Application of ciclopirox olamine in preparation of medicine for treating or preventing epilepsy
A technology for ciclopiroxamide and a drug, which is applied in the field of medicine, can solve the problems of no known antiepileptic activity and antiepileptic target activity of ciclopiroxamide, and achieves good antiepileptic efficacy, a simple method, and a reduction in rapid movement distance. Effect
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Embodiment 1
[0018] Embodiment one Quantitative observation of the efficacy of a single concentration of ciclopiroxamide in a zebrafish epilepsy model
[0019] Zebrafish:
[0020] The zebrafish used in this example is wild-type zebrafish, and the breeding and use standards are strictly in accordance with the requirements of the American Laboratory Animal Care and Use Committee (IACUC).
[0021] Fishwater:
[0022] Configuration method: Add 0.3g of sea salt (InstantOceansalts) to 1L of reverse osmosis (RO) water.
[0023] Dimethyl sulfoxide (DMSO, analytically pure):
[0024] Purchased from Aladdin (Catalog #1095515, Lot #30573). 1% DMSO solution (negative control) preparation: When in use, prepare a working solution with a concentration of 1.0% with fish farming water, and prepare it immediately for use.
[0025] PTZ (pentylenetetrazole, inducer):
[0026] Purchased from Sigma Company of the United States, batch number 069K1245. When in use, use 0.1% DMSO solution to prepare the co...
Embodiment 2
[0043] Embodiment two Multi-concentration verification of efficacy and safety of ciclopiroxamide in zebrafish epilepsy model
[0044] Experimental materials and experimental methods are the same as in Example 1. The total movement distance was analyzed by software to investigate the effects of 10, 30 and 100 μM concentrations of ciclopiroxamide on normal zebrafish movement. And in the PTZ-induced epilepsy model, investigate the effect of 10, 30, and 100 μM concentrations of ciclopiroxamide on the rapid movement distance of zebrafish, and judge whether it has antiepileptic drug effect.
[0045] see results image 3 , 4 , 5. Ciclopiroxamide inhibited the total movement distance of normal zebrafish by 25%, 13%, and 35% at concentrations of 10, 30, and 100 μM, respectively (p<0.01). At the same time, the state of the fish was observed under a dissecting microscope. The touch response basically disappeared, and the touch response in the 30μM and 10μM groups was normal. The re...
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