Didemnin B vs SNX-482

Head-to-head comparison of Didemnin B (Didemnin B) and SNX-482 (SNX-482 peptide from Hysterocrates gigas venom) — benefits, dosing, side effects, research data, and where to buy.

Research Score

PropertyDidemnin BSNX-482
CategoryExperimentalExperimental
Full NameDidemnin BSNX-482 peptide from Hysterocrates gigas venom
Molecular Weight1112.4 Da4,300 Da
Half-LifeN/AMinutes to hours
Amino AcidsN/A41
Typical Dose0.05-2 mg/m2 IV in early trials0.01-1 nmol intrathecal|1-100 nM in vitro|single-dose electrophysiology studies
RouteIntravenousIntrathecal
Purity≥98%≥98%
Studies Count12085
Research StatusClinicalPre-clinical

Didemnin B Benefits

  • antineoplastic
  • antiviral
  • pro-apoptotic
  • immunomodulatory

SNX-482 Benefits

  • Cav2.3 blockade
  • synaptic transmission studies
  • excitability mapping
  • pain and epilepsy research

Didemnin B Dosing

historic IV phase I/II oncology regimens|dose escalation in early trials|no approved dosing regimen

SNX-482 Dosing

Patch-clamp Cav2.3 assays|Intrathecal neurophysiology studies|Acute channel-blockade experiments

Didemnin B Side Effects

  • nausea
  • vomiting
  • myelosuppression

SNX-482 Side Effects

  • Ataxia at high exposure
  • off-target calcium-channel block
  • cardiovascular effects in animal models

Research Overview

Didemnin B

Didemnin B showed strong cytotoxic and antiviral activity in early literature and became an important scaffold for later marine drug development. Its clinical progress was limited by toxicity, but it remains highly cited as a foundational marine depsipeptide.

SNX-482

SNX-482 has been used to dissect R-type calcium currents in neurons and endocrine cells, and to map the role of Cav2.3 in excitability. Its selectivity profile has made it a standard research reagent in channel pharmacology.

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Common Stacking Partners

Didemnin B stacks with:

cisplatindoxorubicingemcitabine

SNX-482 stacks with:

gabapentinbaclofenketamine
marine-derivedtunicatedepsipeptideantitumorspider-venomcalcium-channelcav2.3neurophysiology