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The Super-Mushroom Blend: four fungi, one molecule

Shiitake, cordyceps, maitake and agaricus arrive on the label as four separate ingredients. In the scientific literature they are four sources of the same molecule — and the reason a human receptor was ever looking for it.

Published September 16, 2026 9-min read Editorial Team

TL;DR

  • Four mushrooms, one molecule. Shiitake, cordyceps, maitake and agaricus are listed separately on the 4Life Transfer Factor® Max label, but the reason all four are there is the same: the branched sugar in a fungal cell wall, beta-glucan.
  • There is a human receptor for it. Dectin-1, reported as a beta-glucan receptor by Brown and Gordon in Nature in 2001, is the protein that moved “mushrooms and immunity” out of folklore and into receptor biology — which is a fact about human cells, not a claim about a capsule.
  • Three of the four names on the label are out of date. Shiitake has been Lentinula edodes since 1976, “Cordyceps sinensis” is now Ophiocordyceps sinensis, and “Agaricus blazei” is properly Agaricus subrufescens. Supplement labels follow commerce; taxonomy has moved on.
  • The blend is not Cordyvant. Cordyvant™ is the branded complex in Transfer Factor Plus, a different product. 4Life's own term for the four fungi in Max is the Super-Mushroom Blend, and that is the term used here.
  • The amounts are not published, and the famous research is on isolates. Lentinan and maitake D-fraction are purified fractions studied at controlled doses, sometimes by injection. Saying so plainly is the point of the last two sections.*

The Super-Mushroom Blend is the name 4Life gives to the four fungal ingredients in 4Life Transfer Factor® Max: shiitake, Cordyceps sinensis, maitake fruiting body extract and Agaricus blazeii. They sit in the formula alongside IP-6, baker’s yeast, oats, zinc, vitamin C and vitamin D — the supporting cast around the 900 mg of 4Life Transfer Factor that gives the product its name.

Most ingredient pages treat a list like that as four separate facts to be recited one after another. It is more useful, and more accurate, to read it as one fact repeated four times. These four fungi are not four different ideas about immunity. They are four sources of the same class of molecule, and that molecule has a receptor waiting for it on the surface of human white blood cells.

One clarification before the science, because the names get mixed up constantly in this category. This blend is not Cordyvant™. Cordyvant is 4Life’s branded proprietary polysaccharide complex in Transfer Factor Plus Tri-Factor Formula — a different product, with a longer ingredient list that reaches well beyond mushrooms. 4Life’s published materials for Max call its four fungi the Super-Mushroom Blend. That is the company’s own term for this product, so it is the term used throughout this page.

What is actually in the blend

Here are the four, with the name that appears in product information set beside the name a mycologist would currently use. The gap between those two columns is not pedantry — it is the single most practical thing on this page for anyone trying to look these organisms up.

Common nameAs listedCurrent scientific nameMaterialShared molecule
ShiitakeShiitakeLentinula edodesFruiting bodyBranched beta-(1,3/1,6)-glucan
CordycepsCordyceps sinensisOphiocordyceps sinensisCultured mycelium, in commercePolysaccharides; also cordycepin, adenosine
MaitakeMaitake fruiting body extractGrifola frondosaFruiting bodyBranched beta-glucan
AgaricusAgaricus blazeiiAgaricus subrufescensFruiting bodyBeta-glucan-rich polysaccharides

One molecule, four sources

A beta-glucan is a chain of glucose units linked together in a particular way. In fungi the usual architecture is a backbone of beta-(1,3) links carrying side branches hung off beta-(1,6) links, which produces a branched rather than a straight molecule. It is structural material. A fungal cell wall uses beta-glucan roughly the way a plant uses cellulose — to hold its shape.

Two things follow, and they are the whole reason this molecule matters to immunology. Humans do not build beta-glucan, and humans cannot digest it. It passes through the body as something recognisably not-us and, more specifically, recognisably fungal. A molecule that is common in the microbial world, absent from human tissue and chemically stable is exactly the kind of marker an immune system can afford to build a permanent detector for — the same logic that governs the innate recognition described in our piece on modulation versus boosting.

A fungal cell wall is not a nutrient. It is a signature. The immune system never evolved to eat beta-glucan — it evolved to notice it.

