• Journal of Inorganic Materials
  • Vol. 37, Issue 11, 1192 (2022)
Wenjun ZHANG1, Xueying ZHAO1, Jiangwei LÜ1、*, and Youpeng QU2
Author Affiliations
  • 11. School of Pharmacy, Harbin University of Commerce, Harbin 150076, China
  • 22. School of Life Science and Technology, Harbin Institute of Technology, Harbin 150080, China
  • show less
    DOI: 10.15541/jim20220435 Cite this Article
    Wenjun ZHANG, Xueying ZHAO, Jiangwei LÜ, Youpeng QU. Progresses on Hollow Periodic Mesoporous Organosilicas: Preparation and Application in Tumor Therapy[J]. Journal of Inorganic Materials, 2022, 37(11): 1192 Copy Citation Text show less
    References

    [1] V MALGRAS, H ATAEE-ESFAHANI, H WANG et al. Nanoarchitectures for mesoporous metals. Advanced Materials, 993-1010(2016).

    [2] W LI, J LIU, D ZHAO. Mesoporous materials for energy conversion and storage devices. Nature Reviews Materials, 16023-17(2016).

    [3] N LINARES, A M SILVESTRE-ALBERO, E SERRANO et al. Mesoporous materials for clean energy technologies. Chemical Society Reviews, 7681-7717(2014).

    [4] X YANG, P QIU, J YANG et al. Mesoporous materials-based electrochemical biosensors from enzymatic to nonenzymatic. Small, 1904022-16(2021).

    [5] M MANZANO, M VALLET-REGÍ. Mesoporous silica nanoparticles for drug delivery. Advanced Functional Materials, 1902634-13(2020).

    [6] Y ZHOU, G QUAN, Q WU et al. Mesoporous silica nanoparticles for drug and gene delivery. Acta Pharmaceutica Sinica B, 165-177(2018).

    [7] H THI, Q NGUYEN, T HOANG et al. Functionalized mesoporous silica nanoparticles and biomedical applications. Materials Science and Engineering: C(2019).

    [8] P GNANAMOORTHY, S ANANDHAN, V A PRABU. Natural nanoporous silica frustules from marine diatom as a biocarrier for drug delivery. Journal of Porous Materials, 789-796(2014).

    [9] B SZCZĘŚNIAK, J CHOMA, M JARONIEC. Major advances in the development of ordered mesoporous materials. Chemical Communications, 7836-7848(2020).

    [10] L B PANG, D P WANG. Drug carrier based on mesoporous borosilicate glass microspheres: preparation and performance. Journal of Inorganic Materials, 780-786(2022).

    [11] H MA, J H TAO, Y N WANG et al. Gold nanoparticles supported on silica & titania hybrid mesoporous spheres and their catalytic performance regulation. Journal of Inorganic Materials, 404-412(2022).

    [12] S PAN, Y S LI, J L SHI. Facile synthesis of dendritic mesoporous silica nanoparticles for Co-loading of doxorubicin and hemoglobin. Journal of Inorganic Materials, 1097-1102(2018).

    [13] C ZEA, J ALCÁNTARA, R BARRANCO-GARCÍA et al. Synthesis and characterization of hollow mesoporous silica nanoparticles for smart corrosion protection. Nanomaterials, 478(2018).

    [14] Y BAO, T WANG. Recent advances in fabrication and sustained/ controlled-release application of hollow silica microspheres. Journal of Inorganic Materials, 1269-1278(2016).

    [15] S P H MOGHADDAM, M YAZDIMAMAGHANI, H GHANDEHARI. Glutathione-sensitive hollow mesoporous silica nanoparticles for controlled drug delivery. Journal of Controlled Release(2018).

    [16] Y GAO, Y ZHANG, S HE et al. Fabrication of a hollow mesoporous silica hybrid to improve the targeting of a pesticide. Chemical Engineering Journal(2019).

    [17] M TIAN, Y LONG, D XU et al. Hollow mesoporous silica nanotubes modified with palladium nanoparticles for environmental catalytic applications. Journal of Colloid and Interface Science(2018).

    [18] D Y ZHAO, Y WAN, W Z ZHOU et al. Ordered mesoporous molecular sieve materials, 2013. Beijing: Higher education press(2013).

