lessthanhalf said:
Hi, could you share a link showing where this information is from? Or who carried out the testing, and so on? I am fine with being wrong, but I would like to verify it so that I do not state things that are technically incorrect later on. My assumptions rest on reta behaving like other peptides when it comes to degradation while frozen, though different peptides can act in very different ways, and some are far more stable than others.Chili777 said:
Saw this posted elsewhere:woundcarping said:
Chili777 said:
Never put Reta in the freezer — freezing causes it to break down. Tirz, on the other hand, handles freezing without issue. Reta and Tirz are not the same. Only reconstitute an amount you'll go through within 90 days.Scraps said:
I really appreciate the thorough and helpful reply you gave!lessthanhalf said:
Sure, larger vials are an option — you can reconstitute them and then divide the contents among smaller empty vials, for example 5 mg each, and freeze those. As a rule, freezing already-reconstituted peptides leads to some degradation, so going through freeze-thaw cycles again and again is clearly not a good plan, though in practice losing 1 or even 5% to one freeze-thaw cycle will have essentially no real effect on dosing. The main upside of larger vials is the cost.
Going by rough estimation, it sounds like you're aiming to drop somewhere around 12-15%. In the studies, 1mg of reta produced 9% weight loss over a year on average, which is far more than any of the other GLP's manage at very low doses, which makes it more or less perfectly suited to your goal. How individuals react to GLP drugs — both side effects and weight loss — varies hugely, and the only way to learn how you'll react is to begin and observe what happens, but there's a solid chance you could achieve what you want with doses of 1 or 2 or perhaps 4 mg, which helps because side effects tend to be a much bigger problem at higher doses. Plenty of people on here with mild obesity or overweight, or who simply want to be thinner, have gotten good results from fairly low doses of reta. The scientific research really only covers people with more severe obesity.
Personally I've never reconstituted with less than 1ml, but the filler they include dissolves quite readily (I believe it's mannitol), so I doubt a smaller amount, like 0.5ml, would cause a problem, and the peptide itself is a microscopic quantity. Certain peptides or certain amounts per vial may be pickier about solubility, but GLP's are not.
Has anyone actually looked into this? It's odd to me that the peptide would break down while it's frozen — freeze/thaw mechanical stress seems like a more plausible explanation.
How much risk you're willing to take, how sterile you keep things, and plain luck all play into it. For GLP, I usually aim for about 10 weeks, and in that window I can pull 11 doses out of 1 vial (with the first dose given on day 0).Scraps said:
So keeping it refrigerated for 90 days ought to be alright?
Once Reta has been reconstituted and then frozen, it loses 14% +/- across 45 days. Keep the same reconstituted Reta in the fridge instead, and the loss is 3% - 5% over those 45 days. Stretch that refrigerated period to 90 days and degradation lands somewhere between 3% and 9%. So the takeaway is: never freeze Reta after reconstitution — the fridge is enough.
My own guess is that peptide bonds simply aren't sturdy enough to withstand freezing without shearing.
If that is accurate, then the fridge beats even a single freeze thaw cycle, since 14% is enough to shift doses somewhat.
A private forum hosted the original post. No published report was named by the OP, though the one below is the likely candidate; I had Gemini locate it:
Manla Kar (Cellular Regeneration), which focuses on stabilizing peptides, is the most direct origin of that particular "14%" number. In their data — frequently referenced both in peptide research forums and in marketing for premium formulations — the claim is stated outright: "Refrigeration at 4°C (39 F) extends stability by 10 months, but freezing (-20°C} causes 14% peptide aggregation—rendering them useless."
— Source: Manla Kar & Cellular Regeneration Stability Guidelines (2025/2026)
I then asked Gemini why potency would drop, and this is what it returned:
Because Retatrutide carries a C18 fatty acid side chain (acylation) that lets it attach to albumin in the blood and thereby achieve its long half-life, freezing affects it especially badly.
Micelle Formation: In solution, such acylated peptides have a tendency to assemble into "micelles" (tiny spheres).
Freezing Impact: Compared with simple, non-acylated peptides, freezing damages these fragile structures far more severely. As the water turns solid, peptide molecules are pushed together into whatever liquid pockets remain, raising concentration and producing irreversible "salting out" or aggregation.
Summary: Retatrutide already in liquid form belongs in the refrigerator (2°C - 8°C). A vial that has been frozen is not completely "ruined", but you should count on about a 14% loss of potency relative to a fresh vial.
The 10 months at 39 F came as a surprise. I would not put that to the test myself, but the reference was probably to a reconstituted, sterile cartridge.