Date published: 2026-4-1

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SEZ6L2 Activators

SEZ6L2 activators include compounds that could indirectly influence its activity through effects on neuronal signaling, synaptic plasticity, and neuroprotection. The first paragraph highlights compounds such as BDNF mimetics, AMPA receptor potentiators, and GABA agonists, known for their roles in modulating synaptic transmission and neuronal survival, which could indirectly affect SEZ6L2's involvement in these processes.

The focus is on other compounds that impact neuronal communication and synaptic modulation, including NMDA antagonists, acetylcholinesterase inhibitors, and dopamine agonists. Additionally cannabinoid receptor agonists, lithium salts, CREB activators and calcium channel blockers, known for their roles in various aspects of neuronal signaling and synaptic function, are considered for their indirect influence on SEZ6L2.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

7,8-Dihydroxyflavone

38183-03-8sc-278634
100 mg
$52.00
2
(1)

Mimics Brain-Derived Neurotrophic Factor, potentially enhancing SEZ6L2 activity by promoting synaptic plasticity and neuronal survival.

Donepezil

120014-06-4sc-279006
10 mg
$74.00
3
(1)

Increases acetylcholine levels, potentially enhancing SEZ6L2 activity by influencing cholinergic neurotransmission.

(S)-Pramipexole Dihydrochloride

104632-25-9sc-212895
10 mg
$164.00
(1)

Modulates dopaminergic signaling, potentially affecting SEZ6L2 activity in neuronal communication and plasticity.

Lithium

7439-93-2sc-252954
50 g
$214.00
(0)

Affects multiple signaling pathways including GSK-3β, potentially influencing SEZ6L2 activity in neuroplasticity and neuroprotection.

Rolipram

61413-54-5sc-3563
sc-3563A
5 mg
50 mg
$77.00
$216.00
18
(1)

Enhances CREB signaling, potentially affecting SEZ6L2 in neuronal development and synaptic plasticity.

Rapamycin

53123-88-9sc-3504
sc-3504A
sc-3504B
1 mg
5 mg
25 mg
$63.00
$158.00
$326.00
233
(4)

Influences mTOR signaling, potentially affecting SEZ6L2 in neuronal growth and synaptic plasticity.