Bone‐Adhesive Materials: Clinical Requirements, Mechanisms of Action, and Future Perspective
暂无分享,去创建一个
Jan C. M. van Hest | J. V. van Hest | S. Leeuwenburgh | R. P. Félix Lanao | Sander C. G. Leeuwenburgh | María J. Sánchez-Fernández | Hussein Hammoudeh | Rosa P. Félix Lanao | Machteld van Erk | Machteld van Erk | Hussein Hammoudeh | R. F. Félix Lanao
[1] Babak Akbari,et al. Developing new synthetic biomimetic nanocomposite adhesives: Synthesis and evaluation of bond strength and solubilization , 2018, Reactive and Functional Polymers.
[2] C. Sonoda,et al. Utilization of ethyl cyanoacrylate and 2-octyl cyanoacrylate adhesives for autogenous bone graft fixation: histomorphometric study in rats. , 2014, The Journal of oral implantology.
[3] J. Charnley. The Healing of Human Fractures in Contact With Self‐curing Acrylic Cement , 1966, Clinical orthopaedics and related research.
[4] R. Horch,et al. Foreign body reaction after usage of tissue adhesives for skin closure: a case report and review of the literature , 2009, Archives of Orthopaedic and Trauma Surgery.
[5] G. Murrell,et al. Frog glue enhances rotator cuff repair in a laboratory cadaveric model. , 2009, Journal of shoulder and elbow surgery.
[6] D. Riediger,et al. A new adhesive technique for internal fixation in midfacial surgery , 2008, Biomedical engineering online.
[7] Makoto Kikuchi,et al. Photocrosslinkable chitosan as a dressing for wound occlusion and accelerator in healing process. , 2002, Biomaterials.
[8] F. Roberto,et al. Understanding Marine Mussel Adhesion , 2007, Marine Biotechnology.
[9] Christian Heiss,et al. The tissue response to an alkylene bis(dilactoyl)-methacrylate bone adhesive. , 2005, Biomaterials.
[10] W. Spotnitz. Fibrin Sealant: Past, Present, and Future: A Brief Review , 2010, World Journal of Surgery.
[11] Max Heiland,et al. The innovative application of a novel bone adhesive for facial fracture osteosynthesis-in vitro and in vivo results. , 2013, Journal of biomedical materials research. Part A.
[12] Thomas A Einhorn,et al. The biology of fracture healing. , 2011, Injury.
[13] F Burny,et al. Tissues and bone adhesives--historical aspects. , 1998, Biomaterials.
[14] Bruce P. Lee,et al. Thermal gelation and tissue adhesion of biomimetic hydrogels , 2007, Biomedical materials.
[15] A. Habib,et al. Cyanoacrylate: A Handy Tissue Glue in Maxillofacial Surgery: Our Experience in Alexandria, Egypt , 2013, Journal of Maxillofacial and Oral Surgery.
[16] Bong-Hyuk Choi,et al. Engineered mussel bioglue as a functional osteoinductive binder for grafting of bone substitute particles to accelerate in vivo bone regeneration. , 2015, Journal of materials chemistry. B.
[17] G. Bannister,et al. Osteonecrosis with the use of polymethylmethacrylate cement for hip replacement: thermal-induced damage evidenced in vivo by decreased osteocyte viability. , 2014, European cells & materials.
[18] Kishan Narine,et al. Kryptonite bone cement prevents pathologic sternal displacement. , 2010, The Annals of thoracic surgery.
[19] Jennifer Monahan,et al. Cross-linking the protein precursor of marine mussel adhesives: bulk measurements and reagents for curing. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[20] T. V. van Gulik,et al. Evolution of fibrinogen-coated collagen patch for use as a topical hemostatic agent. , 2008, Journal of biomedical materials research. Part B, Applied biomaterials.
[21] R. Langer,et al. Synthesis and Characterization of a Library of In‐Situ Curing, Nonswelling Ethoxylated Polyol Thiol‐ene Hydrogels for Tailorable Macromolecule Delivery , 2015, Advanced materials.
[22] N. Shah. Current state and use of biological adhesives in orthopedic surgery. , 2014, Orthopedics.
[23] Berkem Atalay,et al. Comparison of Mechanical Stabilization of the Mandibular Angulus Fracture Fixation, With Titanium Plates and Screws, Resorbable Plates and Screws, and Bone Adhesives , 2018, The Journal of craniofacial surgery.
