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Targeted DPPC/DMPG surface-modified voriconazole lipid nanoparticles control invasive pulmonary aspergillosis in immunocompromised population: in-vitro and in-vivo assessment (2023)
Journal Article
Fayyaz, H. A., EL-Massik, M. A., Bahey-El-Din, M., Abdel-Bary, A., Abdallah, O. Y., & Eltaher, H. M. (2024). Targeted DPPC/DMPG surface-modified voriconazole lipid nanoparticles control invasive pulmonary aspergillosis in immunocompromised population: in-vitro and in-vivo assessment. International Journal of Pharmaceutics, 649, Article 123663. https://doi.org/10.1016/j.ijpharm.2023.123663

Invasive pulmonary aspergillosis (IPA) is the most devastating Aspergillus-related lung disease. Voriconazole (VRZ) is the first-line treatment against IPA. Despite availability in oral and parenteral dosage forms, risks of systemic toxicity dictate... Read More about Targeted DPPC/DMPG surface-modified voriconazole lipid nanoparticles control invasive pulmonary aspergillosis in immunocompromised population: in-vitro and in-vivo assessment.

Bioinspired 3D-printed scaffold embedding DDAB-nano ZnO/nanofibrous microspheres for regenerative diabetic wound healing (2023)
Journal Article
Metwally, W. M., El-Habashy, S. E., El-Hosseiny, L. S., Essawy, M. M., Eltaher, H. M., El-Khordagui, L., & El-Khordagui, L. K. (2023). Bioinspired 3D-printed scaffold embedding DDAB-nano ZnO/nanofibrous microspheres for regenerative diabetic wound healing. Biofabrication, 16(1), Article 015001. https://doi.org/10.1088/1758-5090/acfd60

There is a constant demand for novel materials/biomedical devices to accelerate the healing of hard-to-heal wounds. Herein, an innovative 3D-printed bioinspired construct was developed as an antibacterial/regenerative scaffold for diabetic wound heal... Read More about Bioinspired 3D-printed scaffold embedding DDAB-nano ZnO/nanofibrous microspheres for regenerative diabetic wound healing.

Nano zinc oxide-functionalized nanofibrous microspheres: A bioactive hybrid platform with antimicrobial, regenerative and hemostatic activities (2023)
Journal Article
Metwally, W. M., El-Habashy, S. E., El-Nikhely, N. A., Mahmoud, H. E., Eltaher, H. M., & El-Khordagui, L. (2023). Nano zinc oxide-functionalized nanofibrous microspheres: A bioactive hybrid platform with antimicrobial, regenerative and hemostatic activities. International Journal of Pharmaceutics, 638, Article 122920. https://doi.org/10.1016/j.ijpharm.2023.122920

Bioactive hybrid constructs are at the cutting edge of innovative biomaterials. PLA nanofibrous microspheres (NF-MS) were functionalized with zinc oxide nanoparticles (nZnO) and DDAB-modified nZnO (D-nZnO) for developing inorganic/nano-microparticula... Read More about Nano zinc oxide-functionalized nanofibrous microspheres: A bioactive hybrid platform with antimicrobial, regenerative and hemostatic activities.

Biomedical applications of bio-degradable green composites (2023)
Book Chapter
El-Khordagui, L. K., Eltaher, H. M., & Said, S. S. (2023). Biomedical applications of bio-degradable green composites. In Inamuddin, & T. Altalhi (Eds.), Green sustainable process for chemical and environmental engineering and science biomedical applications of green composites (55-110). Elsevier. https://doi.org/10.1016/b978-0-323-95169-2.00002-x

This chapter provides an overview of the biomedical applications of biodegradable green composites with emphasis on drug delivery, tissue engineering, wound care, personal hygiene, 3D printing and biosensing. Biodegradable green composites were appra... Read More about Biomedical applications of bio-degradable green composites.