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1.
AAPS PharmSciTech ; 25(5): 115, 2024 May 16.
Article En | MEDLINE | ID: mdl-38755324

More than 1 billion people worldwide suffer from hypertension; therefore, hypertension management has been categorized as a global health priority. Losartan potassium (LP) is an antihypertensive drug with a limited oral bioavailability of about 33% since it undergoes the initial metabolic cycle. Thus, nasal administration is a unique route to overcome first-pass metabolism. The investigation focused on the potential effects of LP-loaded spanlastic vesicles (SNVs) on LP pharmacodynamics and pharmacokinetic parameters, utilizing a thin-film hydration methodology established on a 3122 full factorial design. Entrapment efficiency (EE%) ranged from 39.8 ± 3.87.8 to 83.8 ± 2.92% for LP-SNVs. Vesicle size (VS) varied from 205.5 ± 6.5.10 to 445.1 ± 13.52 nm, and the percentage of LP released after 8 h (Q8h) ranged from 30.8 ± 3.10 to 68.8 ± 1.45%. LP permeated through the nasal mucosa during 24 h and flocculated from 194.1 ± 4.90 to 435.3 ± 13.53 µg/cm2. After twenty-four hours, the optimal LP-SNVs in-situ gel showed 2.35 times more permeation through the nasal mucosa than the LP solution. It also lowered systolic blood pressure, so it is thought to be better than the reference formulation in terms of pharmacodynamics. The pharmacokinetics studies demonstrated that the intranasal LP-SNVs gel boosted its bioavailability approximately 6.36 times compared to the oral LP solution. Our research showed that intranasal LP-SNVs could be a good nanoplatform because they are well-tolerated and have possible pharmacokinetics and pharmacodynamics.


Antihypertensive Agents , Gels , Hypertension , Losartan , Losartan/pharmacokinetics , Losartan/administration & dosage , Losartan/pharmacology , Antihypertensive Agents/pharmacokinetics , Antihypertensive Agents/administration & dosage , Antihypertensive Agents/pharmacology , Animals , Hypertension/drug therapy , Male , Rats , Biological Availability , Administration, Intranasal , Nanoparticles/chemistry , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Particle Size , Angiotensin II/pharmacokinetics , Angiotensin II/administration & dosage , Angiotensin II/pharmacology , Blood Pressure/drug effects , Rats, Wistar , Chemistry, Pharmaceutical/methods
2.
PLoS One ; 19(5): e0285655, 2024.
Article En | MEDLINE | ID: mdl-38753593

BACKGROUND: Chronic rhinosinusitis (CRS) is an inflammatory disease affecting the sinuses or nose. Persistent inflammatory responses can lead to tissue remodeling, which is a pathological characteristics of CRS. Activation of fibroblasts in the nasal mucosal stroma, differentiation and collagen deposition, and subepithelial fibrosis have been associated with CRS. OBJECTIVES: We aimed to assess the inhibitory effects of doxycycline and deoxycholic acid-polyethyleneimine conjugate (DA3-Doxy) on myofibroblast differentiation and extracellular matrix (ECM) production in nasal fibroblasts stimulated with TGF-ß1. METHODS: To enhance efficacy, we prepared DA3-Doxy using a conjugate of low-molecular-weight polyethyleneimine (PEI) (MW 1800) and deoxycholic acid (DA) and Doxy. The synthesis of the DA3-Doxy polymer was confirmed using nuclear magnetic resonance, and the critical micelle concentration required for cationic micelle formation through self-assembly was determined. Subsequently, the Doxy loading efficiency of DA3 was assessed. The cytotoxicity of Doxy, DA3, PEI, and DA-Doxy in nasal fibroblasts was evaluated using the WST-1 assay. The anti-tissue remodeling and anti-inflammatory effects of DA3-Doxy and DA3 were examined using real-time polymerase chain reaction (Real-time PCR), immunocytochemistry, western blot, and Sircol assay. RESULTS: Both DA3 and DA3-Doxy exhibited cytotoxicity at 10 µg/ml in nasal fibroblasts. Doxy partially inhibited α-smooth muscle actin, collagen types I and III, and fibronectin. However, DA3-Doxy significantly inhibited α-SMA, collagen types I and III, and fibronectin at 5 µg/ml. DA3-Doxy also modulated TGF-ß1-induced changes in the expression of MMP 1, 2, and 9. Nonetheless, TGF-ß1-induced expression of MMP3 was further increased by DA3-Doxy. The expression of TIMP 1 and 2 was partially reduced with 5 µg/ml DA3-Doxy. CONCLUSIONS: Although initially developed for the delivery of genetic materials or drugs, DA3 exhibits inhibitory effects on myofibroblast differentiation and ECM production. Therefore, it holds therapeutic potential for CRS, and a synergistic effect can be expected when loaded with CRS treatment drugs.


Cell Differentiation , Deoxycholic Acid , Doxycycline , Fibroblasts , Polyethyleneimine , Humans , Polyethyleneimine/chemistry , Polyethyleneimine/pharmacology , Deoxycholic Acid/chemistry , Deoxycholic Acid/pharmacology , Fibroblasts/drug effects , Fibroblasts/metabolism , Cell Differentiation/drug effects , Doxycycline/pharmacology , Doxycycline/chemistry , Extracellular Matrix/metabolism , Extracellular Matrix/drug effects , Transforming Growth Factor beta1/metabolism , Myofibroblasts/drug effects , Myofibroblasts/metabolism , Nasal Mucosa/drug effects , Nasal Mucosa/metabolism , Nasal Mucosa/cytology , Actins/metabolism
3.
Am J Vet Res ; 85(6)2024 Jun 01.
Article En | MEDLINE | ID: mdl-38697189

