Results 201 to 210 of about 592,486 (261)
Correction to "The Activation of cGAS-STING Pathway Causes Abnormal Uterine Receptivity in Aged Mice". [PDF]
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Inhibition of PKCγ phosphorylation protects against cerebral ischemia-reperfusion injury. [PDF]
Li C +7 more
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Exosomal lncRNA MIAT enriched in M2 macrophages contributes to electroacupuncture-driven peripheral nerve regeneration through targeting MiR-130a-3p/KLF7. [PDF]
Tian MY +5 more
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The ACE2-Ang-(1-7)-Mas Axis Modulates M1/M2 Macrophage Polarization to Relieve CLP-Induced Inflammation via TLR4-Mediated NF-Кb and MAPK Pathways [Retraction]. [PDF]
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Immunofluorescence in dermatology
Journal of the American Academy of Dermatology, 2001The accurate diagnosis of bullous and other immune diseases of the skin requires evaluation of clinical, histologic, and immunofluorescence findings. Immunofluorescence testing is invaluable in confirming a diagnosis that is suspected by clinical or histologic examination. This is especially true in subepidermal bullous diseases that often have overlap
Diya F Mutasim, Brian B Adams
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Immunohistochemistry and Immunofluorescence
2022Immunohistochemistry (IHC) is one of the most widely used protein detection techniques. The principle of this technique is based on the binding of a specific antibody to a matching specific antigen in tissue. The bound antigen-antibody complex then is visualized using a range of detection techniques.
Haizal Mohd, Hussaini +2 more
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Current Protocols, 2023
AbstractVisualizing fluorescence‐tagged molecules is a powerful strategy that can reveal the complex dynamics of the cell. One robust and broadly applicable method is immunofluorescence microscopy, in which a fluorescence‐labeled antibody binds the molecule of interest and then the location of the antibody is determined by fluorescence microscopy.
Domenico F, Galati, David J, Asai
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AbstractVisualizing fluorescence‐tagged molecules is a powerful strategy that can reveal the complex dynamics of the cell. One robust and broadly applicable method is immunofluorescence microscopy, in which a fluorescence‐labeled antibody binds the molecule of interest and then the location of the antibody is determined by fluorescence microscopy.
Domenico F, Galati, David J, Asai
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