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SKU:BT-AP04924

KV8.2 Polyclonal Antibody

KV8.2 Polyclonal Antibody

Regular price $275.00 USD
Regular price Sale price $275.00 USD
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Voltage-gated potassium (Kv) channels represent the most complex class of voltage-gated ion channels from both functional and structural standpoints. Their diverse functions include regulating neurotransmitter release, heart rate, insulin secretion, neuronal excitability, epithelial electrolyte transport, smooth muscle contraction, and cell volume. KCNV2 encodes a member of the potassium voltage-gated channel subfamily V. This member is identified as a 'silent subunit', and it does not form homomultimers, but forms heteromultimers with several other subfamily members. Through obligatory heteromerization, it exerts a function-altering effect on other potassium channel subunits. This protein is strongly expressed in pancreas and has a weaker expression in several other tissues.

The KV8.2 Polyclonal Antibody is a highly specific and reliable tool for the detection and analysis of KV8.2 protein expression. This antibody has been extensively validated for use in various applications, including Western blotting, immunohistochemistry, and immunofluorescence.

The KV8.2 Polyclonal Antibody is produced using state-of-the-art techniques, ensuring high purity and quality. It exhibits exceptional sensitivity and specificity, enabling accurate and reproducible results. This antibody recognizes the KV8.2 protein with high affinity, making it an ideal choice for researchers studying potassium channels and their role in various physiological and pathological processes.

With its excellent performance characteristics, the KV8.2 Polyclonal Antibody offers researchers a valuable tool for investigating the expression and function of KV8.2 protein in a wide range of biological samples. Its versatility and reliability make it suitable for use in both basic research and clinical applications.

Order the KV8.2 Polyclonal Antibody today and unlock new insights into the intricate mechanisms of potassium channels. Trust in its exceptional performance and join the scientific community in advancing our understanding of this vital protein.

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