4-arm Poly(ethylene glycol)
|
Number |
Mn |
|
06020700102 |
2000 |
|
06020700106 |
5000 |
|
06020700109 |
10000 |
|
06020700112 |
20000 |
|
06020700115 |
40000 |
|
Tel: +86-400-918-9898 Tel: +1-844-782-5734 |
|
4-arm Poly(ethylene glycol) (4-arm PEG-OH)is available with molecular weight 2K, 5K, 10K, 20K and 40K Da, other M.W. may be available by custom synthesis. The packaging sizes are available for 1g, 10g and 100g. Please contact us for bulk and GMP grade PEGs pricing and packaging size. MW 2000 Da, MW 5000 Da, MW 10000 Da, MW 20000 Da, MW 40000 Da are available.
SINOPEGis serving pharmaceutical and medical device companies around the globe, with product presence in various pharmaceutical/device development pipeline (pre-clinical, clinical, and post authorization large scale supply). Our facility is ISO9001 and ISO13485 certified, and is operating according to ICH Q7A guidelines to produce products for pharmaceutical companies.
Please contact us at sales@sinopeg.com for PEG derivatives. Our online catalog or inventory may not listed or have all molecular weights and functional groups, which may be available by custom synthesis. Please contact us at sales@sinopeg.com for quotation and availability.
Reference:
1. Zheng X, Guan S, Zhang C, et al. A Cut-and-Weld Process to 3D Architectures from Multiresponsive Crosslinked Liquid Crystalline Polymers. Small. 2019;15(16):e1900110. doi:10.1002/smll.201900110
2. Li D, Li L, Ma Y, et al. Dopamine-assisted fixation of drug-loaded polymeric multilayers to osteoarticular implants for tuberculosis therapy. Biomater Sci. 2017;5(4):730-740. doi:10.1039/c7bm00042a
3. Wang H, Cheng J, Sun F, et al. A Super Tough, Rapidly Biodegradable, Ultrafast Hemostatic Bioglue. Adv Mater. 2023;35(10):e2208622. doi:10.1002/adma.202208622
4. Pan Z , He G , Xian Y ,et al.Anisotropic Shape‐Memory Cryogel with Oriented Macroporous Channel for Hemorrhage Control and Tissue Generation[J].Advanced Functional Materials, 2025, 35(22).DOI:10.1002/adfm.202422957.
5. Ye J, Chen Y, Deng R, et al. Robust tetra-armed poly (ethylene glycol)-based hydrogel as tissue bioadhesive for the efficient repair of meniscus tears. MedComm. 2024; 5:e738. https://doi.org/10.1002/mco2.738
6. He G, Xian Y, Lin H, et al. An injectable and coagulation-independent Tetra-PEG hydrogel bioadhesive for post-extraction hemostasis and alveolar bone regeneration. Bioact Mater. 2024;37:106-118. Published 2024 Mar 19. doi:10.1016/j.bioactmat.2024.03.015
7. Rui Chen, Xiaojie Yu, et al. Facile synthesis of mechanically robust and injectable tetra-polyethylene glycol/methacrylate chitosan double-network hydrogel cartilage repair, Polymer Testing, Volume 133, 2024, 108410, ISSN 0142-9418, https://doi.org/10.1016/j.polymertesting.2024.108410.
8. Wei Zhang, Guoke Tang, et al. Fabrication of an injectable hydrogel scaffold embedding kartogenin-encapsulated PLGA microsphere with long-term drug release to promote chondrogenesis, Reactive and Functional Polymers, Volume 196, 2024, 105821, ISSN 1381-5148, https://doi.org/10.1016/j.reactfunctpolym.2023.105821.
9. Xue B, Xu Z, Li L, et al. Hydrogels with programmed spatiotemporal mechanical cues for stem cell-assisted bone regeneration. Nat Commun. 2025;16(1):3633. Published 2025 Apr 16. doi:10.1038/s41467-025-59016-6











