Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
693
result(s) for
"Nasal Polyps - immunology"
Sort by:
An anti-TSLP monoclonal antibody for uncontrolled CRSwNP: the DUBHE randomized clinical trial
2025
To explore the therapeutic potential of blocking thymic stromal lymphopoietin (TSLP) in patients with chronic rhinosinusitis with nasal polyps (CRSwNP), we conducted a phase 1b/2a, randomized, double-blind, placebo-controlled trial to assess the safety and efficacy of CM326, a monoclonal antibody against TSLP. We enrolled 84 eligible patients with uncontrolled CRSwNP and stratified them based on baseline tissue eosinophil count. Patients are assigned to receive CM326 220 mg (
n
= 40) or placebo (
n
= 20) every 2 weeks (Q2W) and CM326 220 mg (
n
= 20) or placebo (
n
= 4) every 4 weeks (Q4W) for 16 weeks. Subsequently, all patients continue on CM326 220 mg Q2W or Q4W for an additional 36 weeks, followed by a 12-week follow up. Primary endpoints are safety of CM326 and change from baseline in NPS at week 16 in patients with eosinophilic CRSwNP (ECRSwNP). Main secondary endpoints include the change from baseline in NPS at week 16 in non-eosinophilic CRSwNP (nonECRwNP) and pharmacodynamic markers. Throughout the 64-week study, all treatment-emergent adverse events (TEAEs) are mild or moderate. CM326 Q2W improves NPS in patients with ECRSwNP compared with placebo at week 16 (mean difference [95% CI], −1.2 [−2.3 to −0.1],
P
= 0.04), with sustained benefits during the open-label and follow-up periods. Notably, peripheral blood and tissue eosinophil counts and concentrations of plasma IL-13 and IL-5 are reduced by week 16 with the treatment of CM326 Q2W
versus
placebo. A
post-hoc
analysis demonstrates that all participants with baseline TSLP > 330 fg/mL achieve a substantial reduction in NPS by week 16 with the treatment of CM326 Q2W (mean difference vs. placebo: −1.75 [95%CI, −3.06 to −0.44],
P
= 0.01). Overall, CM326 is well tolerated and effective in patients with uncontrolled ECRSwNP. A baseline plasma TSLP level of 330 fg/mL may serve as a predictive marker for treatment efficacy of CM326. ClinicalTrials.gov Identifier: NCT05324137.
Anti-TSLP biologics have shown promise for the clinical treatment of type 2 respiratory disease. Here the authors present a clinical trial of CM326, a monoclonal antibody against TSLP, and show the clinical effects in patients with eosinophilic chronic rhinosinusitis with nasal polyps (ECRSwNP), who present with type 2-dominant inflammation.
Journal Article
Reduced Expression of Antimicrobial Protein Secretory Leukoprotease Inhibitor and Clusterin in Chronic Rhinosinusitis with Nasal Polyps
2021
Introduction. Antimicrobial peptides and proteins (AMPs) constitute the first line of defense against pathogenic microorganisms in the airway. The association between AMPs and chronic rhinosinusitis with nasal polyps (CRSwNP) requires further investigations. This study is aimed at investigating the expression and regulation of major dysregulated AMPs in the nasal mucosa of CRSwNP. Methods. The expression of AMPs was analyzed in nasal tissue from patients with eosinophilic (E) CRSwNP and nonECRSwNP and healthy subjects using RNA sequencing. The 10 most abundant AMPs expressed differentially in CRSwNP patients were verified by real-time PCR, and of these, the expression and regulation of secretory leukoprotease inhibitor (SLPI) and clusterin (CLU) were investigated further. Results. The 10 most abundant AMPs expressed differentially in CRSwNP compared to healthy control, regardless of subtypes, included BPIFA1, BPIFB1, BPIFB2, CLU, LTF, LYZ, and SLPI, which were downregulated, and S100A8, S100A9, and HIST1H2BC, which were upregulated. ELISA and immunofluorescence confirmed the decreased expression of SLPI and CLU levels in CRSwNP. SLPI is expressed in both nasal epithelial cells and glandular cells, whereas CLU is mainly expressed in glandular cells. AB/PAS staining further demonstrated that both SLPI and CLU were mainly produced by mucous cells in submucosal glands. Furthermore, the numbers of submucosal glands were significantly decreased in nasal polyp tissue of CRSwNP compared to nasal tissue of controls. SLPI was downregulated by TGF-β1 and IL-4 in cultured nasal tissues in vitro, while CLU expression was inhibited by TGF-β1. Glucocorticoid treatment for 2 weeks significantly increased the expression of all downregulated AMPs, but not LYZ. Additionally, budesonide significantly increased the expression of SLPI and CLU in cultured nasal tissues. Conclusion. The expression of major antimicrobial proteins is significantly decreased in nasal tissue of CRSwNP. The expression of SLPI and CLU is correlated with the numbers of submucosal glands and regulated by inflammatory cytokines and glucocorticoids.
