Slots J. Periodontitis: details, fallacies and the long run. Periodontol 2000. 2017;75:7–23.
Florjanski W, Orzeszek S, Olchowy A, Grychowska N, Wieckiewicz W, Malysa A, Smardz J, Wieckiewicz M. Modifications of polymeric membranes utilized in guided tissue and bone regeneration. Polymers. 2019;11:782.
Omar O, Elgali I, Dahlin C, Thomsen P. Barrier membranes: greater than the barrier impact? J Clin Periodontol. 2019;46:103–23.
Li J, Chen M, Wei X, Hao Y, Wang J. Analysis of 3D-Printed polycaprolactone scaffolds coated with freeze-dried platelet-rich plasma for bone regeneration. Mater 2017;10:831.
Zhang L, Dong Y, Zhang N, Shi J, Zhang X, Qi C, Midgley A, Wang S. Potentials of sandwich-like chitosan/polycaprolactone/gelatin scaffolds for guided tissue regeneration membrane. Mater Sci Eng C Mater Biol Appl. 2020;109:110618.
Sunandhakumari V, Vidhyadharan A, Alim A, Kumar D, Ravindran J, Krishna A, Prasad M. Fabrication and in vitro characterization of bioactive glass/nano hydroxyapatite strengthened electrospun poly(ε-Caprolactone) composite membranes for guided tissue regeneration. Bioeng 2018;5:54.
Farag A, Hashimi S, Vaquette C, Bartold P, Hutmacher D, Ivanovski S. The impact of decellularized tissue engineered constructs on periodontal regeneration. J Clin Periodontol. 2018;45:586–96.
Farag A, Hashimi S, Vaquette C, Volpato F, Hutmacher D, Ivanovski S. Evaluation of static and perfusion strategies for decellularization of PCL membrane-supported periodontal ligament cell sheet constructs. Arch Oral Biol. 2018;88:67–76.
Hasani-Sadrabadi M, Sarrion P, Nakatsuka N, Younger T, Taghdiri N, Ansari S, Aghaloo T, Li S, Khademhosseini A, Weiss P, Moshaverinia A. Hierarchically patterned polydopamine-containing membranes for periodontal tissue engineering. ACS Nano. 2019;13:3830–8.
Pilipchuk S, Monje A, Jiao Y, Hao J, Kruger L, Flanagan C, Hollister S, Giannobile W. Integration of 3D printed and Micropatterned Polycaprolactone Scaffolds for Steering of oriented collagenous tissue formation in vivo. Adv Healthc Mater. 2016;5:676–87.
Gaharwar A, Cross L, Peak C, Gold Okay, Carrow J, Brokesh A, Singh Okay. 2D nanoclay for biomedical purposes: regenerative drugs, therapeutic supply, and additive manufacturing. Adv Mater. 2019;31:e1900332.
Kiaee G, Dimitrakakis N, Sharifzadeh S, Kim H, Avery R, Moghaddam Okay, Haghniaz R, Yalcintas E, Barros N, Karamikamkar S, Libanori A, Khademhosseini A, Khoshakhlagh P. Laponite-Primarily based nanomaterials for drug supply. Adv Healthc Mater. 2022. https://doi.org/10.1002/adhm.202102054.
Mohanty RP, Joshi YM. Chemical stability of Laponite in aqueous media. Appl Clay Sci. 2014;97:72.
Carrow J, Cross L, Reese R, Jaiswal M, Gregory C, Kaunas R, Singh I, Gaharwar A. Widespread modifications in transcriptome profile of human mesenchymal stem cells induced by two-dimensional nanosilicates. Proc Natl Acad Sci USA. 2018;115:E3905-13.
Mousa M, Milan J, Kelly O, Doyle J, Evans N, Oreffo R, Dawson J. The position of lithium within the osteogenic bioactivity of clay nanoparticles. Biomater Sci. 2021;9:3150–61.
Xu X, Xiao L, Xu Y, Zhuo J, Yang X, Li L, Xiao N, Tao J, Zhong Q, Li Y, Chen Y, Du Z, Luo Okay. Vascularized bone regeneration accelerated by 3D-printed nanosilicate-functionalized polycaprolactone scaffold. Regener Biomater. 2021;8:rbab061.
Xu X, Zhuo J, Xiao L, Xu Y, Yang X, Li Y, Du Z, Luo Okay. Nanosilicate-Functionalized polycaprolactone orchestrates osteogenesis and osteoblast-Induced multicellular interactions for potential endogenous vascularized bone regeneration. Macromol Biosci. 2022;22:e2100265.
Xiong J, Gronthos S, Bartold P. Function of the epithelial cell rests of Malassez within the growth, upkeep and regeneration of periodontal ligament tissues. Periodontol 2000. 2013;63:217–33.
