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Pharmacology · Receptor biology · continued

Follow-up: Why appetite effects are mostly central posts 61–90

This is a continuation of a long topic, addressed by post number rather than by page. Start at post 1.

O
OTeixeiraTL38 Oct 2025#61
IO
i.oseiTL2 Moderator9 Oct 2025#62
s.ivaturi, post #16: Central versus peripheral action: GLP-1 agonism works through both central nervous system effects (appetite) and peripheral effects (gastric motility, insulin). The balance is not fully characterised. Go to post

GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways.

15 likes in reply to #16 10mo
O
OkaforTL3Regular10 Oct 2025#63

This follows post #60 rather than contradicting it.

GIP receptor signalling: the glucose-dependent insulinotropic peptide receptor (GIP) is involved in glucose-stimulated insulin secretion. GIP agonism is thought to contribute to tirzepatide's effect but the mechanism is not fully settled.

30 likes 10mo
ID
il.dumitruTL2 Moderator11 Oct 2025#64

I read post #62 twice before replying, because I had assumed the opposite.

Glucagon receptor agonism: glucagon receptor agonism increases energy expenditure and promotes hepatic fat oxidation. The mechanism is distinct from GLP-1 and GIP agonism and the clinical consequences are still being characterised.

0 likes 10mo
D
DOdendaalTL3Regular12 Oct 2025#65

GIP receptor signalling: the glucose-dependent insulinotropic peptide receptor (GIP) is involved in glucose-stimulated insulin secretion. GIP agonism is thought to contribute to tirzepatide's effect but the mechanism is not fully settled.

3 likes 10mo
NZ
n.zielinskiTL2 Moderator13 Oct 2025 · edited#66
m.ndiaye, post #24: Coming back to post #22, because the follow-up matters more than the original answer. GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways. Go to post

Having read the exchange above, I think I was wrong earlier in this topic and I want to say so plainly rather than quietly editing.

The correction was fair and I had been repeating something I had not checked carefully enough.

10 likes in reply to #24 9mo
M
MJayawardenaTL3Regular14 Oct 2025#67

Picking up post #64: that is the part I would want checked first.

Amylin receptor signalling: amylin promotes satiety and slows gastric emptying through a receptor distinct from GLP-1. The hypothesis behind combination therapy is two complementary satiety mechanisms.

22 likes 9mo
DN
d.nilsenTL2 Moderator16 Oct 2025#68

Bias and desensitisation: receptors can be biased (preferentially activating some downstream pathways over others) and can desensitise over time (responding less to the same stimulus with repeated exposure). Both might affect long-term response to these compounds.

0 likes 9mo
SG
s.grahameTL2Member17 Oct 2025#69

post #68 is right about the mechanism and I think understates the practical bit.

Pharmacological class effects: all GLP-1 agonists slow gastric emptying and suppress appetite. Those are class effects, not unique to one compound. Effects that differ between compounds are usually about potency or receptor selectivity.

14 likes 9mo
RI
r.ilungaTL2 Moderator18 Oct 2025#70

Worth separating two things that post #66 runs together.

Species differences: rodent studies show the same compounds produce effects in rodents that predict human effects reasonably well for semaglutide and tirzepatide. The track record is less clear for novel compounds with less human data.

29 likes 9mo
OO
orbitrap_olaTL3Mass spectrometrist19 Oct 2025#71

Cross-reactivity and selectivity: the compounds are not perfectly selective for their target receptors. Semaglutide has some activity on other receptors; tirzepatide activates both GLP-1 and GIP with different affinities. The off-target effects are part of the overall pharmacology.

2 likes 9mo
NB
n.brobergTL220 Oct 2025#72
PW
PharmNotes_WhitfieldTL4Pharmacist21 Oct 2025#73
w.verhoeven, post #8: On post #4 — agreed on the reasoning, with one qualification. GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways. Go to post

On post #69 — agreed on the reasoning, with one qualification.

Central versus peripheral action: GLP-1 agonism works through both central nervous system effects (appetite) and peripheral effects (gastric motility, insulin). The balance is not fully characterised.

28 likes in reply to #8 9mo
JF
j.fonsecaTL2 Moderator22 Oct 2025#74

Long-term receptor changes: very little is known about what happens to receptor expression, signalling, and downstream effects over years of exposure to these compounds. That is exactly the knowledge gap phase 3 trials exist to fill.

14 likes 9mo
DO
dr_okonkwoTL4 Moderator23 Oct 2025#75

Glucagon receptor agonism: glucagon receptor agonism increases energy expenditure and promotes hepatic fat oxidation. The mechanism is distinct from GLP-1 and GIP agonism and the clinical consequences are still being characterised.

0 likes 9mo
CG
c.grimaldiTL2 Moderator24 Oct 2025#76

This follows post #73 rather than contradicting it.

GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways.