Journal Article
Omalizumab versus intranasal steroids in the post-operative management of patients with allergic fungal rhinosinusitis
by
Askoura, Anas Mohammed
,
Mostafa, Badr Eldin
,
Hamdi, Tarek Abdel Hamid
in
Administration, Intranasal
,
Adolescent
,
Adult
2020
Purpose
Allergic fungal rhinosinusitis (AFRS) is a common disorder with a high prevalence and a very high incidence of recurrence. Management includes surgery and medical treatment in the form of local and/or systemic steroids. However, some cases are resistant to the action of steroids and further treatment is warranted. Being an immune-mediated disorder, targeting IgE seems a logical step. Immunotherapy drugs acting on the IgE (e.g. omalizumab) can modify the clinical course of the disease. This study aimed at evaluating the effect of omalizumab on the clinical course of patients undergoing surgery for AFRS.
Materials and methods
This is a two-arm prospective, randomized, single blind clinical trial among patients with AFRS. Twenty patients were included and randomly divided into two groups: Group A; 10 patients received a single subcutaneous injection of omalizumab (Xolair ‘ Novartis) (150 mg) 2 weeks postoperatively. Group B: 10 patients received local steroids nasal sprays (budesonide or mometasone furoate, 100 μg twice daily for 6 months, starting 2 weeks postoperatively. All patients underwent history, examination, CT scan and IgE level estimation and were submitted to endoscopic sinus surgery. They were evaluated at 4 weeks interval for 6 months.
Results
In both groups there were highly significant differences between pre/post-operative SNOT-20 scores, TNSS scores, total IgE level and Philpott–Javer staging scores. Comparison between the two study groups at 24 weeks showed a highly significant difference (
p
= 0.001) between post-operative SNOT 20 and TNSS scores in favour of group A. There was no statistically significant difference between the two study groups as regarding postoperative total IgE or Philpott–Javer scores. There were two recurrences in both arms, but no significant side effects.
Discussion
We compared a single post operative injection of omalizumab with twice daily intranasal steroid spray for 6 months. Both treatments were effective, but the omalizumab group showed a more significant clinical and endoscopic response. There were no significant side effects in both arms. This novel approach used a single low dose injection of omalizumab increased the compliance of the patients with minimal complications. Longer follow-up of the patients is ongoing to determine the optimal time for re-injection. The only downside was the higher cost of omalizumab compared to that of local steroids.
