Hydroxyl PEG carboxylic acid, Mp 10000

Hydroxyl PEG carboxylic acid, Mp 10000 - Polysciences
Hydroxyl PEG carboxylic acid, Mp 10000 - Polysciences
Product Number:
26182

Size

Price

$741.60

Quantity

Bulk Request

Request a Bulk Quote 

Product Specifications

    No Technical Data Sheet

Molecular Weight
    ~10,000
Synonyms
    OH-PEG-COOH
Soluble In
    Water, chloroform, DCM, DMF, DMSO
Safety Data Sheet (SDS)
Handling
    Chemical safety goggles. Compatible chemical resistant gloves. NIOSH/MSHA approved respirator. Mechanical exhaust (fume hood). Avoid inhalation. Avoid contact with eyes, skin and clothing. Wash thoroughly after handling.
Storage
    Store at -20°C.
Related Documents

    No Related Documents

References

    No References

Product Description

Hydroxyl PEG carboxylic acid, Mp 10000 (OH-PEG-COOH) is a heterobifunctional polyethylene glycol derivative bearing a hydroxyl (-OH) terminus and a carboxylic acid (-COOH) terminus. The chemically distinct end groups support conjugation and multistep functionalization strategies in which each terminus can be addressed independently.

Synonym: OH-PEG-COOH.

The terminal carboxylic acid can be activated using carbodiimide chemistry, including EDC/NHS coupling, for amide bond formation with suitable primary amines. The hydroxyl terminus can be retained or derivatized separately using chemistry appropriate for the intended synthetic sequence.

Peak molecular weight (Mp) is approximately 10,000 Da. For applications requiring a shorter PEG chain, compare Hydroxyl PEG carboxylic acid, Mp 3000 and Hydroxyl PEG carboxylic acid, Mp 5000. Additional functional PEG materials are available through Polysciences' PEG hydrogels and PEGylation solutions.

Key Properties

  • Heterobifunctional polyethylene glycol derivative
  • Hydroxyl (-OH) functionality at one terminus
  • Carboxylic acid (-COOH) functionality at the opposite terminus
  • Peak molecular weight (Mp): approximately 10,000 Da
  • Carboxyl functionality supports carbodiimide-mediated amide coupling with suitable primary amines
  • Soluble in water, chloroform, DCM, DMF, and DMSO
  • Appearance: white to slightly colored powder or wax

Applications

Amide Coupling & Conjugation

The carboxylic acid terminus can be activated for reaction with suitable primary amines to form amide linkages. EDC/NHS chemistry is commonly used for this type of carboxyl-to-amine coupling.

Sequential End-Group Functionalization

The hydroxyl and carboxylic acid termini provide chemically distinct sites for multistep synthesis. One terminus can be modified while the other is retained for a subsequent reaction, provided the selected reaction conditions are compatible with both functionalities.

Surface Functionalization

OH-PEG-COOH can be used in surface-conjugation workflows where the terminal carboxyl group is coupled to an accessible primary amine. The hydroxyl terminus can remain unmodified or be derivatized separately according to the intended surface chemistry.

PEG Spacer Introduction

The PEG chain can provide a hydrophilic spacer between conjugated components or between a surface and a terminal functional group. Shorter-chain alternatives include OH-PEG-COOH, Mp 3000 and OH-PEG-COOH, Mp 5000.

Compatibility & Bonding Considerations

  • The carboxylic acid terminus can be activated for reaction with suitable primary amines
  • EDC/NHS coupling may be used when appropriate for the conjugation system
  • The hydroxyl terminus can be retained or derivatized independently using compatible chemistry
  • Soluble in water, chloroform, dichloromethane (DCM), dimethylformamide (DMF), and dimethyl sulfoxide (DMSO)

Amide-coupling efficiency depends on pH, reagent concentration, activation conditions, solvent composition, stoichiometry, reaction time, and accessibility of the reacting groups. Coupling and subsequent derivatization conditions should be selected for compatibility with all components of the reaction system.

Application Tips

  • Select a solvent system that maintains solubility of the PEG derivative and the intended reaction partners
  • Control pH, stoichiometry, and activation time during carbodiimide-mediated coupling
  • Minimize unnecessary delay between carboxyl activation and reaction with the intended amine when using activated intermediates
  • Avoid primary-amine-containing buffers during amine-coupling steps because they can compete with the intended reaction partner
  • Verify coupling and subsequent derivatization using analytical methods appropriate for the specific reaction system

Handling & Storage

  • Store at -20°C
  • Keep the container tightly closed when not in use
  • Store in a cool, well-ventilated location
  • Use appropriate laboratory ventilation during handling
  • Wear protective gloves, safety glasses, and suitable protective clothing

Why Choose Polysciences?

Research laboratories icon
Trusted by 6,000+ Researchers Worldwide
Peer reviewed studies icon
Cited in Thousands of Peer-Reviewed Studies
Made in USA icon
U.S. Manufacturing & Global Distribution
Global delivery icon
Reliable Delivery to 40+ Countries

FAQ

Click a question to expand.

1. What is Hydroxyl PEG carboxylic acid used for?

Hydroxyl PEG carboxylic acid is used in conjugation, surface-functionalization, and multistep PEG derivatization workflows. The carboxylic acid terminus can be activated for amide coupling with suitable primary amines, while the hydroxyl terminus provides a chemically distinct site for subsequent modification.

2. What functional groups are present on OH-PEG-COOH?

OH-PEG-COOH contains a hydroxyl (-OH) group at one terminus and a carboxylic acid (-COOH) group at the other. This heterobifunctional architecture allows the two ends of the PEG chain to participate in different reaction steps.

3. How can the carboxylic acid terminus be coupled to an amine?

The carboxyl group can be activated using carbodiimide chemistry such as EDC/NHS and then reacted with a suitable primary amine to form an amide bond. pH, stoichiometry, activation time, and buffer composition should be selected for the specific conjugation partners.

4. What does Mp 10000 mean?

Mp refers to the peak molecular weight of the polymer molecular-weight distribution. For this grade, Mp is approximately 10,000 Da. Shorter-chain grades include Mp 3000 and Mp 5000.

5. What solvents dissolve Hydroxyl PEG carboxylic acid, Mp 10000?

Hydroxyl PEG carboxylic acid, Mp 10000 is soluble in water, chloroform, dichloromethane (DCM), dimethylformamide (DMF), and dimethyl sulfoxide (DMSO). For larger quantities, request a bulk quote.

Safety & Documentation

Store Hydroxyl PEG carboxylic acid, Mp 10000 at -20°C and use appropriate laboratory ventilation, protective gloves, eye protection, and suitable protective clothing during handling. See the Safety Data Sheet (SDS) for complete handling, storage, and safety information. Related functional PEG materials are available through Polysciences' PEG hydrogels and PEGylation solutions.

Hydroxyl PEG carboxylic acid, Mp 10000 - Polysciences
Hydroxyl PEG carboxylic acid, Mp 10000 - Polysciences
Product Specifications

    No Technical Data Sheet

Molecular Weight
    ~10,000
Synonyms
    OH-PEG-COOH
Soluble In
    Water, chloroform, DCM, DMF, DMSO
Safety Data Sheet (SDS)
Handling
    Chemical safety goggles. Compatible chemical resistant gloves. NIOSH/MSHA approved respirator. Mechanical exhaust (fume hood). Avoid inhalation. Avoid contact with eyes, skin and clothing. Wash thoroughly after handling.
Storage
    Store at -20°C.
Related Documents

    No Related Documents

References

    No References