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1.
Front Immunol ; 15: 1356298, 2024.
Article in English | MEDLINE | ID: mdl-38690264

ABSTRACT

Chronic rhinosinusitis with nasal polyps (CRSwNP) is predominantly a type 2 inflammatory disease associated with type 2 (T2) cell responses and epithelial barrier, mucociliary, and olfactory dysfunction. The inflammatory cytokines interleukin (IL)-4, IL-13, and IL-5 are key mediators driving and perpetuating type 2 inflammation. The inflammatory responses driven by these cytokines include the recruitment and activation of eosinophils, basophils, mast cells, goblet cells, M2 macrophages, and B cells. The activation of these immune cells results in a range of pathologic effects including immunoglobulin E production, an increase in the number of smooth muscle cells within the nasal mucosa and a reduction in their contractility, increased deposition of fibrinogen, mucus hyperproduction, and local edema. The cytokine-driven structural changes include nasal polyp formation and nasal epithelial tissue remodeling, which perpetuate barrier dysfunction. Type 2 inflammation may also alter the availability or function of olfactory sensory neurons contributing to loss of sense of smell. Targeting these key cytokine pathways has emerged as an effective approach for the treatment of type 2 inflammatory airway diseases, and a number of biologic agents are now available or in development for CRSwNP. In this review, we provide an overview of the inflammatory pathways involved in CRSwNP and describe how targeting key drivers of type 2 inflammation is an effective therapeutic option for patients.


Subject(s)
Interleukin-13 , Interleukin-4 , Nasal Polyps , Rhinitis , Sinusitis , Humans , Sinusitis/immunology , Sinusitis/metabolism , Nasal Polyps/immunology , Nasal Polyps/metabolism , Rhinitis/immunology , Rhinitis/metabolism , Chronic Disease , Interleukin-13/metabolism , Interleukin-13/immunology , Interleukin-4/metabolism , Interleukin-4/immunology , Signal Transduction , Inflammation/immunology , Inflammation/metabolism , Animals , Nasal Mucosa/immunology , Nasal Mucosa/metabolism , Nasal Mucosa/pathology , Rhinosinusitis
2.
AAPS PharmSciTech ; 25(5): 96, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38710855

ABSTRACT

Central nervous system-related disorders have become a continuing threat to human life and the current statistic indicates an increasing trend of such disorders worldwide. The primary therapeutic challenge, despite the availability of therapies for these disorders, is to sustain the drug's effective concentration in the brain while limiting its accumulation in non-targeted areas. This is attributed to the presence of the blood-brain barrier and first-pass metabolism which limits the transportation of drugs to the brain irrespective of popular and conventional routes of drug administration. Therefore, there is a demand to practice alternative routes for predictable drug delivery using advanced drug delivery carriers to overcome the said obstacles. Recent research attracted attention to intranasal-to-brain drug delivery for promising targeting therapeutics in the brain. This review emphasizes the mechanisms to deliver therapeutics via different pathways for nose-to-brain drug delivery with recent advancements in delivery and formulation aspects. Concurrently, for the benefit of future studies, the difficulties in administering medications by intranasal pathway have also been highlighted.


Subject(s)
Administration, Intranasal , Blood-Brain Barrier , Brain , Drug Delivery Systems , Administration, Intranasal/methods , Humans , Drug Delivery Systems/methods , Brain/metabolism , Blood-Brain Barrier/metabolism , Animals , Drug Carriers/chemistry , Pharmaceutical Preparations/administration & dosage , Nasal Mucosa/metabolism
3.
AAPS PharmSciTech ; 25(5): 95, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38710921

