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Clinical and Experimental Otorhinolaryngology|September 3, 2020
Crosstalk Between Mucosal Inflammation and Bone Metabolism in Chronic RhinosinusitisRoza Khalmuratova, Hyun-Woo ShinAmerican Journal of Rhinology & Allergy|June 18, 2011
Effect of dexamethasone on wound healing of the septal mucosa in the ratRoza Khalmuratova, Dae Woo Kim, Sea-Yuong JeonImmune Network|March 7, 2017
Immune Cell Responses and Mucosal Barrier Disruptions in Chronic RhinosinusitisRoza Khalmuratova, Jong-Wan Park, Hyun-Woo ShinAllergy, Asthma & Immunology Research|February 4, 2020
Evaluation of Neo-Osteogenesis in Eosinophilic Chronic Rhinosinusitis Using a Nasal Polyp Murine ModelRoza Khalmuratova, Mingyu Lee, Jong Wan Park, et al.Ebiomedicine|July 24, 2019
Interleukin (IL)-13 and IL-17A contribute to neo-osteogenesis in chronic rhinosinusitis by inducing RUNX2Roza Khalmuratova, Hyun-Woo Shin, Dae Woo Kim, et al.BMC Pharmacology & Toxicology|December 13, 2025
A tissue-penetrably engineered deoxyribonuclease 1 to prevent nasal polyp formation in chronic rhinosinusitisSu-Bin Kwak, Roza Khalmuratova, Sang-Jin Kim, et al.Allergy, Asthma & Immunology Research|July 4, 2012
Roles of periostin in symptom manifestation and airway remodeling in a murine model of allergic rhinitisDong Gu Hur, Roza Khalmuratova, Seong-Ki Ahn, et al.Scientific Reports|April 20, 2018
Wogonin attenuates nasal polyp formation by inducing eosinophil apoptosis through HIF-1α and survivin suppressionRoza Khalmuratova, Mingyu Lee, Ji-Hun Mo, et al.Tissue Engineering and Regenerative Medicine|January 4, 2019
Serial Analysis of Tracheal Restenosis After 3D-Printed Scaffold Implantation: Recruited Inflammatory Cells and Associated Tissue ChangesHee-Jin Ahn, Roza Khalmuratova, Su A Park, et al.Scientific Reports|January 14, 2021
Effect of lipopolysaccharide and polyinosinic:polycytidylic acid in a murine model of nasal polypJee Hye Wee, Young-Kyung Ko, Roza Khalmuratova, et al.Pageof 4