» Articles » PMID: 31136710

Development of Liposomal Gemcitabine with High Drug Loading Capacity

Overview
Journal Mol Pharm
Specialty Pharmacology
Date 2019 May 29
PMID 31136710
Citations 21
Authors
Affiliations
Soon will be listed here.
Abstract

Liposomes are widely used for systemic delivery of chemotherapeutic agents to reduce their nonspecific side effects. Gemcitabine (Gem) makes a great candidate for liposomal encapsulation due to the short half-life and nonspecific side effects; however, it has been difficult to achieve liposomal Gem with high drug loading capacity. Remote loading, which uses a transmembrane pH gradient to induce an influx of drug and locks the drug in the core as a sulfate complex, does not serve Gem as efficiently as doxorubicin (Dox) due to the low p K value of Gem. Existing studies have attempted to improve Gem loading capacity in liposomes by employing lipophilic Gem derivatives or creating a high-concentration gradient for active loading into the hydrophilic cores (small volume loading). In this study, we combine the remote loading approach and small volume loading or hypertonic loading, a new approach to induce the influx of Gem into the preformed liposomes by high osmotic pressure, to achieve a Gem loading capacity of 9.4-10.3 wt % in contrast to 0.14-3.8 wt % of the conventional methods. Liposomal Gem showed a good stability during storage, sustained-release over 120 h in vitro, enhanced cellular uptake, and improved cytotoxicity as compared to free Gem. Liposomal Gem showed a synergistic effect with liposomal Dox on Huh7 hepatocellular carcinoma cells. A mixture of liposomal Gem and liposomal Dox delivered both drugs to the tumor more efficiently than a free drug mixture and showed a relatively good anti-tumor effect in a xenograft model of hepatocellular carcinoma. This study shows that bioactive liposomal Gem with high drug loading capacity can be produced by remote loading combined with additional approaches to increase drug influx into the liposomes.

Citing Articles

Improved Antitumor Efficiency of -Tetradecyloxycarbonyl Gemcitabine-Loaded Liposomes for Pancreatic Cancer Chemotherapy.

Wang D, Wang X, Li Y, Wang X, Wang X, Su J Int J Nanomedicine. 2024; 19:13391-13410.

PMID: 39679246 PMC: 11646436. DOI: 10.2147/IJN.S485861.


Rosuvastatin Flexible Chitosomes: Development, In Vitro Evaluation and Enhancement of Anticancer Efficacy Against HepG2 and MCF7 Cell Lines.

Eleraky N, Hassan A, Soliman G, Al-Gayyar M, Safwat M AAPS PharmSciTech. 2024; 25(7):234.

PMID: 39375273 DOI: 10.1208/s12249-024-02957-w.


Thermosensitive Liposomes for Gemcitabine Delivery to Pancreatic Ductal Adenocarcinoma.

Aparicio-Lopez C, Timmerman S, Lorino G, Rogers T, Pyle M, Shrestha T Cancers (Basel). 2024; 16(17).

PMID: 39272906 PMC: 11394165. DOI: 10.3390/cancers16173048.


Liposomes as versatile agents for the management of traumatic and nontraumatic central nervous system disorders: drug stability, targeting efficiency, and safety.

Zhang M, Xiang C, Niu R, He X, Luo W, Liu W Neural Regen Res. 2024; 20(7):1883-1899.

PMID: 39254548 PMC: 11691476. DOI: 10.4103/NRR.NRR-D-24-00048.


Targeting mitochondrial quality control: new therapeutic strategies for major diseases.

Hong W, Huang H, Zeng X, Duan C Mil Med Res. 2024; 11(1):59.

PMID: 39164792 PMC: 11337860. DOI: 10.1186/s40779-024-00556-1.


References
1.
Rivera E, Valero V, Arun B, Royce M, Adinin R, Hoelzer K . Phase II study of pegylated liposomal doxorubicin in combination with gemcitabine in patients with metastatic breast cancer. J Clin Oncol. 2003; 21(17):3249-54. DOI: 10.1200/JCO.2003.03.111. View

2.
Homewood C, Warhurst D, Peters W, Baggaley V . Lysosomes, pH and the anti-malarial action of chloroquine. Nature. 1972; 235(5332):50-2. DOI: 10.1038/235050a0. View

3.
Modi S, Xiang T, Anderson B . Enhanced active liposomal loading of a poorly soluble ionizable drug using supersaturated drug solutions. J Control Release. 2012; 162(2):330-9. DOI: 10.1016/j.jconrel.2012.07.001. View

4.
Federico C, Morittu V, Britti D, Trapasso E, Cosco D . Gemcitabine-loaded liposomes: rationale, potentialities and future perspectives. Int J Nanomedicine. 2012; 7:5423-36. PMC: 3490684. DOI: 10.2147/IJN.S34025. View

5.
Ernsting M, Murakami M, Undzys E, Aman A, Press B, Li S . A docetaxel-carboxymethylcellulose nanoparticle outperforms the approved taxane nanoformulation, Abraxane, in mouse tumor models with significant control of metastases. J Control Release. 2012; 162(3):575-81. DOI: 10.1016/j.jconrel.2012.07.043. View