    [19] F LIN, X MENG, L WU et al. Inorganic salt assisted self-assembly of periodic mesoporous organosilicas with various structures under alkaline conditions. European Journal of Inorganic Chemistry, 4063-4069(2019).

    [20] Y GOTO, N MIZOSHITA, M WAKI et al. Synthesis and applications of periodic mesoporous organosilicas//Abderrazzak D, Masakazu A. Chemistry of Silica and Zeolite-Based Materials. Elsevier, 1-25(2019).

    [21] J G CROISSANT, X CATTOËN, M W C MAN et al. Syntheses and applications of periodic mesoporous organosilica nanoparticles. Nanoscale, 20318-20334(2015).

    [22] S S PARK, M S MOORTHY, C S HA. Periodic mesoporous organosilica (PMO) for catalytic applications. Korean Journal of Chemical Engineering, 1707-1719(2014).

    [23] W WANG, J E LOFGREEN, G A OZIN. Why PMO? Towards functionality and utility of periodic mesoporous organosilicas. Small, 2634-2642(2010).

    [24] Q H YANG, J LIU, H ZHONG et al. Progress in the periodic mesoporous organosilicas. Journal of Inorganic Materials, 641-649(2009).

    [25] Y L ZENG, J J CHEN, Z F TIAN et al. Preparation of mesoporous organosilica-based nanosystem for in vitro synergistic chemo- and photothermal therapy. Journal of Inorganic Materials, 1365-1372(2020).

    [26] M WU, Y CHEN, L ZHANG et al. A salt-assisted acid etching strategy for hollow mesoporous silica/organosilica for pH-responsive drug and gene co-delivery. Journal of Materials Chemistry B, 766-775(2015).

    [27] Z TENG, W LI, Y TANG et al. Mesoporous organosilica hollow nanoparticles: synthesis and applications. Advanced Materials, 1707612-24(2019).

    [28] J CHEN, Y YANG, B LIN et al. Hollow mesoporous organosilica nanotheranostics incorporating formimidoyltransferase cyclodeaminase (FTCD) plasmids for magnetic resonance imaging and tetrahydrofolate metabolism fission on hepatocellular carcinoma. International Journal of Pharmaceutics(2022).

    [29] L CHUNLING, Z XIYU, C MENG et al. Application of hollow mesoporous organosilica nanoparticles as pH and redox double stimuli-responsive nanocontainer in the controlled release of corrosion inhibitor molecules. Progress in Organic Coatings(2021).

    [30] P QIU, B MA, C T HUNG et al. Spherical mesoporous materials from single to multilevel architectures. Accounts of Chemical Research, 2928-2938(2019).

    [31] Y SHAO, J SONG, X LI et al. Synthesis of noble metal M@YSiO2yolk-shell nanoparticles with thin organic/inorganic hybrid outer shells via an aqueous medium phase. Langmuir, 7237-7245(2021).

    [32] J WU, Y LIU, Y TANG et al. Synergistic chemo-photothermal therapy of breast cancer by mesenchymal stem cell-encapsulated yolk-shell GNR@HPMOs-PTX nanospheres. Applied Materials & Interfaces, 17927-17935(2016).

    [33] L YU, P PAN, Y ZHANG et al. Nonsacrificial self-template synthesis of colloidal magnetic yolk-shell mesoporous organosilicas for efficient oil/water interface catalysis. Small, 1805465-9(2019).

    [34] Y CHEN, P XU, H CHEN et al. Colloidal HPMO nanoparticles: silica-etching chemistry tailoring, topological transformation, and nano-biomedical applications. Advanced Materials, 3100-3105(2013).

    [35] Z TENG, X SU, Y ZHENG et al. A facile multi-interface transformation approach to monodisperse multiple-shelled periodic mesoporous organosilica hollow spheres. Journal of the American Chemical Society, 7935-7944(2015).

    [36] C WANG, G SANG, Y RONG et al. Unexpected phenomenon in a conventional system: synthesis of raspberry-like hollow periodic mesoporous organosilica with controlled structure in one continuous step. New Journal of Chemistry, 6651-6660(2021).

    [37] Z TENG, C WANG, Y TANG et al. Deformable hollow periodic mesoporous organosilica nanocapsules for significantly improved cellular uptake. Journal of the American Chemical Society, 1385-1393(2018).

    [38] Y BAO, C SHI, T WANG et al. Recent progress in hollow silica: template synthesis, morphologies and applications. Microporous and Mesoporous Materials(2016).