[24] S. A. Mian,et al. The Adhesion Mechanism of Marine Mussel Foot Protein: Adsorption of L-Dopa on - and -Cristobalite Silica Using Density Functional Theory , 2017 .
[25] A. Sultan,et al. Efficacy and Safety of Using N-Butyl Cyanoacrylate in Cranial Fixation Following Trauma and Other Pathologies. , 2018, Turkish neurosurgery.
[26] Christian Heiss,et al. Bone Adhesives in Trauma and Orthopedic Surgery , 2006, European Journal of Trauma.
[27] D. Hamblen,et al. Problems and pitfalls of compression fixation of long bone fractures: a review of results and complications. , 1978, Injury.
[28] A. Trott. Cyanoacrylate tissue adhesives. An advance in wound care. , 1997, JAMA.
[29] A. Loguércio,et al. Self-Etching Enamel Bonding Using Acidic Functional Monomers with Different-length Carbon Chains and Hydrophilicity. , 2017, The journal of adhesive dentistry.
[30] T. Basak,et al. Treatment of tripod fracture of zygomatic bone by N-2-butyl cyanoacrylate glue fixation, and its effects on the tissues , 2007, European Archives of Oto-Rhino-Laryngology.
[31] J. Kumpula,et al. Durability of the bond between bone and various 2-cyanoacrylates in an aqueous environment. , 1979, Journal of biomedical materials research.
[32] D. Riediger,et al. In vitro study of adhesive polymethylmethacrylate bone cement bonding to cortical bone in maxillofacial surgery. , 2010, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[33] O. Poyanlı,et al. Effect of N-butyl cyanoacrylate on fracture healing in segmental rat tibia fracture model , 2014, Journal of Orthopaedic Surgery and Research.
[34] C. Turkelson,et al. Bone void fillers. , 2010, The Journal of the American Academy of Orthopaedic Surgeons.
[35] C. Laurencin,et al. Novel mechanically competent polysaccharide scaffolds for bone tissue engineering , 2011, Biomedical materials.
[36] D. Katz,et al. A new bioadhesive for in vivo bone adhesion , 1993 .
[37] Bruce P. Lee,et al. Synthesis and characterization of self-assembling block copolymers containing bioadhesive end groups. , 2002, Biomacromolecules.
[38] A. Behrens,et al. A modified chondroitin sulfate aldehyde adhesive for sealing corneal incisions. , 2005, Investigative ophthalmology & visual science.
[39] M. Tzaphlidou. Bone Architecture: Collagen Structure and Calcium/Phosphorus Maps , 2008, Journal of biological physics.
[40] D. Morse,et al. The bioadhesive ofPhragmatopoma californica tubes: a silk-like cement containingL-DOPA , 1988, Journal of Comparative Physiology B.
[41] K. Ishihara,et al. Adhesive bone cement both to bone and metals: 4-META in MMA initiated with tri-n-butyl borane. , 1989, Journal of biomedical materials research.
[42] J. V. Hest,et al. The chemistry of tissue adhesive materials , 2014 .
[43] I. Redler. Polymer Osteosynthesis: A Clinical Trial of Ostamer in Forty-two Patients , 1962 .
[44] P. Fedak,et al. Enhancing Sternal Closure Using Kryptonite Bone Adhesive , 2011, Surgical innovation.
[45] Ralph Holmes,et al. Review of Bone Substitutes , 2009, Craniomaxillofacial trauma & reconstruction.
[46] F. Papatheofanis. Surgical repair of rabbit tibia osteotomy using isobutyl-2-cyanoacrylate , 2004, Archives of Orthopaedic and Trauma Surgery.
[47] D Muster,et al. Bone bonding through bioadhesives: present status. , 1979, Biomaterials, medical devices, and artificial organs.
[48] David Farrar,et al. Bone adhesives for trauma surgery: A review of challenges and developments , 2012 .
[49] Peter Schilke,et al. Biomechanische Analysen zur Verbundfestigkeit eines bioresorbierbaren Knochenklebers: experimentelle Untersuchungen am Schafsmodell / Bond strength of a bioresorbable bone adhesive: results of a biomechanical study in a sheep model , 2008, Biomedizinische Technik. Biomedical engineering.
