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Auristatin

Updated: 2026-08-04

Overview

Auristatin is a class of synthetic peptides derived from dolastatin 10, a natural compound isolated from sea hare. Developed as potent cytotoxic agents, auristatins (particularly MMAE and MMAF) are key payloads in antibody-drug conjugates (ADCs) for targeted cancer therapy. Their mechanism involves binding to tubulin to disrupt microtubule dynamics, effectively blocking cell division. In the biopharmaceutical industry, auristatins are conjugated to monoclonal antibodies via specialized linkers, enabling precise delivery to cancer cells while minimizing systemic toxicity. Over 20 ADC candidates using auristatin payloads are in clinical trials, with approved drugs including brentuximab vedotin and polatuzumab vedotin.

Physical and Chemical Properties

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Auristatins typically appear as crystalline powders with limited water solubility but good organic solvent compatibility. The compounds exhibit high stability when stored lyophilized at low temperatures, though solutions degrade rapidly under light or oxidative conditions. Key structural features include a peptide backbone with N-methylated amino acids and a hydrophobic tail. The monomethyl auristatin E (MMAE) variant contains a carboxyl group for linker conjugation, while MMAF incorporates a phenylalanine residue for enhanced plasma stability. Their molecular weights (~700-800 g/mol) are optimized for ADC payload efficiency.

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Main Applications

The primary use of auristatins is in ADC therapeutics for hematological malignancies and solid tumors. Brentuximab vedotin (Adcetris®), targeting CD30-positive lymphomas, was the first FDA-approved auristatin-based ADC in 2011. Beyond clinical applications, auristatins serve as research tools for studying microtubule dynamics and targeted drug delivery mechanisms. Some derivatives are explored for antimicrobial applications due to their potent cell-killing properties. Industrial-scale production requires specialized facilities for peptide synthesis and conjugation under GMP conditions.

Safety and Storage

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Auristatins require Biosafety Level 2 handling due to extreme cytotoxicity (IC50 values in picomolar range). Powder forms should be stored at -20°C in sealed containers with desiccants, while solutions must be prepared immediately before use. Personnel must wear nitrile gloves, respirators, and protective clothing when handling. Decontamination requires 10% bleach solutions for surfaces. Spill protocols mandate immediate containment with absorbent materials and HEPA-filtered ventilation. Shipping follows IATA dangerous goods regulations for toxic substances.

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B2B Procurement Guide

When sourcing auristatins, verify the supplier's GMP compliance and analytical documentation (HPLC purity ≥98% for clinical use). Key specifications include endotoxin levels (<5 EU/mg), residual solvent content, and stability data (lyophilized form typically has 24-month shelf life). Bulk orders (100mg+) commonly require 8-12 week lead times due to complex synthesis. Consider conjugation-ready variants with maleimide or NHS ester groups for ADC development. Pricing tiers depend on quantity (research-grade: $500-$2,000/g; GMP-grade: $5,000-$15,000/g). Audit suppliers for peptide synthesis expertise and regulatory filing support capabilities.

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