Enhanced Bilosomal Properties Resulted in Optimum Pharmacological Effects by Increased Acidification Pathways

Author:

Mooranian Armin,Foster Thomas,Ionescu Corina M.ORCID,Walker DanielORCID,Jones MelissaORCID,Wagle Susbin RajORCID,Kovacevic BozicaORCID,Chester JacquelineORCID,Johnston Edan,Wong Elaine,Atlas Marcus D.,Mikov Momir,Al-Salami Hani

Abstract

Introduction: Recent studies in our laboratory have shown that some bile acids, such as chenodeoxycholic acid (CDCA), can exert cellular protective effects when encapsulated with viable β-cells via anti-inflammatory and anti-oxidative stress mechanisms. However, to explore their full potential, formulating such bile acids (that are intrinsically lipophilic) can be challenging, particularly if larger doses are required for optimal pharmacological effects. One promising approach is the development of nano gels. Accordingly, this study aimed to examine biological effects of various concentrations of CDCA using various solubilising nano gel systems on encapsulated β-cells. Methods: Using our established cellular encapsulation system, the Ionic Gelation Vibrational Jet Flow technology, a wide range of CDCA β-cell capsules were produced and examined for morphological, biological, and inflammatory profiles. Results and Conclusion: Capsules’ morphology and topographic characteristics remained similar, regardless of CDCA or nano gel concentrations. The best pharmacological, anti-inflammatory, and cellular respiration, metabolism, and energy production effects were observed at high CDCA and nano gel concentrations, suggesting dose-dependent cellular protective and positive effects of CDCA when incorporated with high loading nano gel.

Funder

The work is partially supported by the European Union Horizon 2020 research project and in-novation program under the Marie Skłodowska-Curie Grant Agreement

Publisher

MDPI AG

Subject

Pharmaceutical Science

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