Cargando…

Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus

In the past, curcumin was the go-to medication for diabetes, but recent studies have shown that tetrahydrocurcumin is more effective. The problem is that it's not very soluble in water or very bioavailable. So, our research aims to increase the bioavailability and anti-diabetic efficacy of tetr...

Descripción completa

Detalles Bibliográficos
Autores principales: Bharti Sharma, Jai, Bhatt, Shailendra, Tiwari, Abhishek, Tiwari, Varsha, Kumar, Manish, Verma, Ravinder, Kaushik, Deepak, Virmani, Tarun, Kumar, Girish, Al kamaly, Omkulthom, Saleh, Asmaa, Khalid Parvez, Mohammed, Alhalmi, Abdulsalam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448172/
https://www.ncbi.nlm.nih.gov/pubmed/37638219
http://dx.doi.org/10.1016/j.jsps.2023.101727
_version_ 1785094671186264064
author Bharti Sharma, Jai
Bhatt, Shailendra
Tiwari, Abhishek
Tiwari, Varsha
Kumar, Manish
Verma, Ravinder
Kaushik, Deepak
Virmani, Tarun
Kumar, Girish
Al kamaly, Omkulthom
Saleh, Asmaa
Khalid Parvez, Mohammed
Alhalmi, Abdulsalam
author_facet Bharti Sharma, Jai
Bhatt, Shailendra
Tiwari, Abhishek
Tiwari, Varsha
Kumar, Manish
Verma, Ravinder
Kaushik, Deepak
Virmani, Tarun
Kumar, Girish
Al kamaly, Omkulthom
Saleh, Asmaa
Khalid Parvez, Mohammed
Alhalmi, Abdulsalam
author_sort Bharti Sharma, Jai
collection PubMed
description In the past, curcumin was the go-to medication for diabetes, but recent studies have shown that tetrahydrocurcumin is more effective. The problem is that it's not very soluble in water or very bioavailable. So, our research aims to increase the bioavailability and anti-diabetic efficacy of tetrahydrocurcumin in streptozotocin-induced diabetic rats by synthesizing tetrahydrocurcumin-loaded solid lipid nanoparticles. Box Behnken Design was employed for the optimization of tetrahydrocurcumin-loaded solid lipid nanoparticles (THC-SLNs). The optimal formulation was determined by doing an ANOVA to examine the relationship between the independent variables (drug-to-lipid ratio, surfactant concentration, and co-surfactant concentration) and the dependent variables (particle size, percent entrapment efficiency, and PDI). Particle size, PDI, and entrapment efficiency all showed statistical significance based on F-values and p-values. The optimized batch was prepared using a drug-to-lipid ratio (1:4.16), 1.21% concentration of surfactant, and 0.4775% co-surfactant (observed with a particle size of 147.1 nm, 83.58 ± 0.838 % entrapment efficiency, and 0.265 PDI, and the values were found very close with the predicted ones. As the THC peak vanishes from the DSC thermogram of the improved formulation, this indicates that the drug has been transformed from its crystalline form into its amorphous state. TEM analysis of optimized formulation demonstrated mono-dispersed particles with an average particle size of 145 nm which are closely related to zetasizer’s results. In-vitro release study of optimized formulation demonstrated burst release followed by sustained release up to 71.04% throughout 24 hrs. Increased bioavailability of the adjusted THC-SLN was found in an in vivo pharmacokinetics research with 9.47 folds higher AUC((0-t)) compared to plain THC-suspension. Additionally, pharmacodynamic experiments of optimized formulation demonstrated a marked decrease in blood glucose level to 63.7% and increased body weight from 195.8 ± 7.223 to 231.2 ± 7.653 on the 28th day of the study and showed a better anti-diabetic effect than plain drug suspension. Results of stability studies revealed that formulation can be stored for longer periods at room temperature. Tetrahydrocurcumin can be effectively administered by SLN for the treatment of diabetes.
format Online
Article
Text
id pubmed-10448172
