Polyethylene-Polypropylene Glycol 407
Cat.No:S7071 Solarbio
CAS:9003-11-06
Appearance:White powder or particles
Storage:Store at RT,2 years
Purity:≥97.0%
Qty:
Size:
{{cart_num}}
My Cart>
Biochemical Reagents >
Other Biochemical Reagents >
Polyethylene-Polypropylene Glycol 407CAS:9003-11-06
Appearance:White powder or particles
Storage:Store at RT,2 years
Purity:≥97.0%
Qty:
Size:
Name | Polyethylene-polypropylene glycol 407 |
CAS | 9003-11-06 |
Storage | Store at RT,2 years |
Appearance | White powder or particles |
Purity | ≥97.0% |
Solubility | 100mg/mL in Water |
Unit | Bottle |
Specification | 100g |
Use: Scientific research reagent, widely used in molecular biology, pharmacology and other scientific research. Poloxamer 407 is a non-ionic surfactant with a special reverse thermal gelation effect, that is, it is liquid at low temperature and becomes gel at body temperature. It has low toxicity, little irritation, good biocompatibility, and is an ideal drug controlled release material. Poloxamer 407 has good effects as a pharmaceutical excipient, gene therapy, and inhibition of postoperative intestinal adhesion. Clinical use of low doses does not cause hyperlipidemia (FID).
Note:Product information may be optimized and upgraded. Please refer to the actual label information for accuracy.
Remark:These protocols are for reference only. Solarbio does not independently validate these methods.
Note:
1. The products are all for scientific research use only. Do not use it for medical, clinical diagnosis or treatment, food and cosmetics, etc. Do not store them in ordinary residential areas.
2. For your safety and health, please wear laboratory clothes, disposable gloves and masks.
3. The experimental results may be affected by many factors, after-sale service is limited to the product itself and does not involve other compensation.
Sorry, there is no more information.
Photodynamic Alginate Zn-MOF Thermosensitive Hydrogel for Accelerated Healing of Infected Wounds
Click to check >>Author:Wenshang Zhang, Bingjie Wang, Guangli Xiang, Tianze Jiang, Xia Zhao
IF:10.3830
Publish_to:ACS Applied Materials & Interfaces
PMID:37129874