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TRP Ion Channel Stable Cell Lines

Transient receptor potential (TRP) ion channels are evolutionarily ancient sensory proteins that detect and integrate a variety of physical and chemical stimuli. Mammals express a total of 28 different TRP channel proteins, which can be divided into 7 subfamilies based on amino acid sequence homology: TRPA (Ankyrin), TRPC (Canonical), TRPM (Melastatin), TRPML (Mucolipin), TRPN (NO-mechano-potential, NOMP), TRPP (polycystin), TRPV (vanillic acid). They are a class of ion channels found in a variety of tissues and cell types and are permeable to a variety of cations such as Ca2+, Mg2+, Na+, K+, etc.

Figure 1. Distribution of TRP channels in the human body.Figure 1. Distribution of TRP channels in the human body. (Zhang M, et al., 2023)

TRP channels are cellular sensors of a wide range of physical and chemical stimuli. They are involved in the development of vision, hearing, touch, smell, taste, temperature and pain. TRP channels are also extremely sensitive to basic cell signaling components as well as beneficial or harmful environmental inputs. Activation of TRP channels changes membrane potential, allows important signaling ions to cross the cell membrane, changes enzyme activity, initiates endocytosis/exocytosis, etc. It follows that TRP channels play crucial roles in many fundamental processes of life, such as fertilization, sensory transduction, cell survival, and development. Their interactions with numerous physiological signaling pathways and the unique crystal structure of TRP channels make TRPs attractive drug targets and involve them in the treatment of a variety of diseases.

Our TRP Ion Channel Stable Cell Lines

Drawing on decades of experience in cell line engineering and drug discovery, Creative Biogene has accessioned a large collection of cell lines that stably express high levels of TRP ion channels. These TRP ion channel stable cell lines have excellent in vitro assay sensitivity and reproducibility. This cell line enables the assessment of ion channel function by detecting electrophysiological signals. Following ligand/agonist-induced channel activation, responses can be detected by automated or manual electrophysiology techniques.

Application of TRP Ion Channel Stable Cell Lines

  • Study TRP ion channel gene functions
  • Investigate cell signaling pathways and signal transduction
  • Studying the pathogenesis and treatment of channelopathy diseases
  • High-throughput drug screening

Key Features of Our TRP Ion Channel Stable Cell Lines

  • Exogenous fragments can be stably expressed in dividing cells for a long time.
  • Establishing stable cell lines helps to select appropriate numbers of cells for experimental research.
  • Our TRP ion channel stable cell lines have been rigorously tested and validated.
  • The target gene can be stably inherited for more than 25 generations.
  • Our TRP ion channel stable cell lines yield exceptional in vitro assay sensitivity and reproducibility.

Please browse our TRP ion channel stable cell lines collection to find your desired one.

TRP Ion Channel Stable Cell Line List

* For research use only. Not intended for any clinical use.
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