141
Views
56
CrossRef citations to date
0
Altmetric
Original Research

Degradation and osteogenic potential of a novel poly(lactic acid)/nano-sized β-tricalcium phosphate scaffold

, , , , , , & show all
Pages 5881-5888 | Published online: 28 Nov 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (8)

Wenzhao Wang, Pan Liu, Boqing Zhang, Xingyu Gui, Xuan Pei, Ping Song, Xia Yu, Zhengdong Zhang & Changchun Zhou. (2023) Fused Deposition Modeling Printed PLA/Nano β-TCP Composite Bone Tissue Engineering Scaffolds for Promoting Osteogenic Induction Function. International Journal of Nanomedicine 18, pages 5815-5830.
Read now
Yun Liu, Ying-Ling Miao, Feng Qin, Cen Cao, Xiao-Lin Yu, Yu-Han Wu, Tian-Lu Wang, Ruo-Gu Xu, Liu Zhao, Fan Wu, Zheng-Chuan Zhang, Jia-Min Yang, Yang Yang, Xin Xie, Li-Ming Zhang & Fei-Long Deng. (2019) Electrospun Poly (Aspartic Acid)-Modified Zein Nanofibers for Promoting Bone Regeneration. International Journal of Nanomedicine 14, pages 9497-9512.
Read now
Ming-Hua Ho, Hao-Chieh Chang, Yu-Chia Chang, Jeiannete Claudia, Tzu-Chiao Lin & Po-Chun Chang. (2017) PDGF-metronidazole-encapsulated nanofibrous functional layers on collagen membrane promote alveolar ridge regeneration. International Journal of Nanomedicine 12, pages 5525-5535.
Read now
Lu Cao, Qian Chen, Li-Bo Jiang, Xiao-Fan Yin, Chong Bian, Hui-Ren Wang, Yi-Qun Ma, Xiang-Qian Li, Xi-Lei Li & Jian Dong. (2017) Bioabsorbable self-retaining PLA/nano-sized β-TCP cervical spine interbody fusion cage in goat models: an in vivo study. International Journal of Nanomedicine 12, pages 7197-7205.
Read now
Xin Shen, Feng Su, Jianting Dong, Zhongyong Fan, Yourong Duan & Suming Li. (2015) In vitro biocompatibility evaluation of bioresorbable copolymers prepared from l-lactide, 1, 3-trimethylene carbonate, and glycolide for cardiovascular applications. Journal of Biomaterials Science, Polymer Edition 26:8, pages 497-514.
Read now
Koel Chaudhury, Vishu Kumar, Jayaprakash Kandasamy & Sourav RoyChoudhury. (2014) Regenerative nanomedicine: current perspectives and future directions. International Journal of Nanomedicine 9, pages 4153-4167.
Read now
De-Xin Wang, Yao He, Long Bi, Ze-Hua Qu, Ji-Wei Zou, Zhen Pan, Jun-Jun Fan, Liang Chen, Xin Dong, Xiang-Nan Liu, Guo-Xian Pei & Jian-Dong Ding. (2013) Enhancing the bioactivity of Poly(lactic-co-glycolic acid) scaffold with a nano-hydroxyapatite coating for the treatment of segmental bone defect in a rabbit model. International Journal of Nanomedicine 8, pages 1855-1865.
Read now

Articles from other publishers (48)

Rafał Podgórski, Michał Wojasiński, Edyta Trepkowska-Mejer & Tomasz Ciach. (2023) A simple and fast method for screening production of polymer-ceramic filaments for bone implant printing using commercial fused deposition modelling 3D printers. Biomaterials Advances 146, pages 213317.
Crossref
Ana Ferrández-Montero & Sandra C. Cifuentes. 2023. Biopolymers. Biopolymers 167 205 .
Alain Arias-Betancur, Nicolás Badilla-Wenzel, Álvaro Astete-Sanhueza, Nicole Farfán-Beltrán & Fernando José Dias. (2022) Carrier systems for bone morphogenetic proteins: An overview of biomaterials used for dentoalveolar and maxillofacial bone regeneration. Japanese Dental Science Review 58, pages 316-327.
Crossref
So-Min Kim, Kyung-Hyeon Yoo, Hyeonjin Kim, Yong-Il Kim & Seog-Young Yoon. (2022) Simultaneous Substitution of Fe and Sr in Beta-Tricalcium Phosphate: Synthesis, Structural, Magnetic, Degradation, and Cell Adhesion Properties. Materials 15:13, pages 4702.
Crossref
Kai Qiao, Lu Xu, Junnan Tang, Qiguang Wang, Khoon S. Lim, Gary Hooper, Tim B. F. Woodfield, Guozhen Liu, Kang Tian, Weiguo Zhang & Xiaolin Cui. (2022) The advances in nanomedicine for bone and cartilage repair. Journal of Nanobiotechnology 20:1.