Iwata T, Yamato M, Zhang Z, Mukobata S, Washio Okay, Ando T, Feijen J, Okano T, Ishikawa I. Validation of human periodontal ligament-derived cells as a dependable supply for cytotherapeutic use. J Clin Periodontol. 2010;37:1088–99.
Liu J, Chen B, Bao J, Zhang Y, Lei L, Yan F. Macrophage polarization in periodontal ligament stem cells enhanced periodontal regeneration. Stem Cell Res Ther. 2019;10(1):320.
Liu J, Wang H, Zhang L, Li X, Ding X, Ding G, Wei F. Periodontal ligament stem cells promote polarization of M2 macrophages. J Leukoc Biol. 2022;111(6):1185–97.
Konermann A, Beyer M, Deschner J, Allam JP, Novak N, Winter J, Jepsen S, Jäger A. Human periodontal ligament cells facilitate leukocyte recruitment and are influenced of their immunomodulatory operate by Th17 cytokine launch. Cell Immunol. 2012;272:137–43.
Haase H, Ivanovski S, Waters M, Bartold P. Development hormone regulates osteogenic marker mRNA expression in human periodontal fibroblasts and alveolar bone-derived cells. J Periodontal Res. 2003;38:366–74.
Zheng B, Jiang J, Chen Y, Lin M, Du Z, Xiao Y, Luo Okay, Yan F. Leptin overexpression in bone marrow stromal cells promotes Periodontal Regeneration in a rat mannequin of osteoporosis. J Periodontol. 2017;88:808–18.
Wang J, Wang L, Zhou Z, Lai H. Biodegradable polymer membranes utilized in guided bone/tissue regeneration: a evaluate. Polymers. 2022;14(5):871.
Li T, Liu Z, Xiao M, Yang Z, Peng M, Li C, Zhou X, Wang J. Impression of bone marrow mesenchymal stem cell immunomodulation on the osteogenic results of laponite. Stem Cell Res Ther. 2018;9:100.
Topuz F, Nadernezhad A, Caliskan O, Menceloglu Y, Koc B. Nanosilicate embedded agarose hydrogels with improved bioactivity. Carbohydr Polym. 2018;201:105–12.
Web page DJ, Clarkin CE, Raj M. Injectable nanoclay gels for angiogenesis. Acta Biomater. 2019;100:378–87.
Okesola BO, Ni S, Derkus B, Galeano CC, Hasan A, Wu Y, Ramis J, Buttery L, Dawson JI, D’Este M, Oreffo ROC, Eglin D, Solar H, Mata A. Development-factor free multicomponent nanocomposite hydrogels that stimulate bone formation. Adv Funct Mater. 2020;30:1906205.
Dong Q, Cai J, Wang H, Chen S, Liu Y, Yao J, Shao Z, Chen X. Synthetic ligament constituted of silk protein/Laponite hybrid fibers. Acta Biomater. 2020;106:102–13.
Woo H, Cho Y, Tarafder S, Lee C. The current advances in scaffolds for built-in periodontal regeneration. Bioact Mater. 2021;6:3328–42.
Huang Q, Huang X, Gu L. Periodontal bifunctional biomaterials: progress and views. Mater 2021;14:7588.
Park C. Biomaterial-Primarily based approaches for regeneration of periodontal ligament and cementum utilizing 3D platforms. Int J Mol Sci. 2019;20:4364.
Ibrahim D, Sani E, Soliman A, Zandi N, Mostafavi E, Youssef A, Allam N, Annabi N. Bioactive and elastic nanocomposites with antimicrobial properties for bone tissue regeneration. ACS Appl Bio Mater. 2020;3:3313–25.
Liu Z, Shang L, Ge S. Immunomodulatory impact of dimethyloxallyl glycine/nanosilicates-loaded fibrous construction on periodontal bone transforming. J Dent Sci. 2021;16:937–47.
Zhang X, Fan J, Lee C, Kim S, Chen C, Lee M. Supramolecular hydrogels based mostly on nanoclay and guanidine-rich chitosan: injectable and moldable osteoinductive carriers. ACS Appl Mater Interfaces. 2020;12:16088–96.
Cidonio G, Cooke M, Glinka M, Dawson J, Grover L, Oreffo R. Printing bone in a gel: utilizing nanocomposite bioink to print functionalised bone scaffolds. Mater Immediately Bio. 2019;4:100028.
Zheng X, Zhang X, Wang Y, Liu Y, Pan Y, Li Y, Ji M, Zhao X, Huang S, Yao Q. Hypoxia-mimicking 3D bioglass-nanoclay scaffolds promote endogenous bone regeneration. Bioact Mater. 2021;6:3485–95.
