Advanced technologies in periodontal tissue regeneration based on stem cells: Current status and future perspectives
Tài liệu tham khảo
Kinane, 2017, Periodontal diseases, Nat Rev Dis Primers, 3, 17038, 10.1038/nrdp.2017.38
Righolt, 2018, Global-, regional-, and country-level economic impacts of dental diseases in 2015, J Dent Res, 97, 501, 10.1177/0022034517750572
Sculean, 2000, Wound models for periodontal and bone regeneration: the role of biologic research, Periodontol, 68, 7, 10.1111/prd.12091
Chen, 2009, Localized delivery of growth factors for periodontal tissue regeneration: role, strategies, and perspectives, Med Res Rev, 29, 472, 10.1002/med.20144
Hernandez-Monjaraz, 2018, Mesenchymal stem cells of dental origin for inducing tissue regeneration in periodontitis: a mini-review, Int J Mol Sci, 19, 944, 10.3390/ijms19040944
Seo, 2004, Investigation of multipotent postnatal stem cells from human periodontal ligament, Lancet, 364, 149, 10.1016/S0140-6736(04)16627-0
Bartold, 2016, Tissue engineered periodontal products, J Periodontal Res, 51, 1, 10.1111/jre.12275
Iwata, 2014, Tissue engineering in periodontal tissue, Anat Rec, 297, 16, 10.1002/ar.22812
Huang, 2009, Mesenchymal stem cells derived from dental tissues vs. Those from other sources: their biology and role in regenerative medicine, J Dent Res, 88, 792, 10.1177/0022034509340867
Li, 2018, Local injection of allogeneic stem cells from apical papilla enhanced periodontal tissue regeneration in minipig model of periodontitis, BioMed Res Int, 2018, 3960798
Du, 2014, Allogeneic bone marrow mesenchymal stem cell transplantation for periodontal regeneration, J Dent Res, 93, 183, 10.1177/0022034513513026
Lu, 2019, The therapeutic role of bone marrow stem cell local injection in rat experimental periodontitis, J Oral Rehabil, 1
Abou Neel, 2014, Tissue engineering in dentistry, J Dent, 42, 915, 10.1016/j.jdent.2014.05.008
Han, 2014, Stem cells, tissue engineering and periodontal regeneration, Aust Dent J, 59, 117, 10.1111/adj.12100
Fu, 2014, Allogeneic stem cells from deciduous teeth in treatment for periodontitis in miniature swine, J Periodontol, 85, 845, 10.1902/jop.2013.130254
Ferrarotti, 2018, Human intrabony defect regeneration with micrografts containing dental pulp stem cells: a randomized controlled clinical trial, J Clin Periodontol, 45, 841, 10.1111/jcpe.12931
Zhang, 2018, Therapeutic effect of bone marrow mesenchymal stem cells pretreated with acetylsalicylic acid on experimental periodontitis in rats, Int Immunopharm, 54, 320, 10.1016/j.intimp.2017.11.028
Chen, 2012, Stem cell-delivery therapeutics for periodontal tissue regeneration, Biomaterials, 33, 6320, 10.1016/j.biomaterials.2012.05.048
Lemaitre, 2017, Periodontal tissue regeneration using syngeneic adipose-derived stromal cells in a mouse model, Stem Cells Transl Med, 6, 656, 10.5966/sctm.2016-0028
Chen, 2016, Advancing biomaterials of human origin for tissue engineering, Prog Polym Sci, 53, 86, 10.1016/j.progpolymsci.2015.02.004
Chen, 2019, Mesenchymal stem cell sheets: a new cell-based strategy for bone repair and regeneration, Biotechnol Lett, 41, 305, 10.1007/s10529-019-02649-7
Kirby, 2018, Cell sheets in cell therapies, Cytotherapy, 20, 169, 10.1016/j.jcyt.2017.11.004
Onizuka, 2019, Application of periodontal ligament-derived multipotent mesenchymal stromal cell sheets for periodontal regeneration, Int J Mol Sci, 20, 2796, 10.3390/ijms20112796