Crossref
Karim Elhattab, Sarit B. Bhaduri & Prabaha Sikder. (2022) Influence of Fused Deposition Modelling Nozzle Temperature on the Rheology and Mechanical Properties of 3D Printed β-Tricalcium Phosphate (TCP)/Polylactic Acid (PLA) Composite. Polymers 14:6, pages 1222.
Crossref
Jan Krieghoff, Christian Kascholke, Rudi Loth, Annett Starke, Andreas Koenig, Michaela Schulz-Siegmund & Michael C. Hacker. (2022) Composition-controlled degradation behavior of macroporous scaffolds from three-armed biodegradable macromers. Polymer Degradation and Stability 195, pages 109775.
Crossref
Yiqun Ma, Yuwang You, Lu Cao, Bing Liang, Bo Tian, Jian Dong & Hong Lin. (2021) Improved Osteogenesis by Mineralization Combined With Double-Crosslinked Hydrogel Coating for Proliferation and Differentiation of Mesenchymal Stem Cells. Frontiers in Bioengineering and Biotechnology 9.
Crossref
Cheng Zhang, Koichiro Hayashi & Kunio Ishikawa. (2021) Enhancement of bone to polylactic acid plate bonding by carbonate apatite coating. Ceramics International 47:20, pages 28348-28356.
Crossref
Han-Seung Ko, Sangwoon Lee, Doyoung Lee & Jae Young Jho. (2021) Mechanical Properties and Bioactivity of Poly(Lactic Acid) Composites Containing Poly(Glycolic Acid) Fiber and Hydroxyapatite Particles. Nanomaterials 11:1, pages 249.
Crossref
Han-Seung Ko, Sangwoon Lee & Jae Jho. (2021) Synthesis and Modification of Hydroxyapatite Nanofiber for Poly(Lactic Acid) Composites with Enhanced Mechanical Strength and Bioactivity. Nanomaterials 11:1, pages 213.
Crossref
Praveen G.Nandakumar Kalarikkal & Sabu Thomas. 2021. Theory and Applications of Nonparenteral Nanomedicines. Theory and Applications of Nonparenteral Nanomedicines 27 54 .
Nobel Tomar, Maroof A. Hashmi & Athar Adil Hashmi. 2020. Advances in Metallodrugs. Advances in Metallodrugs 363 401 .
Ting Wang, Shu Guo, Hua Zhang, Yiqing Chen & Yue Cai. (2020) Injectable hydrogel delivering bone morphogenetic protein-2, vascular endothelial growth factor, and adipose-derived stem cells for vascularized bone tissue engineering. Journal of Drug Delivery Science and Technology 57, pages 101637.
Crossref
Higuchi, Fortunato, Woźniak, Chodara, Domaschke, Męczyńska-Wielgosz, Kruszewski, Dommann & Łojkowski. (2019) Polymer Membranes Sonocoated and Electrosprayed with Nano-Hydroxyapatite for Periodontal Tissues Regeneration. Nanomaterials 9:11, pages 1625.
Crossref
Siriporn Tanodekaew, Somruethai Channasanon & Pakkanun Kaewkong. (2019) Heat-curing polylactide for bone implants: Preparation and investigation on properties relevant to degradation. Journal of Bioactive and Compatible Polymers 34:6, pages 464-478.
Crossref
Wei Wen, Kun Liu, Ziping Zou, Changren Zhou & Binghong Luo. (2019) Synergistic Effect of Surface-Modified MgO and Chitin Whiskers on the Hydrolytic Degradation Behavior of Injection Molding Poly( l -lactic acid) . ACS Biomaterials Science & Engineering 5:6, pages 2942-2952.
Crossref
Mehmet Onur Aydogdu, Ebru Toksoy Oner, Nazmi Ekren, Gokce Erdemir, Serap Erdem Kuruca, Esra Yuca, Muge Sennaroglu Bostan, Mehmet S. Eroglu, Fakhera Ikram, Muhammet Uzun & Oguzhan Gunduz. (2019) Comparative characterization of the hydrogel added PLA/β-TCP scaffolds produced by 3D bioprinting. Bioprinting 13, pages e00046.
Crossref
Srikanthan Ramesh, Lisa Lungaro, Dimitrios Tsikritsis, Eric Weflen, Iris V. Rivero & Alistair P. D. Elfick. (2018) Fabrication and evaluation of poly(lactic acid), chitosan, and tricalcium phosphate biocomposites for guided bone regeneration. Journal of Applied Polymer Science 135:39, pages 46692.
