For the first few hours the gut is still delivering glucose from the meal, so the early part of a fasting window is not yet a fasted state.
A 16-hour fast — 0 seconds
Follow a representative sixteen-hour window between meals, from the last mouthful to the point where the liver is making most of the glucose in circulation.
As meal-derived glucose stops arriving, pancreatic insulin secretion falls; glucagon secretion rises more gradually. The falling insulin signal is the larger and better measured of the two changes over a window this short.
Fatty acids released from fat tissue supply more of the body's energy, and the liver converts some of them into ketone bodies. At this stage of a fast, measured ketone concentrations are still low; the large rise belongs to much longer fasts.
The liver breaks down its glycogen store and releases glucose into the bloodstream. That store is finite, so its contribution shrinks as the hours pass.
The liver also builds new glucose from precursors such as glycerol, lactate and amino acids. Its share of the glucose in circulation grows as the glycogen store is drawn down.
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Time elapsed
- Last meal ends · 00:00:00
- Absorption at its peak · 01:00:00
- Postabsorptive state · 04:00:00
- Liver supply shifts · 08:00:00
- Twelve-hour mark · 12:00:00
- Sixteen-hour mark · 16:00:00
The last meal has just finished. Digestion and absorption are still under way, so the displayed glucose range is rising rather than falling.
Explore the mechanism Absorption finishes
For the first few hours the gut is still delivering glucose from the meal, so the early part of a fasting window is not yet a fasted state.
Evidence for this step
After a meal, glucose absorbed from the gut typically stops arriving within a few hours, and the body moves into a postabsorptive state in which the glucose in circulation is supplied by the liver rather than by food. moderate · View sources
- Whole-body context: 0%
- Liver: 45%
- Pancreas: 70%
- Skeletal muscle: 45%
- Bloodstream: 60%
- Small intestine: 85%