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Packaging biological cargoes in mesoporous materials: opportunities for drug delivery

, MS, , PhD & , PhD

Figures & data

Figure 1. Characterisation of SBA-15. Illustration of a typical combination of methods used for the characterisation of SBA-15. The key results of each analysis are included with each example. (A) FE-SEM and HRTEM (far right), (B) SAXS, (C) N2 adsorption/desorption analysis.

Figure 1. Characterisation of SBA-15. Illustration of a typical combination of methods used for the characterisation of SBA-15. The key results of each analysis are included with each example. (A) FE-SEM and HRTEM (far right), (B) SAXS, (C) N2 adsorption/desorption analysis.

Figure 2. Intra- and extra-particle aspects of SBA-15. Design aspects of SBA-15 are illustrated, highlighting their possible application to address intra- and extra-particle challenges.

Figure 2. Intra- and extra-particle aspects of SBA-15. Design aspects of SBA-15 are illustrated, highlighting their possible application to address intra- and extra-particle challenges.

Figure 3. Overview of potential benefits of discussed therapeutic design cases. Benefits rendered by the intra- and extra-particle properties of SBA-15 for each of the hypothetical therapeutic delivery designs discussed.

Figure 3. Overview of potential benefits of discussed therapeutic design cases. Benefits rendered by the intra- and extra-particle properties of SBA-15 for each of the hypothetical therapeutic delivery designs discussed.