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Personalized bioceramic grafts for craniomaxillofacial bone regeneration

摘要The reconstruction of craniomaxillofacial bone defects remains clinically challenging.To date,autogenous grafts are considered the gold standard but present critical drawbacks.These shortcomings have driven recent research on craniomaxillofacial bone reconstruction to focus on synthetic grafts with distinct materials and fabrication techniques.Among the various fabrication methods,additive manufacturing(AM)has shown significant clinical potential.AM technologies build three-dimensional(3D)objects with personalized geometry customizable from a computer-aided design.These layer-by-layer 3D biomaterial structures can support bone formation by guiding cell migration/proliferation,osteogenesis,and angiogenesis.Additionally,these structures can be engineered to degrade concomitantly with the new bone tissue formation,making them ideal as synthetic grafts.This review delves into the key advances of bioceramic grafts/scaffolds obtained by 3D printing for personalized craniomaxillofacial bone reconstruction.In this regard,clinically relevant topics such as ceramic-based biomaterials,graft/scaffold characteristics(macro/micro-features),material extrusion-based 3D printing,and the step-by-step workflow to engineer personalized bioceramic grafts are discussed.Importantly,in vitro models are highlighted in conjunction with a thorough examination of the signaling pathways reported when investigating these bioceramics and their effect on cellular response/behavior.Lastly,we summarize the clinical potential and translation opportunities of personalized bioceramics for craniomaxillofacial bone regeneration.

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作者 Ana Beatriz G.de Carvalho [1] Maedeh Rahimnejad [2] Rodrigo L.M.S.Oliveira [3] Prabaha Sikder [4] Guilherme S.F.A.Saavedra [5] Sarit B.Bhaduri [6] Debby Gawlitta [7] Jos Malda [8] Darnell Kaigler [9] Eliandra S.Trichês [10] Marco C.Bottino [11] 学术成果认领
作者单位 Department of Cariology,Restorative Sciences and Endodontics,School of Dentistry,University of Michigan,Ann Arbor,MI,USA;Department of Dental Materials and Prosthodontics,S?o Paulo State University,S?o José dos Campos,SP,Brazil [1] Department of Cariology,Restorative Sciences and Endodontics,School of Dentistry,University of Michigan,Ann Arbor,MI,USA [2] Federal University of S?o Paulo,Institute of Science and Technology,S?o José dos Campos,SP,Brazil [3] Department of Mechanical Engineering,Cleveland State University,Cleveland,OH,USA [4] Department of Dental Materials and Prosthodontics,S?o Paulo State University,S?o José dos Campos,SP,Brazil [5] Department of Mechanical,Industrial and Manufacturing Engineering,University of Toledo,Toledo,OH,USA [6] Department of Oral and Maxillofacial Surgery&Special Dental Care,University Medical Center Utrecht,Utrecht University,Utrecht,The Netherlands;Regenerative Medicine Center Utrecht,Utrecht,The Netherlands [7] Department of Oral and Maxillofacial Surgery&Special Dental Care,University Medical Center Utrecht,Utrecht University,Utrecht,The Netherlands;Regenerative Medicine Center Utrecht,Utrecht,The Netherlands;Department of Clinical Sciences,Faculty of Veterinary Medicine,Utrecht University,Utrecht,The Netherlands;Department of Orthopedics,University Medical Center Utrecht,Utrecht,The Netherlands [8] Department of Periodontics and Oral Medicine,School of Dentistry,University of Michigan,Ann Arbor,MI,USA;Department of Biomedical Engineering,College of Engineering,University of Michigan,Ann Arbor,MI,USA [9] Department of Cariology,Restorative Sciences and Endodontics,School of Dentistry,University of Michigan,Ann Arbor,MI,USA;Federal University of S?o Paulo,Institute of Science and Technology,S?o José dos Campos,SP,Brazil [10] Department of Cariology,Restorative Sciences and Endodontics,School of Dentistry,University of Michigan,Ann Arbor,MI,USA;Department of Biomedical Engineering,College of Engineering,University of Michigan,Ann Arbor,MI,USA [11]
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DOI 10.1038/s41368-024-00327-7
发布时间 2025-03-12(万方平台首次上网日期,不代表论文的发表时间)
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