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[1]黃千里,劉淵聲,馮慶玲. 珍珠層,一種具有潛力的天然骨修復材料[J].中國材料進展,2013,(10):023-31.[doi:10.7502/j.issn.1674-3962.2013.10.03]
 Qianli Huang,Yuansheng Liu,Qingling Feng. Nacre, a potential natural biomaterial for bone regeneration[J].MATERIALS CHINA,2013,(10):023-31.[doi:10.7502/j.issn.1674-3962.2013.10.03]
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 珍珠層,一種具有潛力的天然骨修復材料()
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中國材料進展[ISSN:1674-3962/CN:61-1473/TG]

卷:
期數:
2013年第10期
頁碼:
023-31
欄目:
特約研究論文
出版日期:
2013-10-31

文章信息/Info

Title:
 Nacre, a potential natural biomaterial for bone regeneration
作者:
 黃千里劉淵聲馮慶玲
 (清華大學材料學院先進材料教育部重點實驗室,北京 100084)
Author(s):
 Qianli Huang Yuansheng Liu Qingling Feng
 

(Key Laboratory of Advanced Materials of Ministry of Education of China, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China)

關鍵詞:
 珍珠層成骨特性體外體內
DOI:
10.7502/j.issn.1674-3962.2013.10.03
文獻標志碼:
A
摘要:
 由于骨質疏松、骨折、骨腫瘤等原因導致的骨缺損困擾著世界上成千上萬的人。近年來,關于骨缺損修復材料的研究已得到了國內外科研工作者的廣泛關注。珍珠層是組成許多軟體動物貝殼的結構單元之一。與骨組織類似,珍珠層也是一種由無機相礦物與有機基質組成的復合材料。雖然珍珠層與骨組織具有非同源性,但是,其部分的形成機理可能具有類似性。本文綜述了近年來國內外關于珍珠層研究的大量體外與體內實驗結果,這些實驗結果表明了珍珠層具有良好的生物相容性與成骨特性,有可能成為一種具有潛力的天然骨修復材料。珍珠層的成骨特性很有可能來源于其有機基質中的未知信號因子。同時,本文也提出了珍珠層用作天然骨修復材料在今后研究中的機遇與挑戰。
Abstract:
 Bone loss due to osteoporosis, bone fracture, bone tumor and trauma affects hundreds of millions of people all over the world. Materials for the purpose of repairing bone defects have received extensive attention from many researchers at home and abroad in recent years. Nacre, which forms the inner layer of many mollusk shells, is also a composite of inorganic minerals and organic matrix similar to the structure of bone. Although nacre and bone are not homologous, parts of the complex machinery that directs their formation might be. Plenty of evidences of experiments about nacre both in vivo and in vitro in recent years are reviewed in this paper. The results present that nacre with its biocompatibility and osteogenic property might be a potential natural biomaterial for bone regeneration. The osteogenic property of nacre might probably be profited from some unknown signaling molecules within the organic matrix of nacre. Future perspectives and challenges for nacre to be applied as a natural biomaterial for bone regeneration are also proposed in this review.

參考文獻/References:

 

[1] VALLET-REGI M, GONZALEZ-CALBET J M. Calcium phosphates as substitution of bone tissues [J]. Prog Solid State Chem, 2004, 32(1-2): 1-31.

[2] LIU Y L, WU G, DE GROOT K. Biomimetic coatings for bone tissue engineering of critical-sized defects [J]. J R Soc Interface, 2010, 7(S631-S47.

[3] HABIBOVIC P, DE GROOT K. Osteoinductive biomaterials - properties and relevance in bone repair [J]. J Tissue Eng Regen Med, 2007, 1(1): 25-32.

[4] LI Y H, LIANG X J, FAN T. Research Development of Biomedical Titanium Alloy [M]//LUO Q. Recent Trends in Materials and Mechanical Engineering Materials, Mechatronics and Automation, Pts 1-3. Stafa-Zurich; Trans Tech Publications Ltd. 2011: 2009-12.

[5] CHAKRABORTY A, KUNDU B, BASU D, et al. In vivo bone response and interfacial properties of titanium-alloy implant with different designs in rabbit model with time [J]. Indian journal of dental research : official publication of Indian Society for Dental Research, 2011, 22(2): 277-84.

[6] VALLET-REGI M. Ceramics for medical applications [J]. J Chem Soc-Dalton Trans, 2001, 2): 97-108.

