[1] 陈松龄,朱双喜.上颌窦底黏膜在上颌窦底提升术后窦底空间成骨中的作用[J].口腔疾病防治,2020,28(8): 477-486. [2] Srouji S, Ben-David D, Lotan R, et al. The innate osteogenic potential of the maxillary sinus (schneiderian) membrane: an ectopic tissue transplant model simulating sinus lifting [J]. Int J Oral Maxillofac Surg, 2010, 39(8): 793-801. [3] Azadani MN, Zahedi A, Bowoto OK, et al. A review of current challenges and prospects of magnesium and its alloy for bone implant applications [J]. Prog Biomater, 2022, 11(1): 1-26. [4] Salimi MH, Heughebaert JC, Nancollas GH. Crystal growth of calcium phosphates in the presence of magnesium ions [J]. Langmuir, 1985, 1(1):119-122. [5] de Baaij JH, Hoenderop JG, Bindels RJ. Magnesium in man: implications for health and disease [J]. Physiol Rev, 2015, 95(1): 1-46. [6] Alfrey AC, Miller NL, Trow R. Effect of age and magnesium depletion on bone magnesium pools in rats [J]. J Clin Invest, 1974, 54(5):1074-1081. [7] Rude RK, Singer FR, Gruber HE. Skeletal and hormonal effects of magnesium deficiency [J]. J Am Coll Nutr, 2009, 28(2): 131-141. [8] Scharf KE, Lawson W, Shapiro JM, et al. Pressure measurements in the normal and occluded rabbit maxillary sinus [J]. Laryngoscope, 1995, 105(6): 570-574. [9] Puranen J. Reorganization of fresh and preserved bone transplants: an experimental study in rabbits using tetracycline labelling [J]. Acta Orthop Scand, 1966, Suppl 92:1-75. [10] Troedhan A, Kurrek A, Wainwright M. Biological principles and physiology of bone regeneration under the schneiderian membrane after sinus lift surgery: a radiological study in 14 patients treated with the transcrestal hydrodynamic ultra [J]. Int J Dent, 2012, 2012: 576238. [11] Rong Q, Li X, Chen SL, et al. Effect of the schneiderian membrane on the formation of bone after lifting the floor of the maxillary sinus: an experimental study in dogs [J]. Br J Oral Maxillofac Surg, 2015, 53(7): 607-612. [12] Doherty MJ, Ashton BA, Walsh S, et al. Vascular pericytes express osteogenic potential in vitro and in vivo [J]. J Bone Miner Res, 1998, 13(5): 828-838. [13] Srouji S, Kizhner T, David DB, et al. The schneiderian membrane contains osteoprogenitor cells: in vivo and in vitro study [J]. Calcif Tissue Int, 2008, 84(2): 138-145. [14] Dominici M, Blanc KL, Mueller I, et al. Minimal criteria for defining multipotent mesenchymal stromal cells. the international society for cellular therapy position statement [J]. Cytotherapy, 2006, 8(4): 315-317. [15] Swaminathan R. Magnesium metabolism and its disorders [J]. Clin Biochem Rev, 2003, 24(2): 47-66. [16] Lowenstein FW, Stanton MF. Serum magnesium levels in the united states, 1971-1974 [J]. J Am Coll Nutr, 1986, 5(4): 399-414. [17] Yuan Z, Wei P, Huang Y, et al. Injectable plga microspheres with tunable magnesium ion release for promoting bone regeneration [J]. Acta Biomater, 2019, 85: 294-309. [18] 张竞心,刘林枫,张士文,等.镁离子促进骨再生的分子机制[J].中国组织工程研究,2022,26(33): 5384-5392. [19] Rubin H. The membrane, magnesium, mitosis (mmm) model of cell proliferation control [J]. Magnes Res, 2005, 18(4): 268-274. [20] Seetharaman S, Etienne-Manneville S. Cytoskeletal crosstalk in cell migration [J]. Trends Cell Biol, 2020, 30(9): 720-735. [21] Etienne-Manneville S. Actin and microtubules in cell motility: which one is in control? [J]. Traffic, 2004, 5(7): 470-477. [22] Nie X, Sun X, Wang C, et al. Effect of magnesium ions/type i collagen promote the biological behavior of osteoblasts and its mechanism [J]. Regen Biomater, 2020, 7(1): 53-61. [23] Vimalraj S. Alkaline phosphatase: structure, expression and its function in bone mineralization [J]. Gene, 2020, 754: 144855. [24] Sharma U, Pal D, Prasad R. Alkaline phosphatase: an overview [J]. Indian J Clin Biochem, 2013, 29(3): 269-278. [25] Bruderer M, Richards RG, Alini M, et al. Role and regulation of runx2 in osteogenesis [J]. Eur Cell Mater, 2014, 28(28): 269-286. [26] Vimalraj S, Arumugam B, Miranda PJ, et al. Runx2: structure, function, and phosphorylation in osteoblast differentiation [J]. Int J Biol Macromol, 2015, 78: 202-208. [27] Phimphilai M, Zhao Z, Boules H, et al. BMP signaling is required for runx2-dependent induction of the osteoblast phenotype [J]. J Bone Miner Res, 2006, 21(4): 637-646. [28] Díaz-Tocados JM, Herencia C, Martínez-Moreno JM, et al. Magnesium chloride promotes osteogenesis through notch signaling activation and expansion of mesenchymal stem cells [J]. Sci Rep, 2017, 7(1): 7839. [29] Tong X, Gu J, Song R, et al. Osteoprotegerin inhibit osteoclast differentiation and bone resorption by enhancing autophagy via AMPK/mTOR/p70S6K signaling pathway in vitro [J]. J Cell Biochem, 2019, 120(2): 1630-1642. [30] Ma QL, Fang L, Jiang N, et al. Bone mesenchymal stem cell secretion of srankl/opg/m-csf in response to macrophage-mediated inflammatory response influences osteogenesis on nanostructured Ti surfaces [J]. Biomaterials, 2018, 154: 234-247. |