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ForumsPharmacology & MechanismsCan someone explain how this drug works like I am not a scientist — May 2025 Page 2

Can someone explain how this drug works like I am not a scientist — May 2025

mark_tokyo Thu, May 16, 2024 at 9:53 AM 7 replies 1,917 viewsPage 2 of 2
VendorMark
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May 16, 2024 at 10:34 PM#6
DanielChem_CHI said:
I want to add the drug interaction perspective on the pharmacology.

PK/PD modeling for the pharmacology: understanding the pharmacokinetics helps optimize dosing. Semaglutide:

  • Tmax: 24-72 hours post-injection
  • T½: ~168 hours (7 days) — enables weekly dosing
  • Steady state: reached at 4-5 weeks
  • Bioavailability (SubQ): ~89%
  • Volume of distribution: ~12.5L (primarily plasma)

The albumin binding (>99%) is the key pharmacological innovation — creating a sustained-release effect from a single injection. Previous GLP-1 agonists (exenatide) required BID dosing due to rapid clearance.

45 15DebRD_ATL, KristenIndy, MarkLI_maint and 42 others
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PeptideChemSF
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May 17, 2024 at 3:35 AM#7
mark_tokyo said:
Reading about receptor desensitisation and trying to work out which of the effects adapt over time and which do not, because people clearly experience…

Amycretin (AMY/GLP-1 dual agonist) emerging data relevant to the pharmacology: Phase 1 showed -13.1% body weight at only 12 weeks, the fastest trajectory ever seen for an anti-obesity agent[1].

Amylin receptor agonism enhances satiety signaling through the area postrema and reduces glucagon secretion. Combined with GLP-1R agonism, this dual mechanism may produce even greater efficacy than current agents.

Early-stage data — interpret with caution. But the trajectory is extraordinary.

References:
[1] Novo Nordisk investor presentation, September 2023.
Last edited: May 17, 2024 at 7:35 AM
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pete_nash
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May 17, 2024 at 8:36 AM#8
VendorMark said:
PK/PD modeling for the pharmacology: understanding the pharmacokinetics helps optimize dosing.

Semaglutide structural biology relevant to the pharmacology: semaglutide is a 31-amino acid peptide with 94% homology to native GLP-1(7-36). Three key modifications enable its pharmacokinetic profile:

  1. Aib8 substitution: DPP-4 resistance (prevents enzymatic degradation)
  2. Arg34 substitution: improved chemical stability
  3. C18 fatty diacid at Lys26: albumin binding → long half-life

These three modifications transform a peptide with a 2-minute half-life (native GLP-1) into one with a 168-hour half-life (semaglutide). A masterclass in peptide engineering.

Last edited: May 17, 2024 at 2:36 PM
43 13mike_mod, SarahChen_PharmD, sarah.morrison and 40 others
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kim_atl_prep
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May 17, 2024 at 1:37 PM#9

A narrower follow-up, since the general answer is now clear:

Was that from a primary source or from a summary of one?

Last edited: May 17, 2024 at 7:37 PM
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mark_tokyo
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May 18, 2024 at 1:44 PM#10

OP back with an update, since a thread like this is useless without one.

Closing this out: the trough rather than the peak explains the pattern I was seeing on day six, which I had been blaming on the vial.

22 20TrialNerd_Beth, HPLC_Greg, LibrarianMeg and 19 others
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