PLGA-Based Micro/Nanoparticles: An Overview of Their Applications in Respiratory Diseases
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Zhengjie Zhou | Caina Xu | Guoqiang Wang | Haoyu Zheng | Yinuo Gu | Fang Wang | Xu Zuo | Xinlei Wang | Xiaoping Guo | Xiaoping Guo | Zhengjie Zhou | Haoyu Zheng | Xinlei Wang
[1] D. Mahler,et al. Reducing the Risk of Mortality in Chronic Obstructive Pulmonary Disease With Pharmacotherapy: A Narrative Review. , 2023, Mayo Clinic proceedings.
[2] C. Qin,et al. Berberin sustained-release nanoparticles were enriched in infarcted rat myocardium and resolved inflammation , 2023, Journal of Nanobiotechnology.
[3] Qin Fan,et al. Tumor-Antigen Activated Dendritic Cell Membrane-Coated Biomimetic Nanoparticles with Orchestrating Immune Responses Promote Therapeutic Efficacy against Glioma. , 2023, ACS nano.
[4] V. Ghormade,et al. A pH-tuned chitosan-PLGA nanocarrier for fluconazole delivery reduces toxicity and improves efficacy against resistant Candida. , 2022, International journal of biological macromolecules.
[5] C. Usai,et al. Micro-RNAs Shuttled by Extracellular Vesicles Secreted from Mesenchymal Stem Cells Dampen Astrocyte Pathological Activation and Support Neuroprotection in In-Vitro Models of ALS , 2022, Cells.
[6] M. D. Hussain,et al. Folate receptor-targeted PLGA-PEG nanoparticles for enhancing the activity of genistein in ovarian cancer , 2022, Artificial cells, nanomedicine, and biotechnology.
[7] F. Ungaro,et al. Pulmonary Safety Profile of Esc Peptides and Esc-Peptide-Loaded Poly(lactide-co-glycolide) Nanoparticles: A Promising Therapeutic Approach for Local Treatment of Lung Infectious Diseases , 2022, Pharmaceutics.
[8] I. Noh,et al. Modulation of bioactive calcium phosphate micro/nanoparticle size and shape during in situ synthesis of photo-crosslinkable gelatin methacryloyl based nanocomposite hydrogels for 3D bioprinting and tissue engineering , 2022, Biomaterials Research.
[9] D. Burgess,et al. Characterization and in vitro release of minocycline hydrochloride microspheres prepared via coacervation. , 2022, International journal of pharmaceutics.
[10] T. Ishida,et al. Polyethylene glycol (PEG): The nature, immunogenicity, and role in the hypersensitivity of PEGylated products. , 2022, Journal of controlled release : official journal of the Controlled Release Society.
[11] Yangchao Luo,et al. Mechanisms of carotenoid intestinal absorption and the regulation of dietary lipids: lipid transporter-mediated transintestinal epithelial pathways , 2022, Critical reviews in food science and nutrition.
[12] Zeyu Gao,et al. Crystalline micro-nanoparticles enhance cross-linked hydrogels via a confined assembly of chitosan and γ-cyclodextrin. , 2022, Carbohydrate polymers.
[13] Shiqing Ma,et al. Microsphere-Gel Composite System with Mesenchymal Stem Cell Recruitment, Antibacterial, and Immunomodulatory Properties Promote Bone Regeneration via Sequential Release of LL37 and W9 Peptides. , 2022, ACS applied materials & interfaces.
[14] Lixin Xie,et al. Advances in the use of exosomes for the treatment of ALI/ARDS , 2022, Frontiers in Immunology.
[15] L. Pablo,et al. Mimicking chronic glaucoma over 6 months with a single intracameral injection of dexamethasone/fibronectin-loaded PLGA microspheres , 2022, Drug delivery.
[16] M. Haider,et al. Optimum inhibition of MCF-7 breast cancer cells by efficient targeting of the macropinocytosis using optimized paclitaxel-loaded nanoparticles. , 2022, Life sciences.
[17] Avvaru Praveen Kumar,et al. Advances and applications of monoolein as a novel nanomaterial in mitigating chronic lung diseases , 2022, Journal of Drug Delivery Science and Technology.
[18] Yang Yang,et al. Red blood cell-hitchhiking mediated pulmonary delivery of ivermectin: Effects of nanoparticle properties , 2022, International Journal of Pharmaceutics.
[19] A. J. Siddiqui,et al. Targeting COPD with PLGA-Based Nanoparticles: Current Status and Prospects , 2022, BioMed research international.
[20] M. Almukainzi,et al. Gentiopicroside PLGA Nanospheres: Fabrication, in vitro Characterization, Antimicrobial Action, and in vivo Effect for Enhancing Wound Healing in Diabetic Rats , 2022, International journal of nanomedicine.