The receptor that turned folklore into biology

For most of the twentieth century, the claim that mushrooms had something to do with immune function rested on tradition, on animal experiments and on isolated polysaccharide fractions that visibly did something in a dish. What was missing was the connection: a named human protein that binds this material and reports it.

That protein is Dectin-1. Brown and Gordon published it in Nature in 2001 under a title as plain as its finding, “A new receptor for beta-glucans.” They found it by screening a macrophage gene library with zymosan — a beta-glucan-rich preparation of baker’s yeast cell wall that immunologists had been using as a generic immune stimulant for decades without knowing what in it was being seen, or by what. Subsequent work established Dectin-1 as a pattern-recognition receptor that signals on its own rather than borrowing another receptor’s machinery, drives cytokine production, and is required for controlling fungal infection.

It sits chiefly on myeloid cells — macrophages, dendritic cells, neutrophils — and not on the lymphocytes described in our immune cells primer. That is a useful detail, because it locates every honest discussion of dietary beta-glucan in the innate, first-responder half of the immune system rather than the antibody-and-memory half.

What Dectin-1 does not do is make any product work. A receptor existing in human tissue is a fact about human beings. Whether a given quantity of a given mushroom extract in a capsule engages it meaningfully is a separate question, and one this article deliberately leaves open rather than answering with enthusiasm.*

The four, one at a time

Shiitake — Lentinula edodes

The most familiar mushroom on the list has the most confusing paper trail. Miles Joseph Berkeley described it in 1877 as Agaricus edodes, filing shiitake in the same genus as the common button mushroom; it was moved to Lentinus, and David Pegler placed it in Lentinula in 1976, where it has stayed. Older labels and older papers still say Lentinus edodes.

Shiitake is also the source of lentinan, a purified beta-(1,3)-glucan isolated and characterised in Japan from the 1960s onward, which was subsequently developed there as an injected pharmaceutical adjunct rather than a supplement ingredient. That distinction does a lot of work. A purified polysaccharide, given by injection, at a controlled dose, in a hospital, is not a culinary mushroom in a capsule, and the literature on the first does not transfer to the second. Anyone quoting lentinan studies at you about a supplement has skipped that step.

Cordyceps — Ophiocordyceps sinensis

The strangest organism in the formula is a parasite. In the wild, the fungus known in Chinese as dong chong xia cao — winter worm, summer grass — infects moth larvae on the Tibetan Plateau, consumes the caterpillar from inside, and in spring sends a slender fruiting body up through the soil. Molecular phylogenetics later showed the genus Cordyceps was not a single natural group, and this species was transferred to Ophiocordyceps.

Then the commercial reality, which reputable manufacturers do not hide and consumers are rarely told. Wild O. sinensis is among the most expensive biological commodities on earth. Practically all cordyceps material in supplements is instead fermented mycelium grown in tanks — most famously Cs-4, from a strain isolated in 1982 by the Institute of Chinese Materia Medica from samples collected in Yunnan and identified as Paecilomyces hepiali. Read “Cordyceps sinensis” on any label as a statement about fungal lineage and cultured material, not about a harvested caterpillar.

Maitake — Grifola frondosa

The one name on the list that has never moved. Maitake means dancing mushroom; in English-speaking woods it is hen of the woods, a ruffled bracket that grows in large clusters at the base of oaks. In 1984 Nanba and colleagues identified a polysaccharide fraction in both its mycelium and its fruiting body that strongly stimulated macrophages in the laboratory, which became known as the D-fraction and was later refined into the more purified MD-fraction; grifolan is another named beta-glucan from the same species.

The same caution applies as with lentinan, and for the same reason. D-fraction is a prepared laboratory fraction. Transfer Factor Max contains maitake as a fruiting body extract. Those are different preparations, and only one of them has a research literature attached to it.

Agaricus — Agaricus subrufescens

The youngest member of the group as a studied organism, and the one with the most tangled name. It was collected near the village of Piedade, in Sao Paulo state, Brazil, and sent to Japan in 1965 for study; in 1967 the Belgian botanist Paul Heinemann identified it as Agaricus blazei Murrill, a species originally described from Florida. That identification did not hold. The Brazilian mushroom is a different organism, and its oldest valid name is Agaricus subrufescens. For a period it also circulated as Agaricus brasiliensis. It is himematsutake in Japan and cogumelo do sol in Brazil.

