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Pharmacology · Receptor biology

About the Receptor biology category

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owen.bradyTL4 Moderator5 Jun 2026#1
Community wiki post. Any member at trust level 3 or above can edit this post; every edit is recorded. Last edited by owen.brady on 6 Jun 2026.
  • 6 Jun 2026 — owen.brady: Initial wiki conversion.
Editors: owen.brady, mira.patel, hana.sato
Staff post. Actions described here are recorded in the public moderation log and may be challenged in Meta.

GLP-1, GIP, glucagon and amylin receptor signalling, bias, desensitisation and central versus peripheral action.

This post is a community wiki: any member at trust level 3 or above can edit it, and every edit is recorded with its author and a note. If the scope described here has drifted from what actually gets posted, edit it rather than starting a topic about it.

What belongs here

  • Questions specific to receptor biology, with the units and the context stated.
  • Reports and datasets, with the collection method stated.
  • Disagreement about the substance, conducted in public.

What belongs elsewhere

  • Anything urgent belongs in Safety, immediately, and not here.
  • Anything about how this site works belongs in Meta.
  • Requests for a maintained page belong in Wiki requests.

Before posting, it is worth checking the documentation commons and this category's tag pages. A great deal of what gets asked here has a maintained answer with a review date on it, which is more reliable than a two-year-old reply.

16 likes 2mo
DO
dr_okonkwoTL4 Moderator11 Jun 2026#2
Staff post. Actions described here are recorded in the public moderation log and may be challenged in Meta.

Moderation notes for this category, so that nothing about how it is run is a surprise.

Topics get moved into and out of here regularly. A move is not a judgement — the category tree is not obvious from outside and putting a question in the wrong place is expected. When I move something I say so in the topic and the action appears in the public log with the guideline cited.

The two guidelines that come up most often in this category are R2, on supplying a source when asked, and R7, on category placement. Neither is used punitively.

2 likes 2mo
SO
s.okonkwoTL2 Moderator15 Jun 2026#3

As a member rather than staff: the most useful thing I did when I started reading this category was to work through the tag pages rather than the topic list. The topic list shows you what is recent. The tags show you what is settled.

0 likes 1mo
I
IsaksenTL3Regular18 Jun 2026#4

Suggestion for the wiki post above: it would be worth linking the two or three most-referenced topics in this category directly, since new members reliably ask for exactly those. Happy to make the edit myself if nobody objects, with a revision note.

20 likes 1mo
KP
k.pereiraTL2 Moderator21 Jun 2026#5

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.

5 likes 1mo
MM
maintenance_modeTL3Regular24 Jun 2026#6

post #5 is right about the mechanism and I think understates the practical bit.

Thank you for the correction. I have edited my earlier post with a note rather than silently, so the thread still makes sense to read. The error was mine and it was the kind that comes from remembering a figure instead of looking it up.

0 likes 1mo
HB
h.brandtTL2 Moderator27 Jun 2026#7

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.

28 likes 1mo
RV
r.venkatesanTL3Wiki editor30 Jun 2026#8
Isaksen, post #4: Suggestion for the wiki post above: it would be worth linking the two or three most-referenced topics in this category directly, since new members reliably ask for exactly those. Happy to make the edit myself if nobody objects, with a revision note. 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.

14 likes in reply to #4 28d
CT
c.tullochTL2 Moderator2 Jul 2026#9

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.

2 likes 26d
K
KLindqvistTL4 Moderator5 Jul 2026#10

post #9 answers the question as asked. The question underneath it is different.

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.

0 likes 23d
FK
f.kimaniTL2 Moderator7 Jul 2026#11

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.

29 likes 20d

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