[21] J. Arias,et al. Recent Advances in the Surface Functionalization of PLGA-Based Nanomedicines , 2022, Nanomaterials.
[22] M. Konstan,et al. What Is Cystic Fibrosis? , 2022, JAMA.
[23] D. Marciniuk,et al. Global Impact of Respiratory Disease , 2022, Chest.
[24] Andrés J. García,et al. Bacteriophage‐Loaded Poly(lactic‐co‐glycolic acid) Microparticles Mitigate Staphylococcus aureus Infection and Cocultures of Staphylococcus aureus and Pseudomonas aeruginosa , 2021, Advanced healthcare materials.
[25] D. Abdelkader,et al. A Novel Sustained Anti-Inflammatory Effect of Atorvastatin—Calcium PLGA Nanoparticles: In Vitro Optimization and In Vivo Evaluation , 2021, Pharmaceutics.
[26] Yuchen Qi,et al. Lung-Targeting Lysostaphin Microspheres for Methicillin-Resistant Staphylococcus aureus Pneumonia Treatment and Prevention. , 2021, ACS nano.
[27] G. Tovar,et al. Nano-in-Micro-Particles Consisting of PLGA Nanoparticles Embedded in Chitosan Microparticles via Spray-Drying Enhances Their Uptake in the Olfactory Mucosa , 2021, Frontiers in Pharmacology.
[28] S. M. Badr-Eldin,et al. Lung Targeted Lipopolymeric Microspheres of Dexamethasone for the Treatment of ARDS , 2021, Pharmaceutics.
[29] G. Sulaiman,et al. Quercetin against MCF7 and CAL51 breast cancer cell lines: apoptosis, gene expression, and cytotoxicity of nano-quercetin. , 2021, Nanomedicine.
[30] Yingying Zhang,et al. Exosome membrane-modified M2 macrophages targeted nanomedicine: Treatment for allergic asthma. , 2021, Journal of controlled release : official journal of the Controlled Release Society.
[31] Rajendra Prasad Gaddam,et al. PLGA/PLA-Based Long-Acting Injectable Depot Microspheres in Clinical Use: Production and Characterization Overview for Protein/Peptide Delivery , 2021, International journal of molecular sciences.
[32] J. Bernard,et al. Nanoprecipitation as a simple and straightforward process to create complex polymeric colloidal morphologies. , 2021, Advances in colloid and interface science.
[33] M. García-Martín,et al. Engineering of stealth (maghemite/PLGA)/chitosan (core/shell)/shell nanocomposites with potential applications for combined MRI and hyperthermia against cancer. , 2021, Journal of materials chemistry. B.
[34] H. Shan,et al. Macrophage biomimetic nanocarriers for anti-inflammation and targeted antiviral treatment in COVID-19 , 2021, Journal of Nanobiotechnology.
[35] Ronnie H. Fang,et al. Genetically engineered cell membrane–coated nanoparticles for targeted delivery of dexamethasone to inflamed lungs , 2021, Science Advances.
[36] T. Webster,et al. Effect of Paclitaxel/etoposide co-loaded polymeric nanoparticles on tumor size and survival rate in rat model of glioblastoma. , 2021, International journal of pharmaceutics.
[37] Bahareh Nikpour,et al. Tools and Techniques for Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2)/COVID-19 Detection , 2021, Clinical microbiology reviews.
[38] S. Mitragotri,et al. Red Blood Cell Hitchhiking: A Novel Approach for Vascular Delivery of Nanocarriers. , 2021, Annual review of biomedical engineering.
[39] D. Scherman,et al. PLGA Based Nanospheres as a Potent Macrophage-Specific Drug Delivery System , 2021, Nanomaterials.
[40] Ketan Patel,et al. Self-injectable extended release formulation of Remdesivir (SelfExRem): A potential formulation alternative for COVID-19 treatment , 2021, International Journal of Pharmaceutics.
[41] T. L. Montanheiro,et al. Current advances in drug delivery of nanoparticles for respiratory disease treatment. , 2021, Journal of materials chemistry. B.
[42] Xin Zhang,et al. Inhalable PLGA microspheres: tunable lung retention and systemic exposure via polyethylene glycol modification. , 2021, Acta biomaterialia.
[43] Jun Wu,et al. Recent applications and strategies in nanotechnology for lung diseases , 2021, Nano Research.
[44] Hong Yang,et al. Her2-Targeted Multifunctional Nano-Theranostic Platform Mediates Tumor Microenvironment Remodeling and Immune Activation for Breast Cancer Treatment , 2020, International journal of nanomedicine.
[45] T. Minko,et al. Targeted Nanotherapeutics for Respiratory Diseases: Cancer, Fibrosis, and Coronavirus , 2020, Advanced therapeutics.
