The global pulmonary drug delivery devices market size was worth USD 38.1 billion in 2021. This two volume Second Edition describes the anatomical, physiological, pharmaceutical, and technological aspects of delivery routes, found in areas like: Oral Ocular Dermal and transdermal Vaginal Colonic Oral mucosal Nasal Pulmonary ... Intratracheal administration is commonly used as a first approach in lung drug delivery in vivo. August 1, 2006. An attempt has also been made to assess the challenges and opportunities of pulmonary drug delivery. According to the report, the global pulmonary drug delivery devices market was valued at US$ 36,159.9 Mn in 2018 and is projected to expand at a CAGR of 2.7% from 2019 to 2027. gene delivery to the lung tissue, delivery of therapeutic enzymes like lysosomal enzymes, anti-thrombotic enzymes and antioxidant enzymes and delivery of anticancer agents [179]. Atomic force microscopy (AFM) is another microscopic method used for surface nanotopographical imaging, measurement of surface energy, and measurement of interparticulate forces (Mansour et al., 2009). In: Controlled Pulmonary Drug Delivery. The constraints involved with the delivery of APIs to both adult and paediatric patients are covered. This value is expected to reach USD 47.0 billion by 2026, growing at a CAGR of 4.3% from 2021 to 2026. Pulmonary drug delivery has attracted tremendous scientific and biomedical interest diseases, by virtue of enhanced local targeting and reduced systemic side effects with the administration of minute drug dosages. The quotient of dividing the FPD to ED is called “dispersibility” (Zeng et al., 2000). Julie Suman considers how the needs of the patient have driven advances in nasal drug delivery and looks at the latest developments and benefits of this method of drug delivery. However, since the withdrawal of Exubera from the market in 2007, the field of advanced pulmonary drug delivery, other than delivery of anti-asthma and bronchodilating drugs, has stagnated. In view of this enormous need, nanoparticles can provide the right therapeutic option for the treatment of variety of respiratory diseases [107]. The Handbook of Non-Invasive Drug Delivery Systems encompasses the broad field of non-invasive drug delivery systems that include drug delivery via topical, transdermal-passive, transdermal-active (device- aided enhanced penetration), trans ... However, researchers have preferred the pulmonary route over the latter [108, 109]. When attempting to mimic the bronchial epithelium, the two most commonly used and described cell lines are the Calu-3 cells (human airway epithelial cells) and the 16HBE14o- cells (human bronchial epithelial cells) when considering pulmonary drug delivery. By continuing you agree to the use of cookies. Pulmonary drug delivery has attracted tremendous scientific and biomedical interest in recent years and has progressed considerably within the context of local treatment for lung diseases, by virtue of enhanced local targeting and reduced systemic side effects with the administration of minute drug dosages. Hadeer M. Abdelaziz, ... Ahmed O. Elzoghby, in Nanotechnology-Based Targeted Drug Delivery Systems for Lung Cancer, 2019. The formulation had significant drug loading capacity (up to 97%), desirable biodegradation rates, and an effective sustained/constant release behavior. This fact, along with its involvement in multi-functional physiological roles, makes it an attractive pharmacological target to alleviate numerous mortality and morbidity associated disorders. Careers. Pulmonary drug delivery is the inhalation of drug formulation through the mouth and the further deposition of inhaled pharmacological agent in lower airways. Pulmonary route is also being increasingly exploited for the delivery of peptides and vaccines. Our broad range of pMDI technology platforms, including metering valves, dose counters, Breath Activated Inhalers (BAIs) and Dry Powder inhalers . From: The Microbiology of Respiratory System Infections, 2016. However, when cultivated under submerged conditions, Calu-3 cells demonstrate altered differentiation and permeability profiles compared with when they are cultivated under ALI conditions (Bol et al., 2014; Eixarch et al., 2010; Haghi et al., 2014; Sarmento et al., 2012; de Souza Carvalho et al., 2014; Zhu et al., 2010). This review discusses the drug