4.7 Article

Probiotic nasal spray development by spray drying

期刊

出版社

ELSEVIER
DOI: 10.1016/j.ejpb.2020.11.008

关键词

Spray drying; Shelf-life; Lacticaseibacillus; Nasal spray; Adhesion; Antimicrobial activity

资金

  1. DocPro PhD grant of University of Antwerp
  2. research foundation - Flanders (FWO) Grant [1S 448 17N]
  3. IWT-SBO grant (ProCure) of University of Antwerp [150052]

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This study developed a probiotic nasal spray derived from URT with potential probiotic effects through spray drying, showing long-term stability and high cell survival rate. The spray demonstrated excellent cell adhesion and antimicrobial activity, indicating its potential as a health-promoting product for URT diseases control and prevention.
The upper respiratory tract (URT) is the main entrance point for many viral and bacterial pathogens, and URT infections are among the most common infections in the world. Recent evidences by our own group and others imply the importance of lactobacilli as gatekeepers of a healthy URT. However, the benefits of putting health-promoting microbes or potential probiotics, such as these URT lactobacilli, in function of URT disease control and prevention is underestimated, among others because of the absence of adequate formulation modalities. Therefore, this study entails important aspects in probiotic nasal spray development with a novel URT-derived probiotic strain by spray drying. We report quantitative and qualitative analysis of several spray-dried formulations, i.e. powders for reconstitution, based on disaccharide or sugar alcohol combinations with a polymer, including their long-term stability. Four formulations with the highest survival of >10(9) (Colony Forming Units) CFU/g after 28 weeks were further examined upon reconstitution which confirmed sufficiency of one bottle/dosage form during 7 days and rheological properties of shear-thinning. Tests also demonstrated maintained viability and cell morphology overall upon spraying through a nasal spray bottle in all 4 formulations. Lastly, application suitability in terms of high adherence to Calu-3 cells and antimicrobial activity against common URT pathogens was demonstrated and was not impacted neither by powder production process nor by spraying of reconstituted powder through a nasal spray device.

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