Recombinant Zebrafish ADCYAP1A
Cat.No. : | ADCYAP1A-9409Z |
Product Overview : | Recombinant Zebrafish ADCYAP1A full length or partial length protein was expressed. |
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Source : | Mammalian Cells |
Species : | Zebrafish |
Tag : | His |
Form : | Liquid or lyophilized powder |
Endotoxin : | < 1.0 eu per μg of the protein as determined by the LAL method. |
Purity : | >80% |
Notes : | This item requires custom production and lead time is between 5-9 weeks. We can custom produce according to your specifications. |
Storage : | Store it at +4 oC for short term. For long term storage, store it at -20 oC~-80 oC. |
Storage Buffer : | PBS buffer |
Gene Name : | adcyap1a adenylate cyclase activating polypeptide 1a [ Danio rerio (zebrafish) ] |
Official Symbol : | ADCYAP1A |
Gene ID : | 259257 |
mRNA Refseq : | NM_152885 |
Protein Refseq : | NP_690841 |
UniProt ID : | Q9DE29 |
Related Gene
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 (11)
Ask a questionYes, there are several ongoing clinical trials exploring the use of PACAP analogs as therapeutics for various conditions, including migraine headaches, traumatic brain injury, and Alzheimer's disease. These trials aim to further investigate the safety and efficacy of PACAP analogs in humans and to identify optimal dosages and treatment regimens.
The use of ADCYAP1A protein may be contraindicated in individuals with hypersensitivity or allergy to the protein or its components. In addition, the protein should be used with caution in individuals with a history of cardiovascular disease or other medical conditions that may increase the risk of adverse events.
ADCYAP1A protein has potential therapeutic applications in the treatment of various neurological and psychiatric disorders, including migraine headaches, post-traumatic stress disorder (PTSD), and anxiety disorders. It may also have applications in the treatment of cardiovascular disease, inflammation, and cancer, although more research is needed in these areas.
ADCYAP1A protein levels have been found to be altered in various diseases and conditions, such as migraine headaches, Alzheimer's disease, and stroke. Thus, measuring the levels of ADCYAP1A protein in blood or cerebrospinal fluid (CSF) can provide important diagnostic information and help distinguish between different types or stages of certain diseases.
PACAP analogs have shown promise as therapeutics due to their neuroprotective and anti-inflammatory effects. They have been shown to improve neurological outcomes in animal models of stroke and traumatic brain injury and to reduce migraine headache severity and frequency in humans.
As with any therapeutic agent, there may be side effects associated with the administration of ADCYAP1A protein. Some possible side effects may include headache, nausea, and skin irritation at the injection site. However, clinical trials to date have generally demonstrated that the protein is safe and well-tolerated.
ADCYAP1A protein can be administered by various routes, including intravenous injection, intranasal administration, and subcutaneous injection. The optimal route of administration may depend on the specific therapeutic application and the desired pharmacokinetic properties of the protein.
Currently, there are no drugs or therapies that directly target ADCYAP1A for clinical use. However, researchers have investigated the potential of using PACAP analogs, which mimic the activity of ADCYAP1A, as therapeutics for various conditions, such as migraine headaches, ischemic stroke, and traumatic brain injury.
PACAP analogs are generally well-tolerated, but they can cause mild to moderate side effects, such as nausea, vomiting, headache, and dizziness. Additionally, because PACAP is involved in multiple physiological processes, long-term use of PACAP analogs may have unforeseen effects on other systems in the body.
ADCYAP1A has been implicated in the regulation of stress and anxiety responses. It is produced in various regions of the brain, including the hypothalamus, amygdala, and hippocampus, which are involved in the stress response and emotional regulation. ADCYAP1A has been shown to modulate stress-induced behavior in animal models and to reduce anxiety in humans. Thus, it has potential therapeutic applications in stress-related disorders such as post-traumatic stress disorder (PTSD) and generalized anxiety disorder (GAD).
Yes, ADCYAP1A and PACAP analogs have been investigated for their potential therapeutic applications in other conditions, such as cardiovascular disease, inflammation, and cancer. However, more research is needed to fully understand the mechanisms of ADCYAP1A activity in these contexts and to determine their potential as therapeutics.
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