    [39] Y BAO, C H SHI, J Z MA. Fabrication of hollow silica spheres and their effect on water vapor permeability of waterborne polyurethane film. Journal of the Chinese Ceramic Society, 35-41(2015).

    [40] X LIU, Z JIAO, T SONG et al. Surfactant-assisted selective etching strategy for generation of rattle-like mesoporous silica nanoparticles. Journal of Colloid and Interface Science(2017).

    [41] Y S CHO. Fabrication of hollow or macroporous silica particles by spray drying of colloidal dispersion. Journal of Dispersion Science and Technology, 23-33(2016).

    [42] W J ZHANG, X L LIANG, J W LYU et al. Synthesis and biomedicine application progress of periodic mesoporous organosilicas. Fine Chemicals, 236-246(2022).

    [43] B KARIMI, N GANJI, O POURSHIANI et al. Periodic mesoporous organosilicas (PMOs): from synthesis strategies to applications. Progress in Materials Science(2021).

    [44] X HUANG, W LI, M WANG et al. A facile template route to periodic mesoporous organosilicas nanospheres with tubular structure by using compressed CO2. Scientific Reports, 45055-11(2017).

    [45] W GUO, J WANG, S J LEE et al. A general pH-responsive supramolecular nanovalve based on mesoporous organosilica hollow nanospheres. Chemistry-a European Journal, 8641-8646(2010).

    [46] L YANG, H GUO, L WANG et al. A facile “polystyrene- dissolving” strategy to hollow periodic mesoporous organosilica with flexible structure-tailorability. Microporous and Mesoporous Materials(2017).

    [47] N KOIKE, W CHAIKITTISILP, A SHIMOJIMA et al. Surfactant- free synthesis of hollow mesoporous organosilica nanoparticles with controllable particle sizes and diversified organic moieties. Royal Society of Chemistry Advances(2016).

    [48] Y WANG, P WANG, L CHEN et al. Organosilane-assisted selective etching strategy for fabrication of hollow/rattle-type mesoporous organosilica nanospheres. Journal of Solid State Chemistry(2018).

    [49] C L LI, X ZHAO, C MENG et al. Application of hollow mesoporous organosilica nanoparticles as pH and redox double stimuli- responsive nanocontainer in the controlled release of corrosion inhibitor molecules. Progress in Organic Coatings, 159: 106437(2021).

    [50] L HUANG, J FENG, W FAN et al. Intelligent pore switch of hollow mesoporous organosilica nanoparticles for high contrast magnetic resonance imaging and tumor-specific chemotherapy. Nano-Micro Letters, 9551-9559(2021).

    [51] H DJOJOPUTRO, X F ZHOU, S Z QIAO et al. Periodic mesoporous organosilica hollow spheres with tunable wall thickness. Journal of the American Chemical Society, 6320-6321(2006).

    [52] X MA, J ZHANG, M DANG et al. Hollow periodic mesoporous organosilica nanospheres by a facile emulsion approach. Journal of Colloid and Interface Science(2016).

    [53] N MA, Y DENG, W LIU et al. A one-step synthesis of hollow periodic mesoporous organosilica spheres with radially oriented mesochannels. Chemical Communications, 3544-3547(2016).

    [54] Z TENG, W LI, Y TANG et al. Mesoporous organosilica hollow nanoparticles: synthesis and applications. Advanced Materials, 170762(2019).

    [55] Z TENG, X SU, B LEE et al. Yolk-shell structured mesoporous nanoparticles with thioether-bridged organosilica frameworks. Chemistry of Materials, 5980-5987(2014).

    [56] Z TENG, S WANG, X SU et al. Facile synthesis of yolk-shell structured inorganic-organic hybrid spheres with ordered radial mesochannels. Advanced Materials, 3741-3747(2014).

    [57] Z TENG, J ZHANG, W LI et al. Facile synthesis of yolk- shell-structured triple-hybridized periodic mesoporous organosilica nanoparticles for biomedicine. Small, 3550-3558(2016).

    [58] J ZHANG, L WENG, X SU et al. Cisplatin and doxorubicin high- loaded nanodrug based on biocompatible thioether-and ethane- bridged hollow mesoporous organosilica nanoparticles. Journal of Colloid and Interface Science(2018).

