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Wichtige Dokumente
341576
(3aR,4S,5R,6aS)-(−)-Hexahydro-5-hydroxy-4-(hydroxymethyl)-2H-cyclopenta[b]furan-2-on
98%
Synonym(e):
(−)-Corey-Lacton
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About This Item
Empirische Formel (Hill-System):
C8H12O4
CAS-Nummer:
Molekulargewicht:
172.18
MDL-Nummer:
UNSPSC-Code:
12352005
PubChem Substanz-ID:
NACRES:
NA.22
Empfohlene Produkte
Assay
98%
Form
solid
Optische Aktivität
[α]20/D −44°, c = 1.4 in methanol
mp (Schmelzpunkt)
117-119 °C (lit.)
Funktionelle Gruppe
ester
hydroxyl
SMILES String
OC[C@H]1[C@H](O)C[C@@H]2OC(=O)C[C@H]12
InChI
1S/C8H12O4/c9-3-5-4-1-8(11)12-7(4)2-6(5)10/h4-7,9-10H,1-3H2/t4-,5-,6-,7+/m1/s1
InChIKey
VYTZWRCSPHQSFX-GBNDHIKLSA-N
Verwandte Kategorien
Lagerklassenschlüssel
11 - Combustible Solids
WGK
WGK 3
Flammpunkt (°F)
Not applicable
Flammpunkt (°C)
Not applicable
Persönliche Schutzausrüstung
Eyeshields, Gloves, type N95 (US)
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Erin M Anderson et al.
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Endothelial progenitor cells are being broadly explored for the treatment of ischemic cardiovascular diseases, but their response to molecules commonly used to promote the growth of new blood vessels has not been fully characterized. In this study, angiogenic sprout formation
Simona Sorrentino et al.
Proceedings of the National Academy of Sciences of the United States of America, 118(37) (2021-09-11)
During activation the platelet cytoskeleton is reorganized, inducing adhesion to the extracellular matrix and cell spreading. These processes are critical for wound healing and clot formation. Initially, this task relies on the formation of strong cellular-extracellular matrix interactions, exposed in
Erin M Anderson et al.
Tissue engineering. Part A, 21(7-8), 1217-1227 (2014-12-02)
Biomaterials may improve outcomes of endothelial progenitor-based therapies for the treatment of ischemic cardiovascular disease, due to their ability to direct cell behavior. We hypothesized that local, sustained delivery of exogenous vascular endothelial growth factor (VEGF) and stromal cell-derived factor
Marketa Bacakova et al.
International journal of nanomedicine, 14, 5033-5050 (2019-08-03)
Background: Repairs to deep skin wounds continue to be a difficult issue in clinical practice. A promising approach is to fabricate full-thickness skin substitutes with functions closely similar to those of the natural tissue. For many years, a three-dimensional (3D)
Kevin Tröndle et al.
Journal of tissue engineering and regenerative medicine, 13(10), 1883-1895 (2019-07-18)
Active nutrient supply and waste product removal are key requirements for the fabrication of long-term viable and functional tissue constructs of considerable size. This work aims to contribute to the fabrication of artificial perfusable networks with a bioprinting process, based
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