ABSTRACT

Verapamil hydrochloride (VRP), an antihypertensive calcium channel blocker drug has limited bioavailability and short half-life when taken orally. The present study was aimed at developing cubosomes containing VRP for enhancing its bioavailability and targeting to brain for cluster headache (CH) treatment as an off-label use. Factorial design was conducted to analyze the impact of different components on entrapment efficiency (EE%), particle size (PS), zeta potential (ZP), and percent drug release. Various in-vitro characterizations were performed followed by pharmacokinetic and brain targeting studies. The results revealed the significant impact of glyceryl monooleate (GMO) on increasing EE%, PS, and ZP of cubosomes with a negative influence on VRP release. The remarkable effect of Poloxamer 407 (P407) on decreasing EE%, PS, and ZP of cubosomes was observed besides its influence on accelerating VRP release%. The DSC thermograms indicated the successful entrapment of the amorphous state of VRP inside the cubosomes. The design suggested an optimized formulation containing GMO (50% w/w) and P407 (5.5% w/w). Such formulation showed a significant increase in drug permeation through nasal mucosa with high Er value (2.26) when compared to VRP solution. Also, the histopathological study revealed the safety of the utilized components used in the cubosomes preparation. There was a significant enhancement in the VRP bioavailability when loaded in cubosomes owing to its sustained release favored by its direct transport to brain. The I.N optimized formulation had greater BTE% and DTP% at 183.53% and 90.19%, respectively in comparison of 41.80% and 59% for the I.N VRP solution.


Subject(s)
Administration, Intranasal , Brain , Drug Delivery Systems , Drug Liberation , Glycerides , Nasal Mucosa , Particle Size , Verapamil , Administration, Intranasal/methods , Animals , Brain/metabolism , Brain/drug effects , Drug Delivery Systems/methods , Verapamil/administration & dosage , Verapamil/pharmacokinetics , Tissue Distribution , Glycerides/chemistry , Nasal Mucosa/metabolism , Biological Availability , Rats , Calcium Channel Blockers/pharmacokinetics , Calcium Channel Blockers/administration & dosage , Poloxamer/chemistry , Male , Chemistry, Pharmaceutical/methods , Rats, Wistar , Nanoparticles/chemistry
4.
AAPS PharmSciTech ; 25(5): 115, 2024 May 16.
Article in English | MEDLINE | ID: mdl-38755324

ABSTRACT

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.


Subject(s)
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
5.
Front Immunol ; 15: 1380846, 2024.
Article in English | MEDLINE | ID: mdl-38756779

ABSTRACT

Background: Although oxidative stress is involved in the pathophysiological process of chronic rhinosinusitis with nasal polyps (CRSwNP), the specific underlying mechanism is still unclear. Whether antioxidant therapy can treat CRSwNP needs further investigation. Methods: Immunohistochemistry, immunofluorescence, western blotting and quantitative polymerase chain reaction (qPCR) analyses were performed to detect the distribution and expression of oxidants and antioxidants in nasal polyp tissues. qPCR revealed correlations between oxidase, antioxidant enzymes and inflammatory cytokine levels in CRSwNP patients. Human nasal epithelial cells (HNEpCs) and primary macrophages were cultured to track the cellular origin of oxidative stress in nasal polyps(NPs) and to determine whether crocin can reduce cellular inflammation by increasing the cellular antioxidant capacity. Results: The expression of NOS2, NOX1, HO-1 and SOD2 was increased in nasal epithelial cells and macrophages derived from nasal polyp tissue. Oxidase levels were positively correlated with those of inflammatory cytokines (IL-5 and IL-6). Conversely, the levels of antioxidant enzymes were negatively correlated with those of IL-13 and IFN-γ. Crocin inhibited M1 and M2 macrophage polarization as well as the expression of NOS2 and NOX1 and improved the antioxidant capacity of M2 macrophages. Moreover, crocin enhanced the ability of antioxidants to reduce inflammation via the KEAP1/NRF2/HO-1 pathway in HNEpCs treated with SEB or LPS. Additionally, we observed the antioxidant and anti-inflammatory effects of crocin in nasal explants. Conclusion: Oxidative stress plays an important role in the development of CRSwNP by promoting various types of inflammation. The oxidative stress of nasal polyps comes from epithelial cells and macrophages. Antioxidant therapy may be a promising strategy for treating CRSwNP.


