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Progress in Chemistry 2010, Vol. 22 Issue (01): 179-185 Previous Articles   Next Articles

• Invited Article •

Absorbable Guided Tissue Regeneration Membranes

Ren Tianbin1**;  Cao Chunhong1;  Wang Gang2;  Su Jiansheng2;  Yuan Weizhong1;  Ren Jie1   

  1. (1. Institute of Nano and Bio-Polymeric Materials, School of Materials Science and Engineering, Tongji University, Shanghai 200092, China; 2. School of Stomatology, Tongji University, Shanghai 200072, China)
  • Received: Revised: Online: Published:
  • Contact: Ren Tianbin E-mail:rtb002@tongji.edu.cn
  • Supported by:

    National Natural Science Foundation of China

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Guided tissue regeneration membrane (GTRM) is widely applied in repair and regeneration of various hard and soft tissues because of improving the tissue regenaretion ability. GTRM is mainly divided into two kinds: non-absorbable and absorbable GTRM. Compared with non-absorbable GTRM, absorbable GTRM is more widely researched and applied for the more and more merits. In this article, the common materials of absorbable GTRM, i.e. natural biomaterials represented by collagen, synthetic polymeric materials represented by polyester and inorganic materials represented by hydroxyapatite are reviewed. And the applications of absorbable GTRM in bone defects, wound dressing, anti-adhesion areas and so forth are also described. The main methods in preparing absorbable GTRM including electrospinning, solvent-casting and phase inversion and the advantages and disadvantages are described emphatically.

Contents
1 Introduction
2 Materials of absorbable GTRM
3 Methods of absorbable GTRM preparation
3.1 Electrospinning
3.2 Solvent-casting
3.3 Phase inversion
3.4 Other methods of absorbable GTRM preparation
4 Application of absorb-able GTRM
5 Conclusion

CLC Number: 

