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Profil bibliographique

Emıne Alarçın

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

52Publications signalées
1402Citations signalées
1Affiliations récentes

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Les domaines associés

Electrospun Nanofibers in Biomedical Applications3D Printing in Biomedical ResearchBone Tissue Engineering MaterialsHydrogels: synthesis, properties, applicationsWound Healing and Treatments

Les publications récentes

Accès ouvert 2025 article OpenAlex

Nanoparticle‐Embedded GelMA/NIPAm Hydrogels: A Temperature‐Responsive Hybrid System for Controlled Drug Release

Maria Daaboul, Zehra Kanlı, Oguzhan Gunduz, Banu Aydın et autres

Temperature-responsive hydrogels incorporating drug-loaded polymeric nanoparticles represent a significant advancement in controlled release systems, enabling responsive and environmentally triggered drug delivery. In this study, a novel temperature-responsive drug delivery system was developed based on a gelatin methacryloyl/N-isopropylacrylamide (GelMA/NIPAm) hydrogel incorporating phenytoin (PHT)-loaded …

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7 citations Macromolecular Bioscience
Accès ouvert 2025 article OpenAlex

Recent progress in the development of localized drug delivery systems for oral mucosal disorders using mucoadhesive patches

Tuna Barkin Tüküç, Emıne Alarçın, Ayça Bal‐Öztürk

Oral diseases are becoming increasingly prevalent worldwide, posing a significant challenge in treating recurrent conditions due to the wet and movable environment of the oral cavity. This environment reduces the residence time of formulations, making it difficult to effectively treat oral diseases. …

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0 citations Journal of Research in Pharmacy
Accès ouvert 2024 article OpenAlex

Molecular Separation by Using Active and Passive Microfluidic chip Designs: A Comprehensive Review (Adv. Mater. Interfaces 2/2024)

Aliakbar Ebrahimi, Kutay İçöz, Reza Didarian, Chih‐Hsin Shih et autres

Microfluidic Chip In article 2300492, Huseyin Avci and co-workers represent the advances in the development and utilization of different microfluidic “lab-on-a-chip” methods with low cost per device, quick analysis capabilities, and minimal sample consumption for the separation of biomolecules. It shows that …

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2 citations Advanced Materials Interfaces

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