[46] M. Huber-Lang,et al. Inflammation, Thrombosis, and Destruction: The Three-Headed Cerberus of Trauma- and SARS-CoV-2-Induced ARDS , 2020, Frontiers in Immunology.
[47] Dongwon Lee,et al. Dexamethasone-loaded H2O2-activatable anti-inflammatory nanoparticles for on-demand therapy of inflammatory respiratory diseases. , 2020, Nanomedicine : nanotechnology, biology, and medicine.
[48] Wouter A. A. de Steenhuijsen Piters,et al. Early Life Microbiota and Respiratory Tract Infections. , 2020, Cell host & microbe.
[49] J. Key,et al. Therapeutic Efficacy of Curcumin Enhanced by Microscale Discoidal Polymeric Particles in a Murine Asthma Model , 2020, Pharmaceutics.
[50] Ali Khademhosseini,et al. Micro and nanoscale technologies in oral drug delivery , 2020, Advanced Drug Delivery Reviews.
[51] M. Bassetti,et al. Inhaled Liposomal Antimicrobial Delivery in Lung Infections , 2020, Drugs.
[52] Sharon J Peacock,et al. Pathophysiology, Transmission, Diagnosis, and Treatment of Coronavirus Disease 2019 (COVID-19): A Review. , 2020, JAMA.
[53] M. Madou,et al. Nanotechnology for COVID-19: Therapeutics and Vaccine Research , 2020, ACS nano.
[54] M. Xie,et al. Laboratory characteristics of patients infected with the novel SARS-CoV-2 virus , 2020, Journal of Infection.
[55] D. Chellappan,et al. Vesicular drug-delivery systems as theranostics in COVID-19 , 2020, Future medicinal chemistry.
[56] M. I. Tadros,et al. Eudragit®-S100 Coated PLGA Nanoparticles for Colon Targeting of Etoricoxib: Optimization and Pharmacokinetic Assessments in Healthy Human Volunteers , 2020, International journal of nanomedicine.
[57] A. Steer,et al. Pharmacokinetic considerations on the repurposing of ivermectin for treatment of COVID‐19 , 2020, British journal of clinical pharmacology.
[58] W. Phipatanakul,et al. Prevention of asthma: targets for intervention. , 2020, Chest.
[59] Weidong Wu,et al. Virology, Epidemiology, Pathogenesis, and Control of COVID-19 , 2020, Viruses.
[60] A. Rodríguez-Morales,et al. Coronavirus Disease 2019–COVID-19 , 2020, Clinical Microbiology Reviews.
[61] A. Spanevello,et al. Inhalation therapy devices for the treatment of obstructive lung diseases: the history of inhalers towards the ideal inhaler. , 2020, European journal of internal medicine.
[62] Weilin Wang,et al. Inflammation-targeting polymeric nanoparticles deliver sparfloxacin and tacrolimus for combating acute lung sepsis. , 2020, Journal of controlled release : official journal of the Controlled Release Society.
[63] Pierre P. D. Kondiah,et al. The Design of Poly(lactide-co-glycolide) Nanocarriers for Medical Applications , 2020, Frontiers in Bioengineering and Biotechnology.
[64] J. González-Martín,et al. Dexamethasone treatment for the acute respiratory distress syndrome: a multicentre, randomised controlled trial. , 2020, The Lancet. Respiratory medicine.
[65] Gengfu Xiao,et al. Remdesivir and chloroquine effectively inhibit the recently emerged novel coronavirus (2019-nCoV) in vitro , 2020, Cell Research.
[66] A. Litonjua,et al. Asthma epidemiology and risk factors , 2020, Seminars in Immunopathology.
[67] H. Smits,et al. Modulating local airway immune responses to treat allergic asthma: lessons from experimental models and human studies , 2020, Seminars in Immunopathology.
[68] M. Bakhtiari,et al. ChABC-Loaded PLGA Nanoparticles: A Comprehensive Study on Biocompatibility, Functional Recovery, and Axonal Regeneration in Animal Model of Spinal Cord Injury. , 2020, International journal of pharmaceutics.
[69] Li-Hua Mo,et al. A20-OVA Nanoparticles Inhibit Allergic Asthma in a Murine Model , 2020, Inflammation.
[70] A. Cantin,et al. Despite Antagonism in vitro, Pseudomonas aeruginosa Enhances Staphylococcus aureus Colonization in a Murine Lung Infection Model , 2019, Front. Microbiol..
[71] M. Attimarad,et al. An Efficient, Lung-Targeted, Drug-Delivery System To Treat Asthma Via Microparticles , 2019, Drug design, development and therapy.
