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Thiol-PEG12-acid

Updated: 2026-08-06

Overview

Thiol-PEG12-acid is a heterobifunctional polyethylene glycol (PEG) derivative designed for bioconjugation and material science applications. The 12-unit PEG spacer provides flexibility and hydrophilicity, while the terminal thiol (-SH) and carboxylic acid (-COOH) groups enable selective reactions with maleimides or amines, respectively. This compound bridges biomolecules, nanoparticles, or surfaces, enhancing solubility and reducing immunogenicity. Its versatility makes it a staple in pharmaceutical research, diagnostics, and nanotechnology. Developed to address challenges in controlled coupling, Thiol-PEG12-acid is synthesized under stringent conditions to ensure minimal diol or diacid impurities. Its molecular weight and polydispersity are critical for reproducible results in sensitive applications like antibody-drug conjugates (ADCs).

Physical and Chemical Properties

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Thiol-PEG12-acid exhibits typical PEG properties, including high water solubility and low toxicity. The thiol group is prone to oxidation, forming disulfides, so reducing agents like TCEP are often added during storage or reactions. The carboxylic acid group has a pKa of ~4.5, enabling activation via EDC/NHS for amide bond formation. The PEG spacer’s length (∼50 Å) optimizes steric flexibility without compromising stability. Thermogravimetric analysis (TGA) shows decomposition above 200°C. NMR and FTIR confirm structure (thiol peak at ~2.5 ppm, PEG backbone at ~3.6 ppm). Solubility in polar solvents like DMF or methanol facilitates organic-phase reactions, while aqueous solubility suits biological systems.

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Main Applications

In bioconjugation, Thiol-PEG12-acid links peptides, proteins, or dyes via thiol-maleimide click chemistry, widely used in ADC development. The carboxylic acid end allows further modification, e.g., attaching targeting ligands. In drug delivery, PEGylation reduces renal clearance and improves nanoparticle circulation time. Surface coating applications include functionalizing gold nanoparticles (thiol-gold bonds) or biosensors. The PEG layer resists non-specific binding, enhancing signal-to-noise ratios. In hydrogels, it serves as a crosslinker, balancing mechanical strength and biocompatibility. Emerging uses span CRISPR delivery systems and tissue engineering scaffolds.

Safety and Storage

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Thiol-PEG12-acid requires careful handling due to its reactive thiol group. Store under argon at -20°C, with desiccants to prevent moisture absorption. Solutions should be prepared fresh or frozen in aliquots to avoid oxidation. Use gloves and goggles; work in ventilated areas. Dispose of waste according to local regulations for organic compounds. Spills can be neutralized with dilute hydrogen peroxide (oxidizing thiols) followed by water rinsing. Stability studies indicate a shelf life of ≥12 months when properly stored, though periodic purity checks (e.g., Ellman’s assay for free thiols) are recommended.

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B2B Procurement Guide

Procure Thiol-PEG12-acid from suppliers specializing in PEG derivatives, ensuring certificates of analysis (CoA) detail purity (>95%), endotoxin levels (<0.1 EU/mg for biomedical use), and residual solvents. Bulk buyers should request custom synthesis to avoid batch variability. Key selection criteria include PEG length accuracy (confirmed by MALDI-TOF), low polydispersity (Đ <1.05), and absence of diol byproducts. Pricing scales with purity and volume; negotiate for GMP-grade if intended for clinical trials. Reliable suppliers often provide technical support for conjugation optimization.

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