Human Exogenous Binders

A “binder” is not automatically a general detoxifier. Some are highly specific medical antidotes, while others act mainly inside the gastrointestinal tract.

#BinderWhat It Binds / RemovesMain Evidence/Use
1Activated charcoalMany drugs, organic poisons, plant toxinsAcute GI poisoning
2AST-120 (spherical carbon)Indoxyl sulfate precursors, other uremic toxinsHuman clinical studies
3Prussian blueCesium, thalliumEstablished antidote
4CholestyramineBile acids; interrupts enterohepatic recycling of some compoundsEstablished human drug
5ColesevelamBile acidsEstablished human drug
6ColestipolBile acidsEstablished human drug
7Calcium disodium EDTALead and some other divalent metalsEstablished chelation therapy
8Succimer (DMSA)Lead, arsenic, mercuryHuman chelation
9Dimercaprol (BAL)Arsenic, mercury, gold; selected lead poisoningHuman antidote
10PenicillamineCopper; also some metalsWilson disease / selected metal poisoning
11TrientineCopperWilson disease
12DeferoxamineIron; also aluminumEstablished chelator
13DeferasiroxIronEstablished iron chelator
14DeferiproneIronEstablished iron chelator
15DTPA (Ca/Zn-DTPA)Plutonium, americium, curiumRadionuclide contamination
16Sodium thiosulfateCyanide; some sulfur-reactive toxicantsSpecific antidotal use
17HydroxocobalaminCyanideConverts cyanide to cyanocobalamin
18Digoxin immune FabDigoxin/digitalisHighly specific antidote
19Calcium montmorillonite / NovaSilEspecially aflatoxin B1Human mycotoxin studies
20Diosmectite (smectite clay)GI toxins/irritants; microbial productsHuman GI evidence
21Enterosgel / polymethylsiloxane polyhydrateVarious intestinal toxic compoundsHuman enterosorbent evidence
22Zeolite / clinoptilolitePrimarily cations through adsorption/ion exchange; proposed metal bindingLimited human toxicant evidence
23Bentonite clayStrongest evidence for adsorption of some mycotoxins, especially aflatoxinMostly experimental; some human food studies
24ChlorellaProposed binding of some metals/toxicantsLimited human evidence
25Modified citrus pectinProposed binding/excretion of some metalsLimited human studies
26AlginateCan bind certain metals/cations in GI tractExperimental/human nutritional evidence
27PectinCan interact with some metals and bile-related compoundsLimited human evidence
28ChitosanLipids, bile acids and some metal ionsHuman nutritional/experimental evidence
29Saccharomyces-derived cell-wall bindersSome mycotoxins, including aflatoxin/zearalenoneHuman/animal evidence varies
30Probiotic/yeast-cell-wall preparationsSelected mycotoxins through adsorptionPrimarily food/mycotoxin research

The Most Important Distinction

There are really three different classes here:

A. GI Adsorbents/Sequestrants

Activated charcoal, AST-120, cholestyramine, colesevelam, colestipol, montmorillonite, diosmectite, Enterosgel, etc. These primarily work inside the intestine rather than pulling toxins directly out of tissues. Activated charcoal, for example, can adsorb many drugs and organic poisons but does not reliably bind metals such as iron or lithium.

B. Specific Chelators

EDTA, DMSA, dimercaprol, deferoxamine, deferasirox, deferiprone, penicillamine and trientine. These are systemically active medicines and should not be treated as general-purpose detox supplements.

C. Highly Specific Antidotal Binders/Scavengers

Prussian blue, DTPA and digoxin immune Fab are particularly important because their targets are highly specific. Prussian blue, for example, is used for thallium and radioactive cesium rather than as a general toxin binder.

Particularly Strong Human-Evidence Group

If the goal is to identify the most defensible human binders, I would put these near the top:

  • Activated charcoal — selected acute ingestions
  • Prussian blue — thallium/cesium
  • Calcium disodium EDTA — lead
  • Succimer/DMSA — lead and selected metals
  • Deferoxamine — iron
  • DTPA — plutonium/americium/curium
  • Digoxin immune Fab — digoxin
  • Cholestyramine — bile acids/enterohepatic interruption
  • AST-120 — uremic toxin precursors
  • Calcium montmorillonite/NovaSil — aflatoxin-related binding evidence

The evidence is not equivalent across these 10: some are established antidotes for specific poisonings, whereas others are intestinal sorbents with narrower evidence.

Cholestyramine deserves special attention because it is a genuine human intestinal sequestrant. It binds bile acids in the intestinal lumen and prevents their reabsorption; bile-acid sequestrants can also interfere with absorption of numerous medications.

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