Li X, He X, Kong D, Xu X, Wu R, Solar L, Tian B, Chen F. M2 macrophages improve the Cementoblastic differentiation of Periodontal ligament stem cells through the akt and JNK pathways. Stem Cells. 2019;37:1567–80.
Ni C, Zhou J, Kong N, Bian T, Zhang Y, Huang X, Xiao Y, Yang W, Yan F. Gold nanoparticles modulate the crosstalk between macrophages and periodontal ligament cells for periodontitis therapy. Biomaterials. 2019;206:115–32.
Forbes S, Rosenthal N. Making ready the bottom for tissue regeneration: from mechanism to remedy. Nat Med. 2014;20:857–69.
Medeiros N, Mattos R, Menezes C, Fares R, Talvani A, Dutra W, Rios-Santos F, Correa-Oliveira R, Gomes J. IL-10 and TGF-β unbalanced ranges in neutrophils contribute to extend inflammatory cytokine expression in childhood weight problems. Eur J Nutr. 2018;57:2421–30.
Sorkin M, Huber A, Hwang C, Carson W, Menon R, Li J, Vasquez Okay, Pagani C, Patel N, Li S, Visser N, Niknafs Y, Loder S, Scola M, Nycz D, Gallagher Okay, McCauley L, Xu J, James A, Agarwal S, Kunkel S, Mishina Y, Levi B. Regulation of heterotopic ossification by monocytes in a mouse mannequin of aberrant wound therapeutic. Nat Commun. 2020;11:722.
Lin R, Lee C, Moreno-Luna R, Neumeyer J, Piekarski B, Zhou P, Moses M, Sachdev M, Pu W, Emani S, Melero-Martin J. Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks. Nat Biomed Eng. 2017;1:81.
Cai B, Lin D, Li Y, Wang L, Xie J, Dai T, Liu F, Tang M, Tian L, Yuan Y, Kong L, Shen S. N2-Polarized Neutrophils Information Bone mesenchymal stem cell recruitment and provoke bone regeneration: a lacking piece of the bone regeneration puzzle. Adv Sci. 2021. https://doi.org/10.1002/advs.202100584.
Luz-Crawford P, Kurte M, Bravo-Alegría J, Contreras R, Nova-Lamperti E, Tejedor G, Noël D, Jorgensen C, Figueroa F, Djouad F, Carrión F. Mesenchymal stem cells generate a CD4 + CD25 + Foxp3 + regulatory T cell inhabitants throughout the differentiation means of Th1 and Th17 cells. Stem Cell Res Ther. 2013;4:65.
Sandri S, Hebeda CB, Loiola RA, Calgaroto S, Uchiyama MK, Araki Okay, Frank LA, Paese Okay, Guterres SS, Pohlmann AR, Farsky SHP. Direct results of poly(ε-caprolactone) lipid-core nanocapsules on human immune cells. Nanomed 2019;14(11):1429–42.
Dong C, Qiao F, Chen G, Lv Y. Demineralized and decellularized bone extracellular matrix-incorporated electrospun nanofibrous scaffold for bone regeneration. J Mater Chem B. 2021;9(34):6881–94.
Wang Z, Cui Y, Wang J, Yang X, Wu Y, Wang Okay, Gao X, Li D, Li Y, Zheng XL, Zhu Y, Kong D, Zhao Q. The impact of thick fibers and enormous pores of electrospun poly(ε-caprolactone) vascular grafts on macrophage polarization and arterial regeneration. Biomaterials. 2014;35(22):5700–10.
Qiu P, Li M, Chen Okay, Fang B, Chen P, Tang Z, Lin X, Fan S. Periosteal matrix-derived hydrogel promotes bone restore by means of an early immune regulation coupled with enhanced angio- and osteogenesis. Biomaterials. 2020;227:119552.
Németh Okay, Leelahavanichkul A, Yuen P, Mayer B, Parmelee A, Doi Okay, Robey P, Leelahavanichkul Okay, Koller B, Brown J, Hu X, Jelinek I, Star R, Mezey E. Bone marrow stromal cells attenuate sepsis through prostaglandin E(2)-dependent reprogramming of host macrophages to extend their interleukin-10 manufacturing. Nat Med. 2009;15:42–9.
Tassi S, Sergio N, Misawa M, Villar C. Efficacy of stem cells on periodontal regeneration: systematic evaluate of pre-clinical research. J Periodontal Res. 2017;52:793–812.
Padial-Molina M, Rodriguez J, Volk S, Rios H. Standardized in vivo mannequin for finding out novel regenerative approaches for multitissue bone-ligament interfaces. Nat Protoc. 2015;10:1038–49.
Yin Y, He X, Wang J, Wu R, Xu X, Hong Y, Tian B, Chen F. Pore size-mediated macrophage M1-to-M2 transition influences new vessel formation inside the compartment of a scaffold. Appl Mater Immediately. 2020;18:100466.