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Injectable bone marrow microniches by co-culture of HSPCs with MSCs in 3D microscaffolds promote hematopoietic reconstitution from acute lethal radiation
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作者 Haiwei Liang yanxiao ao +6 位作者 Wenjing Li Kaini Liang Baixue Tang Junyang Li Jianwei Wang Xiaoyu Zhu Yanan Du 《Bioactive Materials》 SCIE CSCD 2023年第4期453-465,共13页
Hematopoietic syndrome of acute radiation syndrome(h-ARS)is an acute illness resulted from the damage of bone marrow(BM)microenvironment after exposure to radiation.Currently,the clinical management of h-ARS is limite... Hematopoietic syndrome of acute radiation syndrome(h-ARS)is an acute illness resulted from the damage of bone marrow(BM)microenvironment after exposure to radiation.Currently,the clinical management of h-ARS is limited to medication-assisted treatment,while there is still no specific therapy for the hematopoietic injury from high-dose radiation exposure.Our study aimed to assemble biomimetic three-dimensional(3D)BM microniches by co-culture of hematopoietic stem and progenitor cells(HSPCs)and mesenchymal stem cells(MSCs)in porous,injectable and viscoelastic microscaffolds in vitro.The biodegradable BM microniches were then transplanted in vivo into the BM cavity for the treatment of h-ARS.We demonstrated that the maintenance of HSPCs was prolonged by co-culture with MSCs in the porous 3D microscaffolds with 84μm in pore diameter and 11.2 kPa in Young’s modulus compared with 2D co-culture system.Besides,the minimal effective dose and therapeutic effects of the BM microniches were investigated on a murine model of h-ARS,which showed that the intramedullary cavity-injected BM microniches could adequately promote hematopoietic reconstitution and mitigate death from acute lethal radiation with a dose as low as 1000 HSPCs.Furthermore,the mRNA expression of Notch1 and its downstream target gene Hes1 of HSPCs were increased when co-cultured with MSCs,while the Jagged1 expression of the co-cultured MSCs was upregulated,indicating the significance of Notch signaling pathway in maintenance of HSPCs.Collectively,our findings provide evidence that biomimetic and injectable 3D BM microniches could maintain HSPCs,promote hematopoiesis regeneration and alleviate post-radiation injury,which provides a promising approach to renovate conventional HSPCs transplantation for clinical treatment of blood and immune disorders. 展开更多
关键词 Hematopoietic syndrome of acute radiation syndrome Bone marrow Hematopoietic stem cells Mesenchymal stem cells 3D microscaffolds
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用于肿瘤综合治疗的无机纳米材料 被引量:1
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作者 胡军 姚雨竹 +3 位作者 敖艳肖 杨海 杨祥良 徐辉碧 《化学进展》 SCIE CAS CSCD 北大核心 2018年第10期1584-1591,共8页
无机纳米材料以其独特的纳米特性,在以肿瘤为代表的多种疾病的诊疗一体及综合治疗中具有越来越广泛的应用。本文重点关注该领域代表性的三类材料:超顺磁性氧化铁纳米粒、上转换纳米粒以及贵金属纳米粒,它们分别具有优异的磁学性能、光... 无机纳米材料以其独特的纳米特性,在以肿瘤为代表的多种疾病的诊疗一体及综合治疗中具有越来越广泛的应用。本文重点关注该领域代表性的三类材料:超顺磁性氧化铁纳米粒、上转换纳米粒以及贵金属纳米粒,它们分别具有优异的磁学性能、光学性能及热性能,归纳总结了它们在体外检测、活体成像、药物输送以及靶向治疗等方面的应用及其优势与劣势,希望为发展生物相容性更好、诊疗效果更佳的无机纳米材料提供更好参考和建议,促进无机纳米材料的临床转化。 展开更多
关键词 无机纳米材料 肿瘤 诊断 综合治疗
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