This is not trivia. Three names across five decades of publication means anyone reading the agaricus literature has to establish, study by study, which organism was actually in the flask.

Why baker’s yeast and oats are on the same ingredient list

Two non-mushroom entries in Transfer Factor Max belong to this discussion, one of them squarely and one of them only by name.

Baker’s yeastSaccharomyces cerevisiae — has a cell wall built from the same branched beta-glucan as the mushrooms, and it is the historical source of zymosan, the very preparation that led to Dectin-1. In an ingredient list that already contains four fungi, yeast is not a departure from the theme. It is the theme, stated plainly.

Oats are the instructive exception. Oats contain beta-glucan too, but a structurally different molecule: the cereal form is largely linear, with beta-(1,4) links interrupted by beta-(1,3) links, rather than the branched beta-(1,3/1,6) architecture of fungi. Same family name, different shape, different research literature — the oat literature is largely about viscosity, digestion and cholesterol. Results from one should never be quoted about the other, and this page does not do so.

What this article does not claim

Five things, stated in the open rather than buried at the bottom in small type.

Which of this has the Transfer Factor Max research measured?

Almost none of it, and the honest version of that sentence is short. The three studies associated with the product — Yu 2024 on immune-related biomarkers, Gardner 2026 on stem cell mobilisation, Jensen 2026 on neutrophil activation — examined transfer factor and the finished formula’s designated endpoints. None of them is a study of the Super-Mushroom Blend. None isolates any mushroom’s contribution. If you want to know what the shiitake in Max did in a person taking Max, the accurate answer is that nobody has published it.

There is one coincidence worth naming precisely so that nobody else dresses it up. Jensen 2026 measured neutrophils — myeloid cells, which are among the cells that carry Dectin-1. That is a coincidence of subject matter. It is not evidence that a mushroom in the formula caused anything, and this page will not present it as such. Our plain-English guide to the three studies sets out what each one actually looked at.

So: four mushrooms, one molecule, one well-characterised human receptor, and a sizeable blank space where the dose data would be. The blank space is the most useful thing on this page. Ingredient lists are easy to admire and hard to interrogate, and a reader who leaves knowing which questions the label cannot answer is better equipped than one who leaves impressed.

