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Thiol-PEG-Mannose

Updated: 2026-07-15

Overview

Thiol-PEG-Mannose is a bifunctional reagent combining polyethylene glycol (PEG) with a thiol (-SH) group and mannose sugar moiety. The PEG spacer provides water solubility and reduces immunogenicity, while the thiol enables covalent conjugation to gold surfaces or maleimide-functionalized molecules. Mannose confers specific binding to lectins and immune cells expressing mannose receptors. This compound is particularly valuable in targeted drug delivery and biomaterial surface modification. Its synthesis typically involves coupling mannose to one end of PEG, followed by thiol functionalization at the other terminus. Commercial variants differ in PEG chain length (commonly 1k-10k Da), which affects hydrodynamic radius and conjugation efficiency.

Physical and Chemical Properties

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The compound exhibits typical PEG characteristics including high water solubility (≥50 mg/mL) and low toxicity. The thiol group provides nucleophilic reactivity for forming stable thioether bonds with maleimides or disulfide bonds with other thiols. However, thiols are prone to oxidation - solutions should contain EDTA (0.1-1 mM) and be degassed. The mannose moiety maintains its biological recognition properties despite PEGylation, with binding affinity to receptors like DC-SIGN. Thermal stability is limited by PEG decomposition (~200°C). NMR typically shows characteristic mannose proton peaks (3.5-4.5 ppm) and PEG methylene signal (3.6 ppm). FTIR confirms thiol presence (2550-2600 cm⁻¹ S-H stretch).

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Main Applications

In drug delivery, this reagent creates targeted nanoparticles by conjugating mannose to gold nanoparticles (via thiol-gold bonds) or liposomes (via maleimide chemistry). This directs payloads to antigen-presenting cells in immunotherapy applications. Bioconjugation uses include modifying proteins/antibodies at cysteine residues for lectin studies or vaccine development. The PEG spacer prevents steric hindrance during receptor binding. In diagnostics, it functionalizes biosensor surfaces for pathogen detection through mannose-lectin interactions. Emerging uses include creating immunomodulatory hydrogels and enhancing dendritic cell uptake in cancer vaccines. The compound's dual functionality makes it versatile for nanotechnology and glycobiology research.

Safety and Storage

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As a thiol compound, it requires careful handling under nitrogen/argon to prevent oxidation. Always use gloves and eye protection - thiols have unpleasant odors and can cause irritation. Work in a fume hood when handling powder forms. For long-term storage, aliquot under inert gas and freeze at -20°C with desiccant. Solutions should be prepared fresh or stored with oxygen scavengers. Discoloration (yellowing) indicates oxidation - such material may have reduced reactivity. Material Safety Data Sheets (MSDS) should be consulted for specific handling procedures based on molecular weight variants.

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B2B Procurement Guide

When sourcing Thiol-PEG-Mannose, clearly specify: 1) PEG molecular weight (e.g., 2k, 5k Da), 2) degree of functionalization (typically >90%), 3) purity level (HPLC or NMR verified), and 4) packaging format (lyophilized vs. solution). Reputable suppliers provide certificates of analysis with MALDI-TOF or LC-MS characterization. Bulk quantities (100g+) may require custom synthesis with lead times of 4-8 weeks. For research use, small pre-qualified aliquots (10-100mg) are advisable to test performance. Consider vendors offering analytical services (e.g., thiol titration) to verify reactivity. Pricing tiers typically decrease significantly at 10g+ quantities.

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