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Helpful Features of CBD Products

There are several helpful features of CBD products. Read about CBC oil and edible products. Learn about CBC’s unique therapeutic properties.

Its interactions with other neuroreceptors

The cbc products help neuroreceptors interact with each other in the brain. For example, CBC can bind to essential neuroreceptors, such as TRPV1 and TRPA1. This activation of two receptors can boost the body’s natural endocannabinoids. The brain may be protected from neurodegenerative illnesses like Alzheimer’s thanks to the neuroprotective qualities of CBC, which stimulate neurogenesis in critical brain regions.

TRPV1 receptors

CBD products targeting TRPV1 receptors are becoming more common. The tetramer structure of TRPV1 includes six a-helical domains, called TM5 and TM6, which form a putative pore. Roughly half of the molecule comprises the cytoplasmic N-terminus, which has six ankyrin repeats. Each repeat contains 33 amino acids. This motif is the site of interactions between ligands and ARDs.

TRPV1 is found on nerve fibers and in the urothelium. It was first described in rodents and humans. Studies have shown that twenty percent of human and rat urothelial cells express TRPV1, and thirty percent of L6 dorsal root ganglia neurons express TRPV1.

Neuroprotective properties

CBC is one of many phytocannabinoids found in Cannabis and may have neuroprotective properties. One study improved the performance of neural stem progenitor cells, which are vital to maintaining the balance of the brain. This compound also helped these cells to fight oxidative stress and inflammation. It may have implications for preventing degenerative brain diseases such as Alzheimer’s. In addition, CBC may have antidepressant properties.

neuroprotective agent must have long-term tolerability and low accumulation in tissues to be neuroprotective. It is essential as these products are often used as long-term treatments once a disease has occurred. In one study, CBG demonstrated similar PK profiles in rats and mice. In mice, however, it was more poorly absorbed into the brain than in rats. However, CBG concentrations in both animals were higher following i.p. injection, although this did not translate into higher brain tissue in the rats.

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