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西宁南北山造林绿化实践对拉萨南北山绿化建设的启示 被引量:8
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作者 侯伟 普布顿珠 +3 位作者 边巴多吉 普罗 陶德玲 薛辉 《林业建设》 2022年第5期51-55,共5页
拉萨、西宁同属青藏高原,开展山体绿化具有诸多相似性。从规划设计、基础建设、树种选择、苗木质量、组织实施、审批程序、参与方式等方面综述西宁南北山造林绿化主要经验和做法。分析拉萨山体造林面临问题,借鉴西宁绿化实践基础,展望... 拉萨、西宁同属青藏高原,开展山体绿化具有诸多相似性。从规划设计、基础建设、树种选择、苗木质量、组织实施、审批程序、参与方式等方面综述西宁南北山造林绿化主要经验和做法。分析拉萨山体造林面临问题,借鉴西宁绿化实践基础,展望拉萨南北山绿化建设预期。 展开更多
关键词 拉萨 南北山 绿化 经验 启示
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Tailoring the multiscale mechanics of tunable decellularized extracellular matrix (dECM) for wound healing through immunomodulation 被引量:5
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作者 pu luo Ruoxuan Huang +14 位作者 You Wu Xingchen Liu Zhengjie Shan Li Gong Shudan Deng Haiwen Liu Jinghan Fang Shiyu Wu Xiayi Wu Quan Liu Zetao Chen Kelvin W.K.Yeung Wei Qiao Shoucheng Chen Zhuofan Chen 《Bioactive Materials》 SCIE CSCD 2023年第10期95-111,共17页
With the discovery of the pivotal role of macrophages in tissue regeneration through shaping the tissue immune microenvironment, various immunomodulatory strategies have been proposed to modify traditional biomaterial... With the discovery of the pivotal role of macrophages in tissue regeneration through shaping the tissue immune microenvironment, various immunomodulatory strategies have been proposed to modify traditional biomaterials. Decellularized extracellular matrix (dECM) has been extensively used in the clinical treatment of tissue injury due to its favorable biocompatibility and similarity to the native tissue environment. However, most reported decellularization protocols may cause damage to the native structure of dECM, which undermines its inherent advantages and potential clinical applications. Here, we introduce a mechanically tunable dECM prepared by optimizing the freeze-thaw cycles. We demonstrated that the alteration in micromechanical properties of dECM resulting from the cyclic freeze-thaw process contributes to distinct macrophage-mediated host immune responses to the materials, which are recently recognized to play a pivotal role in determining the outcome of tissue regeneration. Our sequencing data further revealed that the immunomodulatory effect of dECM was induced via the mechnotrasduction pathways in macrophages. Next, we tested the dECM in a rat skin injury model and found an enhanced micromechanical property of dECM achieved with three freeze-thaw cycles significantly promoted the M2 polarization of macrophages, leading to superior wound healing. These findings suggest that the immunomodulatory property of dECM can be efficiently manipulated by tailoring its inherent micromechanical properties during the decellularization process. Therefore, our mechanics-immunomodulation-based strategy provides new insights into the development of advanced biomaterials for wound healing. 展开更多
关键词 Wound healing Decellularized extracellular matrix Freeze-thaw treatment Multiscale mechanics Macrophage polarization IMMUNOMODULATION MECHANOTRANSDUCTION
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