Brushite bone cement containing polyethylene glycol for bone regeneration. 2022

Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
CERTBIO, Universidade Federal de Campina Grande (UFCG), Campina Grande, Paraíba, Brazil.

BACKGROUND Bone cements aid in bone regeneration; however, if the handling time is not well established for the material to harden, complications may arise. OBJECTIVE This work investigates the effect of using polyethylene glycol (PEG) and characterize it in brushite bone cement in order to obtain desirable handling times as well as its regeneration in vivo to analyse if addition of this polymer may significantly modify its properties. METHODS PEG 4000 was synthesised with wollastonite by phosphorization reaction in order to form brushite which was further cured by oven drying. They were further characterised and tested in vivo as tibial bone defect model using rabbits. RESULTS Addition of PEG exhibited handling times of 60 min with a low increase in temperature when curing. Brushite phase of ∼71% was obtained after cement hardening with good compressive strength (25 MPa) and decent values of porosity (33%). In vivo presented that, at 40 days postoperatively, accelerated bone neoformation with partial consolidation at 30 days and total after 60 days when using bone cement. CONCLUSIONS Addition of PEG does not disrupt the beneficial properties of the bone cement and can be a potential alternative to control the time-temperature profile of hardening these materials.

UI MeSH Term Description Entries
D008422 Materials Testing The testing of materials and devices, especially those used for PROSTHESES AND IMPLANTS; SUTURES; TISSUE ADHESIVES; etc., for hardness, strength, durability, safety, efficacy, and biocompatibility. Biocompatibility Testing,Biocompatible Materials Testing,Hemocompatibility Testing,Testing, Biocompatible Materials,Testing, Hemocompatible Materials,Hemocompatibility Testings,Hemocompatible Materials Testing,Materials Testing, Biocompatible,Materials Testing, Hemocompatible,Testing, Biocompatibility,Testing, Hemocompatibility,Testing, Materials,Testings, Biocompatibility
D011092 Polyethylene Glycols Polymers of ETHYLENE OXIDE and water, and their ethers. They vary in consistency from liquid to solid depending on the molecular weight indicated by a number following the name. They are used as SURFACTANTS, dispersing agents, solvents, ointment and suppository bases, vehicles, and tablet excipients. Some specific groups are NONOXYNOLS, OCTOXYNOLS, and POLOXAMERS. Macrogols,Polyoxyethylenes,Carbowax,Macrogol,Polyethylene Glycol,Polyethylene Oxide,Polyethyleneoxide,Polyglycol,Glycol, Polyethylene,Glycols, Polyethylene,Oxide, Polyethylene,Oxides, Polyethylene,Polyethylene Oxides,Polyethyleneoxides,Polyglycols,Polyoxyethylene
D011817 Rabbits A burrowing plant-eating mammal with hind limbs that are longer than its fore limbs. It belongs to the family Leporidae of the order Lagomorpha, and in contrast to hares, possesses 22 instead of 24 pairs of chromosomes. Belgian Hare,New Zealand Rabbit,New Zealand Rabbits,New Zealand White Rabbit,Rabbit,Rabbit, Domestic,Chinchilla Rabbits,NZW Rabbits,New Zealand White Rabbits,Oryctolagus cuniculus,Chinchilla Rabbit,Domestic Rabbit,Domestic Rabbits,Hare, Belgian,NZW Rabbit,Rabbit, Chinchilla,Rabbit, NZW,Rabbit, New Zealand,Rabbits, Chinchilla,Rabbits, Domestic,Rabbits, NZW,Rabbits, New Zealand,Zealand Rabbit, New,Zealand Rabbits, New,cuniculus, Oryctolagus
D001843 Bone Cements Adhesives used to fix prosthetic devices to bones and to cement bone to bone in difficult fractures. Synthetic resins are commonly used as cements. A mixture of monocalcium phosphate, monohydrate, alpha-tricalcium phosphate, and calcium carbonate with a sodium phosphate solution is also a useful bone paste. Bone Cement,Bone Glues,Bone Pastes,Bone Glue,Bone Paste,Cement, Bone,Cements, Bone,Glue, Bone,Glues, Bone,Paste, Bone,Pastes, Bone
D001861 Bone Regeneration Renewal or repair of lost bone tissue. It excludes BONY CALLUS formed after BONE FRACTURES but not yet replaced by hard bone. Osteoconduction,Bone Regenerations,Regeneration, Bone,Regenerations, Bone
D002130 Calcium Phosphates Calcium salts of phosphoric acid. These compounds are frequently used as calcium supplements. Phosphates, Calcium
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D019245 Compressive Strength The maximum compression a material can withstand without failure. (From McGraw-Hill Dictionary of Scientific and Technical Terms, 5th ed, p427) Compressive Strengths,Strength, Compressive,Strengths, Compressive

Related Publications

Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
December 2012, Materials science & engineering. C, Materials for biological applications,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
September 2008, Acta biomaterialia,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
January 2016, Journal of biomaterials applications,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
March 2021, Acta biomaterialia,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
October 2019, Materials science & engineering. C, Materials for biological applications,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
November 2022, International journal of biological macromolecules,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
October 2022, Bioactive materials,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
January 2023, Frontiers in bioengineering and biotechnology,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
September 2023, Journal of biomedical materials research. Part A,
Ana Clara de França Silva Azevedo, and Otto Cumberbatch Morúa, and Gabriel Goetten de Lima, and Henrique Nunes da Silva, and Jefferson da Silva Ferreira, and Marcus Vinicius Lia Fook, and Marcelo Jorge Cavalcanti de Sá
May 2024, Journal of biomaterials science. Polymer edition,
Copied contents to your clipboard!