carriers administered or intended to be administered into the lungs. Instant access to millions of ebooks, audiobooks, magazines, podcasts, and more. Unable to load your collection due to an error, Unable to load your delegates due to an error. A summary of various nanoparticulate carriers, intended for targeting the lung, has been presented in Table 1.5. Recent studies showed that nanoparticles in pulmonary infection treatment can influence immune system, can create oxidative stress, and can cause genotoxicity.64, Studies on nanoparticles for treatment of pulmonary infectious diseases is an emerging field of interest, not only for the treatment of respiratory tract conditions but also for systemic administration of drug delivery for treatment of pulmonary disease. The Microbiology of Respiratory System Infections, Handbook of Non-Invasive Drug Delivery Systems, In this chapter, a brief outline of the human respiratory system is provided, and mechanisms of drug particle deposition in human lungs, various, Solid Lipid Nanoparticle-Based Drug Delivery for Lung Cancer, Nanotechnology-Based Targeted Drug Delivery Systems for Lung Cancer, Basics of Crystallization Process Applied in Drug Exploration, Lalu et al., 2017; Maheshwari et al., 2015a; Sharma et al., 2015, Therapeutic nanostructures for pulmonary drug delivery, Hamishehkar et al., 2012; Pilcer et al., 2012, Pulmonary Administration of Biodegradable Drug Nanocarriers for More Efficacious Treatment of Fungal Infections in Lungs: Insights Based on Recent Findings, Multifunctional Systems for Combined Delivery, Biosensing and Diagnostics, Cell-based in vitro models for pulmonary permeability studies, Concepts and Models for Drug Permeability Studies, When attempting to mimic the bronchial epithelium, the two most commonly used and described cell lines are the Calu-3 cells (human airway epithelial cells) and the 16HBE14o- cells (human bronchial epithelial cells) when considering, Forbes, Shah, Martin, & Lansley, 2003; Geys, Nemery, & Hoet, 2007; Haghi et al., 2014; Nichols et al., 2013; Sarmento et al., 2012; de Souza Carvalho et al., 2014; Zhu, Chidekel, & Shaffer, 2010, Geys et al., 2007; Haghi et al., 2014; Nichols et al., 2013; Sarmento et al., 2012, Bol et al., 2014; Eixarch et al., 2010; Haghi et al., 2014; Sarmento et al., 2012; de Souza Carvalho et al., 2014; Zhu et al., 2010, Forbes et al., 2003; Haghi et al., 2014; Sarmento et al., 2012; Zhu et al., 2010, Haghi et al., 2014; Hittinger et al., 2014; de Souza Carvalho et al., 2014, Foster, Oster, Mayer, Avery, & Audus, 1998; Haghi et al., 2014; Hermanns, Unger, Kehe, Peters, & Kirkpatrick, 2004; Hittinger et al., 2014; Salomon et al., 2014; Sarmento et al., 2012; de Souza Carvalho et al., 2014, Haghi et al., 2014; Hittinger et al., 2014; Sarmento et al., 2012; de Souza Carvalho et al., 2014; Stewart, Torr, Mohd Jamili, Bosquillon, & Sayers, 2012, The pulmonary vasculature is susceptible to a plethora of pathologies. Global Pulmonary Drug Delivery Market Scope and Market Size. Pulmonary drug delivery is primarily used to treat conditions of the airways, delivering locally acting drugs directly to their site of action. Dry powder Inhaler Device- Yogesh Chaudhari, targeted drug delivery system to respiratory system. A variety of metal and metal oxide nanoparticles, such as, silver, gold, copper, titanium oxides, and so on have been successfully exploited for, Nanoparticulate systems as drug carriers: the need, Chitosan chloride (HTCC) maximizes mucoadhesive properties of chitosan by extending their residence in lungs after inhalation without being affected by variations in pH, Mannitol improves the aerosolization profile of DPI of ETB-SLNs (MMAD 3.93, High-pressure homogenization/spray drying, Compared to TPGS, DSPE–mPEG-2000 significantly upgrades lipid organization and minimizes sticking of particles of SLMs, thus resulting in acceptable MMAD 2.3, Hexylcyanoacrylate and albumin nanoparticles, lnterleukin-4 antisense oligodeoxynucleotides, Antisense oligonucleotide 2’-0-methyl-RNA, HLA-A*0201-restricted T-cell epitopes from Mycobacterium tuberculosis, VlJns plasmid encoding antigen 85B from M. tuberculosis. Nanosuspensions could be utilized in all available types of nebulizer.81, Aggarwal et al.80 studied antitubercular drugs, for example, pyrazinamide, isoniazid, and rifampicin were integrated into various formulations of solid lipid ranged from 1.1 to 2.1 μm and these formulations were nebulized to guinea pigs orally for direct pulmonary delivery. Bethesda, MD 20894, Copyright These systems make it possible to use relatively small numbers of vector molecules to deliver substantial amounts of a drug to the target. Delivery of drugs directly to their site of action reduces the dose needed to produce a pharmacological effect. Nasal & Pulmonary Drug Delivery119. Muhammad Usman Akbar, ... Zubair Khaliq, in Bionanocomposites, 2020. Expert Opin Drug Deliv. 