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Email: info@nsjbio.com
- Tel: 858.663.9055
- Email: info@nsjbio.com
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LPL antibody is useful for studying Lipoprotein Lipase (LPL), a key enzyme involved in lipid metabolism and energy homeostasis. LPL catalyzes the hydrolysis of triglycerides contained within circulating chylomicrons and very low-density lipoproteins (VLDL), releasing free fatty acids that can be taken up and utilized by tissues for energy production, membrane synthesis, and lipid storage. Through this activity, LPL serves as a central regulator of lipid utilization and nutrient distribution throughout the body.
Lipoprotein Lipase is essential for maintaining normal lipid balance because it controls the availability of fatty acids derived from triglyceride-rich lipoproteins. By regulating lipid uptake and utilization, LPL influences cellular metabolism, energy production, tissue growth, and physiologic adaptation. The enzyme is particularly important in tissues with significant metabolic demands, where efficient fatty acid delivery is required to support normal cellular function and energy homeostasis.
As a lipid metabolism enzyme, LPL occupies a critical position at the interface between circulating lipid transport and cellular nutrient utilization. The protein contributes to pathways involved in fatty acid mobilization, lipid storage, metabolic regulation, and energy balance. Because lipid metabolism influences numerous biologic processes, LPL has become an important target in studies examining obesity, cardiovascular biology, metabolic disease, endocrine regulation, and nutrient-responsive signaling pathways.
Beyond its role in triglyceride hydrolysis, LPL participates in broader physiologic networks that influence tissue homeostasis, cellular growth, and metabolic adaptation. Proper regulation of lipid metabolism is required for normal development, maintenance of organ function, and responses to changing nutritional conditions. Consequently, alterations in LPL activity have been associated with disturbances in lipid handling and energy utilization, making the protein highly relevant to investigations of metabolic health and disease-associated mechanisms.
LPL is widely studied in cardiovascular research because efficient lipoprotein processing is essential for maintaining normal circulating lipid levels and tissue lipid distribution. The enzyme also plays important roles in metabolic tissues where fatty acids serve as a major energy source. Analysis of LPL expression can therefore provide valuable insight into mechanisms that regulate lipid transport, nutrient utilization, and cellular metabolic activity.
LPL antibodies are commonly used in immunohistochemistry, western blotting, immunofluorescence, flow cytometry, and related protein detection applications. These reagents support investigations of lipid metabolism, fatty acid utilization, triglyceride processing, cardiovascular biology, metabolic regulation, and energy homeostasis. LPL antibody tools help researchers characterize the molecular pathways that govern lipid handling and the enzymatic processes that control nutrient availability within tissues.
Researchers studying lipid metabolism, fatty acid utilization, energy homeostasis, and nutrient-responsive signaling pathways may also be interested in our broader Metabolism Antibody collection.
Optimal dilution of the LPL Antibody / Lipid Metabolism Enzyme Antibody should be determined by the researcher.
A synthetic peptide specific to human Lipoprotein lipase / LPL was used as the immunogen for the LPL antibody.
Store the LPL antibody at -20oC.
Lipoprotein Lipase Antibody, Triglyceride Lipase Antibody, Lipid Metabolism Enzyme Antibody, Fatty Acid Mobilization Protein Antibody, Lipoprotein Processing Enzyme Antibody, Lipid Utilization Protein Antibody
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