A8597
1-Amino-3,3-diethoxypropane
liquid, ≥97%
Synonym(s):
3-Aminopropionaldehyde diethylacetal
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About This Item
product name
1-Amino-3,3-diethoxypropane, ≥97%, liquid
biological source
synthetic (organic)
Quality Level
Assay
≥97%
form
liquid
solubility
water: miscible
density
0.91 g/mL at 25 °C (lit.)
storage temp.
room temp
SMILES string
CCOC(CCN)OCC
InChI
1S/C7H17NO2/c1-3-9-7(5-6-8)10-4-2/h7H,3-6,8H2,1-2H3
InChI key
PXXMSHBZYAOHBD-UHFFFAOYSA-N
General description
1-Amino-3,3-diethoxypropane is an effective modulator of alginate and chitosan based hydrogels and effectively used for the delivery of bone marrow stromal cells (BMSCs) for regeneration of cartilage.
Application
1-Amino-3,3-diethoxypropane has been used:
- with alginate in the preparation of hydrogel
- in the generation of polyethylene glycol (PEG) polyethylenimine (PEI) polyplexes conjugate for transfection studies in hepatocellular carcinoma cell cultures
- as a component of pH-sensitive PEG derivative for lipopolyplexes formation
Signal Word
Danger
Hazard Statements
Precautionary Statements
Hazard Classifications
Skin Corr. 1B
WGK
WGK 3
Flash Point(F)
172.4 °F
Flash Point(C)
78 °C
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
Certificates of Analysis (COA)
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BMSCs laden injectable amino-diethoxypropane modified alginate-chitosan hydrogel for hyaline cartilage reconstruction
Journal of Material Chemistry B: Materials for Biology and Medicine, 3(9), 1990-2005 (2015)
Amine-reactive pyridylhydrazone-based PEG reagents for pH-reversible PEI polyplex shielding
European Journal of Pharmaceutical Sciences, 34(4-5), 309-320 (2008)
Talanta, 197, 482-490 (2019-02-18)
A new immunosensor using hybrid nanomaterials for the detection of dengue virus was demonstrated in this work. This immunosensor composed of nanoparticles of γ-Fe2O3(SAMN) modified with MPA- SAMN@MPA was characterized by FTIR spectroscopy, transmission electron microscopy,quartz crystal microbalance, UV-vis and
Amino acids, 51(4), 679-690 (2019-02-07)
The preservation of enzymatic activity is a fundamental requirement for exploiting hybrid nano-bio-conjugates, and the control over protein-nanoparticle interactions, leading to stable and catalytically active hybrids, represents the key for designing new biosensing platforms. In this scenario, surface active maghemite
Pyridylhydrazone-based PEGylation for pH-reversible lipopolyplex shielding
Biomaterials, 32(3), 858-869 (2011)
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