[50] M. Ishihara,et al. Photocrosslinkable chitosan as a biological adhesive. , 2000, Journal of biomedical materials research.
[51] D. Smith. Medical and dental applications of cements. , 1971, Journal of biomedical materials research.
[52] S. Bhatia. Biomaterials for Clinical Applications , 2010 .
[53] J. Salvatore,et al. Polyurethane Polymer, Its Use in Osseous Lesions: An Experimental Study , 1959, Annals of surgery.
[54] Lutz Claes,et al. Characterisation of a new bioadhesive system based on polysaccharides with the potential to be used as bone glue , 2009, Journal of materials science. Materials in medicine.
[55] R J Zdrahala,et al. Biomedical Applications of Polyurethanes: A Review of Past Promises, Present Realities, and a Vibrant Future , 1999, Journal of biomaterials applications.
[56] M. Haapea,et al. Healing of rabbit calvarial critical-sized defects using autogenous bone grafts and fibrin glue , 2015, Child's Nervous System.
[57] R. Spencer,et al. The role of polymethylmethacrylate bone cement in modern orthopaedic surgery. , 2007, The Journal of bone and joint surgery. British volume.
[58] Meng-G Martin Lee,et al. Applications of Fibrin Sealant in Surgery , 2005, Surgical innovation.
[59] J. Zins,et al. The Expansile Properties of Kryptonite Relating to Cranioplasty , 2014, The Journal of craniofacial surgery.
[60] D. Sierra,et al. A method to determine shear adhesive strength of fibrin sealants. , 1992, Journal of applied biomaterials : an official journal of the Society for Biomaterials.
[61] T. L. Hurst,et al. 4-META use in dentistry: a literature review. , 2002, The Journal of prosthetic dentistry.
[62] Y. Wong,et al. Comparison of the Effectiveness of Autologous Fibrin Glue and Macroporous Biphasic Calcium Phosphate as Carriers in the Osteogenesis Process With or Without Mesenchymal Stem Cells , 2008, Journal of the Chinese Medical Association : JCMA.
[63] M. Özcan,et al. Adhesion of 10-MDP containing resin cements to dentin with and without the etch-and-rinse technique , 2013, The journal of advanced prosthodontics.
[64] Rzepecki Lm,et al. Molecular diversity of marine glues: polyphenolic proteins from five mussel species. , 1991 .
[65] J. Werkmeister,et al. Biocompatibility and modification of the protein-based adhesive secreted by the Australian frog Notaden bennetti. , 2009, Journal of biomedical materials research. Part A.
[66] Bruce P. Lee,et al. A reversible wet/dry adhesive inspired by mussels and geckos , 2007, Nature.
[67] DIMITRIOS J. HADJIDAKIS,et al. Bone Remodeling , 2006, Annals of the New York Academy of Sciences.
[68] Tian Tang,et al. The contribution of chemical bonding to the short- and long-term enamel bond strengths. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[69] K. Ishihara,et al. Performance of adhesive bone cement containing hydroxyapatite particles. , 1998, Biomaterials.
[70] G. Schneider,et al. In vitro and in vivo studies on the use of Histoacryl® as a soft tissue glue , 2012, European Archives of Oto-Rhino-Laryngology.
[71] K. Ishihara,et al. Adhesive bone cement containing hydroxyapatite particle as bone compatible filler. , 1992, Journal of biomedical materials research.
[72] M. Yaremchuk,et al. Cyanoacrylate fixation of the craniofacial skeleton: an experimental study. , 1995, Plastic and reconstructive surgery.
[73] G. Murrell,et al. Meniscal Repair With a New Biological Glue: An Ex Vivo Study , 2008 .
[74] K. Tsubota,et al. Effect of a functional monomer (MDP) on the enamel bond durability of single-step self-etch adhesives. , 2016, European Journal of Oral Sciences.
[75] T. Andreassen,et al. Fixation of osteochondral fractures. Fibrin sealant tested in dogs. , 1985, Acta orthopaedica Scandinavica.
[76] Eric Loth,et al. A Polyurethane-Based Nanocomposite Biocompatible Bone Adhesive , 2013 .
[77] P. Tresco,et al. Biocompatibility of adhesive complex coacervates modeled after the sandcastle glue of Phragmatopoma californica for craniofacial reconstruction. , 2010, Biomaterials.
