Zahid, M.; Lodhi, M.; Rehan, Z.A.; Tayyab, H.; Javed, T.; Shabbir, R.; Mukhtar, A.; EL Sabagh, A.; Adamski, R.; Sakran, M.I.;
et al. Sustainable Development of Chitosan/Calotropis procera-Based Hydrogels to Stimulate Formation of Granulation Tissue and Angiogenesis in Wound Healing Applications. Molecules 2021, 26, 3284.
https://doi.org/10.3390/molecules26113284
AMA Style
Zahid M, Lodhi M, Rehan ZA, Tayyab H, Javed T, Shabbir R, Mukhtar A, EL Sabagh A, Adamski R, Sakran MI,
et al. Sustainable Development of Chitosan/Calotropis procera-Based Hydrogels to Stimulate Formation of Granulation Tissue and Angiogenesis in Wound Healing Applications. Molecules. 2021; 26(11):3284.
https://doi.org/10.3390/molecules26113284
Chicago/Turabian Style
Zahid, Muhammad, Maria Lodhi, Zulfiqar Ahmad Rehan, Hamna Tayyab, Talha Javed, Rubab Shabbir, Ahmed Mukhtar, Ayman EL Sabagh, Robert Adamski, Mohamed I. Sakran,
and et al. 2021. "Sustainable Development of Chitosan/Calotropis procera-Based Hydrogels to Stimulate Formation of Granulation Tissue and Angiogenesis in Wound Healing Applications" Molecules 26, no. 11: 3284.
https://doi.org/10.3390/molecules26113284
APA Style
Zahid, M., Lodhi, M., Rehan, Z. A., Tayyab, H., Javed, T., Shabbir, R., Mukhtar, A., EL Sabagh, A., Adamski, R., Sakran, M. I., & Siuta, D.
(2021). Sustainable Development of Chitosan/Calotropis procera-Based Hydrogels to Stimulate Formation of Granulation Tissue and Angiogenesis in Wound Healing Applications. Molecules, 26(11), 3284.
https://doi.org/10.3390/molecules26113284