10.1615/critrevtherdrugcarriersyst.v19.i45.40. Journal of Aerosol Medicine and Pulmonary Drug Delivery. 2001;5(26):1-149. doi: 10.3310/hta5260. Sign up for a Scribd free trial to download now. As an example of their different characteristics, monolayers cultivated under ALI conditions have significantly lower trans-epithelial electric resistance values compared with submerged conditions (Geys et al., 2007; Haghi et al., 2014; Nichols et al., 2013; Sarmento et al., 2012). Found insideIn response, this third edition takes a new approach to reflect the close integration of technology with its application. Drug Dev Ind Pharm. Found insideWritten by experts in the field, this volume in the Advances in Pharmaceutical Product Development and Research series deepens our understanding of dosage form design parameters. To convey a sufficient dose of drug to the lungs, suitable drug carriers are required. They synthesized PLGA–curcumin nanoparticles with chitosan or chitosan-grafted PEG. On the contrary, BEAS-2B has the downside of forming monolayers with a weak barrier function and without TJs (Haghi et al., 2014; Hittinger et al., 2014; Sarmento et al., 2012; de Souza Carvalho et al., 2014; Stewart, Torr, Mohd Jamili, Bosquillon, & Sayers, 2012). This section reviews classical antimicrobial and phytomedical approaches as well as the application of nanotechnology against respiratory pathogens. This exhaustive reference-the first book of its kind to describe in detail the functionality of the human respiratory tract and its impact on both local and systemic delivery of biotherapeutic and macromolecular drug systems-offers ... Surface characteristics of an inhaled particle are another important parameter that can be seen via SEM, that is, fluffy and feathery particles tend to be suspended on the inspired air flow and reach the deep lungs. Drug may not be stable in vivo. The advantages of inhalation Inhaled drugs reach the site of disease directly, making them more effective and reducing their adverse effects as less of the drugs reach the systemic . There are many other methods, such as differential scanning calorimetry (DSC), inverse gas chromatography (IGC), and Karl Fischer titration, and so forth in order to evaluate thermal behavior, surface characteristics, and other aspects of nanoparticulate aerosols. Found insideThe book deals with the synthesis and characterization of hydrogels specifically used as drug delivery systems. Comparison of the effectiveness of inhaler devices in asthma and chronic obstructive airways disease: a systematic review of the literature. Keywords:Pulmonary drug delivery, targeted drug delivery, delivery devices . Mucociliary clearance diminishes the retention time of drugs within the lungs that may affect the pharmacological efficacy of the slowly absorbed drugs. The author reviews the issues specific to developing drugs designed for pulmonary delivery and considers how-with the right knowledge and expertise-these challenges can be . Jet-milling micronization has a poor control on essential product characteristics like particle size, along with its shape, charge, and morphology. Some of these materials in detail, reviewing their potential and usage in drug delivery by the pulmonary may! Of Pharmaceutics ] the latter [ 108, 109 ] classical antimicrobial phytomedical... Increasingly complex as in certain instances the degradation products of nanoparticle matrix each... Recently advanced formulations employing nanoparticles as therapeutic carriers for the delivery of progesterone was developed powder inhalers considered addressing. Other words FPF can be the mouth and the drug–mucus interactions amount of chitosan progesterone!, Search history, and Ali Nokhodchi it has been limited to slides you want to go back later! 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