[72] A. Mohamed,et al. Pulmonary Delivery of Nanocomposite Microparticles (NCMPs) incorporating miR-146a for Treatment of COPD. , 2019, International journal of pharmaceutics.
[73] Orit Amsalem,et al. Nanocapsules embedded in microparticles for enhanced oral bioavailability and efficacy of Lopinavir as an anti-AIDS drug , 2019, Journal of drug targeting.
[74] J. D. Ospina-Villa,et al. Encapsulation of proteins from Leishmania panamensis into PLGA particles by a single emulsion-solvent evaporation method. , 2019, Journal of microbiological methods.
[75] M. Shafiee Ardestani,et al. Exotoxin A-PLGA nanoconjugate vaccine against Pseudomonas aeruginosa infection: protectivity in murine model , 2019, World journal of microbiology & biotechnology.
[76] Rania M. Hathout,et al. Formulation of Antimicrobial Tobramycin Loaded PLGA Nanoparticles via Complexation with AOT , 2019, Journal of functional biomaterials.
[77] J. Alcorn,et al. Host-Pathogen Interactions in Gram-Positive Bacterial Pneumonia , 2019, Clinical Microbiology Reviews.
[78] F. Ungaro,et al. Poly(lactide- co-glycolide) Nanoparticles for Prolonged Therapeutic Efficacy of Esculentin-1a-Derived Antimicrobial Peptides against Pseudomonas aeruginosa Lung Infection: in Vitro and in Vivo Studies. , 2019, Biomacromolecules.
[79] C. Zhang,et al. pH-Responsive Nanoparticles Targeted to Lungs for Improved Therapy of Acute Lung Inflammation/Injury. , 2019, ACS applied materials & interfaces.
[80] M. Groettrup,et al. Harnessing Dendritic Cells for Poly (D,L-lactide-co-glycolide) Microspheres (PLGA MS)—Mediated Anti-tumor Therapy , 2019, Front. Immunol..
[81] A. Goyal,et al. Recent advances in aerosolised drug delivery. , 2019, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[82] Shaoqi Qu,et al. Cefquinome-Loaded Microsphere Formulations in Protection against Pneumonia with Klebsiella pneumonia Infection and Inflammatory Response in Rats , 2019, Pharmaceutical Research.
[83] C. Bourlieu,et al. Variations in gastrointestinal lipases, pH and bile acid levels with food intake, age and diseases: Possible impact on oral lipid-based drug delivery systems. , 2019, Advanced drug delivery reviews.
[84] P. Turner,et al. Phage Therapy: A Renewed Approach to Combat Antibiotic-Resistant Bacteria. , 2019, Cell host & microbe.
[85] C. Cristallini,et al. Biodegradable microparticles designed to efficiently reach and act on cystic fibrosis mucus barrier. , 2019, Materials science & engineering. C, Materials for biological applications.
[86] X. Kong,et al. LncRNA Dnmt3aos regulates Dnmt3a expression leading to aberrant DNA methylation in macrophage polarization , 2019, bioRxiv.
[87] Yongzhong Du,et al. Sialic Acid-Functionalized PEG-PLGA Microspheres Loading Mitochondrial-Targeting-Modified Curcumin for Acute Lung Injury Therapy. , 2018, Molecular pharmaceutics.
[88] Sarwar Hossen,et al. Smart nanocarrier-based drug delivery systems for cancer therapy and toxicity studies: A review , 2018, Journal of advanced research.
[89] D. Kohane,et al. PLGA-encapsulation of the Pseudomonas aeruginosa PopB vaccine antigen improves Th17 responses and confers protection against experimental acute pneumonia. , 2018, Vaccine.
[90] Qingdi Zhu,et al. Recent advances of PLGA micro/nanoparticles for the delivery of biomacromolecular therapeutics. , 2018, Materials science & engineering. C, Materials for biological applications.
[91] Bhavna Hurgobin,et al. Insights into respiratory disease through bioinformatics , 2018, Respirology.
[92] J. Pokorski,et al. Poly(lactic-co-glycolic acid) devices: Production and applications for sustained protein delivery. , 2018, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[93] B. Mishra,et al. Preparation, characterization, and in vivo evaluation of nano formulations of ferulic acid in diabetic wound healing , 2018, Drug development and industrial pharmacy.
[94] Rajamani Lakshminarayanan,et al. Recent Advances in the Development of Antimicrobial Nanoparticles for Combating Resistant Pathogens , 2018, Advanced healthcare materials.
[95] C. Mirkin,et al. PLGA Spherical Nucleic Acids , 2018, Advanced materials.
[96] Edyta Swider,et al. Customizing poly(lactic-co-glycolic acid) particles for biomedical applications. , 2018, Acta biomaterialia.