[78] Hampel Nl,et al. Effects of isobutyl-2-cyanoacrylate on bone healing. , 1986 .
[79] D. Toriumi,et al. Surgical tissue adhesives. , 2002, Facial plastic surgery clinics of North America.
[80] T. Goswami,et al. Thermal Isotherms in PMMA and Cell Necrosis during Total Hip Arthroplasty , 2014, Journal of applied biomaterials & functional materials.
[81] K. Ishihara,et al. In vivo evaluation of the bond strength of adhesive 4-META/MMA-TBB bone cement under weight-bearing conditions. , 2000, Journal of biomedical materials research.
[82] Kent N Bachus,et al. A water-borne adhesive modeled after the sandcastle glue of P. californica. , 2009, Macromolecular bioscience.
[83] Haeshin Lee,et al. Mussel-Inspired Surface Chemistry for Multifunctional Coatings , 2007, Science.
[84] C. Parlato,et al. Cranial Reconstruction Using Bioabsorbable Calcified Triglyceride Bone Cement , 2010, The Journal of craniofacial surgery.
[85] K. Min,et al. Mussel-inspired poly(L-DOPA)-templated mineralization for calcium phosphate-assembled intracellular nanocarriers. , 2017, Colloids and surfaces. B, Biointerfaces.
[86] A. Starr. Fracture repair: successful advances, persistent problems, and the psychological burden of trauma. , 2008, The Journal of bone and joint surgery. American volume.
[87] A. Young,et al. Synthesis, polymerisation and degradation of poly(lactide-co-propylene glycol) dimethacrylate adhesives , 2006 .
[88] M. Amling,et al. Deleterious tissue reaction to an alkylene bis(dilactoyl)-methacrylate bone adhesive in long-term follow up after screw augmentation in an ovine model. , 2006, Biomaterials.
[89] P. Messersmith,et al. Self-assembly and adhesion of DOPA-modified methacrylic triblock hydrogels. , 2008, Biomacromolecules.
[90] R. Gul,et al. Osteochondral fractures in the knee treated with butyl-2-cyanoacrylate glue. A case report. , 2006, Acta orthopaedica Belgica.
[91] Eric J. Beckman,et al. Lysine-Derived Urethane Surgical Adhesive Prevents Seroma Formation in a Canine Abdominoplasty Model , 2008, Plastic and reconstructive surgery.
[92] T. Kieser,et al. Adhesive-enhanced sternal closure to improve postoperative functional recovery: a pilot, randomized controlled trial. , 2011, The Annals of thoracic surgery.
[93] Reinhard Schnettler,et al. Bioresorbierbare Klebstoffe in der operativen , 2003 .
[94] H. Griesser. Degradation of polyurethanes in biomedical applications—A review , 1991 .
[95] R. Schnettler,et al. [Bioresorbable bone adhesives. Historical perspective and current status]. , 2005, Der Unfallchirurg.
[96] K. Ishihara,et al. Examination of hydroxyapatite filled 4-META/MMA-TBB adhesive bone cement in vitro and in vivo environment. , 1997, Journal of biomedical materials research.
[97] M. Muto,et al. Vertebroplasty Using Calcium Triglyceride Bone Cement (Kryptonite™) for Vertebral Compression Fractures , 2014, Interventional neuroradiology : journal of peritherapeutic neuroradiology, surgical procedures and related neurosciences.
[98] João C. Bordado,et al. Surgical adhesives: Systematic review of the main types and development forecast , 2012 .
[99] H. Plenk,et al. Fibrin sealant in bone transplantation. No effects on blood flow and bone formation in dogs. , 1986, Acta orthopaedica Scandinavica.
[100] J. Werkmeister,et al. Characterization of a protein-based adhesive elastomer secreted by the Australian frog Notaden bennetti. , 2005, Biomacromolecules.
[101] Jürgen Groll,et al. A Bone Glue with Sustained Adhesion under Wet Conditions , 2017, Advanced healthcare materials.
[102] Hans J Erli,et al. Surface pretreatments for medical application of adhesion , 2003, Biomedical engineering online.
[103] Smith Dc,et al. Lutes, glues, cements and adhesives in medicine and dentistry. , 1973 .