The Voltage Dependent T Type Calcium Channel Subunit Alpha 1H pipeline drugs market research report outlays comprehensive information on the Voltage Dependent T Type Calcium Channel Subunit Alpha 1H targeted therapeutics, complete with analysis by indications, stage of development, mechanism of action (MoA), route of administration (RoA), and molecule type. GlobalData’s report assesses the drugs in the Voltage Dependent T Type Calcium Channel Subunit Alpha 1H pipeline by therapy areas, indications, stages, MoA, RoA, molecule type and the key players in the development pipeline. Buy the report here.
The report also covers products from therapy areas such as Central Nervous System, Dermatology, and Toxicology which include the indications Neuropathic Pain (Neuralgia), Pain, Pruritus, and Chemotherapy Induced Peripheral Neuropathy. It also reviews key players involved in Voltage Dependent T Type Calcium Channel Subunit Alpha 1H targeted therapeutics development with respective active and dormant or discontinued products.
The Voltage Dependent T Type Calcium Channel Subunit Alpha 1H pipeline targets constitutes close to seven molecules. Out of which, approximately six molecules are developed by companies and the remaining by the universities/institutes. The molecules developed by companies in Phase I, and Preclinical stages are 1, and 5 respectively. Similarly, the universities portfolio in Preclinical comprises 1 molecule.
Voltage Dependent T Type Calcium Channel Subunit Alpha 1H overview
Voltage-dependent T-type calcium channel subunit alpha-1H is another member of the T-type calcium channel family. These channels are voltage-gated and play a crucial role in regulating the entry of calcium ions into cells in response to changes in membrane potential. The alpha-1H subunit specifically refers to the pore-forming subunit of the T-type calcium channel. The alpha-1H subunit is expressed in various tissues, including the central nervous system (CNS) and peripheral tissues. In the CNS, T-type calcium channels, including those with the alpha-1H subunit, are involved in regulating neuronal excitability, synaptic transmission, and pacemaker activity.
For a complete picture of Voltage Dependent T Type Calcium Channel Subunit Alpha 1H’s drug pipeline, buy the report here.
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