0 likes 9mo
CC
c.cardosoTL2 Moderator25 Oct 2025#77
s.ivaturi, post #16: Central versus peripheral action: GLP-1 agonism works through both central nervous system effects (appetite) and peripheral effects (gastric motility, insulin). The balance is not fully characterised. Go to post

GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways.

21 likes in reply to #16 9mo
ML
m.lehtinenTL2 Moderator26 Oct 2025 · edited#78

Long-term receptor changes: very little is known about what happens to receptor expression, signalling, and downstream effects over years of exposure to these compounds. That is exactly the knowledge gap phase 3 trials exist to fill.

9 likes 9mo
NN
n.nybergTL2 Moderator27 Oct 2025 · edited#79

Coming back to post #77, because the follow-up matters more than the original answer.

Species differences: rodent studies show the same compounds produce effects in rodents that predict human effects reasonably well for semaglutide and tirzepatide. The track record is less clear for novel compounds with less human data.

8 likes 9mo
CL
c.lundgrenTL2 Moderator28 Oct 2025#80

Pharmacological class effects: all GLP-1 agonists slow gastric emptying and suppress appetite. Those are class effects, not unique to one compound. Effects that differ between compounds are usually about potency or receptor selectivity.

2 likes 9mo
FN
f.novakTL2 Moderator29 Oct 2025#81

This follows post #78 rather than contradicting it.

GIP receptor signalling: the glucose-dependent insulinotropic peptide receptor (GIP) is involved in glucose-stimulated insulin secretion. GIP agonism is thought to contribute to tirzepatide's effect but the mechanism is not fully settled.

0 likes 9mo
K
KTurkingtonTL3Regular31 Oct 2025#82

Practical note that does not fit anywhere else. Whatever you conclude from this topic, write down what you did and when. The single most useful thing in your own records is not any individual result; it is that they are dated and consecutive.

3 likes 9mo
SV
sa.vogelTL2 Moderator1 Nov 2025#83

Glucagon receptor agonism: glucagon receptor agonism increases energy expenditure and promotes hepatic fat oxidation. The mechanism is distinct from GLP-1 and GIP agonism and the clinical consequences are still being characterised.

16 likes 9mo
CD
cannula_driftTL3Regular2 Nov 2025#84
KTurkington, post #82: Practical note that does not fit anywhere else. Whatever you conclude from this topic, write down what you did and when. The single most useful thing in your own records is not any individual result; it is that they are dated and consecutive. Go to post

Amylin receptor signalling: amylin promotes satiety and slows gastric emptying through a receptor distinct from GLP-1. The hypothesis behind combination therapy is two complementary satiety mechanisms.

31 likes in reply to #82 9mo
AC
a.cardosoTL2 Moderator3 Nov 2025 · edited#85

Picking up post #82: that is the part I would want checked first.

I disagree with the reply above, and I think the disagreement is substantive rather than terminological.

The distinction being drawn does not survive when you look at the published data for this specific question. I would be glad to be shown wrong on this, because the version I am arguing against is more convenient.

1 like 9mo
BR
buffer_reviewTL3Regular4 Nov 2025#86

Coming back to post #84, because the follow-up matters more than the original answer.

Cross-reactivity and selectivity: the compounds are not perfectly selective for their target receptors. Semaglutide has some activity on other receptors; tirzepatide activates both GLP-1 and GIP with different affinities. The off-target effects are part of the overall pharmacology.

6 likes 9mo
MA
mi.amankwahTL2 Moderator5 Nov 2025#87
KLindqvist, post #57: Practical note that does not fit anywhere else. Whatever you conclude from this topic, write down what you did and when. The single most useful thing in your own records is not any individual result; it is that they are dated and consecutive. Go to post

Bias and desensitisation: receptors can be biased (preferentially activating some downstream pathways over others) and can desensitise over time (responding less to the same stimulus with repeated exposure). Both might affect long-term response to these compounds.

22 likes in reply to #57 9mo
L
LJankowiakTL3Regular6 Nov 2025#88
c.cardoso, post #77: GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways. Go to post

Central versus peripheral action: GLP-1 agonism works through both central nervous system effects (appetite) and peripheral effects (gastric motility, insulin). The balance is not fully characterised.

0 likes in reply to #77 9mo
KA
k.adeyemiTL2 Moderator7 Nov 2025#89
LJankowiak, post #88: Central versus peripheral action: GLP-1 agonism works through both central nervous system effects (appetite) and peripheral effects (gastric motility, insulin). The balance is not fully characterised. Go to post

Long-term receptor changes: very little is known about what happens to receptor expression, signalling, and downstream effects over years of exposure to these compounds. That is exactly the knowledge gap phase 3 trials exist to fill.

32 likes in reply to #88 9mo
AD
ambient_draftTL3Regular8 Nov 2025#90

GLP-1 receptor signalling: the GLP-1 receptor is expressed on beta cells (insulin secretion), on neurons (appetite and gastric motility), and on myocardium (contractility). Different tissues respond to the same signal in different ways.

0 likes 9mo