TY - JOUR
T1 - Correction
T2 - Hydrogel Based on Adipose Tissue-Derived Extracellular Matrix Encapsulated with Microspheres Containing Epidermal Growth Factor (EGF) and Vascular Endothelial Growth Factor (VEGF) Accelerate Diabetic Wound Healing in a Rat Model (Bratislava Medical Journal, (2025), 126, 6, (910-922), 10.1007/s44411-025-00115-7)
AU - Alghamdi, Abdullah
AU - Alissa, Mohammed
AU - Alshehri, Mohammed A.
N1 - Publisher Copyright:
© The Author(s), under exclusive licence to the Faculty of Medicine, Comenius University in Bratislava 2025.
PY - 2025/10
Y1 - 2025/10
N2 - In the original version of this article, wrong Fig. 1 appeared as (Figure presented.) Characteristics of HAd and HAdM. A The SEM analysis of HAdM revealed a porous structure, providing an appropriate framework for cellular infiltration and mobility. B Examination of the microspheres via SEM indicated that they possessed spherical shapes and were evenly distributed. C The assessment of DNA levels confirmed the effectiveness of the decellularization method. D Degradability was assessed at specified time intervals. E EGF and VEGF provide sustained release over a 21-day period. F The MTT assay demonstrated the biocompatibility of HAd and HAdM The Fig. 1 should have appeared as shown below (Figure presented.) Characteristics of HAd and HAdM. A The SEM analysis of HAdM revealed a porous structure, providing an appropriate framework for cellular infiltration and mobility. B Examination of the microspheres via SEM indicated that they possessed spherical shapes and were evenly distributed. C The assessment of DNA levels confirmed the effectiveness of the decellularization method. D Degradability was assessed at specified time intervals. E EGF and VEGF provide sustained release over a 21-day period. F The MTT assay demonstrated the biocompatibility of HAd and HAdM The original article has been corrected.
AB - In the original version of this article, wrong Fig. 1 appeared as (Figure presented.) Characteristics of HAd and HAdM. A The SEM analysis of HAdM revealed a porous structure, providing an appropriate framework for cellular infiltration and mobility. B Examination of the microspheres via SEM indicated that they possessed spherical shapes and were evenly distributed. C The assessment of DNA levels confirmed the effectiveness of the decellularization method. D Degradability was assessed at specified time intervals. E EGF and VEGF provide sustained release over a 21-day period. F The MTT assay demonstrated the biocompatibility of HAd and HAdM The Fig. 1 should have appeared as shown below (Figure presented.) Characteristics of HAd and HAdM. A The SEM analysis of HAdM revealed a porous structure, providing an appropriate framework for cellular infiltration and mobility. B Examination of the microspheres via SEM indicated that they possessed spherical shapes and were evenly distributed. C The assessment of DNA levels confirmed the effectiveness of the decellularization method. D Degradability was assessed at specified time intervals. E EGF and VEGF provide sustained release over a 21-day period. F The MTT assay demonstrated the biocompatibility of HAd and HAdM The original article has been corrected.
UR - https://www.scopus.com/pages/publications/105015984961
U2 - 10.1007/s44411-025-00308-0
DO - 10.1007/s44411-025-00308-0
M3 - Comment/debate
AN - SCOPUS:105015984961
SN - 0006-9248
VL - 126
SP - 2811
EP - 2813
JO - Bratislava Medical Journal
JF - Bratislava Medical Journal
IS - 10
ER -