
NMN vs NR vs NAD+
Last updated:
NAD+ (nicotinamide adenine dinucleotide) is the coenzyme itself, while NMN (nicotinamide mononucleotide) and NR (nicotinamide riboside) are smaller vitamin B3 precursors that cells convert into it3. In the first head-to-head human trial, 14 days of NR or NMN roughly doubled whole-blood NAD+ compared with placebo, with similar results for both1. Outside cells, NAD+ itself is broken down into these smaller precursors2.

What are NAD+, NMN and NR?
Nicotinamide adenine dinucleotide (NAD+) is a pyridine nucleotide built from two nucleosides joined by a pyrophosphate group3. It is a redox cofactor in many metabolic reactions and a substrate for signaling enzymes, and its levels fall with aging and with overnutrition3. The body makes NAD+ from the amino acid tryptophan and from vitamin B3 forms, niacin and nicotinamide3.
Nicotinamide riboside (NR) is a pyridine nucleoside: nicotinamide bonded to a ribose sugar3. Nicotinamide mononucleotide (NMN) is a nucleotide: an NR molecule with a phosphate group attached3. Both occur naturally in small amounts in vegetables, meat and milk3. In other words, NR is one step from NMN, and NMN is one step from NAD+2,3.
| Compound | Chemical class | Route to cellular NAD+ | Key human finding |
|---|---|---|---|
| NAD+ | Dinucleotide (two nucleosides joined by pyrophosphate)3 | Broken down outside cells into nicotinamide, NR and NMN, which cells then import2 | During an intravenous infusion, plasma NAD+ did not rise for the first 2 hours7 |
| NMN | Nucleotide (NR plus phosphate)3 | Converted to NAD+ by NMNAT; may first be converted to NR outside the cell2 | Raised whole-blood NAD+ about twofold over 14 days versus placebo1 |
| NR | Nucleoside (nicotinamide plus ribose)3 | Enters cells through nucleoside transporters, then NRK and NMNAT enzymes2 | Raised whole-blood NAD+ about twofold over 14 days versus placebo1 |
How does each one become NAD+ in the body?
Cells recycle NAD+ mainly through the salvage pathway, in which nicotinamide, NMN and NR are the main starting materials3. NR enters cells through equilibrative nucleoside transporters and is converted to NAD+ by the enzymes NR kinase (NRK) and NMN adenylyltransferase (NMNAT)2. For NMN, the route into cells is debated: some studies show it must first be converted to NR outside the cell, while others support direct uptake2. A dedicated NMN transporter, encoded by the gene Slc12a8, has been proposed3.
The gut adds a second route. Gut bacteria can convert NMN into nicotinic acid mononucleotide, which then feeds the Preiss-Handler pathway to NAD+3. A 2026 human trial with laboratory fermentation work concluded that NR and NMN are not absorbed directly into the circulation in large amounts but are slowly converted by gut microbes into nicotinic acid, a potent NAD+ precursor in whole blood1. The same authors note that polar, charged nucleotides and nucleosides like NR and NMN are poorly absorbed when swallowed1.
What happens to NAD+ itself outside cells?
Extracellular NAD+ is a substrate for enzymes on the outer surface of cells, including CD73, nucleotide pyrophosphatase/phosphodiesterase 1, CD38 and CD1572. By breaking NAD+ down, these enzymes control how much remains outside cells, and they release nicotinamide, NR and NMN, which cells can import to rebuild NAD+ inside2.
A 2019 pilot study in 11 healthy men measured what happens during a 6-hour intravenous infusion of NAD+7. Plasma NAD+ and its metabolites did not change for the first 2 hours, meaning infused NAD+ was rapidly and completely removed from plasma, and the metabolite pattern matched breakdown by NAD+ glycohydrolase and pyrophosphatase enzymes7. Urine later contained NAD+ itself and methylnicotinamide7. The study was funded in part by an NAD+ research company, and one author directs a clinic that offers intravenous NAD+7.
How do NMN and NR compare in human studies?
Before 2026, no trial had compared them directly1. The first head-to-head trial, published in 2026, compared NR, NMN, nicotinamide and placebo for 14 days in 65 healthy adults, using a randomized, open-label design1. NR and NMN each raised baseline whole-blood NAD+ about twofold compared with placebo, by 49.4 and 43.1 micromoles per liter respectively, while nicotinamide did not1. All three were well tolerated, and the trial's researchers were employed by a food and nutrition company1.
