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There are 115551 results for: content related to: Reduced adhesion of blood cells to biodegradable polymers by introducing phosphorylcholine moieties

  1. Separate Crystallization and Cocrystallization of Poly(L-lactide) in the Presence of L-Lactide-Based Copolymers With Low Crystallizability, Poly(L-lactide-co-glycolide) and Poly(L-lactide-co-D-lactide)

    Macromolecular Chemistry and Physics

    Volume 213, Issue 20, October 26, 2012, Pages: 2099–2112, Hideto Tsuji, Kohji Tashiro, Leevameng Bouapao and Makoto Hanesaka

    Article first published online : 14 SEP 2012, DOI: 10.1002/macp.201200208

  2. Immobilization of natural macromolecules on poly-L-lactic acid membrane surface in order to improve its cytocompatibility

    Journal of Biomedical Materials Research

    Volume 63, Issue 6, 2002, Pages: 838–847, Zuwei Ma, Changyou Gao, Yihong Gong, Jian Ji and Jiacong Shen

    Article first published online : 25 OCT 2002, DOI: 10.1002/jbm.10470

  3. Comparative study of poly(L-lactide) nanocomposites with organic montmorillonite and carbon nanotubes

    Journal of Polymer Science Part B: Polymer Physics

    Volume 51, Issue 3, 1 February 2013, Pages: 183–196, Hai-ming Chen, Jie Chen, Li-na Shao, Jing-hui Yang, Ting Huang, Nan Zhang and Yong Wang

    Article first published online : 5 OCT 2012, DOI: 10.1002/polb.23182

  4. Biomimetic surface modification of poly (L-lactic acid) with gelatin and its effects on articular chondrocytes in vitro

    Journal of Biomedical Materials Research Part A

    Volume 66A, Issue 4, 15 September 2003, Pages: 770–778, Yuan Lu Cui, Xin Hou, Ai Di Qi, Xiang Hui Wang, Hong Wang, Kai Yong Cai, Yu Ji Yin and Kang De Yao

    Article first published online : 6 AUG 2003, DOI: 10.1002/jbm.a.10071

  5. In vitro and in vivo degradation of bioabsorbable PLLA spinal fusion cages

    Journal of Biomedical Materials Research

    Volume 63, Issue 6, 2002, Pages: 752–759, M. van Dijk, D. C. Tunc, T. H. Smit, P. Higham, E. H. Burger and P. I. J. M. Wuisman

    Article first published online : 17 OCT 2002, DOI: 10.1002/jbm.10466

  6. Engineering new bone tissue in vitro on highly porous poly(α-hydroxyl acids)/hydroxyapatite composite scaffolds

    Journal of Biomedical Materials Research

    Volume 54, Issue 2, February 2001, Pages: 284–293, Peter X. Ma, Ruiyun Zhang, Guozhi Xiao and Renny Franceschi

    Article first published online : 14 NOV 2000, DOI: 10.1002/1097-4636(200102)54:2<284::AID-JBM16>3.0.CO;2-W

  7. Highly enhanced accelerating effect of melt-recrystallized stereocomplex crystallites on poly(L-lactic acid) crystallization: effects of molecular weight of poly(D-lactic acid)

    Polymer International

    Volume 62, Issue 6, June 2013, Pages: 936–948, Junichi Narita, Mikio Katagiri and Hideto Tsuji

    Article first published online : 15 OCT 2012, DOI: 10.1002/pi.4381

  8. Morphology, crystallization and enzymatic hydrolysis of poly(L-lactide) nucleated using layered metal phosphonates

    Polymer International

    Volume 60, Issue 2, February 2011, Pages: 284–295, Shusheng Wang, Changyu Han, Junjia Bian, Lijing Han, Xuemei Wang and Lisong Dong

    Article first published online : 19 OCT 2010, DOI: 10.1002/pi.2947

  9. Highly Enhanced Accelerating Effect of Melt-Recrystallized Stereocomplex Crystallites on Poly(L-lactic acid) Crystallization, 2–Effects of Poly(D-lactic acid) Concentration

    Macromolecular Materials and Engineering

    Volume 298, Issue 3, March 2013, Pages: 270–282, Junichi Narita, Mikio Katagiri and Hideto Tsuji

    Article first published online : 24 AUG 2012, DOI: 10.1002/mame.201200060

  10. A Poly(lactide) Stereocomplex Structure with Modified Magnesium Oxide and Its Effects in Enhancing the Mechanical Properties and Suppressing Inflammation

    Small

    Volume 10, Issue 18, September 24, 2014, Pages: 3783–3794, Chang Hun Kum, Youngjin Cho, Seong Ho Seo, Yoon Ki Joung, Dong June Ahn and Dong Keun Han