Subject(s)
Antioxidants , Nasal Polyps , Oxidative Stress , Rhinitis , Sinusitis , Humans , Nasal Polyps/metabolism , Nasal Polyps/immunology , Sinusitis/metabolism , Sinusitis/immunology , Rhinitis/metabolism , Rhinitis/immunology , Chronic Disease , Antioxidants/metabolism , Female , Male , Adult , Middle Aged , Oxidants/metabolism , Macrophages/metabolism , Macrophages/immunology , Cytokines/metabolism , Nasal Mucosa/metabolism , Nasal Mucosa/immunology , Cells, Cultured , Rhinosinusitis
6.
Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi ; 40(5): 419-427, 2024 May.
Article in Chinese | MEDLINE | ID: mdl-38790098

ABSTRACT

Objective To investigate the effect of lysine 27 residue of histone H3 (H3K27) acetylation modification on the transcriptional promotion of long noncoding RNA OPA interacting protein 5-antisense RNA 1 (lncRNA OIP5-AS1) and apoptosis of nasal epithelial cells (NECs) in allergic rhinitis (AR) via regulating Toll-like receptor 4 (TLR4). Methods Interleukin-13 (IL-13) was used to treat NECs to establish an AR cell model. Real-time quantitative PCR was utilized to detect the expressions of OIP5-AS1 and TLR4 in nasal mucosal tissues of AR patients and in the in vitro cell model. The concentrations of macrophage colony-stimulating factor (GM-CSF), eotaxin-1, and mucin 5AC (MUC5AC) were detected by ELISA. The apoptosis of NECs was determined by terminal deoxynucleotidyl transferase mediated dUTP-biotin nick end labeling (TUNEL). A dual-luciferase report experiment was carried out to verify the relationship between OIP5-AS1 and TLR4. Chromatin immunoprecipitation (ChIP) assay was performed to verify H3K27 acetylation of histones in the OIP5-AS1 promoter region. Results Compared with healthy controls and untreated NECs, OIP5-AS1 and TLR4 were both up-regulated in nasal mucosal tissues from AR patients and IL-13-stimulated NECs. Knockdown of OIP5-AS1 decreased the level of TLR4 in IL-13-treated NECs, while overexpression of OIP5-AS1 increased the level of TLR4. Inhibition of OIP5-AS1 reduced the apoptosis rate, and inhibited the secretion of GM-CSF, eotaxin-1, and MUC5AC from IL-13-treated NECs, while overexpression of TLR4 partially reversed the effects of OIP5-AS1 knockdown on NEC apoptosis and the secretion of GM-CSF, eotaxin-1, and MUC5AC. In addition, H3K27 acetylation was markedly enriched in the promoter region of OIP5-AS1, and H3K27 acetylation promoted the expression of OIP5-AS1 in IL-13-treated NECs. Conclusion H3K27 acetylation promotes OIP5-AS1 transcription and induces NEC apoptosis in AR via upregulation of TLR4.


Subject(s)
Apoptosis , Epithelial Cells , Granulocyte-Macrophage Colony-Stimulating Factor , Histones , Nasal Mucosa , RNA, Long Noncoding , Rhinitis, Allergic , Toll-Like Receptor 4 , Up-Regulation , Humans , Toll-Like Receptor 4/genetics , Toll-Like Receptor 4/metabolism , Acetylation , Apoptosis/genetics , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , Rhinitis, Allergic/genetics , Rhinitis, Allergic/metabolism , Histones/metabolism , Histones/genetics , Nasal Mucosa/metabolism , Epithelial Cells/metabolism , Granulocyte-Macrophage Colony-Stimulating Factor/genetics , Granulocyte-Macrophage Colony-Stimulating Factor/metabolism , Male , Female , Adult , Interleukin-13/genetics , Interleukin-13/metabolism , Chemokine CCL11/genetics , Chemokine CCL11/metabolism , Mucin 5AC/genetics , Mucin 5AC/metabolism , Middle Aged
7.
Int J Oral Implantol (Berl) ; 17(2): 189-198, 2024 May 27.
Article in English | MEDLINE | ID: mdl-38801332