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-104481722023-08-25 Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus Bharti Sharma, Jai Bhatt, Shailendra Tiwari, Abhishek Tiwari, Varsha Kumar, Manish Verma, Ravinder Kaushik, Deepak Virmani, Tarun Kumar, Girish Al kamaly, Omkulthom Saleh, Asmaa Khalid Parvez, Mohammed Alhalmi, Abdulsalam Saudi Pharm J Original Article In the past, curcumin was the go-to medication for diabetes, but recent studies have shown that tetrahydrocurcumin is more effective. The problem is that it's not very soluble in water or very bioavailable. So, our research aims to increase the bioavailability and anti-diabetic efficacy of tetrahydrocurcumin in streptozotocin-induced diabetic rats by synthesizing tetrahydrocurcumin-loaded solid lipid nanoparticles. Box Behnken Design was employed for the optimization of tetrahydrocurcumin-loaded solid lipid nanoparticles (THC-SLNs). The optimal formulation was determined by doing an ANOVA to examine the relationship between the independent variables (drug-to-lipid ratio, surfactant concentration, and co-surfactant concentration) and the dependent variables (particle size, percent entrapment efficiency, and PDI). Particle size, PDI, and entrapment efficiency all showed statistical significance based on F-values and p-values. The optimized batch was prepared using a drug-to-lipid ratio (1:4.16), 1.21% concentration of surfactant, and 0.4775% co-surfactant (observed with a particle size of 147.1 nm, 83.58 ± 0.838 % entrapment efficiency, and 0.265 PDI, and the values were found very close with the predicted ones. As the THC peak vanishes from the DSC thermogram of the improved formulation, this indicates that the drug has been transformed from its crystalline form into its amorphous state. TEM analysis of optimized formulation demonstrated mono-dispersed particles with an average particle size of 145 nm which are closely related to zetasizer’s results. In-vitro release study of optimized formulation demonstrated burst release followed by sustained release up to 71.04% throughout 24 hrs. Increased bioavailability of the adjusted THC-SLN was found in an in vivo pharmacokinetics research with 9.47 folds higher AUC((0-t)) compared to plain THC-suspension. Additionally, pharmacodynamic experiments of optimized formulation demonstrated a marked decrease in blood glucose level to 63.7% and increased body weight from 195.8 ± 7.223 to 231.2 ± 7.653 on the 28th day of the study and showed a better anti-diabetic effect than plain drug suspension. Results of stability studies revealed that formulation can be stored for longer periods at room temperature. Tetrahydrocurcumin can be effectively administered by SLN for the treatment of diabetes. Elsevier 2023-09 2023-08-02 /pmc/articles/PMC10448172/ /pubmed/37638219 http://dx.doi.org/10.1016/j.jsps.2023.101727 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Bharti Sharma, Jai
Bhatt, Shailendra
Tiwari, Abhishek
Tiwari, Varsha
Kumar, Manish
Verma, Ravinder
Kaushik, Deepak
Virmani, Tarun
Kumar, Girish
Al kamaly, Omkulthom
Saleh, Asmaa
Khalid Parvez, Mohammed
Alhalmi, Abdulsalam
Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title_full Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title_fullStr Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title_full_unstemmed Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title_short Statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using Box Behnken design in the management of streptozotocin-induced diabetes mellitus
title_sort statistical optimization of tetrahydrocurcumin loaded solid lipid nanoparticles using box behnken design in the management of streptozotocin-induced diabetes mellitus
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448172/
https://www.ncbi.nlm.nih.gov/pubmed/37638219
http://dx.doi.org/10.1016/j.jsps.2023.101727
work_keys_str_mv AT bhartisharmajai statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT bhattshailendra statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT tiwariabhishek statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT tiwarivarsha statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT kumarmanish statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT vermaravinder statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT kaushikdeepak statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT virmanitarun statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT kumargirish statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT alkamalyomkulthom statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT salehasmaa statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT khalidparvezmohammed statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus
AT alhalmiabdulsalam statisticaloptimizationoftetrahydrocurcuminloadedsolidlipidnanoparticlesusingboxbehnkendesigninthemanagementofstreptozotocininduceddiabetesmellitus