OBJECTIVE: To examine the potential of galangin in a mouse model of ovalbumin (OVA)-induced allergic rhinitis (AR), as chronic AR, induced by immunoglobulin-E (IgE), leads to histamine release and nasal inflammation, and although galangin exhibits antiasthmatic and anti-inflammatory potential, its effect on AR is yet to be investigated. ANIMALS: 126 BALB/c mice. METHODS: AR induction involved sensitizing female mice with OVA (5%, 500 µL, IP) for 14 days. Post OVA challenge, the mice were divided into 7 groups (n = 18/group), including normal, AR control, montelukast (10 mg/kg), galangin (5, 10, and 20 mg/kg), and per se (galangin [20 mg/kg] treatment. Various outcomes were evaluated, including nasal symptoms, histopathology, biochemistry, and nasal lavage fluid inflammatory cytokines and signaling pathways in nasal mucosal to assess galangin potential in AR. RESULTS: In AR mice, galangin (10 and 20 mg/kg) significantly (P < .05) reduced sneezing, rubbing, and nasal discharge post-OVA challenge. Galangin treatment attenuated (P < .05) elevated serum histamine, ß-hexosaminidase, IgE, and Immunoglobulin G1 levels in AR control mice. Additionally, galangin significantly (P < .05) decreased OVA-induced alterations in IL-4, IL-6, IL-13, and interferon-γ levels in nasal lavage fluid compared to AR control mice. Western blot analysis demonstrated that galangin lowered OVA-induced AR by significantly (P < .05) downregulating the phosphorylated protein kinase B and mammalian target of rapamycin-protein expressions while markedly (P < .05) upregulating the glycogen synthase kinase-3ß protein expressions in nasal mucosal. Galangin also significantly ameliorated (P < .05) the OVA-induced histological aberrations in the nasal mucosa, reflected by reduced eosinophil infiltration, hyperplasia, and edema. CLINICAL RELEVANCE: Galangin exhibits antihistaminic and anti-inflammatory effects in AR mice by regulating IgE-mediated histamine and inflammatory release and modulating the phosphatidylinositol 3-kinase/Ak strain transforming/mammalian target of rapamycin pathways.


Flavonoids , Mice, Inbred BALB C , Ovalbumin , Rhinitis, Allergic , Animals , Flavonoids/pharmacology , Flavonoids/therapeutic use , Mice , Female , Rhinitis, Allergic/drug therapy , Rhinitis, Allergic/chemically induced , Phosphatidylinositol 3-Kinases/metabolism , Signal Transduction/drug effects , Proto-Oncogene Proteins c-akt/metabolism , Disease Models, Animal , Quinolines/pharmacology , Quinolines/therapeutic use , Cytokines/metabolism , Nasal Mucosa/drug effects , Immunoglobulin E/blood , Acetates , Cyclopropanes , Sulfides
4.
Inhal Toxicol ; 36(4): 250-260, 2024 Apr.
Article En | MEDLINE | ID: mdl-38738559

OBJECTIVE: The purpose of these studies was to investigate the uptake of atrazine across the nasal mucosa to determine whether direct transport to the brain through the olfactory epithelium is likely to occur. These studies were undertaken to provide important new information about the potential for the enhanced neurotoxicity of herbicides following nasal inhalation. MATERIALS AND METHODS: Transport of atrazine from aqueous solution and from commercial atrazine-containing herbicide products was assessed using excised nasal mucosal tissues. The permeation rate and the role of membrane transporters in the uptake of atrazine across the nasal mucosa were also investigated. Histological examination of the nasal tissues was conducted to assess the effects of commercial atrazine-containing products on nasal tissue morphology. RESULTS: Atrazine showed high flux across both nasal respiratory and olfactory tissues, and efflux transporters were found to play an essential role in limiting its uptake at low exposure concentrations. Commercial atrazine-containing herbicide products showed remarkably high transfer across the nasal tissues, and histological evaluation showed significant changes in the morphology of the nasal epithelium following exposure to the herbicide products. DISCUSSION: Lipophilic herbicides such as atrazine can freely permeate across the nasal mucosa despite the activity of efflux transporters. The adjuvant compounds in commercial herbicide products disrupt the nasal mucosa's epithelial barrier, resulting in even greater atrazine permeation across the tissues. The properties of the herbicide itself and those of the formulated products play crucial roles in the potential for the enhanced neurotoxicity of herbicides following nasal inhalation.


Atrazine , Herbicides , Nasal Mucosa , Atrazine/toxicity , Atrazine/pharmacokinetics , Herbicides/toxicity , Herbicides/pharmacokinetics , Nasal Mucosa/drug effects , Nasal Mucosa/metabolism , Animals , Membrane Transport Proteins/metabolism , Male , Administration, Intranasal , Nasal Absorption/drug effects
5.
Eur J Pharm Sci ; 197: 106766, 2024 Jun 01.
Article En | MEDLINE | ID: mdl-38615970

One of the most frequent causes of respiratory infections are viruses. Viruses reaching the airways can be absorbed by the human body through the respiratory mucosa and mainly infect lung cells. Several viral infections are not yet curable, such as coronavirus-2 (SARS-CoV-2). Furthermore, the side effect of synthetic antiviral drugs and reduced efficacy against resistant variants have reinforced the search for alternative and effective treatment options, such as plant-derived antiviral molecules. Curcumin (CUR) and quercetin (QUE) are two natural compounds that have been widely studied for their health benefits, such as antiviral and anti-inflammatory activity. However, poor oral bioavailability limits the clinical applications of these natural compounds. In this work, nanoemulsions (NE) co-encapsulating CUR and QUE designed for nasal administration were developed as promising prophylactic and therapeutic treatments for viral respiratory infections. The NEs were prepared by high-pressure homogenization combined with the phase inversion temperature technique and evaluated for their physical and chemical characteristics. In vitro assays were performed to evaluate the nanoemulsion retention into the porcine nasal mucosa. In addition, the CUR and QUE-loaded NE antiviral activity was tested against a murine ß-COV, namely MHV-3. The results evidenced that CUR and QUE loaded NE had a particle size of 400 nm and retention in the porcine nasal mucosa. The antiviral activity of the NEs showed a percentage of inhibition of around 99 %, indicating that the developed NEs has interesting properties as a therapeutic and prophylactic treatment against viral respiratory infections.