Crossref
Sunny Lee, Mahesh Kumar Joshi, Arjun Prasad Tiwari, Bikendra Maharjan, Kyung Suk Kim, Yeo-Heung Yun, Chan Hee Park & Cheol Sang Kim. (2018) Lactic acid assisted fabrication of bioactive three-dimensional PLLA/β-TCP fibrous scaffold for biomedical application. Chemical Engineering Journal 347, pages 771-781.
Crossref
Masoumeh Ezati, Hamide Safavipour, Behzad Houshmand & Shahab Faghihi. (2018) Development of a PCL/gelatin/chitosan/β-TCP electrospun composite for guided bone regeneration. Progress in Biomaterials 7:3, pages 225-237.
Crossref
Zhenzhao Guo, Dongying Bo, Yuan He, Xueshi Luo & Hong Li. (2018) Degradation properties of chitosan microspheres/poly(L-lactic acid) composite in vitro and in vivo. Carbohydrate Polymers 193, pages 1-8.
Crossref
Yu-Xin Sun, Jin-Fang Zhang, Dong-Ji Li, Xiao-Min Wu, Liang-Liang Xu, Xiao-Hua Pan & Gang Li. (2018) Comparing the osteoconductive potential between tubular and cylindrical beta-tricalcium phosphate scaffolds: An experimental study in rats. Journal of Biomedical Materials Research Part B: Applied Biomaterials 106:5, pages 1934-1940.
Crossref
Jie-Lin Wang, Qian Chen, Bei-Bei Du, Lu Cao, Hong Lin, Zhong-Yong Fan & Jian Dong. (2018) Enhanced bone regeneration composite scaffolds of PLLA/β-TCP matrix grafted with gelatin and HAp. Materials Science and Engineering: C 87, pages 60-69.
Crossref
Da Yong Shin, Min-Ho Kang, In-Gu Kang, Hyoun-Ee Kim & Seol-Ha Jeong. (2018) In vitro and in vivo evaluation of polylactic acid-based composite with tricalcium phosphate microsphere for enhanced biodegradability and osseointegration. Journal of Biomaterials Applications 32:10, pages 1360-1370.
Crossref
Dana da Silva, Maya Kaduri, Maria Poley, Omer Adir, Nitzan Krinsky, Janna Shainsky-Roitman & Avi Schroeder. (2018) Biocompatibility, biodegradation and excretion of polylactic acid (PLA) in medical implants and theranostic systems. Chemical Engineering Journal 340, pages 9-14.
Crossref
Jagannathan Thirumalai. 2018. Hydroxyapatite - Advances in Composite Nanomaterials, Biomedical Applications and Its Technological Facets. Hydroxyapatite - Advances in Composite Nanomaterials, Biomedical Applications and Its Technological Facets.
Qian Chen, Lu Cao, Jie-Lin Wang, Hang Zhao, Hong Lin, Zhong-Yong Fan & Jian Dong. (2018) Improved cell adhesion and osteogenesis using a PLTGA (poly l -lactide, 1,3-trimethylene carbonate, and glycolide) terpolymer by gelatin-assisted hydroxyapatite immobilization for bone regeneration . Journal of Materials Chemistry B 6:2, pages 301-311.
Crossref
S. Kargozar, S. Hamzehlou & F. Baino. 2018. Fundamental Biomaterials: Ceramics. Fundamental Biomaterials: Ceramics 407 437 .
Ajay Suryavanshi, Kunal Khanna, K R Sindhu, Jayesh Bellare & Rohit Srivastava. (2017) Magnesium oxide nanoparticle-loaded polycaprolactone composite electrospun fiber scaffolds for bone–soft tissue engineering applications: in-vitro and in-vivo evaluation . Biomedical Materials 12:5, pages 055011.
Crossref
Xiaofan Yin, Libo Jiang, Jielai Yang, Lu Cao & Jian Dong. (2017) Application of biodegradable 3D-printed cage for cervical diseases via anterior cervical discectomy and fusion (ACDF): an in vitro biomechanical study. Biotechnology Letters 39:9, pages 1433-1439.
Crossref
Joanna Filipowska, Katarzyna Cholewa-Kowalska, Jarosław Wieczorek, Danuta Semik, Zbigniew Dąbrowski, Maria Łączka & Anna M Osyczka. (2017) Ectopic bone formation by gel-derived bioactive glass-poly-L-lactide-co-glycolide composites in a rabbit muscle model. Biomedical Materials 12:1, pages 015015.
Crossref
Saeid Tajbakhsh & Faezeh Hajiali. (2017) A comprehensive study on the fabrication and properties of biocomposites of poly(lactic acid)/ceramics for bone tissue engineering. Materials Science and Engineering: C 70, pages 897-912.
