Items 21 to 30 of 135 total
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
AQ-RA 741 | 123548-16-3 | sc-203517 sc-203517A | 10 mg 50 mg | $135.00 $575.00 | ||
AQ-RA 741 acts as a cholinergic by influencing neurotransmitter dynamics and synaptic plasticity. Its unique structure facilitates interactions with nicotinic and muscarinic receptors, promoting enhanced cholinergic signaling. The compound exhibits distinct kinetics in receptor binding, leading to varied activation profiles that can modulate neuronal excitability. Additionally, its ability to alter ion channel activity contributes to its role in synaptic transmission and neural communication. | ||||||
Chk2 Inhibitor Inhibitor | 724708-21-8 | sc-203885 | 500 µg | $458.00 | ||
Chk2 Inhibitor functions as a cholinergic by modulating intracellular signaling pathways that influence neuronal function. Its specific interactions with protein kinases lead to alterations in phosphorylation states, impacting synaptic efficacy. The compound exhibits unique binding kinetics, allowing for selective inhibition of Chk2 activity, which can affect downstream cellular responses. This modulation of signaling cascades plays a crucial role in regulating cholinergic neurotransmission and synaptic integrity. | ||||||
Phenserine | 101246-66-6 | sc-204188 | 50 mg | $132.00 | 1 | |
Phenserine acts as a cholinergic by enhancing acetylcholine levels through the inhibition of acetylcholinesterase, leading to prolonged neurotransmitter action at synaptic sites. Its unique affinity for the enzyme allows for a selective blockade, resulting in altered synaptic dynamics. The compound's interaction with the enzyme's active site influences reaction kinetics, promoting a more sustained cholinergic signaling, which is essential for maintaining neuronal communication and plasticity. | ||||||
Rivastigmine hydrogen tartrate | 129101-54-8 | sc-204883 sc-204883A | 100 mg 250 mg | $152.00 $300.00 | ||
Rivastigmine hydrogen tartrate functions as a cholinergic by reversibly binding to acetylcholinesterase, thereby modulating the hydrolysis of acetylcholine. This interaction stabilizes the enzyme-substrate complex, enhancing the duration of neurotransmitter availability. Its distinct molecular structure allows for a dual inhibition of both acetylcholinesterase and butyrylcholinesterase, leading to a nuanced regulation of cholinergic transmission and synaptic efficacy. | ||||||
Bretylium Tosylate | 61-75-6 | sc-360745 | 10 mg | $390.00 | ||
Bretylium Tosylate acts as a cholinergic by inhibiting the release of norepinephrine from sympathetic nerve endings, thereby influencing adrenergic signaling pathways. Its unique mechanism involves blocking the presynaptic release of neurotransmitters, which alters synaptic transmission dynamics. This compound exhibits distinct interaction kinetics, characterized by a rapid onset and prolonged effects, contributing to its role in modulating autonomic responses at the neuromuscular junction. | ||||||
Physostigmine hemisulfate | 64-47-1 | sc-203661 sc-203661A | 10 mg 100 mg | $180.00 $1400.00 | 2 | |
Physostigmine hemisulfate functions as a cholinergic by reversibly inhibiting acetylcholinesterase, leading to increased levels of acetylcholine at synaptic clefts. This compound exhibits unique binding affinity to the enzyme's active site, facilitating prolonged neurotransmitter action. Its interaction with the enzyme alters reaction kinetics, resulting in a gradual accumulation of acetylcholine, which enhances cholinergic signaling and modifies synaptic efficacy in neural pathways. | ||||||
Galanthamine | 357-70-0 | sc-218556 | 10 mg | $320.00 | ||
Galanthamine acts as a cholinergic by selectively inhibiting acetylcholinesterase, enhancing acetylcholine availability in the synaptic cleft. Its unique structure allows for competitive binding to the enzyme, stabilizing the enzyme-substrate complex and prolonging neurotransmitter activity. This modulation of cholinergic transmission influences synaptic plasticity and neuronal communication, showcasing its distinct role in altering neurotransmission dynamics within the nervous system. | ||||||
Cytisine | 485-35-8 | sc-203015 sc-203015A | 5 mg 25 mg | $56.00 $190.00 | ||
Cytisine functions as a cholinergic by mimicking acetylcholine at nicotinic receptors, facilitating neurotransmission. Its structural similarity to acetylcholine enables it to bind effectively, triggering receptor activation and subsequent ion channel opening. This interaction initiates a cascade of intracellular signaling pathways, influencing neuronal excitability and synaptic strength. The rapid kinetics of its receptor binding and dissociation contribute to its dynamic role in modulating cholinergic signaling. | ||||||
Biperiden hydrochloride | 1235-82-1 | sc-203846 sc-203846A | 10 mg 50 mg | $112.00 $422.00 | ||
Biperiden hydrochloride acts as a cholinergic agent by selectively antagonizing muscarinic receptors, disrupting acetylcholine's action. Its unique structure allows for specific interactions with receptor sites, leading to altered signaling pathways that affect neurotransmitter release. The compound exhibits distinct kinetic properties, with a notable affinity for certain receptor subtypes, influencing its overall pharmacodynamics. This selectivity plays a crucial role in its interaction with cholinergic systems. | ||||||
Atropine Sulfate Monohydrate | 5908-99-6 | sc-203322 sc-203322A sc-203322B sc-203322C sc-203322D | 5 g 25 g 100 g 500 g 1 kg | $87.00 $245.00 $600.00 $1800.00 $3600.00 | ||
Atropine Sulfate Monohydrate functions as a cholinergic by inhibiting acetylcholine at muscarinic receptors, leading to a cascade of physiological effects. Its unique stereochemistry facilitates specific binding interactions, altering receptor conformation and downstream signaling. The compound's solubility and stability in aqueous environments enhance its reactivity, allowing for rapid modulation of cholinergic activity. This dynamic behavior underscores its role in influencing neurotransmission pathways. | ||||||