rabbit polyclonal anti-s100β primary antibody gtx129573 (GeneTex)
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Rabbit Polyclonal Anti S100β Primary Antibody Gtx129573, supplied by GeneTex, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rabbit+polyclonal+anti-s100%CE%B2/s100+calcium+binding+protein++s100++a8+rabbit+polyclonal+antibody/pmc12014524-483-28-33
Average 90 stars, based on 1 article reviews
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1) Product Images from "Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes"
Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes
Journal: Cell Reports
doi: 10.1016/j.celrep.2025.115546
Figure Legend Snippet:
Techniques Used: Recombinant, SYBR Green Assay, Plasmid Preparation, Reverse Transcription, Mutagenesis, Software, Imaging, Spectrophotometry, Real-time Polymerase Chain Reaction, Microscopy
Related Articles
Recombinant:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. SYBR Green Assay:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Plasmid Preparation:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Reverse Transcription:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Mutagenesis:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Software:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Imaging:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Spectrophotometry:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Real-time Polymerase Chain Reaction:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Microscopy:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Derivative Assay:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Cell Culture:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Immunostaining:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. Incubation:Article Title: Nestin-GFP Transgene Reveals Neural Precursor Cells in Adult Skeletal Muscle Article Snippet: The following primary antibodies were used: rabbit monoclonal anti-Tuj1 (Covance, Princeton, NJ), mouse monoclonal anti-MyoD (BD Pharmingen, San Diego, CA), mouse monoclonal anti-desmin (Sigma), Article Title: Multi-site investigation of gut microbiota in CDKL5 deficiency disorder mouse models: Targeting dysbiosis to improve neurological outcomes Article Snippet: Rabbit polyclonal anti-S100β , Article Title: Dual Contribution of Mesenchymal Stem Cells Employed for Tissue Engineering of Peripheral Nerves: Trophic Activity and Differentiation into Connective-Tissue Cells. Article Snippet: Adult peripheral nerves in vertebrates can regrow their axons and re-establish function after crush lesion.. However, when there is extensive loss of a nerve segment, due to an accident or compressive damage caused by tumors, regeneration is strongly impaired.. In order to overcome this problem, bioengineering strategies have been employed, using biomaterials formed by key cell types combined with biodegradable polymers. |