Earlier trials studied one precursor at a time. The first human pharmacokinetic trial of NR found that single servings produced increases in the blood NAD+ metabolome that grew with the amount given, and identified nicotinic acid adenine dinucleotide (NAAD) as a sensitive marker of NAD+ repletion4. A 2 by 6-week randomized crossover trial in healthy middle-aged and older adults found NR well tolerated and raised NAD+ in blood mononuclear cells by about 60% versus placebo5. For NMN, a single-arm study in 10 healthy Japanese men found that single servings caused no significant clinical symptoms or changes in heart rate, blood pressure, oxygen saturation or body temperature, while NMN metabolites in plasma rose with the amount given6.
| Study | Compound | Design and size | Main NAD+ finding | Funding |
|---|---|---|---|---|
| Christen et al., 20261 | NR, NMN, nicotinamide | Randomized, open-label, placebo-controlled; 65 adults; 14 days | NR and NMN about twofold rise in whole-blood NAD+; nicotinamide no sustained change | Industry (Nestlé Research employees) |
| Martens et al., 20185 | NR | Randomized, double-blind crossover; 2 by 6 weeks | About 60% rise in mononuclear cell NAD+ | NIH grants; product and partial funding from NR supplier |
| Trammell et al., 20164 | NR | First human pharmacokinetic trial; single servings | Blood NAD+ metabolome rose with amount given | Industry (NR supplier sponsored) |
| Irie et al., 20206 | NMN | Single-arm; 10 healthy men; single servings | NMN metabolites in plasma rose; no significant clinical changes | Not determined |
| Grant et al., 20197 | NAD+ | Pilot; 11 healthy men; 6-hour intravenous infusion | No plasma NAD+ change for first 2 hours | Industry (NAD+ research company) |
Which is better, NMN or NAD+?
On the research so far, the precursors have the stronger evidence for raising NAD+ measured in blood. Controlled trials show NR and NMN raise blood NAD+1,5, while NAD+ outside cells is broken down into precursors before cells use it2, and infused NAD+ was cleared from plasma within the first 2 hours7. Between NR and NMN, the one direct comparison found no meaningful difference in the rise in whole-blood NAD+1.
A higher NAD+ reading is not the same as a proven health effect1,5. The head-to-head trial raised NAD+ above normal values in healthy people, and its authors state that the consequences of restoring NAD+ in people with disease still need study1. The NR crossover trial reported only initial insight into physiological function and called for further trials on blood pressure and arterial stiffness5. A 2023 review adds that the effects of long-term and high-intake use remain to be determined3.
Key takeaways
- NAD+ is the coenzyme; NR is converted to NMN, and NMN to NAD+, mainly through the salvage pathway.
- The first head-to-head human trial found NR and NMN raised whole-blood NAD+ about twofold over 14 days, with no meaningful difference between them.
- NAD+ outside cells is broken down by surface enzymes into nicotinamide, NR and NMN before cells absorb it.
- Gut microbes appear to convert much of swallowed NR and NMN into nicotinic acid, which then raises NAD+.
- Human trials so far measure NAD+ levels and short-term tolerability, not long-term health outcomes.
References
- The differential impact of three different NAD+ boosters on circulatory NAD and microbial metabolism in humans
- Enzymology of extracellular NAD metabolism
- NAD+ Precursors Nicotinamide Mononucleotide (NMN) and Nicotinamide Riboside (NR): Potential Dietary Contribution to Health
- Nicotinamide riboside is uniquely and orally bioavailable in mice and humans
- Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD+ in healthy middle-aged and older adults
- Effect of oral administration of nicotinamide mononucleotide on clinical parameters and nicotinamide metabolite levels in healthy Japanese men
- A Pilot Study Investigating Changes in the Human Plasma and Urine NAD+ Metabolome During a 6 Hour Intravenous Infusion of NAD+
- GRAS Notice No. 635: Nicotinamide riboside chloride
Frequently asked questions
Is NR a form of vitamin B3?
Yes. Researchers describe NR as an NAD+ precursor vitamin4, and the FDA GRAS notice for nicotinamide riboside chloride lists its intended use as a source of vitamin B3 in foods such as beverages, protein shakes and nutrition bars8. FDA closed that notice in 2016 with a letter stating it had no questions8.
What does nicotinamide do compared with NMN and NR?
Why do NAD+ studies measure NAAD?
Do NMN and NR work through the gut microbiome?
Partly, according to recent work. In laboratory fermentation with human gut microbes, NR and NMN were converted to nicotinic acid, and nicotinic acid raised NAD+ in whole blood while NMN, NR and nicotinamide added directly did not1. Rodent studies also show gut bacteria deamidating NMN before it enters the Preiss-Handler pathway3.

