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Sigma-Aldrich

L-Lysine ethyl ester dihydrochloride

≥99.0% (AT)

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Synonym(s):
Lysine ethyl ester dihydrochloride
Linear Formula:
NH2(CH2)4CH(NH2)COOC2H5 · 2HCl
CAS Number:
Molecular Weight:
247.16
Beilstein/REAXYS Number:
3697099
EC Number:
MDL number:
PubChem Substance ID:
NACRES:
NA.22

Quality Level

assay

≥99.0% (AT)

form

solid

optical activity

[α]20/D +10±1°, c = 2% in H2O

reaction suitability

reaction type: solution phase peptide synthesis

application(s)

peptide synthesis

SMILES string

Cl.Cl.CCOC(=O)[C@@H](N)CCCCN

InChI

1S/C8H18N2O2.2ClH/c1-2-12-8(11)7(10)5-3-4-6-9;;/h7H,2-6,9-10H2,1H3;2*1H/t7-;;/m0../s1

InChI key

DZIYAIZKJOHVQC-KLXURFKVSA-N

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This Item
9689041020996629
H-Lys(Z)-OMe hydrochloride ≥97.5% (HPLC)

96890

H-Lys(Z)-OMe hydrochloride

H-Lys(Boc)-OMe hydrochloride ≥98.0% (TLC)

96629

H-Lys(Boc)-OMe hydrochloride

assay

≥99.0% (AT)

assay

≥97.5% (HPLC)

assay

98%

assay

≥98.0% (TLC)

optical activity

[α]20/D +10±1°, c = 2% in H2O

optical activity

[α]20/D +14.5±0.5°, c = 2% in H2O

optical activity

[α]20/D −1.8°, c = 10 in methanol

optical activity

-

reaction suitability

reaction type: solution phase peptide synthesis

reaction suitability

reaction type: solution phase peptide synthesis

reaction suitability

reaction type: solution phase peptide synthesis

reaction suitability

reaction type: solution phase peptide synthesis

application(s)

peptide synthesis

application(s)

peptide synthesis

application(s)

peptide synthesis

application(s)

peptide synthesis

Storage Class

11 - Combustible Solids

wgk_germany

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


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Lysine hydrochloride European Pharmacopoeia (EP) Reference Standard

L0900000

Lysine hydrochloride

Nα-Acetyl-L-lysine

Sigma-Aldrich

A2010

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Boc-Lys-OH 99%

Sigma-Aldrich

359688

Boc-Lys-OH

Federico Vozzi et al.
Biomedical materials (Bristol, England), 13(5), 055006-055006 (2018-06-06)
Three-dimensional (3D) tissue models offer new tools in the study of diseases. In the case of the engineering of cardiac muscle, a realistic goal would be the design of a scaffold able to replicate the tissue-specific architecture, mechanical properties, and
Monica Boffito et al.
PloS one, 13(7), e0199896-e0199896 (2018-07-07)
Scaffolds populated with human cardiac progenitor cells (CPCs) represent a therapeutic opportunity for heart regeneration after myocardial infarction. In this work, square-grid scaffolds are prepared by melt-extrusion additive manufacturing from a polyurethane (PU), further subjected to plasma treatment for acrylic

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