ABSTRACT

Maxillary sinus grafting is a predictable regenerative technique to facilitate maxillary posterior implant placement when there is insufficient vertical bone height inferior to the maxillary sinuses to allow placement of implants of adequate dimensions. It enables an increase in vertical bone height, which makes implant placement easier. Maxillary sinus mucosal membrane perforation is one of the most common intraoperative complications during maxillary sinus grafting and may result in extrusion of graft material into the sinus. When this occurs, the mucociliary function of the maxillary sinus may expel the extruded graft material through its natural ostium, though graft particles may remain in the sinus or possibly occlude the natural ostium. After grafting, transient maxillary sinus mucosal oedema may occur. A postoperative CBCT scan may reveal varying degrees of sinus opacification, namely partial, subtotal or total. Although it is always possible to identify graft material, which may enter the sinus as a result of membrane perforation that might not even be visible to the implantologist during the surgical procedure, it is challenging to assess whether sinus opacification is due to mucosal thickening or mucus accumulation. The aim of the present case series was to offer a pragmatic approach to managing asymptomatic patients whose CBCT scans demonstrated partial, subtotal or total maxillary sinus opacification with bone graft particles that seemed to have been extruded into the sinus.


Subject(s)
Cone-Beam Computed Tomography , Maxillary Sinus , Sinus Floor Augmentation , Humans , Maxillary Sinus/surgery , Maxillary Sinus/diagnostic imaging , Sinus Floor Augmentation/adverse effects , Sinus Floor Augmentation/methods , Middle Aged , Male , Female , Nasal Mucosa/diagnostic imaging , Nasal Mucosa/pathology , Follow-Up Studies , Edema/etiology , Edema/diagnostic imaging , Edema/pathology , Bone Transplantation/methods , Bone Transplantation/adverse effects , Postoperative Complications/diagnostic imaging , Postoperative Complications/etiology , Aged , Adult , Dental Implantation, Endosseous/adverse effects , Dental Implantation, Endosseous/methods
8.
Proc Natl Acad Sci U S A ; 121(21): e2402540121, 2024 May 21.
Article in English | MEDLINE | ID: mdl-38758698

ABSTRACT

All respiratory viruses establish primary infections in the nasal epithelium, where efficient innate immune induction may prevent dissemination to the lower airway and thus minimize pathogenesis. Human coronaviruses (HCoVs) cause a range of pathologies, but the host and viral determinants of disease during common cold versus lethal HCoV infections are poorly understood. We model the initial site of infection using primary nasal epithelial cells cultured at an air-liquid interface (ALI). HCoV-229E, HCoV-NL63, and human rhinovirus-16 are common cold-associated viruses that exhibit unique features in this model: early induction of antiviral interferon (IFN) signaling, IFN-mediated viral clearance, and preferential replication at nasal airway temperature (33 °C) which confers muted host IFN responses. In contrast, lethal SARS-CoV-2 and MERS-CoV encode antagonist proteins that prevent IFN-mediated clearance in nasal cultures. Our study identifies features shared among common cold-associated viruses, highlighting nasal innate immune responses as predictive of infection outcomes and nasally directed IFNs as potential therapeutics.


Subject(s)
Common Cold , Immunity, Innate , Interferons , Nasal Mucosa , SARS-CoV-2 , Signal Transduction , Humans , Nasal Mucosa/virology , Nasal Mucosa/immunology , Nasal Mucosa/metabolism , Interferons/metabolism , Interferons/immunology , Common Cold/immunology , Common Cold/virology , Signal Transduction/immunology , SARS-CoV-2/immunology , Virus Replication , Rhinovirus/immunology , Coronavirus 229E, Human/immunology , Coronavirus Infections/immunology , Coronavirus Infections/virology , Epithelial Cells/virology , Epithelial Cells/immunology , Epithelial Cells/metabolism , Middle East Respiratory Syndrome Coronavirus/immunology , Coronavirus NL63, Human/immunology
9.
Expert Opin Drug Deliv ; 21(4): 553-572, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38720439

ABSTRACT

INTRODUCTION: Intranasal administration is an effective drug delivery routes in modern pharmaceutics. However, unlike other in vivo biological barriers, the nasal mucosal barrier is characterized by high turnover and selective permeability, hindering the diffusion of both particulate drug delivery systems and drug molecules. The in vivo fate of administrated nanomedicines is often significantly affected by nano-biointeractions. AREAS COVERED: The biological barriers that nanomedicines encounter when administered intranasally are introduced, with a discussion on the factors influencing the interaction between nanomedicines and the mucus layer/mucosal barriers. General design strategies for nanomedicines administered via the nasal route are further proposed. Furthermore, the most common methods to investigate the characteristics and the interactions of nanomedicines when in presence of the mucus layer/mucosal barrier are briefly summarized. EXPERT OPINION: Detailed investigation of nanomedicine-mucus/mucosal interactions and exploration of their mechanisms provide solutions for designing better intranasal nanomedicines. Designing and applying nanomedicines with mucus interaction properties or non-mucosal interactions should be customized according to the therapeutic need, considering the target of the drug, i.e. brain, lung or nose. Then how to improve the precise targeting efficiency of nanomedicines becomes a difficult task for further research.