[7] KON E, MURAGLIA A, CORSI A, et al. Autologous bone marrow stromal cells loaded onto porous hydroxyapatite ceramic accelerate bone repair in critical-size defects of sheep long bones [J]. J Biomed Mater Res, 2000, 49(3): 328-37.

[8] ESPINOSA H D, RIM J E, BARTHELAT F, et al. Merger of structure and material in nacre and bone - Perspectives on de novo biomimetic materials [J]. Prog Mater Sci, 2009, 54(8): 1059-100.

[9] JACKSON A P, VINCENT J F V, TURNER R M. COMPARISON OF NACRE WITH OTHER CERAMIC COMPOSITES [J]. J Mater Sci, 1990, 25(7): 3173-8.

[10] ZHANG C, ZHANG R Q. Matrix proteins in the outer shells of molluscs [J]. Mar Biotechnol, 2006, 8(6): 572-86.

[11] WESTBROEK P, MARIN F. A marriage of bone and nacre [J]. Nature, 1998, 392(6679): 861-2.

[12] SILVE C, LOPEZ E, VIDAL B, et al. NACRE INITIATES BIOMINERALIZATION BY HUMAN OSTEOBLASTS MAINTAINED INVITRO [J]. Calcif Tissue Int, 1992, 51(5): 363-9.

[13] ALMEIDA M J, PEREIRA L, MILET C, et al. Comparative effects of nacre water-soluble matrix and dexamethasone on the alkaline phosphatase activity of MRC-5 fibroblasts [J]. J Biomed Mater Res, 2001, 57(2): 306-12.

[14] LAMGHARI M, ALMEIDA M J, BERLAND S, et al. Stimulation of bone marrow cells and bone formation by nacre: In vivo and in vitro studies [J]. Bone, 1999, 25(2): 91S-4S.

[15] ROUSSEAU M, PEREIRA-MOURIES L, ALMEIDA M J, et al. The water-soluble matrix fraction from the nacre of Pinctada maxima produces earlier mineralization of MC3T3-E1 mouse pre-osteoblasts [J]. Comp Biochem Physiol B-Biochem Mol Biol, 2003, 135(1): 1-7.

[16] MOURIES L P, ALMEIDA M J, MILET C, et al. Bioactivity of nacre water-soluble organic matrix from the bivalve mollusk Pinctada maxima in three mammalian cell types: fibroblasts, bone marrow stromal cells and osteoblasts [J]. Comp Biochem Physiol B-Biochem Mol Biol, 2002, 132(1): 217-29.

[17] ROUSSEAU M, BOULZAGUET H, BIAGIANTI J, et al. Low molecular weight molecules of oyster nacre induce mineralization of the MC3T3-E1 cells [J]. J Biomed Mater Res Part A, 2008, 85A(2): 487-97.

[18] WANG X Y, LIU S F, XIE L P, et al. Pinctada fucata mantle gene 3 (PFMG3) promotes differentiation in mouse osteoblasts (MC3T3-E1) [J]. Comp Biochem Physiol B-Biochem Mol Biol, 2011, 158(2): 173-80.

[19] WANG X Y, HINSHAW S, LIU S F, et al. Pinctada fucata Mantle Gene 5 (PFMG5) from Pearl Oyster Mantle Inhibits Osteoblast Differentiation [J]. Biosci Biotechnol Biochem, 2011, 75(5): 991-3.

[20] KIM H, LEE K, KO C Y, et al. The role of nacreous factors in preventing osteoporotic bone loss through both osteoblast activation and osteoclast inactivation [J]. Biomaterials, 2012, 33(30): 7489-96.

[21] DUPLAT D, CHABADEL A, GALLET M, et al. The in vitro osteoclastic degradation of nacre [J]. Biomaterials, 2007, 28(12): 2155-62.

[22] BURSTONE M S. HISTOCHEMICAL OBSERVATIONS ON ENZYMATIC PROCESSES IN BONES AND TEETH [J]. AnnNY AcadSci, 1960, 85(1): 431-44.

[23] SUD D, DOUMENC D, LOPEZ E, et al. Role of water-soluble matrix fraction, extracted from the nacre of Pinctada maxima, in the regulation of cell activity in abalone mantle cell culture (Haliotis tuberculata) [J]. Tissue Cell, 2001, 33(2): 154-60.

[24] HUANG W, YANG S Y, SHAO J Z, et al. Signaling and transcriptional regulation in osteoblast commitment and differentiation [J]. Front Biosci, 2007, 12(3068-92.

[25] FRANCESCHI R T, XIAO G Z, JIANG D, et al. Multiple signaling pathways converge on the Cbfa1/Runx2 transcription factor to regulate osteoblast differentiation [J]. Connect Tissue Res, 2003, 44(109-16.