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Frequently asked questions

What is in the Super-Mushroom Blend in 4Life Transfer Factor Max?
According to 4Life's published product information for Transfer Factor Max, the Super-Mushroom Blend contains four fungi: shiitake, Cordyceps sinensis, maitake fruiting body extract and Agaricus blazeii. They appear alongside IP-6 (inositol hexaphosphate), baker's yeast, oats, zinc, vitamin C and vitamin D in the same formula. 4Life does not publish the individual milligram amounts of the four mushrooms, so this page does not state them.
Is the Super-Mushroom Blend the same thing as Cordyvant?
No, and the distinction is worth keeping straight. Cordyvant is 4Life's branded proprietary polysaccharide complex in 4Life Transfer Factor Plus Tri-Factor Formula, a different product with a longer ingredient list that includes several non-fungal components. 4Life's own materials for Transfer Factor Max describe its four mushrooms as a Super-Mushroom Blend, and that is the term used throughout this article. Where the two products overlap in individual mushroom species, they are still separate formulations with separate labels.
What is a beta-glucan?
A beta-glucan is a chain of glucose sugar units joined by beta-type chemical links. In fungi and yeast the typical form has a backbone of beta-(1,3) links with side branches attached by beta-(1,6) links, which gives the molecule a branched shape. It is a structural material in the fungal cell wall rather than a nutrient: humans neither manufacture it nor digest it. That is precisely what makes it informative to the immune system, which reads it as a molecular signature of fungal material.
What is Dectin-1?
Dectin-1 is a receptor on the surface of human myeloid cells such as macrophages and neutrophils that binds beta-glucans. Brown and Gordon reported it as a beta-glucan receptor in Nature in 2001, having found it by screening a macrophage gene library with zymosan, the beta-glucan-rich extract of baker's yeast. Later work established it as a pattern-recognition receptor that can signal on its own and is required for controlling fungal infection. Its existence is a fact about human biology, not a claim about any supplement.
Is the cordyceps in supplements the real caterpillar fungus?
Almost never, and reputable manufacturers do not pretend otherwise. Wild Ophiocordyceps sinensis grows from moth larvae on the Tibetan Plateau and is among the most expensive biological commodities in the world. Nearly all commercial cordyceps material is instead fermented mycelium grown in tanks. The best-characterised example is Cs-4, derived from a strain isolated in 1982 by the Institute of Chinese Materia Medica from samples collected in Yunnan and identified as Paecilomyces hepiali. Buyers should read 'Cordyceps sinensis' on a label as a description of lineage and material, not of a harvested caterpillar.
Why is Agaricus blazei also called Agaricus subrufescens?
Because the original identification was wrong. The mushroom was collected near the village of Piedade in Sao Paulo state, Brazil, and sent to Japan in 1965 for study; in 1967 the Belgian botanist Paul Heinemann identified it as Agaricus blazei Murrill, a species first described from Florida. Later work showed the Brazilian mushroom is not that species, and that its oldest valid name is Agaricus subrufescens. The name Agaricus brasiliensis was also used for a time. The practical consequence is that published studies filed under three different names may or may not concern the same organism.
What is lentinan, and is it in Transfer Factor Max?
Lentinan is a purified beta-(1,3)-glucan isolated from shiitake, studied in Japan from the 1960s onward and developed there as an injected pharmaceutical adjunct. Transfer Factor Max contains shiitake as a food-form mushroom ingredient; it is not a lentinan product, and this article does not present the lentinan literature as evidence about it. A purified polysaccharide given by injection at a controlled dose is a different thing from a mushroom extract in a capsule, and the two should not be read as interchangeable.
What is maitake D-fraction?
D-fraction is a polysaccharide fraction identified in maitake, Grifola frondosa, by Nanba and colleagues in 1984 and later refined into a more purified version known as MD-fraction. Grifolan is another named beta-glucan from the same mushroom. As with lentinan, these are isolated fractions prepared and studied in the laboratory. Maitake is present in Transfer Factor Max as a fruiting body extract, which is not the same preparation as a purified fraction.
How much of each mushroom is in Transfer Factor Max?
4Life does not publish per-ingredient amounts for the mushrooms in the Super-Mushroom Blend, and this page will not estimate them. That matters more than it may appear: in mushroom research, effects reported in the literature are tied to specific preparations at specific doses, so without published amounts no one outside the company can compare this formula against a published study. Anyone reading the label should treat the absence of those numbers as a real limit on what can be concluded.
Is oat beta-glucan the same as mushroom beta-glucan?
No. They share a family name and differ in structure. Cereal beta-glucans from oats and barley are largely linear, with beta-(1,4) links interrupted by beta-(1,3) links. Fungal and yeast beta-glucans have a beta-(1,3) backbone with beta-(1,6) side branches, producing a branched molecule. The shapes differ, the research literatures differ, and results from one should not be quoted about the other. Transfer Factor Max contains both oats and fungal sources.
Why is baker's yeast in an immune supplement?
Baker's yeast, Saccharomyces cerevisiae, has a cell wall rich in the same branched beta-glucan found in mushrooms. It is also the historical source of zymosan, the yeast cell wall preparation used in the experiments that identified Dectin-1 as a beta-glucan receptor. In an ingredient list that already contains four fungi, yeast is not a departure from the theme; it is the theme.
Do the mushrooms in a dietary supplement treat or prevent illness?
No. Dietary supplements are not drugs, and nothing in this article should be read as saying that any mushroom, any beta-glucan or any product diagnoses, treats, cures or prevents any disease.* This page describes what the ingredients are, where their names come from and what the published science does and does not establish about the molecules involved. Anyone with a health concern, an autoimmune condition, a mushroom or mould allergy, or a prescription medication should speak with their own healthcare provider before starting any supplement.

