that adapt in an anticipatory fashion the physio...
The microbiota-gut-brain axis encompasses a bidirectional mode of communication between the microorg...
The molecular circadian clock and symbiotic host-microbe relationships both evolved as mechanisms th...
The circadian system is composed of coupled endogenous oscillators that allow living beings, includi...
In the past few years mounting evidences have highlighted the tight correlation between circadian rh...
Circadian rhythms provide a selective advantage by anticipating organismal nutrient needs and guaran...
Every mammalian cell in the body contains a timekeeper – a molecular clock that tracks time-of-day i...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...
Life on Earth anticipates recurring 24-hour environmental cycles via genetically encoded molecular c...
The liver is a key organ of metabolic homeostasis with functions that oscillate in response to food ...