Administration, Intranasal , Antiviral Agents , Curcumin , Emulsions , Quercetin , Curcumin/administration & dosage , Curcumin/pharmacology , Curcumin/chemistry , Quercetin/administration & dosage , Quercetin/pharmacology , Quercetin/chemistry , Animals , Antiviral Agents/administration & dosage , Antiviral Agents/pharmacology , Antiviral Agents/chemistry , Mice , Nanoparticles/administration & dosage , Nanoparticles/chemistry , Swine , Respiratory Tract Infections/drug therapy , Respiratory Tract Infections/virology , Respiratory Tract Infections/prevention & control , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Nasal Mucosa/virology , SARS-CoV-2/drug effects , COVID-19 Drug Treatment , Humans
6.
Proc Natl Acad Sci U S A ; 121(18): e2319566121, 2024 Apr 30.
Article En | MEDLINE | ID: mdl-38648490

Respiratory virus infections in humans cause a broad-spectrum of diseases that result in substantial morbidity and mortality annually worldwide. To reduce the global burden of respiratory viral diseases, preventative and therapeutic interventions that are accessible and effective are urgently needed, especially in countries that are disproportionately affected. Repurposing generic medicine has the potential to bring new treatments for infectious diseases to patients efficiently and equitably. In this study, we found that intranasal delivery of neomycin, a generic aminoglycoside antibiotic, induces the expression of interferon-stimulated genes (ISGs) in the nasal mucosa that is independent of the commensal microbiota. Prophylactic or therapeutic administration of neomycin provided significant protection against upper respiratory infection and lethal disease in a mouse model of COVID-19. Furthermore, neomycin treatment protected Mx1 congenic mice from upper and lower respiratory infections with a highly virulent strain of influenza A virus. In Syrian hamsters, neomycin treatment potently mitigated contact transmission of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). In healthy humans, intranasal application of neomycin-containing Neosporin ointment was well tolerated and effective at inducing ISG expression in the nose in a subset of participants. These findings suggest that neomycin has the potential to be harnessed as a host-directed antiviral strategy for the prevention and treatment of respiratory viral infections.


Administration, Intranasal , Antiviral Agents , Neomycin , SARS-CoV-2 , Animals , Neomycin/pharmacology , Neomycin/administration & dosage , Mice , Humans , Antiviral Agents/pharmacology , Antiviral Agents/administration & dosage , SARS-CoV-2/immunology , SARS-CoV-2/drug effects , COVID-19/immunology , COVID-19/prevention & control , COVID-19/virology , Respiratory Tract Infections/immunology , Respiratory Tract Infections/drug therapy , Respiratory Tract Infections/virology , Respiratory Tract Infections/prevention & control , Nasal Mucosa/immunology , Nasal Mucosa/virology , Nasal Mucosa/drug effects , Disease Models, Animal , COVID-19 Drug Treatment , Mesocricetus , Female , Influenza A virus/drug effects , Influenza A virus/immunology
7.
Int J Biol Macromol ; 267(Pt 2): 131491, 2024 May.
Article En | MEDLINE | ID: mdl-38599435

Quetiapine hemifumarate (QF) delivery to the CNS via conventional formulations is challenging due to poor solubility and lower oral bioavailability (9 %). Similarly, many other second-generation antipsychotics, such as olanzapine, clozapine, and paliperidone, have also shown low oral bioavailability of <50 %. Hence, the present work was intended to formulate QF-loaded biodegradable PLGA-NPs with appropriate surface charge modification through poloxamer-chitosan and investigate its targeting potential on RPMI-2650 cell lines to overcome the limitations of conventional therapies. QF-loaded poloxamer-chitosan-PLGA in-situ gel (QF-PLGA-ISG) was designed using emulsification and solvent evaporation techniques. Developed QF-PLGA-ISG were subjected to evaluation for particle size, PDI, zeta potential, ex-vivo mucoadhesion, entrapment efficiency (%EE), and drug loading, which revealed 162.2 nm, 0.124, +20.5 mV, 52.4 g, 77.5 %, and 9.7 %, respectively. Additionally, QF-PLGA formulation showed >90 % release within 12 h compared to 80 % of QF-suspension, demonstrating that the surfactant with chitosan-poloxamer polymers could sustainably release medicine across the membrane. Ex-vivo hemolysis study proved that developed PLGA nanoparticles did not cause any hemolysis compared to negative control. Further, in-vitro cellular uptake and transepithelial permeation were assessed using the RPMI-2650 nasal epithelial cell line. QF-PLGA-ISG not only improved intracellular uptake but also demonstrated a 1.5-2-fold increase in QF transport across RPMI-2650 epithelial monolayer. Further studies in the EpiNasal™ 3D nasal tissue model confirmed the safety and efficacy of the developed QF-PLGA-ISG formulation with up to a 4-fold increase in transport compared to plain QF after 4 h. Additionally, histological reports demonstrated the safety of optimized formulation. Finally, favorable outcomes of IN QF-PLGA-ISG formulation could provide a novel platform for safe and effective delivery of QF in schizophrenic patients.


