AF HDL and LDL/VLDL Assay Kit

Cat.No. : Kit-0059
Product Overview : AF HDL and LDL/VLDL Assay Kit is a quantitative colorimetric/fluorimetric determination of HDL and LDL/VLDL.
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Applications : Direct Assays: HDL and LDL/VLDL cholesterol in serum samples.Pharmacology: evaluation of drugs on cholesterol metabolism.
Storage : Store PBS and Precipitation Reagent at room temperature and other reagents at -20°C.Shelf life: 6 months after receipt.

For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.

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Q&As (10)

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How do AF HDL and LDL/VLDL proteins contribute to lipid metabolism, cholesterol transport, and cardiovascular health, and how are their functions assessed experimentally? 05/30/2022

AF HDL and LDL/VLDL proteins play roles in lipid metabolism, cholesterol transport, and cardiovascular health.

How does dysregulation or dysfunction of AF HDL and LDL/VLDL proteins affect lipid homeostasis, atherosclerosis development, or cardiovascular disease progression? 01/10/2022

Dysregulation or dysfunction of AF HDL and LDL/VLDL proteins contribute to lipid disorders and cardiovascular diseases.

Do AF HDL and LDL/VLDL proteins interact with specific lipids, receptors, or enzymes, and what are the functional consequences of these interactions? 05/06/2021

AF HDL and LDL/VLDL proteins interact with specific lipids, receptors, and enzymes, affecting lipid metabolism and cardiovascular health.

Can AF HDL and LDL/VLDL proteins be targeted or manipulated pharmacologically to modulate lipid metabolism, improve lipoprotein functionality, or serve as therapeutic targets for cardiovascular diseases? 12/30/2020

AF HDL and LDL/VLDL proteins are potential targets for modulating lipid metabolism and improving cardiovascular health.

Are there any genetic variations or mutations in the genes associated with AF HDL and LDL/VLDL proteins that impact their expression, structure, or function, and what are the implications for lipid metabolism or cardiovascular diseases? 04/28/2019

Genetic variations or mutations in associated genes can affect the expression, structure, or function of AF HDL and LDL/VLDL proteins.

What are the mechanisms involved in the synthesis, assembly, and secretion of AF HDL and LDL/VLDL proteins, and how are these processes regulated? 03/15/2019

The synthesis, assembly, and secretion of AF HDL and LDL/VLDL proteins are regulated at multiple levels.

How do the structural characteristics and composition of AF HDL and LDL/VLDL proteins differ, and how do these differences contribute to their functional properties? 08/14/2018

The structural characteristics and composition of AF HDL and LDL/VLDL proteins differ, influencing their functional properties.

What experimental techniques or assays have been employed to study the functional significance of AF HDL and LDL/VLDL proteins, such as lipid profiling, receptor binding studies, or in vitro cell models? 05/30/2018

Experimental techniques such as lipid profiling and receptor binding studies investigate the functional significance of AF HDL and LDL/VLDL proteins.

Are there any known post-translational modifications or regulatory factors that modulate the activity or stability of AF HDL and LDL/VLDL proteins? 09/21/2016

Post-translational modifications and regulatory factors modulate the activity or stability of AF HDL and LDL/VLDL proteins.

What are the cellular processes and signaling pathways influenced by AF HDL and LDL/VLDL proteins, such as inflammation, endothelial function, or oxidative stress, and what are the underlying molecular mechanisms? 07/26/2016

AF HDL and LDL/VLDL proteins impact cellular processes such as inflammation, endothelial function, or oxidative stress.

Customer Reviews (3)

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07/27/2022

    Uncovering protein-protein interactions in immune response regulation.

    08/06/2021

      Protein-protein interactions in cancer progression: unraveling the mechanisms.

      12/04/2019

        Mapping protein-protein interactions in neuronal synapses for synaptic plasticity.

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