rat anti mouse monoclonal f4 80 (Bio-Rad)
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Rat Anti Mouse Monoclonal F4 80, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 5921 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rat+monoclonal+antibody/Rat+anti+Mouse+F4%2F80/10__22203_slash_ecm__v033a11-129-8-16
Average 96 stars, based on 5921 article reviews
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Refractive Index:Article Title: Traumatic Axonal Injury in the Optic Nerve: The Selective Role of SARM1 in the Evolution of Distal Axonopathy. Article Snippet: Traumatic axonal injury (TAI), thought to be caused by rotational acceleration of the head, is a prevalent neuropathology in traumatic brain injury (TBI).. TAI in the optic nerve is a common finding in multiple blunt-force TBI models and hence a great model to study mechanisms and treatments for TAI, especially in view of the compartmentalized anatomy of the visual system.. We have previously shown that the somata and the proximal, but not distal, axons of retinal ganglion cells (RGC) respond to DLK/LZK blockade after impact acceleration of the head (IA-TBI). Article Title: Traumatic Axonal Injury in the Optic Nerve: The Selective Role of SARM1 in the Evolution of Distal Axonopathy Article Snippet: .. Optic nerves were processed with the SHIELD protocol as above with the following change: before, refractive index matching, optic nerves were incubated with a monoclonal rabbit antibody (E4O4W) against IBA1 (1:50; Cell Signaling Technology, Cat# 17198; RRID:AB_2820254) and a Incubation:Article Title: Traumatic Axonal Injury in the Optic Nerve: The Selective Role of SARM1 in the Evolution of Distal Axonopathy. Article Snippet: Traumatic axonal injury (TAI), thought to be caused by rotational acceleration of the head, is a prevalent neuropathology in traumatic brain injury (TBI).. TAI in the optic nerve is a common finding in multiple blunt-force TBI models and hence a great model to study mechanisms and treatments for TAI, especially in view of the compartmentalized anatomy of the visual system.. We have previously shown that the somata and the proximal, but not distal, axons of retinal ganglion cells (RGC) respond to DLK/LZK blockade after impact acceleration of the head (IA-TBI). Article Title: Traumatic Axonal Injury in the Optic Nerve: The Selective Role of SARM1 in the Evolution of Distal Axonopathy Article Snippet: .. Optic nerves were processed with the SHIELD protocol as above with the following change: before, refractive index matching, optic nerves were incubated with a monoclonal rabbit antibody (E4O4W) against IBA1 (1:50; Cell Signaling Technology, Cat# 17198; RRID:AB_2820254) and a Article Title: A peripheral subepithelial network for chemotactile processing in the predatory sea slug Pleurobranchaea californica Article Snippet: .. Fixed and rinsed tissues were preincubated overnight in a blocking solution (6% goat serum in PBS) and subsequently incubated in primary antibodies at 1:40 dilution for 48 hours at 4°C ( other:Article Title: Radial glia integrin avb8 regulates cell autonomous microglial TGFβ1 signaling that is necessary for microglial identity Article Snippet: Antibody , Blocking Assay:Article Title: A peripheral subepithelial network for chemotactile processing in the predatory sea slug Pleurobranchaea californica Article Snippet: .. Fixed and rinsed tissues were preincubated overnight in a blocking solution (6% goat serum in PBS) and subsequently incubated in primary antibodies at 1:40 dilution for 48 hours at 4°C ( |
