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Aquaporin 10 Antibody / AQP10

Home >> Antibodies >> Aquaporin 10 Antibody / AQP10

Aquaporin 10 Antibody / AQP10

In the world of cellular biology, there is a fascinating protein that plays a crucial role in regulating the flow of water in and out of cells. This protein goes by the name Aquaporin 10, and despite its importance, it often flies under the radar compared to its more popular counterparts like Aquaporin 1 and Aquaporin 4.

Aquaporins, in general, are a family of membrane proteins that act as water channels, allowing water molecules to pass through cell membranes at a rapid pace. Aquaporin 10, in particular, is unique in that it not only facilitates water transport but also plays a role in regulating glycerol transport in cells. This dual functionality sets Aquaporin 10 apart from other aquaporins and highlights its versatility in cellular processes.

One of the most intriguing aspects of Aquaporin 10 is its presence in the skin. Studies have shown that this protein is abundant in the epidermis and plays a crucial role in maintaining skin hydration and barrier function. This discovery has opened up new possibilities in skincare research, with scientists exploring the potential of targeting Aquaporin 10 to develop innovative treatments for conditions like dry skin and eczema.

Furthermore, recent research has shed light on the role of Aquaporin 10 in metabolic disorders such as obesity and diabetes. Studies have found that this protein is involved in the regulation of glycerol metabolism, which plays a key role in energy storage and utilization. By understanding the mechanisms by which Aquaporin 10 influences glycerol transport, researchers hope to develop novel therapeutic strategies for metabolic diseases.

One of the key tools used in studying Aquaporin 10 is the Aquaporin 10 antibody. This antibody specifically targets AQP10 and allows researchers to detect and study the expression of this protein in various tissues and cell types. Techniques such as western blot, immunohistochemistry, immunofluorescence, and flow cytometry are commonly used in conjunction with the Aquaporin 10 antibody to investigate the localization and function of AQP10.

Western blot analysis is a powerful technique that allows researchers to determine the size and abundance of Aquaporin 10 in a given sample. By utilizing an Aquaporin 10 antibody, scientists can identify the presence of AQP10 in specific cell types or tissues, providing valuable insights into its role in different biological processes.

Immunohistochemistry and immunofluorescence are imaging techniques that enable researchers to visualize the spatial distribution of Aquaporin 10 within tissues or cells. By using an Aquaporin 10 antibody in conjunction with these methods, scientists can pinpoint the exact location of AQP10 and study its subcellular localization in detail.

Flow cytometry is another valuable tool that can be employed to analyze the expression levels of Aquaporin 10 on a single-cell basis. By using an Aquaporin 10 antibody in flow cytometry experiments, researchers can quantify the abundance of AQP10 in different cell populations and gain insights into its functional significance in various physiological contexts.

Aquaporin 10 is a fascinating protein with promising implications for both basic research and clinical applications. By harnessing the power of the Aquaporin 10 antibody and utilizing a variety of techniques such as western blot, immunohistochemistry, immunofluorescence, and flow cytometry, researchers can unravel the mysteries surrounding AQP10 and uncover its potential role in health and disease.
 
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AQP10 Antibody / Aquaporin 10
Catalog No : R31207
Applications : WB
Reactivity : Human
Format : Antigen affinity purified