Subject(s)
Administration, Intranasal , Drug Delivery Systems , Mucus , Nanomedicine , Nasal Mucosa , Nasal Mucosa/metabolism , Humans , Animals , Mucus/metabolism , Permeability , Pharmaceutical Preparations/administration & dosage , Pharmaceutical Preparations/metabolism , Drug Design , Nanoparticles
10.
Nat Commun ; 15(1): 4546, 2024 May 28.
Article in English | MEDLINE | ID: mdl-38806494

ABSTRACT

Asthma has striking disparities across ancestral groups, but the molecular underpinning of these differences is poorly understood and minimally studied. A goal of the Consortium on Asthma among African-ancestry Populations in the Americas (CAAPA) is to understand multi-omic signatures of asthma focusing on populations of African ancestry. RNASeq and DNA methylation data are generated from nasal epithelium including cases (current asthma, N = 253) and controls (never-asthma, N = 283) from 7 different geographic sites to identify differentially expressed genes (DEGs) and gene networks. We identify 389 DEGs; the top DEG, FN1, was downregulated in cases (q = 3.26 × 10-9) and encodes fibronectin which plays a role in wound healing. The top three gene expression modules implicate networks related to immune response (CEACAM5; p = 9.62 × 10-16 and CPA3; p = 2.39 × 10-14) and wound healing (FN1; p = 7.63 × 10-9). Multi-omic analysis identifies FKBP5, a co-chaperone of glucocorticoid receptor signaling known to be involved in drug response in asthma, where the association between nasal epithelium gene expression is likely regulated by methylation and is associated with increased use of inhaled corticosteroids. This work reveals molecular dysregulation on three axes - increased Th2 inflammation, decreased capacity for wound healing, and impaired drug response - that may play a critical role in asthma within the African Diaspora.


Subject(s)
Asthma , Black People , DNA Methylation , Nasal Mucosa , Tacrolimus Binding Proteins , Humans , Asthma/genetics , Asthma/metabolism , Nasal Mucosa/metabolism , Tacrolimus Binding Proteins/genetics , Tacrolimus Binding Proteins/metabolism , Female , Male , Black People/genetics , Adult , Gene Regulatory Networks , Fibronectins/metabolism , Fibronectins/genetics , Case-Control Studies , Gene Expression Regulation , Middle Aged , Multiomics
11.
Am J Vet Res ; 85(6)2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38697189

ABSTRACT

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.


Subject(s)
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
12.
PLoS One ; 19(5): e0285655, 2024.
Article in English | MEDLINE | ID: mdl-38753593

ABSTRACT

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.


Subject(s)
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
13.
Nat Commun ; 15(1): 3900, 2024 May 09.
Article in English | MEDLINE | ID: mdl-38724552

ABSTRACT

By incompletely understood mechanisms, type 2 (T2) inflammation present in the airways of severe asthmatics drives the formation of pathologic mucus which leads to airway mucus plugging. Here we investigate the molecular role and clinical significance of intelectin-1 (ITLN-1) in the development of pathologic airway mucus in asthma. Through analyses of human airway epithelial cells we find that ITLN1 gene expression is highly induced by interleukin-13 (IL-13) in a subset of metaplastic MUC5AC+ mucus secretory cells, and that ITLN-1 protein is a secreted component of IL-13-induced mucus. Additionally, we find ITLN-1 protein binds the C-terminus of the MUC5AC mucin and that its deletion in airway epithelial cells partially reverses IL-13-induced mucostasis. Through analysis of nasal airway epithelial brushings, we find that ITLN1 is highly expressed in T2-high asthmatics, when compared to T2-low children. Furthermore, we demonstrate that both ITLN-1 gene expression and protein levels are significantly reduced by a common genetic variant that is associated with protection from the formation of mucus plugs in T2-high asthma. This work identifies an important biomarker and targetable pathways for the treatment of mucus obstruction in asthma.


