Welcome Customer !

Membership

Help

Shenzhen Meiluo Technology Co., Ltd
Custom manufacturer

Main Products:

mechb2b>Products

Shenzhen Meiluo Technology Co., Ltd

  • E-mail

    sales@melopeg.com

  • Phone

    19821522967

  • Address

    Room 588, Building C, Minle Technology Park, Meiban Avenue, Minzhi Street, Longhua District, Shenzhen

Contact Now

MPEG5000-PLLA5000 mPEG-PLLA (left-handed)

NegotiableUpdate on 01/21
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin

Overview

$r $n Methoxypolyethylene glycol polylactic acid (mPEG PLA) is a block copolymer with a hydrophilic segment methoxypolyethylene glycol at one end and an oleophilic segment polylactic acid at the other end. By adjusting the molecular weight or hydrophilic/lipophilic segment ratio, methoxypolyethylene glycol polylactic acid can be used as a carrier material for different types of drugs, and improve the water solubility, encapsulation efficiency, and drug loading capacity of drugs. It can be made into drug loaded microspheres, microcapsules, vesicles, and micelles for achieving sustained and controlled release of drugs, and can also be used as a tissue engineering scaffold material with good hydrophilicity.

Product Details

MPEG5000-PLLA5000 mPEG-PLLA (left-handed)

product structure

Product Information

CAS Number: N/A
Appearance: Semi solid or solid, depending on molecular weight.
Solubility: CHCl3/DCM
Purity: 95%
PEG molecular weight: 5000

PLLA molecular weight: 5000
Storage time: One year
Reactive groups:

Modifying group:

Precautions

Avoid frequent thawing, use immediately and keep dry

Storage conditions

-Freeze and dry below 20 ℃. *Keep inert (argon or nitrogen) protection.

Methoxy polyethylene glycol polylactic acid (mPEG PLA) is a block copolymer consisting of a hydrophilic segment methoxy polyethylene glycol at one end and an oleophilic segment polylactic acid at the other end. By adjusting the molecular weight or hydrophilic/lipophilic segment ratio, methoxypolyethylene glycol polylactic acid can be used as a carrier material for different types of drugs, and improve the water solubility, encapsulation efficiency, and drug loading capacity of drugs. It can be made into drug loaded microspheres, microcapsules, vesicles, and micelles for achieving sustained and controlled release of drugs, and can also be used as a tissue engineering scaffold material with good hydrophilicity.