Iwata, 2015, Cell sheet engineering and its application for periodontal regeneration, J Tissue Eng Regen Med, 9, 343, 10.1002/term.1785
Cheng, 2016, Effects of rgd immobilization on light-induced cell sheet detachment from tio2 nanodots films, Mater Sci Eng C Mater Biol Appl, 63, 240, 10.1016/j.msec.2016.02.072
Zahn, 2012, Ion-induced cell sheet detachment from standard cell culture surfaces coated with polyelectrolytes, Biomaterials, 33, 3421, 10.1016/j.biomaterials.2012.01.019
Hu, 2016, Periodontal regeneration in swine after cell injection and cell sheet transplantation of human dental pulp stem cells following good manufacturing practice, Stem Cell Res Ther, 7, 130, 10.1186/s13287-016-0362-8
Fawzy El-Sayed, 2015, Periodontal regeneration employing gingival margin-derived stem/progenitor cells in conjunction with il-1ra-hydrogel synthetic extracellular matrix, J Clin Periodontol, 42, 448, 10.1111/jcpe.12401
Iwata, 2009, Periodontal regeneration with multi-layered periodontal ligament-derived cell sheets in a canine model, Biomaterials, 30, 2716, 10.1016/j.biomaterials.2009.01.032
Chen, 2016, Treatment of periodontal intrabony defects using autologous periodontal ligament stem cells: a randomized clinical trial, Stem Cell Res Ther, 7, 33, 10.1186/s13287-016-0288-1
Laschke, 2016, Prevascularization in tissue engineering: current concepts and future directions, Biotechnol Adv, 34, 112, 10.1016/j.biotechadv.2015.12.004
Ryu, 2019, Spheroid culture system methods and applications for mesenchymal stem cells, Cells, 8, 10.3390/cells8121620
Petrenko, 2017, The therapeutic potential of three-dimensional multipotent mesenchymal stromal cell spheroids, Stem Cell Res Ther, 8, 94, 10.1186/s13287-017-0558-6
Kelm, 2010, Scaffold-free cell delivery for use in regenerative medicine, Adv Drug Deliv Rev, 62, 753, 10.1016/j.addr.2010.02.003
Langenbach, 2013, Scaffold-free microtissues: differences from monolayer cultures and their potential in bone tissue engineering, Clin Oral Invest, 17, 9, 10.1007/s00784-012-0763-8
Cheng, 2012, The influence of spheroid formation of human adipose-derived stem cells on chitosan films on stemness and differentiation capabilities, Biomaterials, 33, 1748, 10.1016/j.biomaterials.2011.11.049
Sakai, 2010, Effect of microwell chip structure on cell microsphere production of various animal cells, J Biosci Bioeng, 110, 223, 10.1016/j.jbiosc.2010.01.021
Moritani, 2018, Spheroid culture enhances osteogenic potential of periodontal ligament mesenchymal stem cells, J Periodontal Res, 53, 870, 10.1111/jre.12577
Iwasaki, 2019, Changes in characteristics of periodontal ligament stem cells in spheroid culture, J Periodontal Res, 54, 364, 10.1111/jre.12637
Carter, 2017, Additive biomanufacturing: an advanced approach for periodontal tissue regeneration, Ann Biomed Eng, 45, 12, 10.1007/s10439-016-1687-2
Braghirolli, 2014, Electrospinning for regenerative medicine: a review of the main topics, Drug Discov Today, 19, 743, 10.1016/j.drudis.2014.03.024
Soares, 2018, Electrospinning and electrospray of bio-based and natural polymers for biomaterials development, Mater Sci Eng C Mater Biol Appl, 92, 969, 10.1016/j.msec.2018.08.004
Zhuang, 2019, Advance of nano-composite electrospun fibers in periodontal regeneration, Front Chem, 7, 495, 10.3389/fchem.2019.00495
