Elabscience
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KCNJ4 Polyclonal Antibody
KCNJ4 Polyclonal Antibody
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KCNJ4 Polyclonal Antibody
The KCNJ4 polyclonal antibody is a highly specific and reliable tool designed for the detection and analysis of KCNJ4 protein expression in various biological samples. This antibody is produced by immunizing rabbits with a synthetic peptide corresponding to a specific region of the KCNJ4 protein sequence.
The KCNJ4 protein, also known as the inward rectifier potassium channel 2.3 (Kir2.3), is a member of the inward rectifier potassium channel family. It plays a crucial role in regulating the resting membrane potential and controlling potassium ion flux across the cell membrane. Dysregulation of KCNJ4 has been implicated in various physiological and pathological processes, including cardiac arrhythmias, epilepsy, and cancer.
The KCNJ4 polyclonal antibody exhibits high affinity and specificity towards the KCNJ4 protein, making it an ideal tool for immunohistochemistry (IHC), immunofluorescence (IF), and western blotting applications. It has been validated for use in various species, including human, mouse, and rat, ensuring its versatility and applicability in diverse research settings.
This antibody offers numerous advantages, including its ability to detect endogenous levels of KCNJ4 protein in tissue sections and cell lysates. It exhibits minimal cross-reactivity with other related potassium channel proteins, ensuring accurate and reliable results. Additionally, it demonstrates excellent sensitivity, enabling the detection of low-abundance KCNJ4 protein expression.
The KCNJ4 polyclonal antibody is supplied as a liquid formulation, allowing for easy and convenient handling. It is provided in a ready-to-use format, eliminating the need for time-consuming and complex antibody preparation procedures. Each batch of antibody undergoes rigorous quality control testing to ensure consistent performance and reliability.
In summary, the KCNJ4 polyclonal antibody is a valuable tool for researchers studying the role of KCNJ4 protein in various biological processes. Its high specificity, sensitivity, and versatility make it an essential component of any laboratory involved in potassium channel research.
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