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Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications
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L. Sleiman Et Al. , "Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications," Polymers , vol.16, no.12, 2024

Sleiman, L. Et Al. 2024. Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications. Polymers , vol.16, no.12 .

Sleiman, L., Lazăr, A., Albu-Kaya, M., Marin, M. M., KAYA, D. A., Vasile, O., ... Dinescu, S.(2024). Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications. Polymers , vol.16, no.12.

Sleiman, Lea Et Al. "Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications," Polymers , vol.16, no.12, 2024

Sleiman, Lea Et Al. "Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications." Polymers , vol.16, no.12, 2024

Sleiman, L. Et Al. (2024) . "Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications." Polymers , vol.16, no.12.

@article{article, author={Lea Sleiman Et Al. }, title={Development and Investigation of an Innovative 3D Biohybrid Based on Collagen and Silk Sericin Enriched with Flavonoids for Potential Wound Healing Applications}, journal={Polymers}, year=2024}