Citations & sources

What this article is built on

The blend’s composition
4Life’s published product information for 4Life Transfer Factor® Max describes a Super-Mushroom Blend of shiitake, Cordyceps sinensis, maitake fruiting body extract and Agaricus blazeii, alongside IP-6, baker’s yeast, oats, zinc (90% of the daily value), vitamin C and vitamin D, with a serving of four vegetable capsules and 30 servings per container. Individual amounts within the blend are not published, and none are stated here.
Cordyvant belongs to a different product
Cordyvant™ is 4Life’s branded proprietary polysaccharide complex in 4Life Transfer Factor Plus Tri-Factor Formula, whose published ingredient list extends well beyond mushrooms. 4Life’s materials for Max use the term Super-Mushroom Blend. The two names are not interchangeable and this article keeps them apart.
Dectin-1
Brown, G. D. & Gordon, S., “A new receptor for beta-glucans,” Nature 413, 36–37 (2001) — identified by screening a murine macrophage cDNA expression library with zymosan, a beta-glucan-rich extract of Saccharomyces cerevisiae. Later work, including work published in Nature Immunology, established Dectin-1 as a signalling non-Toll-like pattern-recognition receptor expressed predominantly by myeloid cells and required for beta-glucan recognition and the control of fungal infection.
Beta-glucan structure
Fungal and yeast beta-glucans characteristically carry a beta-(1,3)-linked backbone with beta-(1,6)-linked side branches; cereal beta-glucans from oats and barley are largely linear, with beta-(1,4) links interrupted by beta-(1,3) links. The structural distinction is standard in the carbohydrate and nutrition literature.
Shiitake nomenclature and lentinan
Described by M. J. Berkeley in 1877 as Agaricus edodes and placed in the genus Lentinula by D. N. Pegler; taxonomic databases date the combination to 1976. Lentinan, a purified beta-(1,3)-glucan from Lentinula edodes, was isolated and studied in Japan by Chihara and colleagues as a host-defence potentiator and was developed there as an injected agent.
Cordyceps taxonomy and cultured material
Molecular analysis showed the genus Cordyceps to be non-monophyletic, and C. sinensis was transferred to Ophiocordyceps. Cs-4 is a standardised fermentation product derived from a mycelial strain isolated from wild material; the Institute of Chinese Materia Medica isolated strains in 1982 from samples collected in Diqing Tibetan Autonomous Prefecture, Yunnan, and the strain is identified as Paecilomyces hepiali. Reported constituents of O. sinensis material include polysaccharides, cordycepin, adenosine, cordycepic acid, nucleosides and ergosterol.
Maitake D-fraction
Nanba and colleagues reported in 1984 a polysaccharide fraction present in both mycelium and fruiting body of Grifola frondosa that strongly stimulated macrophage activity, subsequently known as D-fraction, with a more purified MD-fraction developed later. Grifolan is a separately characterised (1→3)-beta-D-glucan from the same species.
Agaricus naming history
The Brazilian medicinal mushroom was collected at Piedade, Sao Paulo state, sent to Japan in 1965, and identified in 1967 by P. Heinemann as Agaricus blazei Murrill, a species originally described from Florida. Review literature concludes the name Agaricus blazei should no longer be used for it and that the oldest valid name is Agaricus subrufescens; Agaricus brasiliensis has also been applied. Common names include himematsutake and cogumelo do sol.
The three Transfer Factor Max studies
Yu (2024), a feasibility trial examining immune-related biomarkers and cytokine changes, peer-reviewed in Current Issues in Molecular Biology; Jensen (2026), 4Life Research Clinical Report 058-010, neutrophil activation; Gardner (2026), 4Life Research, stem cell mobilisation. The latter two are company clinical reports rather than peer-reviewed publications, and their full methods are not publicly retrievable. Each is cited here only for what it measured — and none of the three measured the mushroom blend.
Deliberately absent
No milligram amounts for any mushroom in the blend, because none are published. No dose, effect size, sample size or p-value from any lentinan, D-fraction or cordyceps study, because none of that research was conducted on this product. No prices. No claim that any ingredient on this page affects any disease, symptom or laboratory value.

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*These statements have not been evaluated by the Food and Drug Administration. Transfer Factor Max and the other products mentioned are dietary supplements and are not intended to diagnose, treat, cure, or prevent any disease. Individual results vary. This article is general science and ingredient education compiled from published sources; it is not medical advice, it is not a description of what any product does in the body, and nothing in it should be taken as a claim that any ingredient affects any disease, symptom or laboratory value. Research on isolated mushroom polysaccharides is described here as history, not as evidence about any dietary supplement. Follow label directions; do not exceed the recommended daily amount. Consult your healthcare provider before beginning any new supplement program, particularly if you take medication, have an autoimmune condition, have a mushroom, mould, egg or dairy allergy, or are pregnant or nursing.