nasal mucilairtm in vitro models (Epithelix)
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Nasal Mucilairtm In Vitro Models, supplied by Epithelix, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/vitro+model/in+models+mucilairtm+nasal+vitro/pm42285446-76-0-35
Average 86 stars, based on 1 article reviews
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In Vitro:Article Title: Ciliary beat frequency of in vitro human nasal epithelium measured with the simple high-speed microscopy is applicable for safety studies of nasal drug formulations. Article Snippet: Nasal drug formulations can be effective for local delivery of therapeutic drugs to the sinonasal mucosa or for systemic drug delivery by absorption directly into the bloodstream.. The growing field of potential nasal therapies includes nasal vaccination and even treatment of neurodegenerative diseases.. However, it is important that nasal drug formulations don't have a disruptive effect on the cilia and mucosa of nasal epithelium. Article Title: Single-cell transcriptomics reveals a differential response of human bronchial epithelial cell-types to cadmium chloride. Article Snippet: The US National Research Council defines toxicogenomics as the combination of “toxicology with information dense genomic technologies to integrate toxicant-specific alterations in gene, protein and metabolite expression patterns with phenotypic responses of cells, tissues and organisms”.. Within this framework, transcriptomics has provided invaluable information on the interaction and mechanisms of action of compounds in a wide variety of biological systems, ranging from whole organisms, organs tissues and cell cultures.. For example, in the field of carcinogenicity, transcriptomics has led to the establishment of fingerprints, transcritptional signatures, that provide a rationale to classify compounds and predict their mode of action (reviewed in (David 2020). other:Article Title: Mucosomes: Intrinsically Mucoadhesive Glycosylated Mucin Nanoparticles as Multi-Drug Delivery Platform. Article Snippet: Mucus is a complex barrier for pharmacological treatments and overcoming it is one of the major challenges faced during transmucosal drug delivery.. To tackle this issue, a novel class of glycosylated nanoparticles, named “mucosomes,” which are based on the most important protein constituting mucus, the mucin, is introduced.. Mucosomes are designed to improve drug absorption and residence time on the mucosal tissues. Cell Culture:Article Title: Single-cell transcriptomics reveals a differential response of human bronchial epithelial cell-types to cadmium chloride Article Snippet: .. In Article Title: Single-cell transcriptomics reveals a differential response of human bronchial epithelial cell-types to cadmium chloride. Article Snippet: The US National Research Council defines toxicogenomics as the combination of “toxicology with information dense genomic technologies to integrate toxicant-specific alterations in gene, protein and metabolite expression patterns with phenotypic responses of cells, tissues and organisms”.. Within this framework, transcriptomics has provided invaluable information on the interaction and mechanisms of action of compounds in a wide variety of biological systems, ranging from whole organisms, organs tissues and cell cultures.. For example, in the field of carcinogenicity, transcriptomics has led to the establishment of fingerprints, transcritptional signatures, that provide a rationale to classify compounds and predict their mode of action (reviewed in (David 2020). Infection:Article Title: Drug-Free Nasal Spray as a Barrier against SARS-CoV-2 and Its Delta Variant: In Vitro Study of Safety and Efficacy in Human Nasal Airway Epithelia Article Snippet: .. This study tests the ability of AM-301 to prevent SARS-CoV-2 infection or mitigate existing infections in vitro using a model of primary Functional Assay:Article Title: Ciliary beat frequency of in vitro human nasal epithelium measured with the simple high-speed microscopy is applicable for safety studies of nasal drug formulations. Article Snippet: Nasal drug formulations can be effective for local delivery of therapeutic drugs to the sinonasal mucosa or for systemic drug delivery by absorption directly into the bloodstream.. The growing field of potential nasal therapies includes nasal vaccination and even treatment of neurodegenerative diseases.. However, it is important that nasal drug formulations don't have a disruptive effect on the cilia and mucosa of nasal epithelium. |


