Product Name :
3-Acrylamidophenylboronic acid (CAS 99349-68-5)

Synonym :
3-Acrylamidophenylboronic acid is also known as Phenylboronate acrylamide.

Application :
3-Acrylamidophenylboronic acid is a glucose sensitive boronic acid used for polymer solutions, gels, drug delivery systems, sensors, actuator systems, and bioreactors.

CAS:
99349-68-5

Purity:
≥98%

Molecular Weight:
190.99

Formula :
C9H10BNO3

Physical state:
Solid

solubility :

Shipping Condition :
Store at 4° C

Melting point:
148° C

SMILES:
B(C1=CC(=CC=C1)NC(=O)C=C)(O)O

References:
:Totally synthetic polymer with lectin-like function: induction of killer cells by the copolymer of 3-acrylamidophenylboronic acid with N,N-dimethylacrylamide. | Uchimura, E., et al. 2001. Biotechnol Bioeng. 72: 307-14. PMID: 11135200Glucose-sensitive holographic sensors for monitoring bacterial growth. | Lee, MC., et al. 2004. Anal Chem. 76: 5748-55. PMID: 15456294Dynamic-covalent macromolecular stars with boronic ester linkages. | Bapat, AP., et al. 2011. J Am Chem Soc. 133: 19832-8. PMID: 22103352Phenylboronic acid-functionalized glycopolymeric nanoparticles for biomacromolecules delivery across nasal respiratory. | Zhang, X., et al. 2012. Eur J Pharm Biopharm. 82: 76-84. PMID: 22659236Polyethyleneimine-grafted boronate affinity materials for selective enrichment of cis-diol-containing compounds. | Xue, Y., et al. 2015. Talanta. 140: 1-9. PMID: 26048816A non-enzymatic urine glucose sensor with 2-D photonic crystal hydrogel. | Yan, Z., et al. 2016. Anal Bioanal Chem. 408: 8317-8323. PMID: 27682838Glucose- and temperature-sensitive nanoparticles for insulin delivery. | Wu, JZ., et al. 2017. Int J Nanomedicine. 12: 4037-4057. PMID: 28603417Nanoparticles prepared from pterostilbene reduce blood glucose and improve diabetes complications. | Zhao, X., et al.54512-75-3 Formula 2021. J Nanobiotechnology.425-61-6 custom synthesis 19: 191.PMID:33620872 PMID: 34176494Novel glucose-responsive nanoparticles based on p-hydroxyphenethyl anisate and 3-acrylamidophenylboronic acid reduce blood glucose and ameliorate diabetic nephropathy. | Ma, Q., et al. 2022. Mater Today Bio. 13: 100181. PMID: 34927045Incorporation of Boronic Acid into Aptamer-Based Molecularly Imprinted Hydrogels for Highly Specific Recognition of Adenosine. | Li, Y., et al. 2020. ACS Appl Bio Mater. 3: 2568-2576. PMID: 35025389Controlled Release of Insulin Based on Temperature and Glucose Dual Responsive Biomicrocapsules. | Fan, X., et al. 2022. Molecules. 27: PMID: 35268787Block copolymer synthesis using free-radical polymerization and thiol-maleimide ′click′ conjugation. | Rambarran, T. and Sheardown, HD. 2021. RSC Adv. 11: 34631-34635. PMID: 35494753Microgel-Assisted Delivery of Adenosine to Accelerate Fracture Healing. | Hoque, J., et al. 2022. ACS Biomater Sci Eng. 8: 4863-4872. PMID: 36266245