    Article first published online : 12 MAY 2014, DOI: 10.1002/smll.201302880

  11. Paraffin spheres as porogen to fabricate poly(L-lactic acid) scaffolds with improved cytocompatibility for cartilage tissue engineering

    Journal of Biomedical Materials Research Part B: Applied Biomaterials

    Volume 67B, Issue 1, 15 October 2003, Pages: 610–617, Zuwei Ma, Changyou Gao, Yihong Gong and Jiacong Shen

    Article first published online : 4 SEP 2003, DOI: 10.1002/jbm.b.10049

  12. Effect of a small amount of poly(3-hydroxybutyrate) on the crystallization behavior of poly(l-lactic acid) in their immiscible and miscible blends during physical aging

    Polymer International

    Volume 63, Issue 7, July 2014, Pages: 1270–1277, Chunrui Sheng, Tongping Zhang, Yuan Yuan, Lijuan Zhou, Yongxin Duan and Jianming Zhang

    Article first published online : 19 DEC 2013, DOI: 10.1002/pi.4667

  13. Molded porous poly (L-lactide) membranes for guided bone regeneration with enhanced effects by controlled growth factor release

    Journal of Biomedical Materials Research

    Volume 55, Issue 3, 5 June 2001, Pages: 295–303, Seung Jin Lee, Yoon Jeong Park, Si Nae Park, Yong Moo Lee, Yang Jo Seol, Young Ku and Chong Pyoung Chung

    Article first published online : 13 FEB 2001, DOI: 10.1002/1097-4636(20010605)55:3<295::AID-JBM1017>3.0.CO;2-W

  14. The role of polycarbonate molecular weight in the poly(L-lactide) blends compatibilized with poly(butylene succinate-co-L-lactate)

    Polymer Engineering & Science

    Volume 53, Issue 6, June 2013, Pages: 1171–1180, Y. Wang, S.M. Chiao, M.-T. Lai and S.-Y. Yang

    Article first published online : 22 NOV 2012, DOI: 10.1002/pen.23374

  15. Characterization of an air-spun poly(L-lactic acid) nanofiber mesh

    Journal of Biomedical Materials Research Part B: Applied Biomaterials

    Volume 93B, Issue 2, May 2010, Pages: 531–543, Sébastien François, Christian Sarra-Bournet, Antoine Jaffre, Nabil Chakfé, Bernard Durand and Gaétan Laroche

    Article first published online : 22 FEB 2010, DOI: 10.1002/jbm.b.31612

  16. Flexibility Improvement of Poly(L-lactide) by Reactive Blending With Poly(ether urethane) Containing Poly(ethylene glycol) Blocks

    Macromolecular Chemistry and Physics

    Volume 214, Issue 7, April 12, 2013, Pages: 824–834, Lidong Feng, Xinchao Bian, Yi Cui, Zhiming Chen, Gao Li and Xuesi Chen

    Article first published online : 31 JAN 2013, DOI: 10.1002/macp.201200696

  17. Novel graft PLLA-based copolymers: Potential of their application to particle technology

    Journal of Biomedical Materials Research

    Volume 62, Issue 2, November 2002, Pages: 244–253, L. Calandrelli, G. De Rosa, M. E. Errico, M. I. La Rotonda, P. Laurienzo, M. Malinconico, A. Oliva and F. Quaglia

    Article first published online : 2 AUG 2002, DOI: 10.1002/jbm.10138

  18. An investigation of the effect of silane water-crosslinking on the properties of poly(L-lactide)

    Polymer International

    Volume 59, Issue 5, May 2010, Pages: 695–703, Changyu Han, Junjia Bian, Hao Liu, Lijing Han, Shusheng Wang, Lisong Dong and Shan Chen

    Article first published online : 12 JAN 2010, DOI: 10.1002/pi.2760

  19. High-performance biosourced poly(lactic acid)/polyamide 11 blends with controlled salami structure

    Polymer International

    Volume 63, Issue 6, June 2014, Pages: 1094–1100, Wenyong Dong, Xiaojun Cao and Yongjin Li

    Article first published online : 8 OCT 2013, DOI: 10.1002/pi.4618

  20. Crystallization behavior and crystallite morphology control of poly(L-lactic acid) through N, N′-bis(benzoyl)sebacic acid dihydrazide

    Polymer International

    Volume 62, Issue 4, April 2013, Pages: 647–657, Yinqing Fan, Zhuyi Yu, Yanhua Cai, Dingding Hu, Shifeng Yan, Xuesi Chen and Jingbo Yin

    Article first published online : 6 DEC 2012, DOI: 10.1002/pi.4342