[ 1 ]  Lang N P, H?mmerle C H, Br?ger U, et al. Clin. Oral. Implan. Res. , 2002, 5: 92—97
[ 2 ]  Tinti C, Vincenzi G, Cortellini P, et al. J. Periodontol. , 1992,63: 554—560
[ 3 ]  Caffesse R G, Nasjleti C E, Morrison E C, et al. J. Periodontol. , 1994, 65 (6) : 583—591
[ 4 ]  Takata T, Wang H L, Miyauchi M. J. Periodontal. Res. ,2001, 36: 322—327
[ 5 ]  Pellen-Mussi P, Fravalo P, GuigandM, et al. J. Biomed. Mater. Res. A, 1998, 36: 331—336
[ 6 ]  Schlegel A K, Mohler H, Busch F, et al. Biomaterials, 1997,18: 535—538
[ 7 ]  Taguchi Y, Amizuka N, Nakadate M, et al. Biomaterials,2005, 26: 6158—6166
[ 8 ]  Stavropoulos A, Sculean A, Karring T. Clin. Oral. Invest. ,2004, 8: 226—232
[ 9 ]  Behring J, Junker R, Frank X, et al. Odontology, 2008, 96:1—11
[ 10 ]  Chen J P, Chang G Y, Chen J K. Colloid Surface A, 2008,313 /314: 183—188
[ 11 ]  Powell H M, Boyce S T. J. Biomed. Mater. Res. A, 2007,84A: 1078—1086
[ 12 ]  Silva R M, Elvira C, Mano J F, et al. J. Mater. Sci. : Mater.Med. , 2004, 15: 523—528
[ 13 ]  包崇云(Bao C Y) , 陈治清(Chen ZQ) , 欧国敏(Ou GM) .华西口腔医学杂志(West China Journal of Stomatology) ,2002, 2 (20) : 107—109
[ 14 ]  KikuchiM, Koyama Y, Takakuda K, et al. J. Biomed. Mater.Res. A, 2002, 62: 265—272
[ 15 ]  Lu L C, Garcia C A, Mikos A G. J Biomed. Mater. Res. A,1999, 46 (2) : 236—244
[ 16 ]  Badami A S, KrekeM R, Thomp son M S, et al. Biomaterials,2006, 27: 596—606
[ 17 ]  Pineda L M, BüsingM, Meining R P, et al. J Biomed. Mater.Res. A, 1996, 31: 385—394
[ 18 ]  贾骏( J ia J) , 段嫄嫄(Duan Y Y) , 周建学( Zhou J X) 等.牙体牙髓牙周病学杂志(Chinese Journal of Conservative Den-tistry) , 2007, 17 (5) : 243—246
[ 19 ]  Tirri T, Rich J, Wolke J, et al. J. Mater. Sci. : Mater. Med. ,2008, 19: 2919—2923
[ 20 ]  Kwon I K, Matsuda T. Biomacromolecules, 2005, 6:2096—2105
[ 21 ]  Coonts B A, Whitman S L, O’DonnellM, et al. J. Biomed.Mater. Res. A, 1998, 42 (2) : 303—311
[ 22 ]  You Y, Min B M, Lee S J, et al. J. App l. Sci. Res. , 2005,95: 193—200
[ 23 ]  Li Y H, Huang Y D. J. App l. Sci. Res. , 2006, 99:1832—1841
[ 24 ]  Huang ZM, Zhang Y Z, Ramakrishna S. J. Polymer. Sci. Pol.Phys. , 2005, 43: 2852—2861
[ 25 ]  Kidoaki S, Kwon I K, Matsuda T. Biomaterials, 2005, 26:37—46
[ 26 ]  Moghe A K, Gup ta B S. Polym. Rev. , 2008, 48: 353—377
[ 27 ]  管东华(Guan D H) , 田鲲( Tian K) , 牛林(Niu L)等. 稀有金属材料与工程( Rare Metal Materials and Engineering) ,2007, 36: 138—140
[ 28 ]  魏娜(Wei N) , 宫苹(Gong P) , 林义(Lin Y) 等. 稀有金属材料与工程(Rare Metal Materials and Engineering) , 2007,36: 34—36
[ 29 ]  Venugopal J, Ma L L, Yong T, et al. Cell Bio. Int. , 2005,29: 861—867
[ 30 ]  Xu X L, Chen X, Liu A, et al. Eur. Polym. J. , 2007, 43:3187—3196
[ 31 ]  Kim H W, Lee H H, Knowles J C. J. Biomed. Mater. Res. A,2006, 79: 643—649
[ 32 ]  Bhattarai N, Li Z S, Edmondson D, et al. Adv. Mater. , 2006,18: 1463—1467
[ 33 ]  J ia J, DuanY Y, Yu J, et al. J. Biomed. Mater. Res. A,2007, 86A: 364—373
[ 34 ]  Pham Q P, Sharma U, Mikos A G. Biomacromolecules, 2006,7: 2796—2805
[ 35 ]  Kim H W, Song J H, Kim H E. Adv. Funct. Mater. , 2005,15: 1988—1994
[ 36 ]  Fujihara K, Kotaki M, Ramarkrishna S. Biomaterials, 2005,26: 4139—4147
[ 37 ]  田卫东( TianW D) , 包崇云(Bao C Y) , 刘磊(Liu L) . 生物医学工程学杂志( Journal of Biomedical Engineering) ,2004, 21 (5) : 844—847
[ 38 ]  Owen G R H, Jackson J, Chehroudi B, et al. Biomaterials,2005, 26: 7447—7456
[ 39 ]  Liao S S, WangW, Uo M, et al. Biomaterials, 2005, 26:7564—7571
[ 40 ]  Kirker K R, Luo Y, Nielson J H, et al. Biomaterials, 2002,23: 3661—3671
[ 41 ]  Lu L C, Garcia C A, MikosA G. J. Biomed. Mater. Res. A,1999, 46: 236—244
[ 42 ]  Tiaw K S, Teoh S H, Chen R, et al. Biomacromolecules,2007, 8: 807—816
[ 43 ]  Park Y J, Nam K H, Ha S J, et al. J. Control. Release. ,1997, (43) : 151—160
[ 44 ]  Hong H, Wei J, Liu C S. Compos. Part B-Eng. , 2007, 38:311—316
[ 45 ]  Chen TW, Chang S J, Niu G C C, et al. J. App l. Polym.Sci. , 2006, 102: 4528—4534
[ 46 ]  KikuchiM, Koyama Y, Yamada T, et al. Biomaterials, 2004,25: 5979—5986
[ 47 ]  Ueyama Y, Ishikawa K, Mano T, et al. Biomaterials, 2002,23: 2027—2033
[ 48 ]  冯庆玲( Feng Q L) , 崔福斋(Cui F Z) , 张伟( ZhangW) . 中国医学科学院学报(Acta Academiae Medicinae Sinicae ) ,2002, 24 (2) : 124—128
[ 49 ]  陈发明(Chen FM) , 吴织芬(Wu Z F) , 金岩( J in Y) 等.牙体牙髓牙周病学杂志(Chinese Journal of Conservative Dentistry) , 2005, 15 (3) : 140—143
[ 50 ]  Zhang Y F, Song J H, Shi B, et al. Biomaterials, 2007, 28:4635—4642
[ 51 ]  黄岚峰(Huang L F) , 齐欣(Qi X) , 刘建国(Liu J G) 等.骨与关节损伤杂志( Journal of Bone Joint and Injury) , 2003,18 (3) : 188—190
[ 52 ]  侯劲松(Hou J S) , 黄洪章(Huang H Z) , 李祖兵(Li Z B)等. 现代口腔医学杂志( Journal of Modern Stomatology) ,2001, 15 (1) : 14—15
[ 53 ]  侯劲松(Hou J S) , 黄洪章(Huang H Z) , 李祖兵(Li ZB) .中山医科大学学报(Academic Journal of Sun Yat-sen University of Medical Sciences) , 2000, 21 (4) : 268—270
[ 54 ]  马东洋(Ma D Y) , 薛振恂(Xue Z X) , 陈富林(Chen F L)等. 临床口腔医学杂志( Journal of Clinical Stomatology) ,2004, 20 (3) : 155—156
[ 55 ]  童勇( Tong Y) , 陈峰(Chen F) . 中国交通医学杂志(Chinese Medical Journal of Communications ) , 2005, 19 ( 1 ) :57—59
[ 56 ]  闫福华(Yan F H) , 骆凯(Luo K) , 金岩( J in Y) 等. 口腔医学研究( Journal of Oral Science Research) , 2003, 19 ( 3) :161—165
[ 57 ]  邱立新(Qiu L X) , 林野(Lin Y) , 王兴(Wang X) 等. 中国口腔医学杂志( Chinese Journal of Stomatology) , 2002, 37(6) : 412—414
[ 58 ]  Kuo SM, Chang S J, Chen T W, et al. J. Biomed. Mater.Res. A, 2006, 76A: 408—415
[ 59 ]  Sculean A, Donos N, Windisch P, et al. J. Periodontal. Res. ,1999, 34: 310—322
[ 60 ]  Zellin G, Linde A. J. Biomed. Mater. Res. A, 1997, 35:181—190
[ 61 ]  杜成林(Du C L) , 张琦( Zhang Q) , 王磊(Wang L) . 交通医学(Medical Journal of Communications) , 2002, 16 (3) : 260
[ 62 ]  王卫国(WangW G) , 曹学成(Cao X C) , 蔡锦方(Cai J F) . 中国误诊学杂志( Chinese Journal of Misdiagnostics) ,2005, 5 (10) : 1871

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