» Articles » PMID: 10194602

Encapsulation of Hydrophilic and Lipophilic Drugs in PLGA Nanoparticles by the Nanoprecipitation Method

Overview
Publisher Informa Healthcare
Specialty Pharmacology
Date 1999 Apr 9
PMID 10194602
Citations 97
Authors
Affiliations
Soon will be listed here.
Abstract

The purpose of this study was to assess the relative advantages and drawbacks of the nanoprecipitation-solvent displacement method for a range of drugs with respect to the particle size and drug encapsulation in polylactic-co-glycolic acid (PLGA) nanoparticles. The particle size analysis indicated a unimodal particle size distribution in all systems, with a mean diameter of 160-170 nm, except for insulin nanoparticles, which showed a smaller particle size. The results of the encapsulation efficiency analysis demonstrated that more lipophilic drugs, such as cyclosporin and indomethacin, do not suffer from the problems of drug leakage to the external medium, resulting in improved drug content in the nanoparticles. In spite of the fact that valproic acid is a liquid that is very sparingly soluble in water, very low encapsulation efficiency was obtained. Ketoprofen, a drug sparingly soluble in water, demonstrated intermediate values of encapsulation that were well correlated with its intermediate lipophilicity. More hydrophilic drugs, such as vancomycin and phenobarbital, were poorly encapsulated in PLGA nanoparticles. Insulin was preferentially surface bound on the PLGA nanoparticles. However, a strong hypoglycemic effect of the insulin was observed after administration of the suspension of PLGA nanoparticles with surface-bound insulin to the ileum loop of male Wistar rats.

Citing Articles

Development of Polymeric Nanoparticles Loaded with Extract: A Promising Approach for Enhanced Wound Healing.

Kosksi T, Bustos-Salgado P, Rejeb M, Selmi A, Debbabi N, Espinoza L Int J Mol Sci. 2025; 26(5).

PMID: 40076748 PMC: 11901007. DOI: 10.3390/ijms26052124.


Production of Prophylactic Nanoformulation for Dental Caries and Investigation of Its Effectiveness by In Vitro and In Silico Methods.

Budama-Kilinc Y, Kurtur O, Gok B, Kecel-Gunduz S, Alpay-Karaoglu S, Yilmaz Atali P Pharmaceutics. 2025; 17(2).

PMID: 40006534 PMC: 11859156. DOI: 10.3390/pharmaceutics17020167.


PLGA Nanoparticles Based Mucoadhesive Nasal In Situ Gel for Enhanced Brain Delivery of Topiramate.

Tanna V, Vora A, Shah P, Nair A, Shah J, Sawarkar S AAPS PharmSciTech. 2024; 25(7):205.

PMID: 39237656 DOI: 10.1208/s12249-024-02917-4.


Transdermal Delivery System of Doxycycline-Loaded Niosomal Gels: Toward Enhancing Doxycycline Stability.

Zaid Alkilani A, Sharaire Z, Hamed R, Basheer H ACS Omega. 2024; 9(31):33542-33556.

PMID: 39130600 PMC: 11307314. DOI: 10.1021/acsomega.4c01224.


Evaluation of the Transport and Binding of Dopamine-Loaded PLGA Nanoparticles for the Treatment of Parkinson's Disease Using In Vitro Model Systems.

Danz K, Fleddermann J, Koch M, Fecioru E, Maahs L, Kinsinger N Pharmaceutics. 2024; 16(5).

PMID: 38794233 PMC: 11125169. DOI: 10.3390/pharmaceutics16050571.