Journal of Inorganic Materials, Volume. 37, Issue 11, 1245(2022)

Nd-doped Mesoporous Borosilicate Bioactive Glass-ceramic Bone Cement

Cheng CHEN1, Jingxin DING1, Hui WANG2、*, and Deping WANG1、*
Author Affiliations
  • 11. School of Materials Science and Engineering, Tongji University, Shanghai 201804, China
  • 22. Engineering Research Center of Traditional Chinese Medicine Intelligent Rehabilitation, Ministry of Education, Institute of Rehabilitation Medicine, School of Rehabilitation Science, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China
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    References(53)

    [1] RAINUSSO N, WANG L L, YUSTEIN J T. The adolescent and young adult with cancer: state of the art-bone tumors[J]. Current Oncolology Reports, 296-307(2013).

    [2] BALLATORI S E, HINDS P W. Osteosarcoma: prognosis plateau warrants retinoblastoma pathway targeted therapy[J]. Signal Transduction Target Therapy(2016).

    [5] CUI X, ZHANG Y D, WANG H et al. An injectable borate bioactive glass cement for bone repair: preparation, bioactivity and setting mechanism[J]. Journal of Non-Crystalline Solids(2016).

    [6] CUI X, ZHAO C J, GU Y F et al. A novel injectable borate bioactive glass cement for local delivery of vancomycin to cure osteomyelitis and regenerate bone[J]. Journal of Material Science: Mater ials in Medicine, 733-745(2014).

    [7] XIE X, PANG L B, YAO A H et al. Nanocement produced from borosilicate bioactive glass nanoparticles composited with alginate[J]. Australian Journals of Chemistry, 354-361(2019).

    [8] CHANG Y C, ZHAO R L, WANG H et al. A novel injectable whitlockite-containing borosilicate bioactive glass cement for bone repair[J]. Journal of Non-Crystalline Solids(2020).

    [9] WU Z F, LIN Z Y, YAO A H et al. Influence of particle size distribution on the rheological properties and mathematical model fitting of injectable borosilicate bioactive glass bone cement[J]. Ceramics International(2020).

    [11] LI J, ZHANG C T, GONG S M et al. A nanoscale photothermal agent based on a metal-organic coordination polymer as a drug-loading framework for effective combination therapy[J]. Acta Biomaterialia(2019).

    [12] ZHAO Q F, WANG X D, YANG M et al. Multi-stimuli responsive mesoporous carbon nano-platform gated by human serum albumin for cancer thermo-chemotherapy[J]. Colloids Surface B Biointerfaces(2019).

    [13] ZHANG T, JIANG Z Q, XVE T et al. One-pot synthesis of hollow PDA@DOX nanoparticles for ultrasound imaging and chemo-thermal therapy in breast cancer[J]. Nanoscale, 21759-21766(2019).

    [15] YANG Y, LIN Y Z, DI D H et al. Gold nanoparticle-gated mesoporous silica as redox-triggered drug delivery for chemo-photothermal synergistic therapy[J]. Journal of Colloid Interface Science(2017).

    [17] ROSAL B D, ROCHA U, XIMENDES E C et al. Nd3+ ions in nanomedicine: perspectives and applications[J]. Optical Materials(2017).

    [23] WANG X, WANG G, ZHANG Y. Research on the biological activity and doxorubicin release behavior in vitro of mesoporous bioactive SiO2-CaO-P2O5 glass nanospheres[J]. Applied Surface Science(2017).

    [24] ZHU Y F, KOCKRICK E, IKOMA T et al. An efficient route to rattle-type Fe3O4@SiO2 hollow mesoporous spheres using colloidal carbon spheres templates[J]. Chemistry of Materials(2009).

    [26] WARREN B E, PINCUS A G. Atomic consideration of immiscibility in glass systems[J]. Journal of American Ceramics Society(1940).

    [27] ANAND V, SINGH K J, KAUR K. Evaluation of zinc and magnesium doped 45S5 mesoporous bioactive glass system for the growth of hydroxyl apatite layer[J]. Journal of Non-Crystalline Solids(2014).

    [29] ZHOU J, WANG H, ZHAO S C et al. In vivo and in vitro studies of borate based glass micro-fibers for dermal repairing[J]. Material Science Engineering C: Materials for Biological Application(2016).

