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Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing

Valentina Trofimovna Shashkova 1
Valentina Trofimovna Shashkova
Irina Aleksandrovna Matveeva 1
Irina Aleksandrovna Matveeva
Nikolay Nikolaevich Glagolev 1
Nikolay Nikolaevich Glagolev
Tat'yana Sidorovna Zarhina 1
Tat'yana Sidorovna Zarhina
Anastasiya Valerievna Cherkasova 1
Anastasiya Valerievna Cherkasova
Svetlana L Kotova 1
Svetlana L Kotova
Petr Sergeevich Timashev 2, 3
Petr Sergeevich Timashev
Anna Borisovna Solovieva 1
Anna Borisovna Solovieva
Published 2016-09-08
CommunicationVolume 26, Issue 5, 418-420
9
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Shashkova V. T. et al. Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing // Mendeleev Communications. 2016. Vol. 26. No. 5. pp. 418-420.
GOST all authors (up to 50) Copy
Shashkova V. T., Matveeva I. A., Glagolev N. N., Zarhina T. S., Cherkasova A. V., Kotova S. L., Timashev P. S., Solovieva A. B. Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing // Mendeleev Communications. 2016. Vol. 26. No. 5. pp. 418-420.
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TY - JOUR
DO - 10.1016/j.mencom.2016.09.018
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2016.09.018
TI - Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing
T2 - Mendeleev Communications
AU - Shashkova, Valentina Trofimovna
AU - Matveeva, Irina Aleksandrovna
AU - Glagolev, Nikolay Nikolaevich
AU - Zarhina, Tat'yana Sidorovna
AU - Cherkasova, Anastasiya Valerievna
AU - Kotova, Svetlana L
AU - Timashev, Petr Sergeevich
AU - Solovieva, Anna Borisovna
PY - 2016
DA - 2016/09/08
PB - Mendeleev Communications
SP - 418-420
IS - 5
VL - 26
ER -
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@article{2016_Shashkova,
author = {Valentina Trofimovna Shashkova and Irina Aleksandrovna Matveeva and Nikolay Nikolaevich Glagolev and Tat'yana Sidorovna Zarhina and Anastasiya Valerievna Cherkasova and Svetlana L Kotova and Petr Sergeevich Timashev and Anna Borisovna Solovieva},
title = {Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing},
journal = {Mendeleev Communications},
year = {2016},
volume = {26},
publisher = {Mendeleev Communications},
month = {Sep},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2016.09.018},
number = {5},
pages = {418--420},
doi = {10.1016/j.mencom.2016.09.018}
}
MLA
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Shashkova, Valentina Trofimovna, et al. “Synthesis of polylactide acrylate derivatives for the preparation of 3D structures by photo-curing.” Mendeleev Communications, vol. 26, no. 5, Sep. 2016, pp. 418-420. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2016.09.018.

Abstract

The polylactide acrylate derivatives have been synthesized via the esterification of terminal hydroxy and carboxy groups of polylactide with acrylic acid chloroanhydride and ethylene glycol monoacryl ester. Spatially cross-linked structures suitable for the formation of implants have been prepared by the photopolymerization of these derivatives.

References

1.
A Literature Review of Poly(Lactic Acid)
Garlotta D.
Journal of Polymers and the Environment, 2001
4.
The use of acellular matrices for the tissue engineering of cardiac valves
Knight R.L., Wilcox H.E., Korossis S.A., Fisher J., Ingham E.
Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine, 2008
5.
10.1016/j.mencom.2016.09.018_bib0025
Li
J. Orthop. Res., 2011
6.
Esophageal tissue engineering: An in‐depth review on scaffold design
Tan J.Y., Chua C.K., Leong K.F., Chian K.S., Leong W.S., Tan L.P.
Biotechnology and Bioengineering, 2011
7.
Toughness decrease of PLA-PHBHHx blend films upon surface-confined photopolymerization.
Rasal R.M., Hirt D.E.
Journal of Biomedical Materials Research - Part A, 2009
9.
An Overview of Polylactides as Packaging Materials
Auras R., Harte B., Selke S.
Macromolecular Bioscience, 2004
10.
Toughening Polylactide
Anderson K., Schreck K., Hillmyer M.
Polymer Reviews, 2008
11.
Polylactic Acid Technology
Drumright R.E., Gruber P.R., Henton D.E.
Advanced Materials, 2000
14.
Laser induced surface modification of polylactide
Rytlewski P., Mróz W., Żenkiewicz M., Czwartos J., Budner B.
Journal of Materials Processing Technology, 2012
15.
Toward potent antibiofilm degradable medical devices: A generic method for the antibacterial surface modification of polylactide
El Habnouni S., Lavigne J., Darcos V., Porsio B., Garric X., Coudane J., Nottelet B.
Acta Biomaterialia, 2013
16.
Novel biodegradable star-shaped polylactide scaffolds for bone regeneration fabricated by two-photon polymerization
Timashev P., Kuznetsova D., Koroleva A., Prodanets N., Deiwick A., Piskun Y., Bardakova K., Dzhoyashvili N., Kostjuk S., Zagaynova E., Rochev Y., Chichkov B., Bagratashvili V.
Nanomedicine, 2016
17.
R. Gabriele, German Patent 006988, 2004.
18.
Two-photon polymerization-generated and micromolding-replicated 3D scaffolds for peripheral neural tissue engineering applications.
Koroleva A., Gill A.A., Ortega I., Haycock J.W., Schlie S., Gittard S.D., Chichkov B.N., Claeyssens F.
Biofabrication, 2012
19.
10.1016/j.mencom.2016.09.018_bib0095
Shashkova
Zh. Fiz. Khim., 2016
20.
A. A. Berlin, G.V. Korolev, T. Ya. Kefeli and Yu. M. Sivergin, Akrilovye oligomery i materialy na ikh osnove (Acrylic Oligomers and Materials on Their Basis), Khimiya, Moscow, 1983, p. 39 (in Russian).
21.
A. A. Berlin, G.V. Korolev, T. Ya. Kefeli and Yu. M. Sivergin, Akrilovye oligomery i materialy na ikh osnove (Acrylic Oligomers and Materials on Their Basis), Khimiya, Moscow, 1983, p. 25 (in Russian).
22.
Akopova T.A., Timashev P.S., Demina T.S., Bardakova K.N., Minaev N.V., Burdukovskii V.F., Cherkaev G.V., Vladimirov L.V., Istomin A.V., Svidchenko E.A., Surin N.M., Bagratashvili V.N.
Mendeleev Communications, 2015