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1.
Pharmaceutics ; 15(11)2023 Nov 03.
Artigo em Inglês | MEDLINE | ID: mdl-38004561

RESUMO

Airway mucus dysfunction and impaired immunological defenses are hallmarks of several lung diseases, including asthma, cystic fibrosis, and chronic obstructive pulmonary diseases, and are mostly causative factors in bacterial-biofilm-associated respiratory tract infections. Bacteria residing within the biofilm architecture pose a complex challenge in clinical settings due to their increased tolerance to currently available antibiotics and host immune responses, resulting in chronic infections with high recalcitrance and high rates of morbidity and mortality. To address these unmet clinical needs, potential anti-biofilm therapeutic strategies are being developed to effectively control bacterial biofilm. This review focuses on recent advances in the development and application of nanoparticulate drug delivery systems for the treatment of biofilm-associated respiratory tract infections, especially addressing the respiratory barriers of concern for biofilm accessibility and the various types of nanoparticles used to combat biofilms. Understanding the obstacles facing pulmonary drug delivery to bacterial biofilms and nanoparticle-based approaches to combatting biofilm may encourage researchers to explore promising treatment modalities for bacterial-biofilm-associated chronic lung infections.

2.
Expert Opin Ther Pat ; 32(9): 939-952, 2022 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-35929879

RESUMO

INTRODUCTION: Iron oxide nanoparticles (IONPs) hold the edges of great magnetic properties and fine nanoparticle characteristics, making them an attractive therapeutic agent. In the past seven years, more in-depth investigations were devoted to the intrinsic structure, magnetic properties, and biological effects of IONPs, expanding the range of their therapeutic application scenes. AREAS COVERED: This review focuses on the development of IONPs for biomedical applications from the angle of the patent literature reported during the period 2015-2021. EXPERT OPINION: While the magnetic properties of IONPs have been extensively explored, the precise control of IONP behavior through external magnetic fields remains a challenge. Further digging into the biological effects of IONPs will facilitate the development of IONP-based immune therapies. Long-term reliable safety evaluations are of necessity and significance to promote the process of clinical translation.


Assuntos
Nanopartículas de Magnetita , Nanopartículas , Compostos Férricos , Humanos , Nanopartículas Magnéticas de Óxido de Ferro , Nanopartículas de Magnetita/química , Nanopartículas/química , Patentes como Assunto
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