Administration, Intranasal , Chitosan , Drug Carriers , Nanoparticles , Polylactic Acid-Polyglycolic Acid Copolymer , Quetiapine Fumarate , Chitosan/chemistry , Polylactic Acid-Polyglycolic Acid Copolymer/chemistry , Nanoparticles/chemistry , Quetiapine Fumarate/pharmacokinetics , Quetiapine Fumarate/administration & dosage , Quetiapine Fumarate/chemistry , Quetiapine Fumarate/pharmacology , Humans , Drug Carriers/chemistry , Drug Liberation , Particle Size , Animals , Cell Line , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects
8.
Environ Toxicol Pharmacol ; 108: 104459, 2024 Jun.
Article En | MEDLINE | ID: mdl-38685369

Non-smokers exposed to second-hand smoke (SHS) present risk of developing tobacco smoke-associated pathologies. To investigate the airway molecular response to SHS exposure that could be used in health risk assessment, comparative shotgun proteomics was performed on nasal epithelium from a group of healthy restaurant workers, non-smokers (never and former) exposed and not exposed to SHS in the workplace. HIF1α-glycolytic targets (GAPDH, TPI) and proteins related to xenobiotic metabolism, cell proliferation and differentiation leading to cancer (ADH1C, TUBB4B, EEF2) showed significant modulation in non-smokers exposed. In never smokers exposed, enrichment of glutathione metabolism pathway and EEF2-regulating protein synthesis in genotoxic response were increased, while in former smokers exposed, proteins (LYZ, ATP1A1, SERPINB3) associated with tissue damage/regeneration, apoptosis inhibition and inflammation that may lead to asthma, COPD or cancer, were upregulated. The identified proteins are potential response and susceptibility/risk biomarkers for SHS exposure.


Nasal Mucosa , Occupational Exposure , Proteomics , Tobacco Smoke Pollution , Humans , Tobacco Smoke Pollution/adverse effects , Occupational Exposure/adverse effects , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Adult , Male , Restaurants , Female , Middle Aged
9.
Sci Bull (Beijing) ; 69(9): 1249-1262, 2024 May 15.
Article En | MEDLINE | ID: mdl-38522998

Adequate drug delivery across the blood-brain barrier (BBB) is a critical factor in treating central nervous system (CNS) disorders. Inspired by swimming fish and the microstructure of the nasal cavity, this study is the first to develop swimming short fibrous nasal drops that can directly target the nasal mucosa and swim in the nasal cavity, which can effectively deliver drugs to the brain. Briefly, swimming short fibrous nasal drops with charged controlled drug release were fabricated by electrospinning, homogenization, the π-π conjugation between indole group of fibers, the benzene ring of leucine-rich repeat kinase 2 (LRRK2) inhibitor along with charge-dipole interaction between positively charged poly-lysine (PLL) and negatively charged surface of fibers; this enabled these fibers to stick to nasal mucosa, prolonged the residence time on mucosa, and prevented rapid mucociliary clearance. In vitro, swimming short fibrous nasal drops were biocompatible and inhibited microglial activation by releasing an LRRK2 inhibitor. In vivo, luciferase-labelled swimming short fibrous nasal drops delivered an LRRK2 inhibitor to the brain through the nasal mucosa, alleviating cognitive dysfunction caused by sepsis-associated encephalopathy by inhibiting microglial inflammation and improving synaptic plasticity. Thus, swimming short fibrous nasal drops is a promising strategy for the treatment of CNS diseases.


Administration, Intranasal , Nasal Mucosa , Animals , Administration, Intranasal/methods , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Blood-Brain Barrier/metabolism , Blood-Brain Barrier/drug effects , Drug Delivery Systems/methods , Mice , Nasal Cavity/drug effects , Nasal Cavity/metabolism , Polylysine/chemistry , Polylysine/analogs & derivatives , Swimming , Male , Brain/metabolism , Brain/drug effects , Brain/pathology , Mucociliary Clearance/drug effects , Microglia/drug effects , Microglia/metabolism , Humans
10.
Braz J Otorhinolaryngol ; 90(3): 101399, 2024.
Article En | MEDLINE | ID: mdl-38442638

OBJECTIVES: Montelukast is a well-known leukotriene receptor antagonist commonly used in treating allergic rhinitis and asthma. Omega-3 fatty acid is also known as an antiallergic and immunomodulator molecule. This study aimed to elucidate the efficacy of systemic montelukast and omega-3 fatty acid treatment in allergic rhinitis models in Wistar Hannover rats. METHODS: This research was conducted on 28 healthy Wistar Hannover rats weighing 250-350 g. After establishing the allergic rhinitis model, nasal symptoms were observed and scored, and the nasal mucosa of all rats was investigated histologically. Light microscopy was utilized to evaluate the degree of ciliary loss, goblet cell hyperplasia, vascular congestion, vascular proliferation, inflammatory cell infiltration, eosinophil infiltration, and hypertrophy in chondrocytes. RESULTS: As a result of the analysis of the data obtained from the study, it was determined that typical allergic rhinitis symptoms such as nasal scratching and sneezing were significantly reduced in the rats in the montelukast and omega-3 treated group, and these symptoms did not increase after repeated intranasal OVA-protease applications. Histological examinations after fish oil treatment did not reveal typical inflammatory changes in allergic rhinitis. None of the rats in the montelukast and omega-3 groups had any increase in goblet cells, whereas 14.3% of the rats in the control group and 28.6% of the rats in the allergic rhinitis group had mild increase. Last but not least, 71.4% of rats in the allergic rhinitis group had a moderate increase. The difference between the groups was statistically significant (p < 0.001). CONCLUSION: Regarding the outcomes of this research, it was observed that w-3 fatty acids had antiallergic effects, both histopathological and clinical, in the allergic rhinitis model. We believe that further randomized controlled trials incorporating larger cohorts are warranted to verify the use of omega-3 fatty acids in treating allergic rhinitis. The level of evidence of this article is Level 2.