Journal Article
Comparison of serum zinc levels between patients with sinonasal neutrophilic and eosinophilic inflammatory polyposis and healthy individuals
2024
Objectives Some changes in nasal mucus and paranasal sinuses may occur due to zinc deficiency, which can cause chronic rhinosinusitis with nasal polyps (CRSwNP). The current study was designed to compare the serum zinc concentration between patients with chronic rhinosinusitis complicated with eosinophilic or neutrophilic nasal polyps and a control group. Methods A total of 105 patients participated in the study. Patients in three different groups were evaluated for CRSwNP (35 in the eosinophilia group and 35 in the neutrophil group), and 35 patients underwent surgery for reasons other than polyposis (control group). The serum zinc level was determined. Results The mean age of the patients was 39.4 ± 12.61 years. Forty‐one patients (39%) were female. Based on the enzyme linked immunosorbent assay results, the average serum zinc level in the control group was 137.01 ± 19.42 (μgm/100 mL), and in all patients with CRSwNP, it was 127.27 ± 21.7 (μgm/100 mL). The serum zinc concentration in patients with CRSwNP was significantly lower than that in the control group (p = .027). Among the CRSwNP patients with eosinophilic polyps and neutrophilic polyps, 130.42 ± 21.92 (μgm/100 mL) and 127.27 ± 21.7 (μgm/100 mL), respectively, were detected. Based on the statistical analysis, the neutrophilic and eosinophilic groups were homogenous according to the average serum zinc concentration (p = .631), and the same conditions prevailed for the eosinophilic and control groups (p = .574). There was a noticeable distinction between the neutrophilic group and the control group (p = .034). Conclusion Serum zinc concentrations were significantly lower in patients with neutrophilic polyps than in the general population. This difference may be due to the essential role of zinc in the inflammatory process in patients with neutrophilic polyposis. Key points The serum zinc level with Sinonasal Polyposis was lower than the control group. The neutrophilic and eosinophilic groups were homogenous in the mean zinc level. Zinc serum level is different between the eosinophil and control group.
Journal Article
IL-1β, IL-23, and TGF-β drive plasticity of human ILC2s towards IL-17-producing ILCs in nasal inflammation
2019
Innate lymphoid cells (ILCs) are crucial for the immune surveillance at mucosal sites. ILCs coordinate early eradication of pathogens and contribute to tissue healing and remodeling, features that are dysfunctional in patients with cystic fibrosis (CF). The mechanisms by which ILCs contribute to CF-immunopathology are ill-defined. Here, we show that group 2 ILCs (ILC2s) transdifferentiated into IL-17-secreting cells in the presence of the epithelial-derived cytokines IL-1β, IL-23 and TGF-β. This conversion is abrogated by IL-4 or vitamin D3. IL-17 producing ILC2s induce IL-8 secretion by epithelial cells and their presence in nasal polyps of CF patients is associated with neutrophilia. Our data suggest that ILC2s undergo transdifferentiation in CF nasal polyps in response to local cytokines, which are induced by infectious agents.
Innate lymphoid cells (ILCs) play critical immunological roles including immune surveillance at mucosal sites. Here the authors show that during nasal inflammation pathogen-induced cytokine production guides the differentiation of ILCs.
Journal Article
GZMK-expressing CD8+ T cells promote recurrent airway inflammatory diseases
2025
Inflammatory diseases are often chronic and recurrent, and current treatments do not typically remove underlying disease drivers
1
. T cells participate in a wide range of inflammatory diseases such as psoriasis
2
, Crohn’s disease
3
, oesophagitis
4
and multiple sclerosis
5
,
6
, and clonally expanded antigen-specific T cells may contribute to disease chronicity and recurrence, in part by forming persistent pathogenic memory. Chronic rhinosinusitis and asthma are inflammatory airway diseases that often present as comorbidities
7
. Chronic rhinosinusitis affects more than 10% of the general population
8
. Among these patients, 20–25% would develop nasal polyps, which often require repeated surgical resections owing to a high incidence of recurrence
9
. Whereas abundant T cells infiltrate the nasal polyps tissue
10
,
11
, T cell subsets that drive the disease pathology and promote recurrence are not fully understood. By comparing T cell repertoires in nasal polyp tissues obtained from consecutive surgeries, here we report that persistent CD8
+
T cell clones carrying effector memory-like features colonize the mucosal tissue during disease recurrence, and these cells characteristically express the tryptase Granzyme K (GZMK). We find that GZMK cleaves many complement components, including C2, C3, C4 and C5, that collectively contribute to the activation of the complement cascade. GZMK-expressing CD8
+
T cells participate in organized tertiary lymphoid structures, and tissue GZMK levels predict the disease severity and comorbidities better than well-established biomarkers such as eosinophilia and tissue interleukin-5. Using a mouse asthma model, we further show that GZMK-expressing CD8
+
T cells exacerbate the disease in a manner dependent on the proteolytic activity of GZMK and complements. Genetic ablation or pharmacological inhibition of GZMK after the disease onset markedly alleviates tissue pathology and restores lung function. Our work identifies a pathogenic CD8
+
memory T cell subset that promotes tissue inflammation and recurrent airway diseases by the effector molecule GZMK and suggests GZMK as a potential therapeutic target.