    [59] R YU, J TAO, L SHAO et al. Facile synthesis of hybridized triple-shelled hollow mesoporous organosilica nanoparticles. Journal of the Taiwan Institute of Chemical Engineers(2022).

    [60] L GUAN, J CHEN, Z TIAN et al. Mesoporous organosilica nanoparticles: degradation strategies and application in tumor therapy. View, 20200117-22(2021).

    [61] Y ZHOU, Q XU, C LI et al. Hollow mesoporous silica nanoparticles as nanocarriers employed in cancer therapy: a review. Frontiers of Materials Science, 373-386(2020).

    [62] T ANIS, A KHURSHID, M FAKHAR-E-ALAM et al. Hollow multicomponent capsules for biomedical applications: a comprehensive review. Journal of Cluster Science(2022). https://doi.org/10.1007/s10876-022-02272-z

    [63] M Z JIN, W L JIN. The updated landscape of tumor microenvironment and drug repurposing. Signal Transduction and Targeted Therapy, 1052-1067(2020).

    [64] Y LI, Z WANG, Q WEI et al. Non-covalent interactions in controlling pH-responsive behaviors of self-assembled nanosystems. Polymer chemistry, 5949-5956(2016).

    [65] S MOLLAZADEH, M MACKIEWICZ, M YAZDIMAMAGHANI. Recent advances in the redox-responsive drug delivery nanoplatforms: a chemical structure and physical property perspective. Materials Science and Engineering: C(2021).

    [66] J WU, Z MENG, A EXNER et al. Biodegradable cascade nanocatalysts enable tumor-microenvironment remodeling for controllable CO release and targeted/synergistic cancer nanotheapy. Biomaterials(2021).

    [67] J FAN, Z ZHANG, Y WANG et al. Photo-responsive degradable hollow mesoporous organosilica nanoplatforms for drug delivery. Journal of Nanobiotechnology(2020).

    [68] X LIU, H SU, W SHI et al. Functionalized poly (pyrrole-3- carboxylic acid) nanoneedles for dual-imaging guided PDT/PTT combination therapy. Biomaterials(2018).

    [69] A BARKAT, S BEG, S K PANDA et al. Functionalized mesoporous silica nanoparticles in anticancer therapeutics. Seminars in Cancer Biology(2021).

    [70] H ZHANG, F SONG, C DONG et al. Co-delivery of nanoparticle and molecular drug by hollow mesoporous organosilica for tumor- activated and photothermal-augmented chemotherapy of breast cancer. Journal of Nanobiotechnology(2021).

    [71] Z YANG, W FAN, J ZOU et al. Precision cancer theranostic platform by in situ polymerization in perylene diimide-hybridized hollow mesoporous organosilica nanoparticles. Journal of the American Chemical Society, 14687-14698(2019).

    [72] W TANG, W FAN, Z WANG et al. Acidity/reducibility dual-responsive hollow mesoporous organosilica nanoplatforms for tumor-specific self-assembly and synergistic therapy. Nano Materials, 12269-12283(2018).

    [73] L LI, H LIN, D LI et al. Ultrasound activated nanosensitizers for sonodynamic therapy and theranostics. Biomedical Materials, 022008-17(2021).

    [74] P ZHU, Y CHEN, J SHI. Nanoenzyme-augmented cancer sonodynamic therapy by catalytic tumor oxygenation. Nano, 3780-3795(2018).

    [75] W ZOU, J HAO, J WU et al. Biodegradable reduce expenditure bioreactor for augmented sonodynamic therapy via regulating tumor hypoxia and inducing pro-death autophagy. Journal of Nanobiotechnology, 418-15(2021).

    [76] W FAN, N LU, Z SHEN et al. Generic synthesis of small-sized hollow mesoporous organosilica nanoparticles for oxygen-independent X-ray-activated synergistic therapy. Nature Communications(2019).

    [77] N LU, W FAN, X YI et al. Biodegradable hollow mesoporous organosilica nanotheranostics for mild hyperthermia-induced bubble-enhanced oxygen-sensitized radiotherapy. Nano, 1580-1591(2018).

    Wenjun ZHANG, Xueying ZHAO, Jiangwei LÜ, Youpeng QU. Progresses on Hollow Periodic Mesoporous Organosilicas: Preparation and Application in Tumor Therapy[J]. Journal of Inorganic Materials, 2022, 37(11): 1192
    Download Citation