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. 2019 Oct 10;14(10):e0222833. doi: 10.1371/journal.pone.0222833

Table 2. Parameters.

Parameter Units Meaning Value
t0 [mo] starting age for numerical integration of slow model, in months 0
tend [mo] final age for numerical integration of slow model, in months 1080
Bmax [Mc] maximal beta-cell population size (carrying capacity) 4000
B0 [Mc] baseline value of B at slow initial time (age t0) 1000
νBG [#] exponent of the Hill function describing replication stimulation by glycemia 2
GB50 [mM] glycemia of half-maximal beta-cell replication stimulation 9
η0 [/mo] baseline value of η at slow initial time (age t0) 0.04
kXηG0 [/mo] baseline value of kXηG at slow initial time (age t0) 0.02
kηendprop [#] Level of kη at the end of life (at tend) as proportion of kη start 0.4
kGG [/mo] rate of convergence of fasting glycemia from start-of-day to end-of-day values 0.4
Gf0 [mM] fasting glycemia at age t0 4.2
kXA [/mo] spontaneous elimination rate constant of (glycosylated) Haemoglobin 0.4
A0 [%] baseline value of A at slow initial time (age t0) 5
VG [L/kg] glucose distribution volume 0.19
VI [L/kg] insulin distribution volume 0.19
W [kg] experimental subject’s body weight 70
kXIstart [/min] apparent first-order elimination rate constant for insulin at baseline (at age t0) 0.05
kXIend [/min] apparent first-order elimination rate constant for insulin at the end of a normal life (e.g. at age 90 years) 0.045
kXGI0max [/min] baseline value of kXGImax at slow initial time (age t0) 0.08
kXGI00 [/min/pM] baseline value of kXGI0 at slow initial time (age t0) 0.00015
fkXGImin [#] minimum value possible for kXGImax as proportion of its baseline value at age t0 0.05
tkXGIstart [mo] starting time of kXGImax decrease 216
νkXGI [#] exponent for kXGImax decrease 3
tkXGI50 [mo] time of half-maximal kXGImax decrease 800
λGI0 [/pM/mM] baseline value of λGI at slow initial time (age t0) 0.015
fλGImin [#] minimum value possible for λGI as proportion of its baseline value at age t0 0.05
tλGIstart [mo] starting time of λGI decrease 216
νλGI [#] exponent for λGI decrease 8
tλGI50 [mo] time of half-maximal λGI decrease 550
kIB0max [pmol/min /Mc] baseline value of kIBmax at slow initial time (age t0) 0.5
fkIBmin [#] minimum value possible for kIBmax as proportion of its baseline value at age t0 0.25
tkIBstart [mo] starting time of kIBmax decrease 216
νkIB [#] exponent for kIBmax decrease 2.5
tkIB50 [mo] time of half-maximal kIBmax decrease 950
kJS0 [/min] baseline value of kJS at slow initial time (age t0) 0.0235
αLyKxgi [/mo] rate of onset of effect of Ly on kXGI 0.1
βLyKxgi [/mo] rate of decay of effect of Ly on kXGI 0.009
LyKxgiCurr [#] maximal effect of Ly therapy as proportional increase of kXGI above current level. 0
αLyLamgi [/mo] rate of onset of effect of Ly on λGI 0.3
βLyLamgi [/mo] rate of decay of effect of Ly on λGI 0.01
LyLamgiCurr [#] maximal effect of Ly therapy as proportional increase of λGI above current level. 0
αLyKjs [/mo] rate of onset of effect of Ly on kJS 0.05
βLyKjs [/mo] rate of decay of effect of Ly on kJS 0.002
LyKJS [#] Effect of Ly therapy on gastric emptying rate kJS as fraction of current value, when positive accelerates gastric emptying 0
τ0 [min] starting time for numerical integration of fast model, in minutes after midnight 360
τend [min] final time for numerical integration of fast model, in minutes 1800
τ1 [min] time of breakfast in minutes after midnight 420
M1gluc [mmol] breakfast contribution to circulating glucose 417
τ2 [min] time of lunch in minutes after midnight 720
M2gluc [mmol] lunch contribution to circulating glucose 280
τ3 [min] time of dinner in minutes after midnight 1080
M3gluc [mmol] dinner contribution to circulating glucose 280
kXgbroxmax [mmol /kgBW /min] maximal brain glucose oxidation 0.0059
Gbrox50 [mM] glycemia of half-maximal brain glucose oxidation 0.5
kGJ [/min] transfer rate constant from intestine to plasma, absorption rate 0.025
fGJ [#] proportion of absorbed nutrients entering the circulation 0.9
kXG [/min] first-order insulin-independent glucose tissue uptake rate 0.001
kGImax [mmol /min] maximal rate of insulin-dependent hepatic glucose production 0.75
LG50 [pM] glucagon concentration of half-maximal stimulation of gluconeogenesis or glycogen lysis 0.05
L0 [pM] fasting Glucagon plasma concentration 15
kXL [/min] first-order glucagon elimination rate from plasma 0.04
fLGmin [#] minimum possible value for glucagon secretion rate as proportion of its max value at zero glycemia 0.15
λLG [/mM] exponential rate of decay of glucagon secretion with increasing glycemia 0.55
fIJ [#] maximum jejunal glucose content additional effect (as proportion of plasma glucose effect) towards insulin secretion by pancreas, max incretin effect 1.15
JG50 [mmol] jejunal glucose content at which incretin effect is half-maximal 200
νIG [#] exponent for increase in β-cell-mass-specific insulin secretion rate with increasing glycemia 3
GI50 [mM] glycemia of half-maximal β-cell-mass-specific insulin secretion rate 14.4
ClInulin [L/kgBW /min] Inulin clearance or glomerular filtration rate 0.0018
Furine [L/kgBW /min] Urinary flow 0.00002
Du [/z2] tubular glucose diffusion coefficient 0
kGUmax [mmol /kgBW /min] maximal rate of glucose transfer from pre-urine to plasma (glucose reabsorption) 0.027
CGU50 [mM] tubular glucose concentration of half-maximal transport 19
λVZ [/z] Exponent for decay of water or volume flow along tubule 8
λQZ [/z] Exponent for decay of glucose reabsorption along tubule 7
If0 [pM] fasting insulinemia at age t0 19.8
IKXGI50 [pM] insulinemia of haf-maximal effect on peripheral tissue glucose uptake 333
kGLmax [mmol /min] maximal rate of glucagon-dependent, treatment-insensitive hepatic glucose production 0.0685
kLGmax [pM/min] maximal rate of glucose-dependent glucagon secretion effect on glucagon concentration 2.56
kη start [/mo2] spontaneous recovery rate of the pancreas at t0 0.00085
kBBmin [/mo] minimum value of the replication rate kBB -0.0104
kAG [%/mo /mM] rate constant of production of glycosylated haemoglobin from circulating glucose 0.395