文献引用
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1) Bio-orthogonal-labeled exosomes reveals specific distribution in vivo and provides potential application in ARDS therapy.
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2) Regulation of osteoimmune microenvironment via functional dynamic hydrogel for diabetic bone regeneration.
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3) A Di-aptamer-functionalized scaffold promotes bone regeneration by facilitating the selective retention of MSCs and EPCs and then promoting crosstalk between osteogenesis and angiogenesis.
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4) Engineered VNP20009 expressing IL-15&15Rα augments anti-tumor immunity for bladder cancer treatment.
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5) Overcoming radiation-induced PD-L1 and COX-2 upregulation by nitric oxide gas nanogenerator to sensitize radiotherapy of lung cancer.
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6) Endothelia-targeting eye drops deliver a STING inhibitor to effectively reduce retinal neovascularization in ischemic retinopathy.
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7) NIR-driven PdH nanocubes releasing hydrogen to reprogram inflammatory microenvironment for immune tolerance in therapy of rheumatoid arthritis.
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8) Regulation of immune microenvironments by polyetheretherketone surface topography for improving osseointegration.
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9) Internalized polystyrene nanoplastics trigger testicular damage and promote ferroptosis via CISD1 downregulation in mouse spermatocyte.
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10) Human DBR1 deficiency impairs stress granule-dependent PKR antiviral immunity.
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11) Polydatin accelerates osteoporotic bone repair by inducing the osteogenesis-angiogenesis coupling of bone marrow mesenchymal stem cells via the PI3K/AKT/GSK-3β/β-catenin pathway.
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12) Tumor-derived exosomes induce neutrophil infiltration and reprogramming to promote T-cell exhaustion in hepatocellular carcinoma.
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13) BARD1-mediated stabilization of METTL14 promotes retinal neovascularization by m6A-modifying MXD1 mRNA on a YTHDF2-dependent manner.
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14) Inhibition of macrophage inflammasome assembly and pyroptosis with GC-1 ameliorates acute lung injury.
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15) Exosomes of human adipose stem cells mitigate irradiation injury to salivary glands by inhibiting epithelial-mesenchymal transition through miR-199a-3p targeting Twist1 and regulating TGFβ1/Smad3 pathway.