Subject(s)
Asthma , GPI-Linked Proteins , Interleukin-13 , Lectins , Mucin 5AC , Mucus , Child , Humans , Asthma/genetics , Asthma/metabolism , Cytokines , Epithelial Cells/metabolism , GPI-Linked Proteins/genetics , GPI-Linked Proteins/metabolism , Interleukin-13/genetics , Interleukin-13/metabolism , Lectins/genetics , Lectins/metabolism , Mucin 5AC/genetics , Mucin 5AC/metabolism , Mucus/metabolism , Nasal Mucosa/metabolism , Polymorphism, Genetic , Respiratory Mucosa/metabolism
14.
Article in Chinese | MEDLINE | ID: mdl-38563171

ABSTRACT

Objective:To evaluate the expression of eosinophil cationic protein and myeloperoxidase in nasal secretions in different types of rhinitis, and to explore their values in the differential diagnosis of different types of rhinitis. Methods:Six hundred and eighty-four subjects were selected, including 62 subjects in the acute rhinitis group, 378 subjects in the allergic rhinitis group, 94 subjects in the vasomotor rhinitis group, 70 subjects in the eosinophilic non-allergic rhinitis group, and 80 subjects in the control group. Nasal secretion samples were collected from the five groups, and the percentages of inflammatory cells were counted by Rachel's staining, and the expression of ECP/MPO was detected by colloidal gold assay. The correlation between the clinical diagnosis, the inflammatory cells in the nasal secretions and the expression of ECP/MPO was analyzed. Results:Nasal cytological smears showed that compared with the control group, the percentage of eosinophils in the AR and NARES groups were significantly higher (P<0.05), while the percentage of neutrophils was not different (P>0.05); the percentage of neutrophils was significantly higher in the acute rhinitis group compared with the control group (P<0.05), while the percentage of eosinophils was not statistically different (P>0.05); in vasomotor rhinitis group, the eosinophils and neutrophils were not statistically different compared with the control group(P> 0.05). The colloidal gold results showed that there were differences in the expression of ECP/MPO in different types of rhinitis, among which 49 cases (79.0%) in the acute rhinitis group expressed ECP+/MPO+; 267 cases (70.6%) in the AR group and 56 cases (75.7%) in the NARES group expressed ECP+/MPO-; 80 cases (85.1%) in the vasomotor rhinitis group and 69 cases (86.3%) in the control group expressed ECP-/MPO-. Conclusion:The differences in ECP and MPO expression between different types of rhinitis have certain reference value for the differential diagnosis of different types of rhinitis and the selection of treatment programs.


Subject(s)
Rhinitis, Vasomotor , Rhinitis , Humans , Eosinophils/metabolism , Gold Colloid/metabolism , Nasal Mucosa/metabolism , Peroxidase/metabolism , Rhinitis/diagnosis , Rhinitis/metabolism , Rhinitis, Vasomotor/metabolism
15.
Int J Mol Sci ; 25(7)2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38612663

ABSTRACT

Some studies have demonstrated the effects of particulate matter (PM) on chronic rhinosinusitis with nasal polyps (CRSwNP) development, as well as the therapeutic role of retinoic acid (RA) in nasal polypogenesis. However, the immunologic effect of PM in innate lymphoid cells (ILCs) and the exact mechanism of the therapeutic effect of RA remain unclear. Therefore, the present study investigated the effects of fine-dust-induced inflammation in CRSwNP and the mechanisms of the therapeutic effect of RA. PM2.5 exposure exacerbated pathological damage in the nasal mucosa of mice with nasal polyps (NP) via upregulation of type 2 inflammation. Additionally, PM2.5 exposure increased the expression of type 2 cytokines and epithelial-cell-derived cytokines (IL-33 and IL-25) significantly, as well as the ILC populations in human-NP-derived epithelial cells (HNECs). Moreover, RA supplementation significantly increased the expression of ILCreg in Lin-CD45+CD127+ cells, which in turn increased the levels of the anti-inflammatory cytokine IL-10. The findings suggest that PM2.5 exposures could aggravate the CRSwNP type 2 inflammation, and RA treatment may ameliorate fine-dust-induced inflammation by modulating the innate immune response.


