Date published: 2026-6-7

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NCAM2 Inhibitors

NCAM2 inhibitors encompass a diverse array of organic and inorganic compounds that have exhibited the capacity to modulate the functions of Neural Cell Adhesion Molecule 2 (NCAM2). NCAM2 is a transmembrane glycoprotein prominently expressed within neuronal tissues, where it serves as a pivotal mediator of intercellular adhesion, neuronal migration, axonal guidance, and synapse formation. This intricate adhesive glycoprotein contributes significantly to fundamental processes crucial for proper neural development and synaptic plasticity. NCAM2 inhibitors interact with specific binding sites on NCAM2 or related molecules, inducing an inhibitory effect on the adhesive interactions and downstream signaling cascades intrinsic to NCAM2's functional repertoire. The chemical diversity within this class is a direct reflection of the complex molecular landscape underlying the intricate interplay between NCAM2 and its associated partners. Structural variances among these inhibitors endow them with distinctive mechanisms of action, modulating the intricate conformational shifts and dynamic interactions that underlie NCAM2-mediated cellular phenomena. By virtue of their selective binding and perturbation of NCAM2's adhesive properties, inhibitors belonging to this class act as finely tuned molecular tools, unraveling the nuanced intricacies of neural cell adhesion and communication. This detailed exploration of NCAM2 inhibitors widens the vista of our comprehension concerning the molecular choreography orchestrating neural development, neuronal migration, and synaptic plasticity. As a result, these inhibitors serve as valuable instruments for delving into the intricate mosaic of neural cell biology, potentially illuminating novel facets of cellular communication and paving the way for deeper insights into the underpinnings of neurobiology.

Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

5,5-Diphenyl Hydantoin

57-41-0sc-210385
5 g
$70.00
(0)

Phenytoin is an anticonvulsant agent in research that has been suggested to modulate NCAM2-mediated cell adhesion and signaling.

Caffeine

58-08-2sc-202514
sc-202514A
sc-202514B
sc-202514C
sc-202514D
50 g
100 g
250 g
1 kg
5 kg
$33.00
$67.00
$97.00
$192.00
$775.00
13
(1)

Caffeine, a widely consumed stimulant, could potentially influence NCAM2-mediated cell adhesion through its effects on neural activity.

Riluzole

1744-22-5sc-201081
sc-201081A
sc-201081B
sc-201081C
20 mg
100 mg
1 g
25 g
$20.00
$193.00
$213.00
$317.00
1
(1)

Riluzole is an agent in research used for amyotrophic lateral sclerosis (ALS). It might impact NCAM2 interactions by affecting glutamate signaling.

Vortioxetine Hydrobromide

960203-27-4sc-475775
5 mg
$220.00
(0)

Vortioxetine could potentially affect NCAM2 functions through its modulation of serotonin and other neurotransmitters.

Curcumin

458-37-7sc-200509
sc-200509A
sc-200509B
sc-200509C
sc-200509D
sc-200509F
sc-200509E
1 g
5 g
25 g
100 g
250 g
1 kg
2.5 kg
$37.00
$69.00
$109.00
$218.00
$239.00
$879.00
$1968.00
47
(1)

Curcumin is a natural compound found in turmeric, with potential neuroprotective effects that might influence NCAM2-mediated processes.

Bisphenol A

80-05-7sc-391751
sc-391751A
100 mg
10 g
$300.00
$490.00
5
(0)

BPA is a chemical compound found in plastics. It has been suggested to affect neural development and NCAM2-related functions due to its endocrine-disrupting properties.

Memantine hydrochloride

41100-52-1sc-203628
50 mg
$69.00
4
(2)

Memantine is an NMDA receptor antagonist used in Alzheimer's disease. Its effects on glutamate signaling could indirectly influence NCAM2 interactions.

Valproic Acid

99-66-1sc-213144
10 g
$87.00
9
(1)

Valproic acid might impact NCAM2-related processes through its effects on histone deacetylases.

Lithium

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

Lithium might influence NCAM2 signaling pathways through its effects on neural plasticity and mood regulation.

Donepezil hydrochloride

120011-70-3sc-218265
sc-218265A
10 mg
100 mg
$97.00
$202.00
9
(1)

Cholinesterase inhibitors may indirectly affect NCAM2 functions by modulating cholinergic neurotransmission.