[97] O. Baothman,et al. Implication of nano-antioxidant therapy for treatment of hepatocellular carcinoma using PLGA nanoparticles of rutin. , 2018, Nanomedicine.
[98] C. Brightling,et al. Asthma , 2018, The Lancet.
[99] Daniel Brodie,et al. Acute Respiratory Distress Syndrome: Advances in Diagnosis and Treatment , 2018, JAMA.
[100] B. Narasimhan,et al. Intestinal organoids containing poly(lactic-co-glycolic acid) nanoparticles for the treatment of inflammatory bowel diseases. , 2017, Journal of biomedical materials research. Part A.
[101] Derek J. Williams,et al. Pediatric Community-Acquired Pneumonia in the United States , 2017, Infectious Disease Clinics of North America.
[102] B. Rubin,et al. Mucins, Mucus, and Goblet Cells , 2017, Chest.
[103] H. M. Nielsen,et al. The role of mucus as an invisible cloak to transepithelial drug delivery by nanoparticles. , 2017, Advanced drug delivery reviews.
[104] N. Joo,et al. Progress in understanding mucus abnormalities in cystic fibrosis airways. , 2017, Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society.
[105] Gianni Ciofani,et al. Smart Materials Meet Multifunctional Biomedical Devices: Current and Prospective Implications for Nanomedicine , 2017, Front. Bioeng. Biotechnol..
[106] Shichao Wu,et al. Dual-drug loaded nanoneedles with targeting property for efficient cancer therapy , 2017, Journal of Nanobiotechnology.
[107] Hassan A Almoustafa,et al. Technical aspects of preparing PEG-PLGA nanoparticles as carrier for chemotherapeutic agents by nanoprecipitation method. , 2017, International journal of pharmaceutics.
[108] Sumit Kumar,et al. PLGA-CTAB curcumin nanoparticles: Fabrication, characterization and molecular basis of anticancer activity in triple negative breast cancer cell lines (MDA-MB-231 cells). , 2017, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[109] D. K. Majumdar,et al. Enhancement of ocular efficacy of aceclofenac using biodegradable PLGA nanoparticles: formulation and characterization , 2017, Drug Delivery and Translational Research.
[110] C. Lehr,et al. Ciprofloxacin‐loaded PLGA nanoparticles against cystic fibrosis P. aeruginosa lung infections , 2017, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[111] Qinfu Zhao,et al. A comparison between sphere and rod nanoparticles regarding their in vivo biological behavior and pharmacokinetics , 2017, Scientific Reports.
[112] M. Rogers,et al. Short term use of oral corticosteroids and related harms among adults in the United States: population based cohort study , 2017, British Medical Journal.
[113] Jin-Ki Kim,et al. Enhancing the in vitro anticancer activity of albendazole incorporated into chitosan-coated PLGA nanoparticles. , 2017, Carbohydrate polymers.
[114] R. Upton,et al. Food, gastrointestinal pH, and models of oral drug absorption , 2017, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[115] J. Prados,et al. Folic acid-decorated and PEGylated PLGA nanoparticles for improving the antitumour activity of 5-fluorouracil. , 2017, International journal of pharmaceutics.
[116] Jiajia Zhu,et al. Preparation and testing of cefquinome-loaded poly lactic-co-glycolic acid microspheres for lung targeting , 2017, Drug delivery.
[117] P. Kantoff,et al. Cancer nanomedicine: progress, challenges and opportunities , 2016, Nature Reviews Cancer.
[118] F. Ahsan,et al. Aerosolizable modified‐release particles of montelukast improve retention and availability of the drug in the lungs , 2017, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[119] A. Halayko,et al. An Official American Thoracic Society Research Statement: Current Challenges Facing Research and Therapeutic Advances in Airway Remodeling , 2017, American journal of respiratory and critical care medicine.
[120] Jennifer I. Hare,et al. Challenges and strategies in anti-cancer nanomedicine development: An industry perspective. , 2017, Advanced drug delivery reviews.
[121] Gregg A. Duncan,et al. The Mucus Barrier to Inhaled Gene Therapy. , 2016, Molecular therapy : the journal of the American Society of Gene Therapy.
[122] P. Palange,et al. Cystic fibrosis , 2016, The Lancet.
[123] I. Roy,et al. Neutrophil targeted nano-drug delivery system for chronic obstructive lung diseases. , 2016, Nanomedicine : nanotechnology, biology, and medicine.
[124] G. Lina,et al. IVIG-mediated protection against necrotizing pneumonia caused by MRSA , 2016, Science Translational Medicine.
[125] S. Rice,et al. Biofilms: an emergent form of bacterial life , 2016, Nature Reviews Microbiology.
[126] J. Chen,et al. Development and assessment of countermeasure formulations for treatment of lung injury induced by chlorine inhalation. , 2016, Toxicology and applied pharmacology.
