2,2'-Dthiobis(n,n-dimethylethylamine) dihydrochloride

For research use only. Not for therapeutic Use.

  • CAT Number: M082362
  • CAS Number: 17339-60-5
  • Molecular Formula: C8H22Cl2N2S2
  • Molecular Weight: 281.298
  • Purity: ≥95%
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Catalog Number M082362
CAS Number 17339-60-5
Synonyms

Bis(2-dimethylaminoethyl) Disulfide Dihydrochloride; Ethanamine, 2,2′-di
thiobis[N,N-dimethyl-, hydrochloride (1:2); 2,2′-Disulfanediylbis(N,N-dimethylethanamine) dihydrochloride.

Molecular Formula C8H22Cl2N2S2
Purity ≥95%
Storage Store at -20°C
IUPAC Name 2-[2-(dimethylamino)ethyldisulfanyl]-N,N-dimethylethanamine;dihydrochloride
InChI InChI=1S/C8H20N2S2.2ClH/c1-9(2)5-7-11-12-8-6-10(3)4;;/h5-8H2,1-4H3;2*1H
InChIKey OJNVDODUOWHJPK-UHFFFAOYSA-N
SMILES CN(C)CCSSCCN(C)C.Cl.Cl
Reference

[1]. О II, I., 1956. Bifunctional Amines and Ammonium Compounds.<br />
Acta Chem. Scand, 10(1).<br />
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[2]. Chu, S.H. and Mautner, H.G., 1966.<br />
Analogs of Neuroeffectors. V. Neighboring-Group Effects in the Reactions of Esters, Thiolesters, and Selenolesters. The Hydrolysis and Aminolysis of Benzoylcholine, Benzoylthiolcholine, Benzoylselenolcholine, and of Their Dimethylamino Analogs1.<br />
The Journal of Organic Chemistry, 31(1), pp.308-312.<br />
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[3]. Land, A.H., ZIEGLER, C. and SPRAGUE, J.M., 1946.<br />
Derivatives of Sulfathiazole.<br />
The Journal of organic chemistry, 11(5), pp.617-623.<br />
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[4]. Zhang, C., Yuan, J., Lu, J., Hou, Y., Xiong, W. and Lu, H., 2018.<br />
From neutral to zwitterionic poly (&alpha;-amino acid) nonfouling surfaces: Effects of helical conformation and anchoring orientation.<br />
Abstracts: The development of high-performance nonfouling polymer surfaces for implantable medical devices and therapeutic nanomaterials is of great importance. Elaborating the relationship of polymer structural characteristics and the resulted surface properties can offer useful guidance toward ideal biointerfaces. In this work, we investigate the effects of the helical conformation and anchoring orientation of poly(&alpha;-amino acid)s (P&alpha;AAs) to produce advanced nonfouling surfaces. By using the neutral poly(&gamma;-(2-(2-(2-methoxyethoxy)ethoxy)ethoxy)esteryl glutamates) (P(EG3Glu)s) as a model system, the adsorption kinetics are monitored by ex-situ variable angle spectroscopic ellipsometry and in-situ quartz crystal microbalance with dissipation. It is found that the polymers adopting a rigid rod-like &alpha;-helical conformation can self-assemble more rapidly to produce denser adlayers, and generate significantly improved nonfouling surfaces compared to those flexible polymer analogues including the widely used antifouling polymer PEG. Moreover, the surface properties can be further enhanced by using the antiparallel orientated helical P(EG3Glu)s. Most importantly, the insights gained from the P(EG3Glu) model system are successfully applied to the generation of ultra-low-fouling surfaces using zwitterionic P&alpha;AAs brushes, underscoring the generality of the approach. Particularly, the surface based on the antiparallel aligned zwitterionic helical P&alpha;AAs exhibits &sim;98&ndash;99% reduction of human serum adsorption relative to the bare gold, and gives almost no adhesion of mouse platelet. Taken together, this work depicts an extremely simple yet highly effective approach to manipulate surface properties for numerous applications in biomaterial interfaces, diagnostics, and biosensors.<br />
Biomaterials, 178, pp.728-737.<br />
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[5]. Krapcho, J., Turk, C.F. and Piala, J.J., 1968.<br />
Syntheses and pharmacological activity of compounds related to the antidepressant, 5-(2-dimethylaminoethyl)-2, 3-di-hydro-2-phenyl-1, 5-benzothiazepin-4 (5H)-one (thiazesim). III.<br />
Journal of medicinal chemistry, 11(2), pp.361-364.

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