机构:[1]Shandong Univ, Dept Orthopaed, Qilu Hosp, 107 West Wenhua Rd, Jinan 250012, Shandong, Peoples R China[2]Shanghai Univ, Sch Life Sci, Materdicine Lab, Shanghai 200444, Peoples R China[3]Shandong Univ, Lab Basic Med Sci, Qilu Hosp, Jinan 250012, Peoples R China[4]Kunming Med Univ, Affiliated Hosp 1, Kunming 650032, Yunnan, Peoples R China昆明医科大学附属第一医院[5]Flinders Univ S Australia, Coll Med & Publ Hlth, Sturt Rd, Bedford Pk, SA 5042, Australia[6]Univ South Australia, Acad Unit STEM, Adelaide, SA 5095, Australia
Prolonged and incurable bacterial infections in soft tissue and bone are currently causing large challenges in the clinic. Two-dimensional (2D) materials have been designed to address these issues, but materials with satisfying therapeutic effects are still needed. Herein, CaO2-loaded 2D titanium carbide nanosheets (CaO2-TiOx@Ti3C2, C-T@Ti3C2) were developed. Surprisingly, this nanosheet exhibited sonodynamic ability, in which CaO2 caused the in situ oxidation of Ti3C2 MXene to produce acoustic sensitiser TiO2 on its surface. In addition, this nanosheet displayed chemodynamic features, which promoted a Fenton reaction triggered by self-supplied H2O2. We detected that C-T@Ti3C2 nanosheets increased reactive oxygen species (ROS) production in response to sonodynamic therapy, which displayed an ideal antibacterial effect. Furthermore, these nanoreactors facilitated the deposition of Ca2+, which promoted osteogenic transformation and enhanced bone quality in osteomyelitis models. Herein, a wound healing model and prosthetic joint infection (PJI) model were established, and the C-T@Ti3C2 nanosheets played a protective role in these models. Taken together, the results indicated that the C-T@Ti3C2 nanosheets function as a multifunctional instrument with sonodynamic features, which might reveal information regarding the treatment of bacterial infections during wound healing.
基金:
National Natural Science Foundation of China [ZR2020YQ54]; Shandong Provincial Natural Science Foundation [21010500100]; Shanghai Science and Technology Program [21JC1406002]; Basic Research Program of Shanghai Municipal Government [GJHZ2072]; International Collaboration Project of Chinese Academy of Sciences; [82072478]
第一作者机构:[1]Shandong Univ, Dept Orthopaed, Qilu Hosp, 107 West Wenhua Rd, Jinan 250012, Shandong, Peoples R China[2]Shanghai Univ, Sch Life Sci, Materdicine Lab, Shanghai 200444, Peoples R China[3]Shandong Univ, Lab Basic Med Sci, Qilu Hosp, Jinan 250012, Peoples R China
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推荐引用方式(GB/T 7714):
Yu Yang,Sun Houyi,Lu Qunshan,et al.Spontaneous formation of MXene-oxidized sono/chemo-dynamic sonosensitizer/nanocatalyst for antibacteria and bone-tissue regeneration[J].JOURNAL OF NANOBIOTECHNOLOGY.2023,21(1):doi:10.1186/s12951-023-01933-z.
APA:
Yu, Yang,Sun, Houyi,Lu, Qunshan,Sun, Junyuan,Zhang, Pengfei...&Liu, Peilai.(2023).Spontaneous formation of MXene-oxidized sono/chemo-dynamic sonosensitizer/nanocatalyst for antibacteria and bone-tissue regeneration.JOURNAL OF NANOBIOTECHNOLOGY,21,(1)
MLA:
Yu, Yang,et al."Spontaneous formation of MXene-oxidized sono/chemo-dynamic sonosensitizer/nanocatalyst for antibacteria and bone-tissue regeneration".JOURNAL OF NANOBIOTECHNOLOGY 21..1(2023)