[1] Gegout PY, Stutz C, Olson J, et al.Interests of exosomes in bone and periodontal regeneration: a systematic review[J]. Adv Exp Med Biol, 2021,1341: 67-87. [2] 徐丽, 宋昊, 康洁, 等. 人体脱落乳牙牙髓干细胞复合纤维蛋白修复大鼠牙槽骨缺损[J]. 中国组织工程研究, 2019, 23(13): 2061-2066. [3] Shu G, Chen M, Song J, et al.Sialic acid-engineered mesoporous polydopamine nanoparticles loaded with SPIO and Fe3+ as a novel theranostic agent for T1/T2 dual-mode MRI-guided combined chemo-photothermal treatment of hepatic cancer[J]. Bioact Mater, 2020, 6(5): 1423-1435. [4] Marriott A, Bowen C, Rioux J, et al.Simultaneous quantification of SPIO and gadolinium contrast agents using MR fingerprinting[J]. Magn Reson Imaging, 2021, 79: 121-129. [5] Furuta T, Yamaguchi M, Minami M, et al.Treatment margins in radiotherapy for liver tumors visualized as T2*-hypointense areas on SPIO-enhanced MRI at 9.4 T[J]. MAGMA, 2020, 33(5): 701-712. [6] 马亮. SPIO对两种干细胞生物学特性影响及利用磁靶向技术进行细胞迁移的初探[D]. 西安: 中国人民解放军空军军医大学, 2017. [7] Reichman JR, Rygiewicz PT, Johnson MG, et al.Douglas-fir (Pseudotsugamenziesii(Mirb.) franco) transcriptome profile changes induced by diesel emissions generated with CeO2 nanoparticle fuel borne catalyst[J]. Environ Sci Technol, 2018, 52(17): 10067-10077. [8] Eckhart T, Pötzelsberger E, Koeck R, et al.Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii(Mirb.) Franco var. menziesii) in Central Europe[J]. Ann For Sci, 2019, 76(1): 19-30. [9] Li X, Ma B, Li J, et al.A method to visually observe the degradation-diffusion-reconstruction behavior of hydroxyapatite in the bone repair process[J]. Acta Biomater, 2020, 101: 554-564. [10] Shang L, Liu Z, Ma B, et al.Dimethyloxallyl glycine/nanosilicates-loaded osteogenic/angiogenicdifunctional fibrous structure for functional periodontal tissue regeneration[J]. Bioact Mater, 2020, 6(4): 1175-1188. [11] 谢志鸿, 彭吾训. 骨髓间充质干细胞治疗股骨头坏死的研究进展[J]. 实用医学杂志, 2021, 37(1): 20-24. [12] Guo H, Zhao W, Liu A, et al.SHED promote angiogenesis in stem cell-mediated dental pulp regeneration[J]. Biochem Biophys Res Commun, 2020, 529(4): 1158-1164. [13] Han Y, Zhang L, Zhang C, et al.Guiding lineage specific differentiation of SHED for target tissue/organ regeneration[J]. Curr Stem Cell Res Ther, 2021, 16(5): 518-534. [14] Chang HH, Chen IL, Wang YL, et al.Regulation of the regenerative activity of dental pulp stem cells from exfoliated deciduous teeth (SHED) of children by TGF-β1 is associated with ALK5/Smad2, TAK1, p38 and MEK/ERK signaling[J]. Aging (Albany NY), 2020, 12(21): 21253-21272. [15] Zhang G, Na Z, Ren B, et al.Impacts of fluorescent superparamagnetic iron oxide (SPIO)-labeled materials on biological characteristics and osteogenesis of bone marrow mesenchymal stem cells (BMSCs)[J]. Int J Clin Exp Med, 2015, 8(8): 12172-12181. [16] Nan H, Huang J, Li H, et al.Assessment of biological characteristics of adipose tissue-derived stem cells co-labeled with Molday ION Rhodamine B and green fluorescent protein in vitro[J]. Mol Med Rep, 2013, 8(5): 1446-1452. [17] Zhang G, Na Z, Ren B, et al.Impacts of fluorescent superparamagnetic iron oxide (SPIO)-labeled materials on biological characteristics and osteogenesis of bone marrow mesenchymal stem cells (BMSCs)[J]. Int J Clin Exp Med, 2015, 8(8): 12172-12181. [18] Gomathi K, Akshaya N, Srinaath N, et al.Regulation of Runx2 by post-translational modifications in osteoblast differentiation[J]. Life Sci, 2020, 245: 117389. [19] Zheng J, Zhu X, He Y, et al.CircCDK8 regulates osteogenic differentiation and apoptosis of PDLSCs by inducing ER stress/autophagy during hypoxia[J]. Ann N Y Acad Sci, 2021, 1485(1): 56-70. [20] Yin N, Zhu L, Ding L, et al.MiR-135-5p promotes osteoblast differentiation by targeting HIF1AN in MC3T3-E1 cells[J]. Cell Mol Biol Lett, 2019, 24: 51-62. |