Crossref
Mohamadreza Baghaban-Eslaminejad, Ahmad Oryan, Amir Kamali & Ali Moshiri. 2017. Nanostructures for Oral Medicine. Nanostructures for Oral Medicine 777 832 .
L. Grøndahl, K.S. Jack & C.S. Goonasekera. 2017. Biomedical Composites. Biomedical Composites 83 110 .
Berna Kankilic, Eda Ciftci Dede, Petek Korkusuz, Muharrem Timuçin & Feza Korkusuz. 2017. Clinical Applications of Biomaterials. Clinical Applications of Biomaterials 65 90 .
Ganesh Narayanan, Varadraj N. Vernekar, Emmanuel L. Kuyinu & Cato T. Laurencin. (2016) Poly (lactic acid)-based biomaterials for orthopaedic regenerative engineering. Advanced Drug Delivery Reviews 107, pages 247-276.
Crossref
Sarah M. Bennett, Meera Arumugam, Samuel Wilberforce, Davide Enea, Neil Rushton, Xiang C. Zhang, Serena M. Best, Ruth E. Cameron & Roger A. Brooks. (2016) The effect of particle size on the in vivo degradation of poly(d,l-lactide-co-glycolide)/α-tricalcium phosphate micro- and nanocomposites. Acta Biomaterialia 45, pages 340-348.
Crossref
Chialin Sheu, K. T. Shalumon, Chih-Hao Chen, Chang-Yi Kuo, Yi Teng Fong & Jyh-Ping Chen. (2016) Dual crosslinked hyaluronic acid nanofibrous membranes for prolonged prevention of post-surgical peritoneal adhesion. Journal of Materials Chemistry B 4:41, pages 6680-6693.
Crossref
Sae Hoon Kim, Do Yeon Kim, Ji Eun Kwon, Ji Soon Park & Joo Han Oh. (2015) Perianchor Cyst Formation Around Biocomposite Biodegradable Suture Anchors After Rotator Cuff Repair. The American Journal of Sports Medicine 43:12, pages 2907-2912.
Crossref
Feng Su, Xin Shen, Yanfei Hu, Vincent Darcos & Suming Li. (2015) Biocompatibility of thermo-responsive PNIPAAm-PLLA-PNIPAAm triblock copolymer as potential drug carrier. Polymers for Advanced Technologies 26:12, pages 1567-1574.
Crossref
Berna Kankilic, Elif Bilgic, Petek Korkusuz & Feza Korkusuz. (2014) Vancomycin containing PLLA/β-TCP controls experimental osteomyelitis in vivo. Journal of Orthopaedic Surgery and Research 9:1.
Crossref
Lara Yildirimer & Alexander M. Seifalian. (2014) Three-dimensional biomaterial degradation — Material choice, design and extrinsic factor considerations. Biotechnology Advances 32:5, pages 984-999.
Crossref
Jae Hyup Lee, Jungju Kim, Hae-Ri Baek, Kyung Mee Lee, Jun-Hyuk Seo, Hyun-Kyung Lee, A-Young Lee, Guang Bin Zheng, Bong-Soon Chang & Choon-Ki Lee. (2014) Fabrication of an rhBMP-2 loaded porous β-TCP microsphere-hyaluronic acid-based powder gel composite and evaluation of implant osseointegration. Journal of Materials Science: Materials in Medicine 25:9, pages 2141-2151.
Crossref
Jianting Dong, Lan Liao, Yan Ma, Li Shi, Gongxi Wang, Zhongyong Fan, Suming Li & Zhiqian Lu. (2014) Enzyme-catalyzed degradation behavior of l-lactide/trimethylene carbonate/glycolide terpolymers and their composites with poly(l-lactide-co-glycolide) fibers. Polymer Degradation and Stability 103, pages 26-34.
Crossref
Shi-hui Chen, Li-zhen Zheng, Xin-hui Xie, Xin-luan Wang, Yu-xiao Lai, Shu-kui Chen, Ming Zhang, Yi-xiang Wang, James F. Griffith & Ling Qin. (2014) Comparative study of poly (lactic-co-glycolic acid)/tricalcium phosphate scaffolds incorporated or coated with osteogenic growth factors for enhancement of bone regeneration. Journal of Orthopaedic Translation 2:2, pages 91-104.
Crossref
L. Grøndahl, K.S. Jack & C.S. Goonasekera. 2014. Bone Substitute Biomaterials. Bone Substitute Biomaterials 261 293 .
Loredana Tammaro, Vittoria Vittoria, Ralf Wyrwa, Jürgen Weisser, Birgitt Beer, Susanne Thein & Matthias Schnabelrauch. (2014) Fabrication and characterization of electrospun polylactide/β-tricalcium phosphate hybrid meshes for potential applications in hard tissue repair. BioNanoMaterials 15:1-2.
Crossref