[26] STANDAL T, BORSET M, SUNDAN A. Role of osteopontin in adhesion, migration, cell survival and bone remodeling [J]. Exp Oncol, 2004, 26(3): 179-84.

[27] HAUSCHKA P V, WIANS F H. OSTEOCALCIN-HYDROXYAPATITE INTERACTION IN THE EXTRACELLULAR ORGANIC MATRIX OF BONE [J]. Anat Rec, 1989, 224(2): 180-8.

[28] MIRON R J, ZHANG Y F. Osteoinduction: A Review of Old Concepts with New Standards [J]. J Dent Res, 2012, 91(8): 736-44.

[29] BEDOUET L, RUSCONI F, ROUSSEAU M, et al. Identification of low molecular weight molecules as new components of the nacre organic matrix [J]. Comp Biochem Physiol B-Biochem Mol Biol, 2006, 144(4): 532-43.

[30] LO K W H, ASHE K M, KAN H M, et al. The role of small molecules in musculoskeletal regeneration [J]. Regen Med, 2012, 7(4): 535-49.

[31] SHEN Y T, ZHU J, ZHANG H B, et al. In vitro osteogenetic activity of pearl [J]. Biomaterials, 2006, 27(2): 281-7.

[32] NI M, RATNER B D. Nacre surface transformation to hydroxyapatite in a phosphate buffer solution [J]. Biomaterials, 2003, 24(23): 4323-31.

[33] KOKUBO T, KUSHITANI H, SAKKA S, et al. SOLUTIONS ABLE TO REPRODUCE INVIVO SURFACE-STRUCTURE CHANGES IN BIOACTIVE GLASS-CERAMIC A-W3 [J]. J Biomed Mater Res, 1990, 24(6): 721-34.

[34] ZHANG R Y, MA P X. Poly(alpha-hydroxyl acids) hydroxyapatite porous composites for bone-tissue engineering. I. Preparation and morphology [J]. J Biomed Mater Res, 1999, 44(4): 446-55.

[35] ALBREKTSSON T, JOHANSSON C. Osteoinduction, osteoconduction and osseointegration [J]. Eur Spine J, 2001, 10(S96-S101.

[36] FROST H M. TETRACYCLINE-BASED HISTOLOGICAL ANALYSIS OF BONE REMODELING [J]. Calcified Tissue Research, 1969, 3(3): 211-&.

[37] BEDOUET L, DUPLAT D, MARIE A, et al. Heterogeneity of proteinase inhibitors in the water-soluble organic matrix from the oyster nacre [J]. Mar Biotechnol, 2007, 9(4): 437-49.

[38] DUPLAT D, GALLET M, BERLAND S, et al. The effect of molecules in mother-of-pearl on the decrease in bone resorption through the inhibition of osteoclast cathepsin K [J]. Biomaterials, 2007, 28(32): 4769-78.

[39] WILLIAMS D. Revisiting the definition of biocompatibility [J]. Medical device technology, 2003, 14(8): 10-3.

[40] ATLAN G, BALMAIN N, BERLAND S, et al. Reconstruction of human maxillary defects with nacre powder: histological evidence for bone regeneration [J]. Comptes Rendus Acad Sci Ser III-Sci Vie-Life Sci, 1997, 320(3): 253-8.

[41] LAMGHARI M, BERLAND S, LAURENT A, et al. Bone reactions to nacre injected percutaneously into the vertebrae of sheep [J]. Biomaterials, 2001, 22(6): 555-62.

[42] LAMGHARI M, ANTONIETTI P, BERLAND S, et al. Arthrodesis of lumbar spine transverse processes using nacre in rabbit [J]. J Bone Miner Res, 2001, 16(12): 2232-7.

[43] ATLAN G, DELATTRE O, BERLAND S, et al. Interface between bone and nacre implants in sheep [J]. Biomaterials, 1999, 20(11): 1017-22.

[44] KIM Y W, KIM J J, KIM Y H, et al. Effects of organic matrix proteins on the interfacial structure at the bone-biocompatible nacre interface in vitro [J]. Biomaterials, 2002, 23(9): 2089-96.

[45] BERLAND S, DELATTRE O, BORZEIX S, et al. Nacre/bone interface changes in durable nacre endosseous implants in sheep [J]. Biomaterials, 2005, 26(15): 2767-73.