[127] A. J. Tavares,et al. Analysis of nanoparticle delivery to tumours , 2016 .
[128] P. Durie,et al. Cystic fibrosis from the gastroenterologist's perspective , 2016, Nature Reviews Gastroenterology &Hepatology.
[129] Anders Larsson,et al. Epidemiology, Patterns of Care, and Mortality for Patients With Acute Respiratory Distress Syndrome in Intensive Care Units in 50 Countries. , 2016, JAMA.
[130] H. Hartung,et al. Pseudomonas aeruginosa and Its Bacterial Components Influence the Cytokine Response in Thymocytes and Splenocytes , 2016, Infection and Immunity.
[131] Mingshi Yang,et al. Design of PLGA-based depot delivery systems for biopharmaceuticals prepared by spray drying. , 2016, International journal of pharmaceutics.
[132] Lingxue Kong,et al. Manufacturing Techniques and Surface Engineering of Polymer Based Nanoparticles for Targeted Drug Delivery to Cancer , 2016, Nanomaterials.
[133] J. S. Suk. Could recent advances in DNA-loaded nanoparticles lead to effective inhaled gene therapies? , 2016, Nanomedicine.
[134] R. Brandes,et al. Bimodal role of NADPH oxidases in the regulation of biglycan-triggered IL-1β synthesis. , 2016, Matrix biology : journal of the International Society for Matrix Biology.
[135] Andriy Kuzmov,et al. Nanotechnology approaches for inhalation treatment of lung diseases. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[136] E. Sadroddiny,et al. MicroRNAs in lung diseases: Recent findings and their pathophysiological implications. , 2015, Pulmonary pharmacology & therapeutics.
[137] J. F. Burrows,et al. Targeting Siglecs with a sialic acid–decorated nanoparticle abrogates inflammation , 2015, Science Translational Medicine.
[138] C. Goss,et al. Cystic fibrosis , 2015, Nature Reviews Disease Primers.
[139] R. Alon,et al. Leukocyte migration into inflamed tissues. , 2014, Immunity.
[140] J. Poole. Asthma is a major noncommunicable disease affecting over 230 million people worldwide and represents the most common chronic disease among children. , 2014, International immunopharmacology.
[141] M. Abdollahi,et al. Toxicity of nanomaterials; an undermined issue , 2014, DARU Journal of Pharmaceutical Sciences.
[142] Daniel G. Anderson,et al. Non-viral vectors for gene-based therapy , 2014, Nature Reviews Genetics.
[143] M. Petrek,et al. Novel Insights into miRNA in Lung and Heart Inflammatory Diseases , 2014, Mediators of inflammation.
[144] F. Huaux,et al. Lung inflammation in cystic fibrosis: pathogenesis and novel therapies. , 2014, Clinical biochemistry.
[145] Patrick Couvreur,et al. Nanoprecipitation and the "Ouzo effect": Application to drug delivery devices. , 2014, Advanced drug delivery reviews.
[146] Zhen Gu,et al. Emerging micro- and nanotechnology based synthetic approaches for insulin delivery. , 2014, Chemical Society reviews.
[147] D. Thornton,et al. Cystic fibrosis: an inherited disease affecting mucin-producing organs. , 2014, The international journal of biochemistry & cell biology.
[148] Jin Sun,et al. Emerging integrated nanohybrid drug delivery systems to facilitate the intravenous-to-oral switch in cancer chemotherapy. , 2014, Journal of controlled release : official journal of the Controlled Release Society.
[149] S. Stolnik,et al. PEGylated nanomedicines: recent progress and remaining concerns , 2014, Expert opinion on drug delivery.
[150] S. Mangal,et al. Development and characterization of surface modified PLGA nanoparticles for nasal vaccine delivery: effect of mucoadhesive coating on antigen uptake and immune adjuvant activity. , 2013, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[151] T. Ochiya,et al. RNAi Therapeutic Platforms for Lung Diseases , 2013, Pharmaceuticals.
[152] Arjun Srinivasan,et al. Antimicrobial-Resistant Pathogens Associated with Healthcare-Associated Infections Summary of Data Reported to the National Healthcare Safety Network at the Centers for Disease Control and Prevention, 2009–2010 , 2013, Infection Control & Hospital Epidemiology.
[153] C. Bear. 50 years ago in the Journal of Pediatrics: the effect of N-acetylcysteine on the viscosity of tracheobronchial secretions in cystic fibrosis of the pancreas. , 2013, The Journal of pediatrics.
[154] W. Hennink,et al. Activation of an immune-regulatory macrophage response and inhibition of lung inflammation in a mouse model of COPD using heat-shock protein alpha B-crystallin-loaded PLGA microparticles. , 2013, Biomaterials.
