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4篇 您的检索式:作者名="Linna Chang"
    题名 作者 年代 出处 被引量
1Pharmacokinetics of intravenous mycophenolate mofetil (MMF) in liver transplant patients (abstract)显示文摘 Chang T Linna TJ 1996Clin Pharmacol Ther1996,59,:1
2Electrospinning of antibacterial and anti-inflammatory Ag@hesperidin core-shell nanoparticles into nanofibers used for promoting infected wound healing显示文摘Bacterial infection and excessive inflammation are still the main obstacles to wound repair.Thus,antibacterial and antiinflammation nanomaterials are always attracting for infected wound healing.In this work,ultra-uniform(-20 nm)and colloidally stable Ag nanoparticles(Ag-Hes NPs)with core-shell structure were prepared by using hesperidin as reducing and capping agent.The obtained Ag-Hes NPs present effective antibacterial properties on both Staphylococcus aureus and Escherichia coli.Ag-Hes NPs also got high 1,1-diphenyl-1-picrylhydrazyl scavenging capability of 69%.Under the package of polyvinyl alcohol and sodium alginate,Ag-Hes NPs were encapsulated into electro spun nanofibers to form hydrogel(Ag-Hes@H).This strategy provides a moisture environment which could enrich and release Ag-Hes NPs gradually.Cell experiments and animal wound healing investigation proved that Ag-Hes@H could promote the proliferation and migration of human umbilical vein endothelial cells and accelerate infected wound healing.Meanwhile,Ag-Hes@H significantly reduced the expression of inflammatory cytokines,including IL-6,MMP9 and TNF-α.Immunohistochemistry data further suggested that Ag-Hes@H accelerated wound closure by promoting collagen deposition and skin cell proliferation.The designed antibacterial and anti-inflammatory Ag-Hes@H has great potential for promoting infected wound healing.Xiuli Ren Yanan Hu Linna Chang Shibo Xu Xifan Mei Zhenhua Chen 2022Regenerative Biomaterials2022,9,1:0
3cFos-ANAB:A cFos-based Web Tool for Exploring Activated Neurons and Associated Behaviors显示文摘cFos is one of the most widely-studied genes in the field of neuroscience.Currently,there is no systematic database focusing on cFos in neuroscience.We developed a curated database-cFos-ANAB-a cFos-based web tool for exploring activated neurons and associated behaviors in rats and mice,comprising 398 brain nuclei and sub-nuclei,and five associated behaviors:pain,fear,feeding,aggression,and sexual behavior.Direct relationships among behaviors and nuclei(even cell types)under specific stimulating conditions were constructed based on cFos expression profiles extracted from original publications.Moreover,overlapping nuclei and sub-nuclei with potentially complex functions among different associated behaviors were emphasized,leading to results serving as important clues to the development of valid hypotheses for exploring as yet unknown circuits.Using the analysis function of cFos-ANAB,multi-layered pictures of networks and their relationships can quickly be explored depending on users’purposes.These features provide a useful tool and good reference for early exploration in neuroscience.The cFos-ANAB database is available at www.cfos-db.net.Fan Wang Wenjie Sun Lei Chang Kefang Sun Leying Hou Linna Qian Chaoyin Jin Jiandong Chen Jiali Pu Panmeng Ye Shuang Qiu Jianhong Luo Shumin Duan Baorong Zhang Zhihua Gao Xiaojun Hu 2021Neuroscience Bulletin2021,37,10:0
4Preparation of EGCG decorated,injectable extracellular vesicles for cartilage repair in rat arthritis显示文摘Arthritis is a kind of chronic inflammatory autoimmune disease,which can destroy joint cartilage and bone,leading to joint pain,joint swelling,and limited mobility.Traditional therapies have many side effects or focus too much on anti-inflammation while neglecting joint repair.In this experiment,we combined Epigallocatechin gallate(EGCG)with extracellular vesicles derived from macrophages to treat rheumatoid arthritis.Sustained-release resulted in a significant decrease in chondrocyte expression of hypoxia-inducible factor 1-alpha,a decrease in apoptosis-related proteins Cytochrome C,Caspase-3,Caspase-9,and Bax.Molecular biological analysis showed that extracellular vesicles-encapsulated EGCG(EVs-EGCG)more significantly upregulated type II collagen expression by about 1.8-fold than EGCG alone,which was more beneficial for arthritis repair.Animal experiments revealed that these EGCG-coated extracellular vesicles significantly reduced swelling,decreased synovial hyperplasia,repaired cartilage,and attenuated arthritis-related pathology scores in arthritic rats.Measurement data showed that EVs-EGCG treatment reduced joint swelling by approximately 39.5%in rheumatoid rats.In vitro studies have shown that this EVs-EGCG can increase the expression of cartilage type II collagen and reduce apoptosis of chondrocytes.Moreover,it was demonstrated in vivo experiments to reduce cartilage destruction in rheumatoid arthritis rats,providing a solution for the treatment of rheumatoid arthritis.Changwei Song Shibo Xu Linna Chang Xingjun Zhao Xifan Mei Xiuli Ren Zhenhua Chen 2021Regenerative Biomaterials2021,8,6:0
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