Literature DB >> 27016134

Polymeric nanoparticles in development for treatment of pulmonary infectious diseases.

Young H Lim1, Kristin M Tiemann2, David A Hunstad2,3, Mahmoud Elsabahy4,5,6, Karen L Wooley7.   

Abstract

Serious lung infections, such as pneumonia, tuberculosis, and chronic obstructive cystic fibrosis-related bacterial diseases, are increasingly difficult to treat and can be life-threatening. Over the last decades, an array of therapeutics and/or diagnostics have been exploited for management of pulmonary infections, but the advent of drug-resistant bacteria and the adverse conditions experienced upon reaching the lung environment urge the development of more effective delivery vehicles. Nanotechnology is revolutionizing the approach to circumventing these barriers, enabling better management of pulmonary infectious diseases. In particular, polymeric nanoparticle-based therapeutics have emerged as promising candidates, allowing for programmed design of multi-functional nanodevices and, subsequently, improved pharmacokinetics and therapeutic efficiency, as compared to conventional routes of delivery. Direct delivery to the lungs of such nanoparticles, loaded with appropriate antimicrobials and equipped with 'smart' features to overcome various mucosal and cellular barriers, is a promising approach to localize and concentrate therapeutics at the site of infection while minimizing systemic exposure to the therapeutic agents. The present review focuses on recent progress (2005-2015) important for the rational design of nanostructures, particularly polymeric nanoparticles, for the treatment of pulmonary infections with highlights on the influences of size, shape, composition, and surface characteristics of antimicrobial-bearing polymeric nanoparticles on their biodistribution, therapeutic efficacy, and toxicity. WIREs Nanomed Nanobiotechnol 2016, 8:842-871. doi: 10.1002/wnan.1401 For further resources related to this article, please visit the WIREs website.
© 2016 Wiley Periodicals, Inc.

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Year:  2016        PMID: 27016134      PMCID: PMC5035710          DOI: 10.1002/wnan.1401

Source DB:  PubMed          Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol        ISSN: 1939-0041


  168 in total

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Review 2.  Influence of particle size and material properties on mucociliary clearance from the airways.

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Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2010-08       Impact factor: 2.849

3.  Actin limits enhancement of nanoparticle diffusion through cystic fibrosis sputum by mucolytics.

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Journal:  Pulm Pharmacol Ther       Date:  2006-09-09       Impact factor: 3.410

4.  Privileged delivery of polymer nanoparticles to the perinuclear region of live cells via a non-clathrin, non-degradative pathway.

Authors:  Samuel K Lai; Kaoru Hida; Stan T Man; Clive Chen; Carolyn Machamer; Trina A Schroer; Justin Hanes
Journal:  Biomaterials       Date:  2007-02-27       Impact factor: 12.479

5.  Shape effects of filaments versus spherical particles in flow and drug delivery.

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6.  Improving paclitaxel delivery: in vitro and in vivo characterization of PEGylated polyphosphoester-based nanocarriers.

Authors:  Fuwu Zhang; Shiyi Zhang; Stephanie F Pollack; Richen Li; Amelia M Gonzalez; Jingwei Fan; Jiong Zou; Sarah E Leininger; Adriana Pavía-Sanders; Rachel Johnson; Laura D Nelson; Jeffery E Raymond; Mahmoud Elsabahy; Dennis M P Hughes; Mark W Lenox; Tiffany P Gustafson; Karen L Wooley
Journal:  J Am Chem Soc       Date:  2015-01-28       Impact factor: 15.419

7.  Rapid transport of muco-inert nanoparticles in cystic fibrosis sputum treated with N-acetyl cysteine.

Authors:  Jung Soo Suk; Samuel K Lai; Nicholas J Boylan; Michelle R Dawson; Michael P Boyle; Justin Hanes
Journal:  Nanomedicine (Lond)       Date:  2011-02       Impact factor: 5.307

8.  Transferrin-functionalized nanoparticles lose their targeting capabilities when a biomolecule corona adsorbs on the surface.