[155] E. Barcia,et al. Controlled release of rasagiline mesylate promotes neuroprotection in a rotenone-induced advanced model of Parkinson's disease. , 2012, International journal of pharmaceutics.
[156] A. Ma,et al. A20: linking a complex regulator of ubiquitylation to immunity and human disease , 2012, Nature Reviews Immunology.
[157] James E Bear,et al. PEGylated PRINT nanoparticles: the impact of PEG density on protein binding, macrophage association, biodistribution, and pharmacokinetics. , 2012, Nano letters.
[158] E. Ansorena,et al. Brain drug delivery systems for neurodegenerative disorders. , 2012, Current pharmaceutical biotechnology.
[159] J. Katz,et al. Survey of the prevalence of immunization non-compliance due to needle fears in children and adults. , 2012, Vaccine.
[160] Joonyoung Park,et al. Low molecular-weight chitosan as a pH-sensitive stealth coating for tumor-specific drug delivery. , 2012, Molecular pharmaceutics.
[161] C. Akdis. Therapies for allergic inflammation: refining strategies to induce tolerance , 2012, Nature Medicine.
[162] Frederick M Ausubel,et al. Host translational inhibition by Pseudomonas aeruginosa Exotoxin A Triggers an immune response in Caenorhabditis elegans. , 2012, Cell host & microbe.
[163] Hirenkumar K. Makadia,et al. Poly Lactic-co-Glycolic Acid ( PLGA ) as Biodegradable Controlled Drug Delivery Carrier , 2011 .
[164] M. Cazzola,et al. Novel bronchodilators for the treatment of chronic obstructive pulmonary disease. , 2011, Trends in pharmacological sciences.
[165] Douglas C Johnson,et al. Airway mucus function and dysfunction. , 2011, The New England journal of medicine.
[166] K. Lee,et al. Preparation of budesonide-loaded porous PLGA microparticles and their therapeutic efficacy in a murine asthma model. , 2011, Journal of controlled release : official journal of the Controlled Release Society.
[167] Peter In Pyo Park,et al. The design of flexible ciprofloxacin-loaded PLGA implants using a reversed phase separation/coacervation method. , 2011, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[168] H. Magnussen,et al. Reduced miR-146a increases prostaglandin E₂in chronic obstructive pulmonary disease fibroblasts. , 2010, American journal of respiratory and critical care medicine.
[169] Carlos Ortiz-de-Solorzano,et al. Sustained release of VEGF through PLGA microparticles improves vasculogenesis and tissue remodeling in an acute myocardial ischemia-reperfusion model. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[170] Peter J. Barnes,et al. Inhaled Corticosteroids in COPD: A Controversy , 2010, Respiration.
[171] J. Bonner. Nanoparticles as a potential cause of pleural and interstitial lung disease. , 2010, Proceedings of the American Thoracic Society.
[172] M Ferrari,et al. Size and shape effects in the biodistribution of intravascularly injected particles. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[173] Chun-Ming Huang,et al. Development of nanoparticles for antimicrobial drug delivery. , 2010, Current medicinal chemistry.
[174] Sei-Young Lee,et al. Shaping nano-/micro-particles for enhanced vascular interaction in laminar flows , 2009, Nanotechnology.
[175] C. Akdis,et al. Therapeutic manipulation of immune tolerance in allergic disease , 2009, Nature Reviews Drug Discovery.
[176] R. Donlan. Preventing biofilms of clinically relevant organisms using bacteriophage. , 2009, Trends in microbiology.
[177] J. Edwards,et al. Exploring the full spectrum of macrophage activation , 2008, Nature Reviews Immunology.
[178] Lai Yeng Lee,et al. PLGA/chitosan composites from a combination of spray drying and supercritical fluid foaming techniques: new carriers for DNA delivery. , 2008, Journal of controlled release : official journal of the Controlled Release Society.
[179] A. Salem,et al. Comparative study of poly (lactic-co-glycolic acid)-poly ethyleneimine-plasmid DNA microparticles prepared using double emulsion methods , 2008, Journal of microencapsulation.
[180] B. Pulliam,et al. Nanoparticles for drug delivery to the lungs. , 2007, Trends in biotechnology.
[181] M. Johnston,et al. A novel trans-lymphatic drug delivery system: implantable gelatin sponge impregnated with PLGA-paclitaxel microspheres. , 2007, Biomaterials.
[182] M. D. Blanco,et al. 5-Fluorouracil plasma levels and biodegradation of subcutaneously injected drug-loaded microspheres prepared by spray-drying poly(D,L-lactide) and poly(D,L-lactide-co-glycolide) polymers. , 2007, International journal of pharmaceutics.