[46] ROUSSEAU M, DELATTRE O, GILLET P, et al. Subchondral nacre implant in the articular zone of the sheep’s knee: A pilot study [J]. Bio-Med Mater Eng, 2012, 22(4): 227-34.

[47] LEE K, KIM H, KIM J M, et al. Nacre-driven water-soluble factors promote wound healing of the deep burn porcine skin by recovering angiogenesis and fibroblast function [J]. Mol Biol Rep, 2012, 39(3): 3211-8.

[48] DAI J P, CHEN J, BEI Y F, et al. Effects of pearl powder extract and its fractions on fibroblast function relevant to wound repair [J]. Pharm Biol, 2010, 48(2): 122-7.

[49] LOPEZ E, LE FAOU A, BORZEIX S, et al. Stimulation of rat cutaneous fibroblasts and their synthetic activity by implants of powdered nacre (mother of pearl) [J]. Tissue Cell, 2000, 32(1): 95-101.

[50] SHONO M, SHIMIZU I, AOYAGI E, et al. Reducing Effect of Feeding Powdered Nacre of Pinctada maxima on the Visceral Fat of Rats [J]. Biosci Biotechnol Biochem, 2008, 72(10): 2761-3.

[51] LIU Y C, SATOH K, HAS Y. Feeding scallop shell powder induces the expression of uncoupling protein 1 (UCP1) in white adipose tissue of rats [J]. Biosci Biotechnol Biochem, 2006, 70(11): 2733-8.

[52] LIU Y C, HASEGAWA Y. Reducing effect of feeding powdered scallop shell on the body fat mass of rats [J]. Biosci Biotechnol Biochem, 2006, 70(1): 86-92.

[53] VUJASINOVIC-STUPAR N, NOVKOVIC S, JEZDIC I. Supplementation with Bio-Calcium from Shells Pinctada Maxima in Postmenopausal Women with Decreased Mineral Bone Density - Pilot Study [J]. Srp Ark Celok Lek, 2009, 137(9-10): 518-23.

[54] MA P X, ZHANG R Y, XIAO G Z, et al. Engineering new bone tissue in vitro on highly porous poly(alpha-hydroxyl acids)/hydroxyapatite composite scaffolds [J]. J Biomed Mater Res, 2001, 54(2): 284-93.

[55] SEITZ H, RIEDER W, IRSEN S, et al. Three-dimensional printing of porous ceramic scaffolds for bone tissue engineering [J]. J Biomed Mater Res Part B, 2005, 74B(2): 782-8.

[56] ZHU L Q, WANG H M, XU J H, et al. Effects of nacre-coated titanium surfaces on cell proliferation and osteocalcin expression in MG-63 osteoblast-like cells [J]. Afr J Biotechnol, 2011, 10(68): 15387-93.

[57] SCHLIEPHAKE H. Application of bone growth factors--the potential of different carrier systems [J]. Oral and maxillofacial surgery, 2010, 14(1): 17-22.

[58] GOMBOTZ W R, WEE S F. Protein release from alginate matrices [J]. Adv Drug Deliv Rev, 1998, 31(3): 267-85.

[59] AUGST A D, KONG H J, MOONEY D J. Alginate hydrogels as biomaterials [J]. Macromol Biosci, 2006, 6(8): 623-33.

[60] LUO Y, KIRKER K R, PRESTWICH G D. Cross-linked hyaluronic acid hydrogel films: new biomaterials for drug delivery [J]. J Control Release, 2000, 69(1): 169-84.

[61] PRESTWICH G D, MARECAK D M, MARECEK J F, et al. Controlled chemical modification of hyaluronic acid: synthesis, applications, and biodegradation of hydrazide derivatives [J]. J Control Release, 1998, 53(1-3): 93-103.

[62] MINGEN X, YANLEI L, HAIRUI S, et al. Fabricating a pearl/PLGA composite scaffold by the low-temperature deposition manufacturing technique for bone tissue engineering [J]. Biofabrication, 2010, 2(2): 025002 (10 pp.)- (10 pp.) (10 pp.).

[63] ZHU L Q, WANG H M, XU J H, et al. Effects of titanium implant surface coated with natural nacre on MC3T3E1 cell line in vitro [J]. Prog Biochem Biophys, 2008, 35(6): 671-5.

備注/Memo

備注/Memo:
 

基金項目:國家自然科學基金(51072090)

作者簡介:黃千里(1990—),男,在讀博士生。主要研究方向:生物醫用材料。

通信聯系人:馮慶玲,女,教授,博士生導師, E-mail: biomater@mail.tsinghua.edu.cn

更新日期/Last Update: 2013-10-11
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