Subject(s)
Immunity, Innate , Nasal Polyps , Humans , Animals , Mice , Lymphocytes , Inflammation/drug therapy , Cytokines , Dust , Nasal Mucosa , Particulate Matter/toxicity
16.
Int J Mol Sci ; 25(7)2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38612665

ABSTRACT

Baleen whales (Mysticeti) possess the necessary anatomical structures and genetic elements for olfaction. Nevertheless, the olfactory receptor gene (OR) repertoire has undergone substantial degeneration in the cetacean lineage following the divergence of the Artiodactyla and Cetacea. The functionality of highly degenerated mysticete ORs within their olfactory epithelium remains unknown. In this study, we extracted total RNA from the nasal mucosae of common minke whales (Balaenoptera acutorostrata) to investigate ORs' localized expression. All three sections of the mucosae examined in the nasal chamber displayed comparable histological structure. However, the posterior portion of the frontoturbinal region exhibited notably high OR expression. Neither the olfactory bulb nor the external skin exhibited the expression of these genes. Although this species possesses four intact non-class-2 ORs, all the ORs expressed in the nasal mucosae belong to class-2, implying the loss of aversion to specific odorants. These anatomical and genomic analyses suggest that ORs are still responsible for olfaction within the nasal region of baleen whales, enabling them to detect desirable scents such as prey and potential mating partners.


Subject(s)
Minke Whale , Receptors, Odorant , Animals , Nasal Mucosa , Smell/genetics , Affect , Cetacea , Receptors, Odorant/genetics
17.
Lasers Med Sci ; 39(1): 114, 2024 Apr 25.
Article in English | MEDLINE | ID: mdl-38662131

ABSTRACT

Nasal mucosa tumors are an uncommon process and very dificult to work on with surgery. Radiotherapy associated or not with chemotherapy is the standard method to treat the disease. However, its access it is in the majority of the case not possible, making the surgery the best choice to try to achieve the patient's control. The anatomy of the region makes the complete surgical resection very difficult to achieve using the common and conventional blade scalpel surgery. The study features the advantages of using a CO2 laser to perform nasal mucosa carcinoma surgery in 6 dogs (N = 6). For the work we used an Aesculigth CO2 surgical laser model -Vetscalpel®, with the settings of 12Watts in a Superpulse mode, and a 0.25-0.4 mm focus to dissect the nasal mucosa, and a 1.5 mm focus for vaporization of the area. All the masses were histopathologically characterized as squamous cells carcinoma. The CO2 surgical laser allow us to work in a bloodless region promoting a more accurate dissection of the nasal mucosa sparing therefore the underlying and adjacent tissues and being less invasive. Also, it was possible to do the vaporization of the entire surgical area interviened. None of the patients presented relapse of clinical signs. Only 2 individuals were alive at the end of the study, presenting a survival rate of 420 and 514 days, which is in the same line of literature results of the treatment with radiotherapy combined with chemotherapy wich shows a median of 474-580 days. The study demonstrates successful outcomes with CO2 laser surgery in treating nasal mucosa SCC in dogs, with patients experiencing improved survival rates compared to traditional treatment methods. This highlights the efficacy and potential of CO2 laser surgery as a valuable tool in managing aggressive nasal tumors in veterinary oncology.


