3D scaffolds in the treatment of diabetic foot ulcers: New trends vs conventional approaches.

作者: Aniko Varadi , Dimitrios A. Lamprou , Alexandros Ch. Stratakos , Katie Glover

DOI: 10.1016/J.IJPHARM.2021.120423

关键词: Diabetic foot ulcerQuality of lifeDiabetic footLower limb amputationDiabetes mellitusIntensive care medicineTreatment strategyMedicine

摘要: Diabetic foot ulcer (DFU) is a serious complication of diabetes mellitus, affecting roughly 25% diabetic patients and resulting in lower limb amputation over 70% known cases. In addition to the devastating physiological consequences DFU its impact on patient quality life, has significant clinical economic implications. Various traditional therapies are implemented effectively treat DFU. However, emerging technologies such as bioprinting electrospinning, present an exciting opportunity improve current treatment strategies through development 3D scaffolds, by overcoming limitations wound healing strategies. This review provides summary (i) prevention available for DFU; (ii) methods fabrication scaffolds relevant this condition; (iii) suitable materials commonly used molecules (iv) future directions offered technologies.

参考文章(259)
Eng Wee Chua, Simone L. Cree, Kim N. T. Ton, Klaus Lehnert, Phillip Shepherd, Nuala Helsby, Martin A. Kennedy, Cross-Comparison of Exome Analysis, Next-Generation Sequencing of Amplicons, and the iPLEX® ADME PGx Panel for Pharmacogenomic Profiling Frontiers in Pharmacology. ,vol. 7, pp. 1- 1 ,(2016) , 10.3389/FPHAR.2016.00001
Yi-Chun Tsai, Suming Li, Shiaw-Guang Hu, Wen-Chi Chang, U-Ser Jeng, Shan-hui Hsu, Synthesis of Thermoresponsive Amphiphilic Polyurethane Gel as a New Cell Printing Material near Body Temperature. ACS Applied Materials & Interfaces. ,vol. 7, pp. 27613- 27623 ,(2015) , 10.1021/ACSAMI.5B10697
Bettina Peter-Riesch, The Diabetic Foot: The Never-Ending Challenge. Endocrine development. ,vol. 31, pp. 108- 134 ,(2016) , 10.1159/000439409
David B. Kolesky, Kimberly A. Homan, Mark A. Skylar-Scott, Jennifer A. Lewis, Three-dimensional bioprinting of thick vascularized tissues. Proceedings of the National Academy of Sciences of the United States of America. ,vol. 113, pp. 3179- 3184 ,(2016) , 10.1073/PNAS.1521342113
Jordan E. Trachtenberg, Jesse K. Placone, Brandon T. Smith, Charlotte M. Piard, Marco Santoro, David W. Scott, John P. Fisher, Antonios G. Mikos, Extrusion-Based 3D Printing of Poly(propylene fumarate) in a Full-Factorial Design ACS Biomaterials Science & Engineering. ,vol. 2, pp. 1771- 1780 ,(2016) , 10.1021/ACSBIOMATERIALS.6B00026
Sicco A. Bus, Jaap J. van Netten, A shift in priority in diabetic foot care and research: 75% of foot ulcers are preventable Diabetes-metabolism Research and Reviews. ,vol. 32, pp. 195- 200 ,(2016) , 10.1002/DMRR.2738
Rebecca J. Linger, Esther J. Belikoff, Ying Yan, Fang Li, Holly A. Wantuch, Helen L. Fitzsimons, Maxwell J. Scott, Towards next generation maggot debridement therapy: transgenic Lucilia sericata larvae that produce and secrete a human growth factor. BMC Biotechnology. ,vol. 16, pp. 30- 30 ,(2016) , 10.1186/S12896-016-0263-Z
Maria Yanez, Julio Rincon, Aracely Dones, Carmelo De Maria, Raoul Gonzales, Thomas Boland, In vivo assessment of printed microvasculature in a bilayer skin graft to treat full-thickness wounds. Tissue Engineering Part A. ,vol. 21, pp. 224- 233 ,(2015) , 10.1089/TEN.TEA.2013.0561
Deepak Dwivedi, Mona Dwivedi, Sourabh Malviya, Vinod Singh, Evaluation of wound healing, anti-microbial and antioxidant potential of Pongamia pinnata in wistar rats Journal of Traditional and Complementary Medicine. ,vol. 7, pp. 79- 85 ,(2017) , 10.1016/J.JTCME.2015.12.002
Shaheen N, Mustafa Qu, Hussain Sm, Sajid Mt, Shukr I, Ahmed M, Comparison of Negative Pressure Wound Therapy Using Vacuum-Assisted Closure with Advanced Moist Wound Therapy in the Treatment of Diabetic Foot Ulcers. Jcpsp-journal of The College of Physicians and Surgeons Pakistan. ,vol. 25, pp. 789- 793 ,(2015)