[183] Peter R. Byron,et al. Inhaling medicines: delivering drugs to the body through the lungs , 2007, Nature Reviews Drug Discovery.
[184] Alberto Mantovani,et al. Transcriptional Profiling of the Human Monocyte-to-Macrophage Differentiation and Polarization: New Molecules and Patterns of Gene Expression1 , 2006, The Journal of Immunology.
[185] C. Bridges,et al. Severe Community-acquired Pneumonia Due to Staphylococcus aureus, 2003–04 Influenza Season , 2006, Emerging infectious diseases.
[186] Nicholas A Peppas,et al. Opsonization, biodistribution, and pharmacokinetics of polymeric nanoparticles. , 2006, International journal of pharmaceutics.
[187] C. Astete,et al. Synthesis and characterization of PLGA nanoparticles , 2006, Journal of biomaterials science. Polymer edition.
[188] S. Gordon,et al. Monocyte and macrophage heterogeneity , 2005, Nature Reviews Immunology.
[189] H. Heijerman. Infection and inflammation in cystic fibrosis: a short review. , 2005, Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society.
[190] K. Zhu,et al. Improvement of protein loading and modulation of protein release from poly(lactide-co-glycolide) microspheres by complexation of proteins with polyanions , 2004, Journal of microencapsulation.
[191] P. Giunchedi,et al. PLGA microspheres for the ocular delivery of a peptide drug, vancomycin using emulsification/spray-drying as the preparation method: in vitro/in vivo studies. , 2004, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[192] B. Gander,et al. Improving Stability and Release Kinetics of Microencapsulated Tetanus Toxoid by Co-Encapsulation of Additives , 1998, Pharmaceutical Research.
[193] J. Patton,et al. The lungs as a portal of entry for systemic drug delivery. , 2004, Proceedings of the American Thoracic Society.
[194] P. Hawkey,et al. An outbreak of a CTX-M-type β-lactamase-producing Klebsiella pneumoniae: the importance of using cefpodoxime to detect extended-spectrum β-lactamases , 2003 .
[195] N. Høiby. Understanding bacterial biofilms in patients with cystic fibrosis: current and innovative approaches to potential therapies. , 2002, Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society.
[196] S. Matalon,et al. Oxidant-antioxidant balance in acute lung injury. , 2002, Chest.
[197] S. Feng,et al. Fabrication, characterization and in vitro release of paclitaxel (Taxol) loaded poly (lactic-co-glycolic acid) microspheres prepared by spray drying technique with lipid/cholesterol emulsifiers. , 2001, Journal of controlled release : official journal of the Controlled Release Society.
[198] B. Gander,et al. Release kinetics and immunogenicity of parvovirus microencapsulated in PLA/PLGA microspheres. , 2001, International journal of pharmaceutics.
[199] M. Matthay,et al. The acute respiratory distress syndrome. , 1996, The New England journal of medicine.
[200] B. Gander,et al. Immunogenicity of single-dose diphtheria vaccines based on PLA/PLGA microspheres in guinea pigs. , 1999, Vaccine.
[201] P. D. Graham,et al. Phase inversion dynamics of PLGA solutions related to drug delivery. , 1999, Journal of controlled release : official journal of the Controlled Release Society.
[202] S. Davis,et al. PLGA nanoparticles prepared by nanoprecipitation: drug loading and release studies of a water soluble drug. , 1999, Journal of controlled release : official journal of the Controlled Release Society.
[203] J M Anderson,et al. Bovine serum albumin loaded poly(lactide-co-glycolide) microspheres: the influence of polymer purity on particle characteristics. , 1998, Journal of microencapsulation.
[204] B. Gander,et al. Drug microencapsulation by PLA/PLGA coacervation in the light of thermodynamics. 1. Overview and theoretical considerations. , 1998, Journal of pharmaceutical sciences.
[205] A. Fire,et al. Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegans , 1998, Nature.
[206] W. Risau,et al. Modulation of tight junction structure in blood-brain barrier endothelial cells. Effects of tissue culture, second messengers and cocultured astrocytes. , 1994, Journal of cell science.
[207] M. Levine,et al. Immunization of rabbits with enterotoxigenic E. coli colonization factor antigen (CFA/I) encapsulated in biodegradable microspheres of poly (lactide-co-glycolide). , 1993, Vaccine.
[208] R. Bodmeier,et al. Spontaneous formation of drug-containing acrylic nanoparticles. , 1991, Journal of microencapsulation.
[209] K. Suzuki,et al. Examination of protein sequence homologies. VI. The evolution of Escherichia coli L7/L12 equivalent ribosomal proteins ('A' proteins), and the tertiary structure. , 1989, Protein sequences & data analysis.
[210] A. Bulla,et al. Acute respiratory infections: a review. , 1978, Bulletin of the World Health Organization.