Vitamin D3-Loaded Nanoemulsions as a Potential Drug Delivery System for Autistic Children: Formulation Development, Safety, and Pharmacokinetic Studies

被引:0
作者
Marwa Hasanein Asfour
Sameh Hosam Abd El-Alim
Ahmed Alaa Kassem
Abeer Salama
Amr Sobhi Gouda
Walaa Samy Nazim
Neveen Hassan Nashaat
Maha Hemimi
Nagwa Abdel Meguid
机构
[1] National Research Centre,Pharmaceutical Technology Department
[2] National Research Centre,Pharmacology Department
[3] National Research Centre,Biochemical Genetics Department
[4] National Research Centre,Research On Children With Special Needs Department
来源
AAPS PharmSciTech | / 24卷
关键词
autism; nanoemulsion; pharmacokinetics; toxicity; vitamin D;
D O I
暂无
中图分类号
学科分类号
摘要
The aim of the current study is the development of a vitamin D3 (VD3)-loaded nanoemulsion (NE) formulation to improve VD3 oral bioavailability for management of vitamin D inadequacy in autistic children. Eight NE formulations were prepared by high-speed homogenization followed by ultrasonication. Four vegetable oils were employed along with two concentrations of Span 20 as the emulsifier. Glycerol, fructose, and mango flavor were included as viscosity modifier, sweetening, and flavoring agents, respectively. The prepared VD3-loaded NE formulations exhibited high drug content (> 98%), droplet size (DS) ranging from 61.15 to 129.8 nm with narrow size distribution, zeta potential values between − 9.83 and − 19.22 mV, and acceptable pH values (4.59–5.89). Storage stability showed that NE formulations underwent coalescence and phase separation during 6 months at room temperature, whereas at refrigerated conditions, formulations showed slight creaming. The optimum formulation (VD3-NE6) revealed a non-significant DS growth at refrigerated conditions and spherical morphology under transmission electron microscopy. VD3-NE6 did not produce any toxic effects to rats treated orally for 3 months, where normal blood picture and kidney and liver functions were observed compared to control rats. Also, serum calcium, oxidative stress, and apoptosis biomarkers remained within normal levels, indicating the safety of the optimum formulation. Furthermore, evaluation of VD3-NE6 oral bioavailability depicted a significant increase in AUC0–72 and Cmax with decreased Tmax compared to plain VD3. The optimum formulation demonstrated improved stability, safety, and oral bioavailability indicating the potential for successful management of vitamin D deficiency in autistic children.
引用
收藏
相关论文
共 300 条
[1]  
Adams JB(2011)Effect of a vitamin/mineral supplement on children and adults with autism BMC Pediatr 11 111-485
[2]  
Audhya T(2011)Prenatal vitamins, one-carbon metabolism gene variants, and risk for autism Epidemiol 22 476-387
[3]  
McDonough-Means S(2019)The role of vitamins in autism spectrum disorder: what do we know? J Mol Neurosci 67 373-216
[4]  
Rubin RA(2021)Eating behavior in autism: senses as a window towards food acceptance Curr Opin Food Sci 41 210-321
[5]  
Quig D(2011)Vitamin supplementation reduces the level of homocysteine in the urine of autistic children Nutr Res 31 318-101
[6]  
Geis E(2018)Vitamin D fortification of foods and prospective health outcomes J Biotechnol 285 91-843
[7]  
Schmidt RJ(2017)Biology and mechanisms of action of the vitamin D hormone Endocrinol Metab Clin North Am 46 815-482
[8]  
Hansen RL(2005)Vitamin D and bone mineral density status of healthy schoolchildren in northern India Am J Clin Nutr 82 477-48
[9]  
Hartiala J(2009)Vitamin D status in India–its implications and remedial measures J Assoc Physicians India 57 40-98
[10]  
Allayee H(2019)A phase inversion based nanoemulsion fabrication process to encapsulate vitamin D3 for food applications J Steroid Biochem Mol Biol 190 88-843