Acetates , Cyclopropanes , Disease Models, Animal , Fatty Acids, Omega-3 , Fish Oils , Leukotriene Antagonists , Ovalbumin , Quinolines , Rats, Wistar , Rhinitis, Allergic , Sulfides , Animals , Cyclopropanes/therapeutic use , Sulfides/therapeutic use , Acetates/therapeutic use , Quinolines/therapeutic use , Fatty Acids, Omega-3/therapeutic use , Rhinitis, Allergic/drug therapy , Rhinitis, Allergic/pathology , Rats , Leukotriene Antagonists/therapeutic use , Fish Oils/therapeutic use , Male , Treatment Outcome , Nasal Mucosa/pathology , Nasal Mucosa/drug effects
11.
J Laryngol Otol ; 138(5): 520-526, 2024 May.
Article En | MEDLINE | ID: mdl-38380493

OBJECTIVE: To investigate epidermal growth factor, transforming growth factor-α and interleukin-8 production in nasal mucosa irrigated with hypertonic 2.3 per cent solution with algae extracts, in comparison to 0.9 per cent NaCl during the first two weeks after surgery for nasal polyposis, in relation to symptoms and local findings. METHODS: This prospective study included 20 nasal polyposis patients postoperatively irrigated with hypertonic solution and 20 nasal polyposis patients postoperatively irrigated with isotonic solution. We evaluated nasal symptom score, endoscopic score and mediator levels in nasal secretions before and after irrigation. RESULTS: Following treatment, nasal symptom score and endoscopic score were significantly lower in the hypertonic solution group (p = 0.023; p < 0.001, respectively). The increase in the epidermal growth factor and the decrease in the transforming growth factor-α and interleukin-8 concentration were higher in the hypertonic group (p < 0.001 for all mediators). CONCLUSION: Irrigation with a hypertonic solution was found to be more effective than an isotonic solution in nasal mucosa reparation.


Epidermal Growth Factor , Interleukin-8 , Nasal Lavage , Nasal Mucosa , Nasal Polyps , Seawater , Transforming Growth Factor alpha , Humans , Nasal Polyps/surgery , Nasal Polyps/metabolism , Male , Female , Prospective Studies , Interleukin-8/metabolism , Interleukin-8/analysis , Adult , Middle Aged , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Nasal Lavage/methods , Epidermal Growth Factor/analysis , Epidermal Growth Factor/metabolism , Transforming Growth Factor alpha/metabolism , Transforming Growth Factor alpha/analysis , Endoscopy/methods , Hypertonic Solutions , Aged , Young Adult
13.
J Pharm Sci ; 113(6): 1636-1644, 2024 Jun.
Article En | MEDLINE | ID: mdl-38281664

The administration of hydrophilic therapeutics has always been a great challenge because of their low bioavailability after administration. For this purpose, W/O/W microemulsion resulted to be a potential successful strategy for the delivery of hydrophilic compounds, interesting for the nasal mucosal therapy. Herein, an optimized biphasic W/O microemulsion was designed, through a preliminary screening, and it was inverted in a triphasic W/O/W microemulsion, intended for the nasal administration. In order to enhance the mucosal retention, surface modification of the biphasic W/O microemulsion was performed adding didodecyldimethylammonium bromide, and then converting the system into a cationic triphasic W/O/W microemulsion. The developed samples were characterized in terms of droplet size, polydispersity, zeta potential, pH and osmolality. The physical long-term stability was analyzed storing samples at accelerated conditions (40 ± 2 °C and 75 ± 5 % RH) for 6 months in a constant climate chamber, following ICH guidelines Q1A (R2). In order to verify the potential retention on the nasal mucosa, the two triphasic systems were analyzed in terms of mucoadhesive properties, measuring the in vitro interaction with mucin over time. Furthermore, fluorescein sodium salt was selected as a model hydrophilic drug to be encapsulated into the inner core of the two triphasic W/O/W microemulsions, and its release was analyzed compared to the free probe solution. The cytocompatibility of the two platforms was assessed on two cell lines, human fibroblasts HFF1 and Calu-3 cell lines, chosen as pre-clinical models for nasal and bronchial/tracheal airway epithelium.


Administration, Intranasal , Emulsions , Hydrophobic and Hydrophilic Interactions , Nasal Mucosa , Emulsions/chemistry , Nasal Mucosa/metabolism , Nasal Mucosa/drug effects , Humans , Drug Delivery Systems/methods , Quaternary Ammonium Compounds/chemistry , Cell Line , Particle Size , Water/chemistry , Fluorescein/administration & dosage , Fluorescein/pharmacokinetics , Fluorescein/chemistry
14.
Infect Control Hosp Epidemiol ; 44(3): 447-452, 2023 03.
Article En | MEDLINE | ID: mdl-35450544

OBJECTIVE: To assess the incidence rate of S. aureus colonization at baseline along with the mupirocin susceptibility (or resistance) rate in patients in a neonatal intensive care unit (NICU) and a pediatric intensive care unit (PICU) in conjunction with the implementation of universal decolonization as the standard of care. DESIGN: Prospective cohort study. SETTING: Children's Hospital of Michigan (CHM) inpatient intensive care units (ICUs). PARTICIPANTS: Newly admitted pediatric patients to the CHM NICU or PICU aged between 1 day and ≤21 years. INTERVENTIONS: Baseline and follow-up S. aureus screening cultures were obtained before patients underwent universal decolonization with mupirocin 2% antibiotic ointment (intranasal and umbilical) and chlorhexidine baths as standard of care to reduce CLABSI rates. RESULTS: Baseline S. aureus colonization rates of new admissions to the CHM NICU and PICU were high at 32% and 29%, respectively. Baseline mupirocin susceptibility to any S. aureus growth was 98.4%. All baseline culture isolates whether positive for MRSA or MSSA, with one exception, had minimum inhibitory concentrations (MICs) of ≤0.19 µg/mL. All follow-up study cultures after universal decolonization at 7 days or beyond with any S. aureus growth had mupirocin MICs of ≤0.125 µg/mL. CONCLUSIONS: Baseline S. aureus colonization rates of new admissions to the CHM ICUs were high as was baseline mupirocin susceptibility. Follow-up cultures, albeit limited in number, did not detect increasing mupirocin MICs over 1 year, despite broad mupirocin exposure due to the implementation of universal decolonization.