Subject(s)
Carcinoma, Squamous Cell , Lasers, Gas , Nasal Mucosa , Nose Neoplasms , Dogs , Animals , Lasers, Gas/therapeutic use , Carcinoma, Squamous Cell/surgery , Carcinoma, Squamous Cell/pathology , Prospective Studies , Nasal Mucosa/surgery , Nasal Mucosa/pathology , Nose Neoplasms/surgery , Nose Neoplasms/pathology , Nose Neoplasms/radiotherapy , Dog Diseases/surgery , Male , Female , Laser Therapy/methods , Laser Therapy/instrumentation
18.
Sci Rep ; 14(1): 8398, 2024 04 10.
Article in English | MEDLINE | ID: mdl-38600251

ABSTRACT

Allergic rhinitis (AR) is caused by type I hypersensitivity reaction in the nasal tissues. The interaction between CD300f and its ligand ceramide suppresses immunoglobulin E (IgE)-mediated mast cell activation. However, whether CD300f inhibits the development of allergic rhinitis (AR) remains elusive. We aimed to investigate the roles of CD300f in the development of AR and the effectiveness of intranasal administration of ceramide liposomes on AR in murine models. We used ragweed pollen-induced AR models in mice. Notably, CD300f deficiency did not significantly influence the ragweed-specific IgE production, but increased the frequency of mast cell-dependent sneezing as well as the numbers of degranulated mast cells and eosinophils in the nasal tissues in our models. Similar results were also obtained for MCPT5-exprssing mast cell-specific loss of CD300f. Importantly, intranasal administration of ceramide liposomes reduced the frequency of sneezing as well as the numbers of degranulated mast cells and eosinophils in the nasal tissues in AR models. Thus, CD300f-ceramide interaction, predominantly in mast cells, alleviates the symptoms and progression of AR. Therefore, intranasal administration of ceramide liposomes may be a promising therapeutic approach against AR by targeting CD300f.


Subject(s)
Liposomes , Rhinitis, Allergic , Animals , Mice , Administration, Intranasal , Sneezing , Ceramides , Disease Models, Animal , Rhinitis, Allergic/drug therapy , Immunoglobulin E , Nasal Mucosa , Mice, Inbred BALB C , Ovalbumin
19.
Proc Natl Acad Sci U S A ; 121(18): e2319566121, 2024 Apr 30.
Article in English | MEDLINE | ID: mdl-38648490

ABSTRACT

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.


Subject(s)
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
20.
Int Immunopharmacol ; 132: 112003, 2024 May 10.
Article in English | MEDLINE | ID: mdl-38603858

ABSTRACT

Allergic rhinitis (AR) is a common allergic disease. Cytochrome P450, family 2, subfamily e, polypeptide 1 (Cyp2e1) is a member of the cytochrome P450 family of enzymes, while its role in AR is still unveiled. In AR mice, T cell-specific overexpression of Cyp2e1 relieved the AR symptoms. Overexpressed-Cyp2e1 restrained the infiltration of eosinophils and mast cells in the nasal mucosa of mice, and the inflammatory cells in nasal lavage fluid (NALF). Cyp2e1 overexpressed mice exhibited decreased goblet cell hyperplasia and mucus secretion as well as decreased MUC5AC expression in nasal mucosa. The epithelial permeability and integrity of nasal mucosa were improved upon Cyp2e1 overexpression in AR mice, as evidenced by decreased fluorescein isothiocyanate-dextran 4 content in serum, increased expression of IL-25, IL-33, and TSLP in NALF, and increased expression of ZO-1 and occluding in nasal mucosa. Cyp2e1 inhibited Th2 immune response by decreasing the expression and secretion of IL-4, IL-5, and IL-13 as well as the expression of GATA-3 in NALF or nasal mucosa. We proved that Cyp2e1 inhibited the differentiation of naïve CD4+ T cells toward the Th2 subtype, which was regulated by MAFB by binding to Cyp2e1 promoter to activate its transcription. Overall, these results show the potential role of Cyp2e1 in alleviating AR symptoms by restraining CD4+ T cells to Th2 cell differentiation. Our findings provide further insight into the AR mechanism.


Subject(s)
Cell Differentiation , Cytochrome P-450 CYP2E1 , Nasal Mucosa , Ovalbumin , Rhinitis, Allergic , Th2 Cells , Animals , Humans , Mice , Cytochrome P-450 CYP2E1/metabolism , Cytochrome P-450 CYP2E1/genetics , Cytokines/metabolism , Disease Models, Animal , Lymphocyte Activation , Mice, Inbred BALB C , Nasal Mucosa/immunology , Nasal Mucosa/pathology , Ovalbumin/immunology , Rhinitis, Allergic/immunology , Th2 Cells/immunology
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