Search Results - "Khaliullin, Timur O."
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Fibrous nanocellulose, crystalline nanocellulose, carbon nanotubes, and crocidolite asbestos elicit disparate immune responses upon pharyngeal aspiration in mice
Published in Journal of immunotoxicology (01-01-2018)“…With the rapid development of synthetic alternatives to mineral fibers, their possible effects on the environment and human health have become recognized as…”
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Mediation of the single-walled carbon nanotubes induced pulmonary fibrogenic response by osteopontin and TGF-β1
Published in Experimental lung research (14-09-2017)“…Purpose of the study: A number of in vivo studies have shown that pulmonary exposure to carbon nanotubes (CNTs) may lead to an acute local inflammatory…”
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Fibrosis biomarkers in workers exposed to MWCNTs
Published in Toxicology and applied pharmacology (15-05-2016)“…Multi-walled carbon nanotubes (MWCNT) with their unique physico-chemical properties offer numerous technological advantages and are projected to drive the next…”
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Comparative cytotoxicity of respirable surface-treated/untreated calcium carbonate rock dust particles in vitro
Published in Toxicology and applied pharmacology (01-01-2019)“…Calcium carbonate rock dust (RD) is used in mining to reduce the explosivity of aerosolized coal. During the dusting procedures, potential for human exposure…”
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Comparative analysis of lung and blood transcriptomes in mice exposed to multi-walled carbon nanotubes
Published in Toxicology and applied pharmacology (01-03-2020)“…Pulmonary exposure to multi-walled carbon nanotubes (MWCNT) causes inflammation, fibroproliferation, immunotoxicity, and systemic responses in rodents…”
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Multi-walled carbon nanotubes elicit concordant changes in DNA methylation and gene expression following long-term pulmonary exposure in mice
Published in Carbon (New York) (30-06-2021)“…Pulmonary exposure to multi-walled carbon nanotubes (MWCNTs) causes inflammation and fibrosis. Our previous work has shown that industrially produced MWCNTs…”
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In Vitro Toxicity Evaluation of Lignin-(Un)coated Cellulose Based Nanomaterials on Human A549 and THP‑1 Cells
Published in Biomacromolecules (14-11-2016)“…A significant amount of research toward commercial development of cellulose based nanomaterials (CNM) is now in progress with some potential applications…”
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NIH SenNet Consortium to map senescent cells throughout the human lifespan to understand physiological health
Published in Nature aging (01-12-2022)“…Cells respond to many stressors by senescing, acquiring stable growth arrest, morphologic and metabolic changes, and a proinflammatory senescence-associated…”
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