Journal of Inorganic Materials ›› 2016, Vol. 31 ›› Issue (12): 1341-1346.DOI: 10.15541/jim20160134
• Orginal Article • Previous Articles Next Articles
CHENG Yao1, WANG Ming2, WANG Xing-Xing1, XU Zheng-Li1, WANG Da-Lin1, Zhu Ying-Chun2
Received:
2016-03-08
Revised:
2016-05-03
Published:
2016-12-16
Online:
2016-11-23
About author:
CHENG Yao. E-mail:1600686693@qq.com
CLC Number:
CHENG Yao, WANG Ming, WANG Xing-Xing, XU Zheng-Li, WANG Da-Lin, Zhu Ying-Chun. Investigation on In Vitro Osteogenic Properties of Multiple-doped Hydroxyapatite with Natural Bone Content[J]. Journal of Inorganic Materials, 2016, 31(12): 1341-1346.
Gene | Sequence | |
---|---|---|
ALP | F: 5′- AAGCTGGGAAGAACACTCCA-3′ | |
R: 5′- CAAACAGGAGAGCCACTTCA-3′ | ||
OCN | F: 5′- AAGCAGGAGGGCAATAAGGT-3′ | |
R: 5′- TTTGTAGGCGGTCTTCAAGC-3′ | ||
OPN | F: 5′- GCAGGCATTCTCGGAGGAAA-3′ | |
R: 5′-TCTGAGCTGCCAGAATCAGTC-3′ |
Table 1 Gene related primers
Gene | Sequence | |
---|---|---|
ALP | F: 5′- AAGCTGGGAAGAACACTCCA-3′ | |
R: 5′- CAAACAGGAGAGCCACTTCA-3′ | ||
OCN | F: 5′- AAGCAGGAGGGCAATAAGGT-3′ | |
R: 5′- TTTGTAGGCGGTCTTCAAGC-3′ | ||
OPN | F: 5′- GCAGGCATTCTCGGAGGAAA-3′ | |
R: 5′-TCTGAGCTGCCAGAATCAGTC-3′ |
Fig. 3 Light microscopic photoes of samples after alkaline phosphatase staining^(a) Control group; (b) Mineralization group; (c) HA1 group; (d) HA2 group
[1] | KAILASANATHAN C, SELVAKUMAR N, NAIDU V,et al. Structure and properties of titania reinforced nano-hydroxyapatite/gelatin bio-composites for bone graft materials . Ceram. Int. , 2012, 38(1): 571-579. |
[2] | KIM J H,KIM D K,LEE O J,et al. Osteoinductive silk fibroin/titanium dioxide/hydroxyapatite hybrid scaffold for bone tissue engineering . Int. J . Biol. Macromol., 2016, 82: 160-167. |
[3] | PAPE H C,EVANS A,KOBBE P,et al. Autologous bone graft: properties and techniques. J. Orthop. Trauma., 2010, 24(1): 36-40. |
[4] | TANG D,TARE RS,YANG LY,et al. Biofabrication of bone tissue: approaches, challenges and translation for bone regeneration . Biomaterials, 2016, 83: 363-382. |
[5] | SHAKIR M,JOLLY R,KHAN MS,et al. Nano-hydroxyapatite/ chitosan-starch nanocomposite as a novel bone construct: synthesis and in vitro studies . Int. J. Biol .Macromol., 2015, 80: 282-292. |
[6] | LASGORCEIX M, CHAMPION E, CHARTIER T,et al. Shaping by microstereolithography and sintering of macro-micro-porous silicon substituted hydroxyapatite . J. Eur. Ceram. Soc., 2016, 36(4): 1091-1101. |
[7] | LI X Y, LIU H C, WANG J N,et al. Preparation and characterization of plla/nha nonwoven mats via laser melt electrospinning . Mater. Lett., 2012, 73(8): 103-106. |
[8] | MURUGAN R, RAMAKRISHNA S.Bioresorbable composite bone paste using polysaccharide based nano hydroxyapatite. Biomaterials, 2004, 25(17): 3829-3835. |
[9] | LI H, GONG M, YANG A,et al.Degradable biocomposite of nano calcium-deficient hydroxyapatite-multi(amino acid) copolymer . Int. J. Nanomedicine, 2012, 7(7): 1287-1295. |
[10] | KULANTHAIVEL S, MISHRA U, AGARWAL T,et al. Improving the osteogenic and angiogenic properties of synthetic hydroxyapatite by dual doping of bivalent cobalt and magnesium ion . Ceram. Int., 2015, 41(9): 11323-11333. |