Wang, 2013, Biomimetic electrospun nanofibrous structures for tissue engineering, Mater Today, 16, 229, 10.1016/j.mattod.2013.06.005
Zafar, 2016, Potential of electrospun nanofibers for biomedical and dental applications, Materials, 9, 73, 10.3390/ma9020073
van Manen, 2014, The influence of electrospun fibre scaffold orientation and nano-hydroxyapatite content on the development of tooth bud stem cells in vitro, Odontology, 102, 14, 10.1007/s10266-012-0087-9
Yang, 2018, Development of new technology in periodontal tissue engineering, Zhonghua Kou Qiang Yi Xue Za Zhi, 53, 490
Vijayavenkataraman, 2018, 3d bioprinting of tissues and organs for regenerative medicine, Adv Drug Deliv Rev, 132, 296, 10.1016/j.addr.2018.07.004
Kolesky, 2016, Three-dimensional bioprinting of thick vascularized tissues, Proc Natl Acad Sci U S A, 113, 3179, 10.1073/pnas.1521342113
Tao, 2019, The applications of 3d printing for craniofacial tissue engineering, Micromachines, 10, 480, 10.3390/mi10070480
Placone, 2018, Recent advances in extrusion-based 3d printing for biomedical applications, Adv Healthc Mater, 7, 10.1002/adhm.201701161
Wang, 2017, 3d printing of polymer matrix composites: a review and prospective, Compos B Eng, 110, 442, 10.1016/j.compositesb.2016.11.034
Park, 2010, Biomimetic hybrid scaffolds for engineering human tooth-ligament interfaces, Biomaterials, 31, 5945, 10.1016/j.biomaterials.2010.04.027
Ma, 2019, Three-dimensional printing biotechnology for the regeneration of the tooth and tooth-supporting tissues, Biotechnol Bioeng, 116, 452, 10.1002/bit.26882
Ivanovski, 2014, Multiphasic scaffolds for periodontal tissue engineering, J Dent Res, 93, 1212, 10.1177/0022034514544301
Vaquette, 2012, A biphasic scaffold design combined with cell sheet technology for simultaneous regeneration of alveolar bone/periodontal ligament complex, Biomaterials, 33, 5560, 10.1016/j.biomaterials.2012.04.038
Costa, 2014, Advanced tissue engineering scaffold design for regeneration of the complex hierarchical periodontal structure, J Clin Periodontol, 41, 283, 10.1111/jcpe.12214
Staples, 2020, Fibre guiding scaffolds for periodontal tissue engineering, J Periodontal Res, 55, 331, 10.1111/jre.12729
Park, 2012, Tissue engineering bone-ligament complexes using fiber-guiding scaffolds, Biomaterials, 33, 137, 10.1016/j.biomaterials.2011.09.057
Park, 2014, Image-based, fiber guiding scaffolds: a platform for regenerating tissue interfaces, Tissue Eng C Methods, 20, 533, 10.1089/ten.tec.2013.0619
Lee, 2014, Three-dimensional printed multiphase scaffolds for regeneration of periodontium complex, Tissue Eng, 20, 1342, 10.1089/ten.tea.2013.0386
Rasperini, 2015, 3d-printed bioresorbable scaffold for periodontal repair, J Dent Res, 94, 153S, 10.1177/0022034515588303
Vaquette, 2019, Periodontal tissue engineering with a multiphasic construct and cell sheets, J Dent Res, 98, 673, 10.1177/0022034519837967
Park, 2019, Biomaterial-based approaches for regeneration of periodontal ligament and cementum using 3d platforms, Int J Mol Sci, 20, 4364, 10.3390/ijms20184364
Pilipchuk, 2016, Integration of 3d printed and micropatterned polycaprolactone scaffolds for guidance of oriented collagenous tissue formation in vivo, Adv Healthc Mater, 5, 676, 10.1002/adhm.201500758
Park, 2017, 3d printed, microgroove pattern-driven generation of oriented ligamentous architectures, Int J Mol Sci, 18, 1927, 10.3390/ijms18091927