    [32] HEMMER E, ACOSTA-MORA P, MENDEZ-RAMOS J et al. Optical nanoprobes for biomedical applications: shining a light on upconverting and near-infrared emitting nanoparticles for imaging, thermal sensing, and photodynamic therapy[J]. Journal of Materials Chemistry B, 4365-4392(2017).

    [35] QU Y, ZHUANG H, ZHANG M et al. Bone cements for therapy and regeneration for minimally invasive treatment of neoplastic bone defects[J]. Journal of Materials Chemistry B(2021).

    [36] LIN S W, LI X Q, LIU S Y et al. Inhibition of combination of icaritin and doxorubicin on human osteosarcoma MG-63 cells in vitro[J]. Chinese Journal of Integrated Traditional & Western Medicine, 729-734(2016).

    [37] ZHAO Y K, TANG S S, GUO J M et al. Targeted delivery of doxorubicin by nano-loaded mesenchymal stem cells for lung melanoma metastases therapy[J]. Scientific Reports(2017).

    [38] CUI X, ZHANG Y D, WANG J Y et al. Strontium modulates osteogenic activity of bone cement composed of bioactive borosilicate glass particles by activating Wnt/β-catenin signaling pathway[J]. Bioactive Materials, 334-347(2020).

    [39] PANG L B, SHEN Y F, HU H R et al. Chemically and physically cross-linked polyvinyl alcohol-borosilicate gel hybrid scaffolds for bone regeneration[J]. Material Science Engineering C: Materials in Biological Application(2019).

    [40] BI L X, RAHAMAN M N, DAY D E et al. Effect of bioactive borate glass microstructure on bone regeneration, angiogenesis, and hydroxyapatite conversion in a rat calvarial defect model[J]. Acta Biomaterialia, 8015-8026(2013).

    [41] GU Y F, HUANG W H, RAHAMAN M N et al. Bone regeneration in rat calvarial defects implanted with fibrous scaffolds composed of a mixture of silicate and borate bioactive glasses[J]. Acta Biomaterialia, 9126-9136(2013).

    [42] RAHAMAN M N, DAY D E, BAL B S et al. Bioactive glass in tissue engineering[J]. Acta Biomaterialia, 2355-2373(2011).

    [43] PARK M, LI Q, SHCHEYNIKOV N et al. NaBCl is a ubiquitous electrogenic Na+-coupled borate transporter essential for cellular boron homeostasis and cell growth and proliferation[J]. Mollecular Cell, 331-341(2004).

    [44] NIKFARJAM M, MURALIDHARAN V, CHRISTOPHI C. Mechanisms of focal heat destruction of liver tumors[J]. Journal of Surgical Research(2005).

    [45] CHU K F, DUPUY D E. Thermal ablation of tumours: biological mechanisms and advances in therapy[J]. Nature Reviews Cancer, 199-208(2014).

    [48] XU C, MA B, PENG J L et al. Tricalcium silicate/graphene oxide bone cement with photothermal properties for tumor ablation[J]. Journal of Materials Chemistry B, 2808-2818(2019).

    [49] LIU Y Q, LIN R C, MA L L et al. Mesoporous bioactive glass for synergistic therapy of tumor and regeneration of bone tissue[J]. Applied Materials Today(2020).

    [50] ZHU X J, FENG W, CHANG J et al. Temperature-feedback upconversion nanocomposite for accurate photothermal therapy at facile temperature[J]. Nature Communication(2016).

    [52] SHUKLA N, SINGH B, KIM H J et al. Combinational chemotherapy and photothermal therapy using a gold nanorod platform for cancer treatment[J]. Particle & Particle Systems Characterization, 2000099-15(2020).

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    Cheng CHEN, Jingxin DING, Hui WANG, Deping WANG. Nd-doped Mesoporous Borosilicate Bioactive Glass-ceramic Bone Cement[J]. Journal of Inorganic Materials, 2022, 37(11): 1245

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    Paper Information

    Category: RESEARCH LETTER

    Received: Mar. 2, 2022

    Accepted: --

    Published Online: Jan. 12, 2023

    The Author Email: Hui WANG (WHIL86@shutcm.edu.cn), Deping WANG (wdpshk@tongji.edu.cn)

    DOI:10.15541/jim20220114

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