[11] | ZOFKOVA I, NEMCIKOVA P, MATUCHA P,et al. Trace elements and bone health . Clin. Chem. Lab. Med., 2013, 51(8): 1555-1561. |
[12] | PORTER A E, PATEL N, SKEPPER J N,et al. Comparison of in vivo dissolution processes in hydroxyapatite and silicon-substituted hydroxyapatite bioceramics . Biomaterials, 2003, 24(25): 4609-4620. |
[13] | GE X, LENG Y, BAO C Y,et al. Antibacterial coatings of fluoridated hydroxyapatite for percutaneous implants . J. Biomed. Mater. Res. A, 2010, 95(2): 588-599. |
[14] | CHEN X, TANG Q L, ZHU Y J,et al. Synthesis and antibacterial property of zinc loaded hydroxyapatite nanorods . Mater. Lett., 2012, 89: 233-235. |
[15] | ZHAO S F, JIANG Q H, PEEL S,et al. Effects of magnesium-substituted nanohydroxyapatite coating on implant osseointegration . Clin. Oral Implants Res., 2013, 24(100): 34-41. |
[16] | CAPUCCINI C, TORRICELLI P, SIMA F,et al. Strontium-substituted hydroxyapatite coatings synthesized by pulsed-laser deposition: in vitro osteoblast and osteoclast response . Acta Biomater., 2008, 4(6): 1885-1893. |
[17] | WANG M, GAO J, SHI C,et al. Facile one-pot synthesis of oriented pure hydroxyapatite with hierarchical architecture by topotactic conversion . Cryst. Growth Des., 2014, 14(12): 6459-6466. |
[18] | SADJADI M S, MESKINFAM M, SADEGHI B,et al. In situ biomimetic synthesis, characterization and in vitro investigation of bone-like nanohydroxyapatite in starch matrix. Mater. Chem. Phys., 2010, 124(1): 217-222. |
[19] | GUNDBERG C M, LOOKER A C, NIEMAN S D,et al. Patterns of osteocalcin and bone specific alkaline phosphatase by age, gender, and race or ethnicity. Bone, 2002, 31(6): 703-708. |
[20] | BECK G R, MORAN E, KNECHT N,et al.Inorganic phosphate regulates multiple genes during osteoblast differentiation, including nrf2. Exp. Cell Res., 2003, 288(2): 288-300. |
[21] | CHEN L, JACQUET R, LOWDER E,et al.Refinement of collagen-mineral interaction: a possible role for osteocalcin in apatite crystal nucleation, growth and development. Bone, 2015, 71: 7-16. |
[22] | KLANING E, CHRISTENSEN B, SORESEN E S,et al.Osteopontin binds multiple calcium ions with high affinity and independently of phosphorylation status. Bone, 2014, 66(9): 90-95. |
[23] | CHEN Q, SHOU P, ZHANG L Y,et al.. An osteopontin-integrin interaction plays a critical role in directing adipogenesis and osteogenesis by mesenchymal stem cells. Stem Cells, 2014, 32(2): 327-337. |
[24] | MIAO S, WENG W J, CHENG K,et al.Sol-Gel preparation of zn-doped fluoridated hydroxyapatite films. Surf. Coat. Technol., 2005, 198(1): 223-226. |
[25] | ROBERT J, HELEN F, DAVID V,et al.Synthesis, characterization and modelling of zinc and silicate co-substituted hydroxyapatite. J .R .Soc .Interface, 2015, 12(108): 20150190. |
[26] | ZHANG L L, LI H J, LI K Z,et al.Synthesis and characterization of nanobelt-shaped na, f and carbonate multi-substituted hydroxyapatite. Mater. Lett., 2015, 138(2): 48-51. |
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