Cargando…

A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm

Background: Topical lidocaine microemulsion preparations with low toxicity, low irritation, strong transdermal capability and convenient administration are urgently needed. Methods: Box-Behnken design was performed for three preparation conditions of 5% lidocaine microemulsions: mass ratio of the ma...

Descripción completa

Detalles Bibliográficos
Autores principales: Qiao, Yuchao, Wang, Xuchun, Ren, Hao, Cui, Yu, Ren, Jiahui, Hao, Chongqi, Zhao, Zhiyang, Liu, Jing, Zhao, Ruiqing, Li, Yiting, Tian, Qingping, Qiu, Lixia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10576434/
https://www.ncbi.nlm.nih.gov/pubmed/37841920
http://dx.doi.org/10.3389/fphar.2023.1272454
_version_ 1785121120851066880
author Qiao, Yuchao
Wang, Xuchun
Ren, Hao
Cui, Yu
Ren, Jiahui
Hao, Chongqi
Zhao, Zhiyang
Liu, Jing
Zhao, Ruiqing
Li, Yiting
Tian, Qingping
Qiu, Lixia
author_facet Qiao, Yuchao
Wang, Xuchun
Ren, Hao
Cui, Yu
Ren, Jiahui
Hao, Chongqi
Zhao, Zhiyang
Liu, Jing
Zhao, Ruiqing
Li, Yiting
Tian, Qingping
Qiu, Lixia
author_sort Qiao, Yuchao
collection PubMed
description Background: Topical lidocaine microemulsion preparations with low toxicity, low irritation, strong transdermal capability and convenient administration are urgently needed. Methods: Box-Behnken design was performed for three preparation conditions of 5% lidocaine microemulsions: mass ratio of the mass ratio of surfactant/(oil phase + surfactant) (X(1)), the mass ratio of olive oil/(α-linolenic acid + linoleic acid) (X(2)) and the water content W% (X(3)). Then, five multi-objective genetic algorithms were used to optimize the three evaluation indices to optimize the effects of lidocaine microemulsion preparations. Finally, the ideal optimization scheme was experimentally verified. Results: Non-dominated Sorting Genetic Algorithm-II was used for 30 random searches. Among these, Scheme 2: X(1) = 0.75, X(2) = 0.35, X(3) = 75%, which resulted in Y(1) = 0.17 μg/(cm(2)·s) and Y(2) = 0.74 mg/cm(2); and the Scheme 19: X(1) = 0.68, X(2) = 1.42, X(3) = 75% which resulted in Y(1) = 0.14 μg/(cm(2)·s) and Y(2) = 0.80 mg/cm(2), provided the best matches for the objective function requirements. The maximum and average fitness of the method have reached stability after 3 generations of evolution. Experimental verification of the above two schemes showed that there were no statistically significant differences between the measured values of Y(1) and Y(2) and the predicted values obtained by optimization (p > 0.05) and are close to the target value. Conclusion: Two lidocaine microemulsion preparation protocols were proposed in this study. These preparations resulted in good transdermal performance or long anesthesia duration, respectively.
format Online
Article
Text
id pubmed-10576434
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-105764342023-10-15 A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm Qiao, Yuchao Wang, Xuchun Ren, Hao Cui, Yu Ren, Jiahui Hao, Chongqi Zhao, Zhiyang Liu, Jing Zhao, Ruiqing Li, Yiting Tian, Qingping Qiu, Lixia Front Pharmacol Pharmacology Background: Topical lidocaine microemulsion preparations with low toxicity, low irritation, strong transdermal capability and convenient administration are urgently needed. Methods: Box-Behnken design was performed for three preparation conditions of 5% lidocaine microemulsions: mass ratio of the mass ratio of surfactant/(oil phase + surfactant) (X(1)), the mass ratio of olive oil/(α-linolenic acid + linoleic acid) (X(2)) and the water content W% (X(3)). Then, five multi-objective genetic algorithms were used to optimize the three evaluation indices to optimize the effects of lidocaine microemulsion preparations. Finally, the ideal optimization scheme was experimentally verified. Results: Non-dominated Sorting Genetic Algorithm-II was used for 30 random searches. Among these, Scheme 2: X(1) = 0.75, X(2) = 0.35, X(3) = 75%, which resulted in Y(1) = 0.17 μg/(cm(2)·s) and Y(2) = 0.74 mg/cm(2); and the Scheme 19: X(1) = 0.68, X(2) = 1.42, X(3) = 75% which resulted in Y(1) = 0.14 μg/(cm(2)·s) and Y(2) = 0.80 mg/cm(2), provided the best matches for the objective function requirements. The maximum and average fitness of the method have reached stability after 3 generations of evolution. Experimental verification of the above two schemes showed that there were no statistically significant differences between the measured values of Y(1) and Y(2) and the predicted values obtained by optimization (p > 0.05) and are close to the target value. Conclusion: Two lidocaine microemulsion preparation protocols were proposed in this study. These preparations resulted in good transdermal performance or long anesthesia duration, respectively. Frontiers Media S.A. 2023-09-29 /pmc/articles/PMC10576434/ /pubmed/37841920 http://dx.doi.org/10.3389/fphar.2023.1272454 Text en Copyright © 2023 Qiao, Wang, Ren, Cui, Ren, Hao, Zhao, Liu, Zhao, Li, Tian and Qiu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Qiao, Yuchao
Wang, Xuchun
Ren, Hao
Cui, Yu
Ren, Jiahui
Hao, Chongqi
Zhao, Zhiyang
Liu, Jing
Zhao, Ruiqing
Li, Yiting
Tian, Qingping
Qiu, Lixia
A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title_full A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title_fullStr A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title_full_unstemmed A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title_short A study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
title_sort study on the preparation conditions of lidocaine microemulsion based on multi-objective genetic algorithm
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10576434/
https://www.ncbi.nlm.nih.gov/pubmed/37841920
http://dx.doi.org/10.3389/fphar.2023.1272454
work_keys_str_mv AT qiaoyuchao astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT wangxuchun astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT renhao astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT cuiyu astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT renjiahui astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT haochongqi astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT zhaozhiyang astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT liujing astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT zhaoruiqing astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT liyiting astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT tianqingping astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT qiulixia astudyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT qiaoyuchao studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT wangxuchun studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT renhao studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT cuiyu studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT renjiahui studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT haochongqi studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT zhaozhiyang studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT liujing studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT zhaoruiqing studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT liyiting studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT tianqingping studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm
AT qiulixia studyonthepreparationconditionsoflidocainemicroemulsionbasedonmultiobjectivegeneticalgorithm