Get tips on using ApopTag® Peroxidase In Situ Apoptosis Detection Kit to perform TUNEL assay cell type - FaDu human squamous cell carcinoma
Get tips on using Senescence β-Galactosidase Staining Kit - Cell Signaling to perform Reporter gene assay β-galactosidase substrates - NHEK normal human epidermal keratinocytes
Get tips on using AmpFLSTR™ Identifiler™ Plus PCR Amplification Kit to perform Cell line authentication Human lung carcinoma cell line NCI-H1299
Get tips on using Culture-Insert 4 Well in µ-Dish 35 mm, high to perform Cell migration / Invasion cell type - MCF7
Get tips on using ROS-ID® Total ROS/Superoxide detection kit to perform ROS assay cell type - BEAS-2B human bronchial epithelial cell line
Get tips on using OxiSelect™ Intracellular ROS Assay Kit (Green Fluorescence) to perform ROS assay cell type - BEAS-2B human bronchial epithelial cell line
Get tips on using Click-iT™ EdU Alexa Fluor™ 555 Imaging Kit to perform Cell cytotoxicity / Proliferation assay cell type - PC-3
Get tips on using Agilent DNA 1000 Kit Bioanalyzer DNA Analysis Part Number:5067-1504 to perform Cell line authentication Human lung carcinoma cell line NCI-H1299
Protein ladders are a set of standards known as molecular weight proteins that are utilized to identify the approximate size of a protein molecule run on a PAGE gel electrophoresis. The challenges in running the ladders are the choice of appropriate protein standard as it is used as visual evidence of protein migration, transfer efficiency, and positive control. Suitable protein markers can be selected on the basis of required properties and applications, i.e., fluorescent ladder, IEF, 2D SDS-PAGE ladder, natural ladder with an isoelectric point, and optimized ladders for Western Blot chemiluminescence detection. The key factors for running a distinct protein ladder are buffer conditions, charge/voltage at migration time, and the gel's concentration.
Protein ladders are a set of standards known as molecular weight proteins that are utilized to identify the approximate size of a protein molecule run on a PAGE gel electrophoresis. The challenges in running the ladders are the choice of appropriate protein standard as it is used as visual evidence of protein migration, transfer efficiency, and positive control. Suitable protein markers can be selected on the basis of required properties and applications, i.e., fluorescent ladder, IEF, 2D SDS-PAGE ladder, natural ladder with an isoelectric point, and optimized ladders for Western Blot chemiluminescence detection. The key factors for running a distinct protein ladder are buffer conditions, charge/voltage at migration time, and the gel's concentration.
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