Please use this identifier to cite or link to this item: doi:10.22028/D291-43127
Title: Inhalable nano-structured microparticles for extracellular matrix modulation as a potential delivery system for lung cancer
Author(s): Abdel-Hafez, Salma M.
Gallei, Markus
Wagner, Sylvia
Schneider, Marc
Language: English
Title: European Journal of Pharmaceutics and Biopharmaceutics
Volume: 204
Publisher/Platform: Elsevier
Year of Publication: 2024
Free key words: Nano-embedded microparticles
Nano-in-microparticles
Trojan particles
Spray drying
Nanoparticle penetration
Adenocarcinoma spheroid model
Lung cancer therapy
DDC notations: 500 Science
610 Medicine and health
Publikation type: Journal Article
Abstract: The use of inhalable nanoparticulate-based systems in the treatment of lung cancer allows for efficient localized delivery to the lungs with less undesirable systemic exposure. For this to be attained, the inhaled particles should have optimum properties for deposition and at the same time avoid pulmonary clearance mechanisms. Drug delivery to solid tumors is furthermore challenging, due to dense extracellular matrix (ECM) formation, which hinders the penetration and diffusion of therapeutic agents. To this end, the aim of the current work is to develop an ECM-modulating nano-structured microparticulate carrier, that not only enables the delivery of therapeutic nanoparticles (NPs) to the lungs, but also enhances their intratumoral penetration. The system is composed of acetalated maltodextrin (AcMD) NPs embedded into a water-soluble trehalose/leucine matrix, in which collagenase was loaded with different mass concentrations (10 %, 30 % and 50 %). The collagenase-containing AcMD nano-structured microparticles (MPs) exhibited suitable median volume diameters (2.58 ± 1.35 to 3.01 ± 0.68 µm), hollow corrugated morphology, sufficient redispersibility, low residual moisture content (2.71 ± 0.17 % to 3.10 ± 0.20 %), and favorable aerodynamic properties (Mass median aerodynamic diameter (MMAD): 1.93 ± 0.06 to 2.80 ± 0.10 µm and fine particle fraction (FPF): 68.02 ± 6.86 % to 69.62 ± 2.01 %). Importantly, collagenase retained as high as 89.5 ± 6.7 % of its enzymatic activity after spray drying. MPs containing 10 % mass content of collagenase did not show signs of cytotoxicity on either human lung adenocarcinoma A549 cells or lung MRC-5 fibroblasts. The nanoparticle penetration was tested using adenocarcinoma A549/MRC-5 co-culture spheroid model, where the inclusion of collagenase resulted in deeper penetration depth of AcMD-NPs.
DOI of the first publication: 10.1016/j.ejpb.2024.114512
URL of the first publication: https://www.sciencedirect.com/science/article/pii/S0939641124003382
Link to this record: urn:nbn:de:bsz:291--ds-431270
hdl:20.500.11880/38744
http://dx.doi.org/10.22028/D291-43127
ISSN: 1873-3441
0939-6411
Date of registration: 17-Oct-2024
Description of the related object: Supplementary data
Related object: https://view.officeapps.live.com/op/view.aspx?src=https%3A%2F%2Fars.els-cdn.com%2Fcontent%2Fimage%2F1-s2.0-S0939641124003382-mmc1.docx&wdOrigin=BROWSELINK
Faculty: NT - Naturwissenschaftlich- Technische Fakultät
Department: NT - Chemie
NT - Pharmazie
Professorship: NT - Prof. Dr. Markus Gallei
NT - Prof. Dr. Marc Schneider
Collections:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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