Authors:  Anna Salvati; Andrzej S Pitek; Marco P Monopoli; Kanlaya Prapainop; Francesca Baldelli Bombelli; Delyan R Hristov; Philip M Kelly; Christoffer Åberg; Eugene Mahon; Kenneth A Dawson
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9.  Efficient drug targeting to rat alveolar macrophages by pulmonary administration of ciprofloxacin incorporated into mannosylated liposomes for treatment of respiratory intracellular parasitic infections.

Authors:  Sumio Chono; Tomoharu Tanino; Toshinobu Seki; Kazuhiro Morimoto
Journal:  J Control Release       Date:  2007-12-23       Impact factor: 9.776

10.  Investigating the pharmacokinetics and biological distribution of silver-loaded polyphosphoester-based nanoparticles using (111) Ag as a radiotracer.

Authors:  Tolulope A Aweda; Shiyi Zhang; Chiedza Mupanomunda; Jennifer Burkemper; Gyu Seong Heo; Nilantha Bandara; Mai Lin; Cathy S Cutler; Carolyn L Cannon; Wiley J Youngs; Karen L Wooley; Suzanne E Lapi
Journal:  J Labelled Comp Radiopharm       Date:  2015-05-08       Impact factor: 1.921

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  15 in total

1.  Chitosan oligosaccharide modified liposomes enhance lung cancer delivery of paclitaxel.

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Journal:  Acta Pharmacol Sin       Date:  2021-01-19       Impact factor: 7.169

2.  Novel siRNA formulation to effectively knockdown mutant p53 in osteosarcoma.

Authors:  Anup K Kundu; Swathi V Iyer; Sruti Chandra; Amit S Adhikari; Tomoo Iwakuma; Tarun K Mandal
Journal:  PLoS One       Date:  2017-06-21       Impact factor: 3.240

3.  Near-IR-induced dissociation of thermally-sensitive star polymers.

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Review 4.  Nanomedicines: A Potential Treatment for Blood Disorder Diseases.

Authors:  Nan Zhang; Ming-Yuan Wei; Qiang Ma
Journal:  Front Bioeng Biotechnol       Date:  2019-11-28

5.  Polymer Nanomedicines with Ph-Sensitive Release of Dexamethasone for the Localized Treatment of Inflammation.

Authors:  Alena Libánská; Eva Randárová; Franck Lager; Gilles Renault; Daniel Scherman; Tomáš Etrych
Journal:  Pharmaceutics       Date:  2020-07-25       Impact factor: 6.321

Review 6.  Recent Advances in Polymeric Nanoparticle-Encapsulated Drugs against Intracellular Infections.

Authors:  Arturo Sánchez; Susana P Mejía; Jahir Orozco
Journal:  Molecules       Date:  2020-08-18       Impact factor: 4.411

7.  Polymer-based nano-therapies to combat COVID-19 related respiratory injury: progress, prospects, and challenges.

Authors:  Md Mohosin Rana
Journal:  J Biomater Sci Polym Ed       Date:  2021-04-14       Impact factor: 3.517

Review 8.  Nanoparticle Delivery Systems with Cell-Specific Targeting for Pulmonary Diseases.

Authors:  Zicheng Deng; Gregory T Kalin; Donglu Shi; Vladimir V Kalinichenko
Journal:  Am J Respir Cell Mol Biol       Date:  2021-03       Impact factor: 6.914

Review 9.  Therapeutic Nanoparticles and Their Targeted Delivery Applications.

Authors:  Abuzer Alp Yetisgin; Sibel Cetinel; Merve Zuvin; Ali Kosar; Ozlem Kutlu
Journal:  Molecules       Date:  2020-05-08       Impact factor: 4.411

10.  Radioactive polymeric nanoparticles for biomedical application.

Authors:  Shentian Wu; Edward Helal-Neto; Ana Paula Dos Santos Matos; Amir Jafari; Ján Kozempel; Yuri José de Albuquerque Silva; Carolina Serrano-Larrea; Severino Alves Junior; Eduardo Ricci-Junior; Frank Alexis; Ralph Santos-Oliveira
Journal:  Drug Deliv       Date:  2020-12       Impact factor: 6.419

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