Comparing T cells in nasal polyps from repeated surgeries shows that effector memory-like persistent clones colonize the mucosal tissue during disease recurrence and promote inflammation by producing Granzyme K, a complement-activating tryptase, which is a potential therapeutic target.
Journal Article
The interleukin-4/interleukin-13 pathway in type 2 inflammation in chronic rhinosinusitis with nasal polyps
2024
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.
Journal Article
Allergic inflammatory memory in human respiratory epithelial progenitor cells
2018
Barrier tissue dysfunction is a fundamental feature of chronic human inflammatory diseases
1
. Specialized subsets of epithelial cells—including secretory and ciliated cells—differentiate from basal stem cells to collectively protect the upper airway
2
–
4
. Allergic inflammation can develop from persistent activation
5
of type 2 immunity
6
in the upper airway, resulting in chronic rhinosinusitis, which ranges in severity from rhinitis to severe nasal polyps
7
. Basal cell hyperplasia is a hallmark of severe disease
7
–
9
, but it is not known how these progenitor cells
2
,
10
,
11
contribute to clinical presentation and barrier tissue dysfunction in humans. Here we profile primary human surgical chronic rhinosinusitis samples (18,036 cells,
n
= 12) that span the disease spectrum using Seq-Well for massively parallel single-cell RNA sequencing
12
, report transcriptomes for human respiratory epithelial, immune and stromal cell types and subsets from a type 2 inflammatory disease, and map key mediators. By comparison with nasal scrapings (18,704 cells,
n
= 9), we define signatures of core, healthy, inflamed and polyp secretory cells. We reveal marked differences between the epithelial compartments of the non-polyp and polyp cellular ecosystems, identifying and validating a global reduction in cellular diversity of polyps characterized by basal cell hyperplasia, concomitant decreases in glandular cells, and phenotypic shifts in secretory cell antimicrobial expression. We detect an aberrant basal progenitor differentiation trajectory in polyps, and propose cell-intrinsic
13
, epigenetic
14
,
15
and extrinsic factors
11
,
16
,
17
that lock polyp basal cells into this uncommitted state. Finally, we functionally demonstrate that ex vivo cultured basal cells retain intrinsic memory of IL-4/IL-13 exposure, and test the potential for clinical blockade of the IL-4 receptor α-subunit to modify basal and secretory cell states in vivo. Overall, we find that reduced epithelial diversity stemming from functional shifts in basal cells is a key characteristic of type 2 immune-mediated barrier tissue dysfunction. Our results demonstrate that epithelial stem cells may contribute to the persistence of human disease by serving as repositories for allergic memories.
Single-cell RNA sequencing is used to characterize cell types in nasal tissues from human patients with chronic rhinosinusitis, revealing a role for tissue stem cells in allergic inflammatory memory.