Drug Resistance, Bacterial , Intensive Care Units, Neonatal , Intensive Care Units, Pediatric , Mupirocin , Staphylococcus aureus , Staphylococcus aureus/drug effects , Mupirocin/pharmacology , Mupirocin/therapeutic use , Humans , Infant, Newborn , Child , Microbial Sensitivity Tests , Infant , Child, Preschool , Adolescent , Young Adult , Male , Female , Nasal Mucosa/drug effects , Nasal Mucosa/microbiology , Umbilical Cord/drug effects , Umbilical Cord/microbiology , Staphylococcal Infections/drug therapy , Staphylococcal Infections/microbiology , Cohort Studies , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Drug Resistance, Bacterial/drug effects
15.
Nature ; 615(7950): 134-142, 2023 03.
Article En | MEDLINE | ID: mdl-36470304

Preventing SARS-CoV-2 infection by modulating viral host receptors, such as angiotensin-converting enzyme 2 (ACE2)1, could represent a new chemoprophylactic approach for COVID-19 that complements vaccination2,3. However, the mechanisms that control the expression of ACE2 remain unclear. Here we show that the farnesoid X receptor (FXR) is a direct regulator of ACE2 transcription in several tissues affected by COVID-19, including the gastrointestinal and respiratory systems. We then use the over-the-counter compound z-guggulsterone and the off-patent drug ursodeoxycholic acid (UDCA) to reduce FXR signalling and downregulate ACE2 in human lung, cholangiocyte and intestinal organoids and in the corresponding tissues in mice and hamsters. We show that the UDCA-mediated downregulation of ACE2 reduces susceptibility to SARS-CoV-2 infection in vitro, in vivo and in human lungs and livers perfused ex situ. Furthermore, we reveal that UDCA reduces the expression of ACE2 in the nasal epithelium in humans. Finally, we identify a correlation between UDCA treatment and positive clinical outcomes after SARS-CoV-2 infection using retrospective registry data, and confirm these findings in an independent validation cohort of recipients of liver transplants. In conclusion, we show that FXR has a role in controlling ACE2 expression and provide evidence that modulation of this pathway could be beneficial for reducing SARS-CoV-2 infection, paving the way for future clinical trials.


Angiotensin-Converting Enzyme 2 , COVID-19 , Receptors, Virus , Ursodeoxycholic Acid , Animals , Humans , Mice , Angiotensin-Converting Enzyme 2/genetics , Angiotensin-Converting Enzyme 2/metabolism , COVID-19/metabolism , COVID-19/prevention & control , Receptors, Virus/genetics , Receptors, Virus/metabolism , Retrospective Studies , SARS-CoV-2/metabolism , COVID-19 Drug Treatment , Cricetinae , Transcription, Genetic , Ursodeoxycholic Acid/pharmacology , Lung/drug effects , Lung/metabolism , Organoids/drug effects , Organoids/metabolism , Liver/drug effects , Liver/metabolism , Nasal Mucosa/drug effects , Nasal Mucosa/metabolism , Registries , Reproducibility of Results , Liver Transplantation
16.
Proc Natl Acad Sci U S A ; 119(6)2022 02 08.
Article En | MEDLINE | ID: mdl-35074895

The development of small-molecules targeting different components of SARS-CoV-2 is a key strategy to complement antibody-based treatments and vaccination campaigns in managing the COVID-19 pandemic. Here, we show that two thiol-based chemical probes that act as reducing agents, P2119 and P2165, inhibit infection by human coronaviruses, including SARS-CoV-2, and decrease the binding of spike glycoprotein to its receptor, the angiotensin-converting enzyme 2 (ACE2). Proteomics and reactive cysteine profiling link the antiviral activity to the reduction of key disulfides, specifically by disruption of the Cys379-Cys432 and Cys391-Cys525 pairs distal to the receptor binding motif in the receptor binding domain (RBD) of the spike glycoprotein. Computational analyses provide insight into conformation changes that occur when these disulfides break or form, consistent with an allosteric role, and indicate that P2119/P2165 target a conserved hydrophobic binding pocket in the RBD with the benzyl thiol-reducing moiety pointed directly toward Cys432. These collective findings establish the vulnerability of human coronaviruses to thiol-based chemical probes and lay the groundwork for developing compounds of this class, as a strategy to inhibit the SARS-CoV-2 infection by shifting the spike glycoprotein redox scaffold.