Journal Article
Granzyme K+CD8+ T cells interact with fibroblasts to promote neutrophilic inflammation in nasal polyps
Sophisticated interactions between stromal and immune cells play crucial roles in various biological and pathological processes. In chronic rhinosinusitis with nasal polyps (CRSwNP), the upper airway inflammation in many patients is driven by T
H
2, ILC2, and eosinophils, thus being treated with glucocorticoids and anti-type 2 inflammation biologics. The resistance to these therapies is often associated with neutrophilic inflammation, which has also been widely identified in CRSwNP, but the underlying mechanisms remain unclear. Using single-cell analysis, spatial transcriptomics, and T-cell receptor sequencing, we identify an increased presence of granzyme K
+
(GZMK
+
) CD8
+
T cells in NPs, which possess a phenotype distinct from the cytotoxic GZMB
+
effector CD8
+
T subset. GZMK
+
CD8
+
T cells are found to express CXCR4 and interact with CXCL12-secreting fibroblasts, inducing the latter to produce neutrophil chemoattractants in a manner uniquely mediated by GZMK but not other granzymes. This GZMK
+
CD8
+
T cell-fibroblast crosstalk is also observed in other inflammatory diseases. Furthermore, GZMK
+
CD8
+
T cells exhibit a selective expansion of clones that recognize Epstein-Barr virus. Here, we show that GZMK marks a phenotypically distinct subset of effector CD8
+
T cells that promote neutrophilic inflammation.
Chronic rhinosinusitis with nasal polyps generally has a type 2 inflammatory eosinophilic profile but can have a treatment resistant neutrophilic phenotype. Here the authors characterise nasal polyps using single cell sequencing and spatial transcriptomics and show granzyme K
+
CD8
+
T cells associated with neutrophilic inflammation which promote release of neutrophilic chemoattractants from fibroblasts.
Journal Article
Cytokines in Chronic Rhinosinusitis. Role in Eosinophilia and Aspirin-exacerbated Respiratory Disease
by
Stevens, Whitney W.
,
Fujieda, Shigeharu
,
Carter, Roderick G.
in
Adult
,
Aged
,
Asthma, Aspirin-Induced - immunology
2015
Abstract
Rationale
The mechanisms that underlie the pathogenesis of chronic rhinosinusitis without nasal polyps (CRSsNP), chronic rhinosinusitis with nasal polyps (CRSwNP), and aspirin-exacerbated respiratory disease (AERD) are not clear.
Objectives
To first evaluate the inflammatory profiles of CRSsNP and CRSwNP tissues and then to investigate whether clinical differences observed between CRSwNP and AERD are in part secondary to differences in inflammatory mediator expression within nasal polyp (NP) tissues.
Methods
Expression levels of numerous inflammatory mediators were determined by quantitative real-time polymerase chain reaction, ELISA, and multiplex immunoassay.
Measurements and Main Results
CRSwNP NP had increased levels of type 2 mediators, including IL-5 (P < 0.001), IL-13 (P < 0.001), eotaxin-2 (P < 0.001), and monocyte chemoattractant protein (MCP)-4 (P < 0.01), compared with sinonasal tissue from subjects with CRSsNP and control subjects. Expression of IFN-γ messenger RNA or protein was low and not different among the chronic rhinosinusitis subtypes examined. Compared with CRSwNP, AERD NP had elevated protein levels of eosinophil cationic protein (ECP) (P < 0.001), granulocyte–macrophage colony–stimulating factor (GM-CSF) (P < 0.01), and MCP-1 (P = 0.01), as well as decreased gene expression of tissue plasminogen activator (tPA) (P = 0.02). Despite the higher eosinophilia in AERD, there was no associated increase in type 2 mediator protein levels observed.
Conclusions
CRSwNP was characterized by a predominant type 2 inflammatory environment, whereas CRSsNP did not reflect a classic type 1 milieu, as has been suggested previously. AERD can be distinguished from CRSwNP by elevated ECP levels, but this enhanced eosinophilia is not associated with elevations in traditional type 2 inflammatory mediators associated with eosinophil proliferation and recruitment. However, other factors, including GM-CSF, MCP-1, and tPA, may be important contributors to AERD pathogenesis.
Journal Article