Amino Alcohols/pharmacology , Angiotensin-Converting Enzyme 2/chemistry , Antiviral Agents/pharmacology , Phenyl Ethers/pharmacology , Receptors, Virus/chemistry , SARS-CoV-2/drug effects , Spike Glycoprotein, Coronavirus/chemistry , Sulfhydryl Compounds/pharmacology , Allosteric Regulation , Amino Alcohols/chemistry , Angiotensin-Converting Enzyme 2/antagonists & inhibitors , Angiotensin-Converting Enzyme 2/genetics , Angiotensin-Converting Enzyme 2/metabolism , Antiviral Agents/chemistry , Binding Sites , COVID-19/virology , Cell Line , Disulfides/antagonists & inhibitors , Disulfides/chemistry , Disulfides/metabolism , Dose-Response Relationship, Drug , Humans , Molecular Docking Simulation , Nasal Mucosa/drug effects , Nasal Mucosa/metabolism , Nasal Mucosa/virology , Oxidation-Reduction , Phenyl Ethers/chemistry , Protein Binding , Protein Conformation, alpha-Helical , Protein Conformation, beta-Strand , Protein Interaction Domains and Motifs , Receptors, Virus/antagonists & inhibitors , Receptors, Virus/genetics , Receptors, Virus/metabolism , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , SARS-CoV-2/genetics , SARS-CoV-2/metabolism , Spike Glycoprotein, Coronavirus/antagonists & inhibitors , Spike Glycoprotein, Coronavirus/genetics , Spike Glycoprotein, Coronavirus/metabolism , Sulfhydryl Compounds/chemistry , COVID-19 Drug Treatment
17.
Mediators Inflamm ; 2021: 1110671, 2021.
Article En | MEDLINE | ID: mdl-34899052

BACKGROUND: Airway epithelium plays an important role during the development of allergic rhinitis (AR), which is characterized by production of thymic stromal lymphopoietin (TSLP), interleukin 33 (IL-33), and interleukin 25 (IL-25). IL-35, mainly expressed by Treg cells, have negative regulation in Th2, Th17, and ILC2 inflammation. However, the effect of IL-35 on human nasal epithelial cells (HNECs) especially the secretion of nasal epithelial-derived proinflammatory cytokines as well as the possible mechanism is still unclear. METHODS: HNECs were cultured and stimulated by various stimulators. The expression of IL-33, IL-25, TSLP, eotaxin-1, eotaxin-2, and eotaxin-3 from supernatant was measured using real-time reverse transcription-polymerase chain reaction (RT-PCR) and enzyme-linked immunosorbent assay (ELISA). AR mice were developed to verify the effect of IL-35 on nasal epithelial cells in vivo. RESULTS: After Poly I:C stimulation, IL-35 inhibited the production of IL-25, and TSLP from HNECs increased significantly compared with baseline levels (P < 0.05). After Dermatophagoides pteronyssinus or Aspergillus fumigatus stimulation, IL-35 inhibited the production of IL-25, IL-33, and TSLP from HNECs increased significantly compared with baseline levels (P < 0.05). After Dermatophagoides pteronyssinus, IL-35 inhibited the production of eotaxin-1, eotaxin-2, and eotaxin-3 released from HNECs increased significantly compared with baseline levels (P < 0.05). Similarly, IL-35-treated AR mice presented with decreased expression of IL-33, IL-25, TSLP, eotaxin-1, eotaxin-2, and eotaxin-3 in nasal lavage fluid. CONCLUSION: IL-35 suppressed both type 2 inflammation-inducing cytokines and eosinophil chemotactic factor from HNECs, suggesting the important role of IL-35 during the development of AR.


Cytokines/biosynthesis , Interleukins/pharmacology , Nasal Mucosa/drug effects , Animals , Cells, Cultured , Humans , Interleukin-17/biosynthesis , Male , Mice , Mice, Inbred BALB C , Nasal Mucosa/immunology , Rhinitis, Allergic/etiology , Thymic Stromal Lymphopoietin
18.
PLoS One ; 16(12): e0248545, 2021.
Article En | MEDLINE | ID: mdl-34971554

INTRODUCTION: Cerebrospinal fluid (CSF) outflow has been demonstrated along nasal lymphatics via olfactory nerve projections; flow may be increased by stimulating lymphatic contractility using agents such as noradrenaline and the thromboxane A2 analog U46619. Lymphatics elsewhere in the body show increased contractility upon exposure to the prostaglandin F2alpha analog isoprostane-8-epi-prostaglandin. We investigated the ability of ophthalmic prostaglandin F2alpha analogs to increase CSF outflow when applied to the nasal mucosa by inhalation. METHODS: Latanoprost (0.1, 0.5, or 1mg/ml), bimatoprost (0.3 or 3mg/ml), travoprost (0.04 or 0.4mg/ml), latanoprostene bunod (0.24 or 2.4mg/ml), tafluprost (0.25 or 2.5mg/ml), or control vehicle (10% DMSO) was administered to awake adult C57B/6 mice by nasal inhalation of 2µl droplets. Multiday dosing (daily for 3 days) of latanoprost also was evaluated. A total of 81 animals were studied including controls. General anesthesia was induced by injection, and fluorescent tracer (AlexaFluor647-labelled ovalbumin) was injected under stereotaxic guidance into the right lateral ventricle. Nasal turbinate tissue was harvested and homogenized after 1 hour for tracer detection by ELISA and fluorometric analysis. RESULTS: Inhalation of latanoprost 0.5mg/ml and 1mg/ml led to a 11.5-fold increase in tracer recovery from nasal turbinate tissues compared to controls (3312 pg/ml vs 288 pg/ml, p<0.001 for 0.5mg/ml; 3355 pg/ml vs 288 pg/ml, p<0.001 for 1mg/ml), while latanoprost 0.1 mg/ml enhanced recovery 6-fold (1713 pg/ml vs 288 pg/ml, p<0.01). Tafluprost 0.25mg/ml and bimatoprost 0.3mg/ml showed a modest (1.4x, p<0.05) effect, and the remaining agents showed no significant effect on tracer recovery. After 3 days of daily latanoprost treatment and several hours after the last dose, a persistently increased recovery of tracer was found. CONCLUSIONS: Prostaglandin F2alpha analogs delivered by nasal inhalation resulted in increased nasal recovery of a CSF fluorescent tracer, implying increased CSF outflow via the nasal lymphatics. The greatest effect, partially dose-dependent, was observed using latanoprost. Further studies are needed to determine the efficacy of these agents in reducing ICP in short and long-term applications.


Absorption, Physiological , Cerebrospinal Fluid/metabolism , Nasal Mucosa/metabolism , Prostaglandins, Synthetic/pharmacology , Absorption, Physiological/drug effects , Administration, Intranasal , Animals , Dinoprost/analogs & derivatives , Female , Fluorescent Dyes/chemistry , Fluorometry , Latanoprost , Male , Mice, Inbred C57BL , Nasal Mucosa/drug effects
19.
Int J Mol Sci ; 22(21)2021 Oct 26.
Article En | MEDLINE | ID: mdl-34768968

Tissue remodeling contributes to ongoing inflammation and refractoriness of chronic rhinosinusitis (CRS). During this process, epithelial-mesenchymal transition (EMT) plays an important role in dysregulated remodeling and both microRNA (miR)-29b and heat shock protein 47 (HSP47) may be engaged in the pathophysiology of CRS. This study aimed to determine the role of miR-29b and HSP47 in modulating transforming growth factor (TGF)-ß1-induced EMT and migration in airway epithelial cells. Expression levels of miR-29b, HSP47, E-cadherin, α-smooth muscle actin (α-SMA), vimentin and fibronectin were assessed through real-time PCR, Western blotting, and immunofluorescence staining. Small interfering RNA (siRNA) targeted against miR-29b and HSP47 were transfected to regulate the expression of EMT-related markers. Cell migration was evaluated with wound scratch and transwell migration assay. miR-29b mimic significantly inhibited the expression of HSP47 and TGF-ß1-induced EMT-related markers in A549 cells. However, the miR-29b inhibitor more greatly induced the expression of them. HSP47 knockout suppressed TGF-ß1-induced EMT marker levels. Functional studies indicated that TGF-ß1-induced EMT was regulated by miR-29b and HSP47 in A549 cells. These findings were further verified in primary nasal epithelial cells. miR-29b modulated TGF-ß1-induced EMT-related markers and migration via HSP47 expression modulation in A549 and primary nasal epithelial cells. These results suggested the importance of miR-29b and HSP47 in pathologic tissue remodeling progression in CRS.


Epithelial-Mesenchymal Transition/genetics , Epithelial-Mesenchymal Transition/physiology , HSP47 Heat-Shock Proteins/antagonists & inhibitors , HSP47 Heat-Shock Proteins/genetics , Transforming Growth Factor beta1/metabolism , A549 Cells , Cell Movement/drug effects , Cell Movement/genetics , Cell Movement/physiology , Cells, Cultured , Epithelial Cells/drug effects , Epithelial Cells/metabolism , Epithelial Cells/pathology , Epithelial-Mesenchymal Transition/drug effects , Gene Expression Regulation , Gene Knockout Techniques , Humans , MicroRNAs/antagonists & inhibitors , MicroRNAs/genetics , MicroRNAs/metabolism , Nasal Mucosa/drug effects , Nasal Mucosa/metabolism , Nasal Mucosa/pathology , RNA, Messenger/genetics , RNA, Messenger/metabolism , RNA, Small Interfering/genetics , Respiratory Mucosa/drug effects , Respiratory Mucosa/metabolism , Respiratory Mucosa/pathology , Rhinitis/genetics , Rhinitis/metabolism , Sinusitis/genetics , Sinusitis/metabolism , Sinusitis/pathology , Transforming Growth Factor beta1/administration & dosage , Transforming Growth Factor beta1/genetics
20.
Pak J Pharm Sci ; 34(4): 1351-1358, 2021 Jul.
Article En | MEDLINE | ID: mdl-34799307

Allergic rhinitis (AR) is one of the most common atopic disorders, which seriously affects patients' quality of life. Yupingfeng (YPF) Power is a traditional Chinese herb formula, and its oral dosage form has been widely used for the treatment of AR in Asian countries. In this study, we investigated the effects of YPF nasal drops on ovalbumin (OVA) sensitized/stimulated allergic rhinitis in rats. A Sprague-Dawley (SD) rat model of OVA-induced AR was established and then treated with three doses of YPF nasal drops. Besides, histopathological features, eosinophil cationic protein (ECP) in the nasal mucosa, and expression of type 1 helper T (Th1)/type 2 helper T (Th2)-related cytokines in serum were analyzed. The results showed that YPF nasal drops alleviated the injury of nasal mucosal epithelial structure, promoted the recovery of ciliary morphology and function and reduced interstitial edema and inflammatory cell infiltration to some extent. Moreover, YPF nasal drops regulated imbalance in Th1/Th2 cells caused by AR via regulating downward the expression of interleukin 4 (IL-4) and adjusting upward the expression of interferon-γ (INF-γ), and interleukin 12 (IL-12). Furthermore, it inhibited the expression of ECP in nasal epithelial eosinophil-specific granules. The findings of this study provided a new perspective for the treatment of AR with YPF nasal drops based on Traditional Chinese Medicine.


Drugs, Chinese Herbal/therapeutic use , Eosinophil Cationic Protein/metabolism , Nasal Mucosa/drug effects , Rhinitis, Allergic/drug therapy , Administration, Intranasal , Animals , Cytokines/blood , Disease Models, Animal , Drugs, Chinese Herbal/administration & dosage , Male , Nasal Mucosa/metabolism , Nasal Mucosa/pathology , Rats , Rats, Sprague-Dawley , Rhinitis, Allergic/metabolism , Rhinitis, Allergic/pathology
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