An Advanced Multifunctional Hydrogel‐Based Dressing for Wound Monitoring and Drug Delivery
暂无分享,去创建一个
Mohsen Akbari | Yu Shrike Zhang | Pooria Mostafalu | Y. S. Zhang | Aziz Ghahary | Bahram Mirani | P. Mostafalu | M. Akbari | A. Ghahary | Erik Pagan | Barbara Currie | Mohammad Ali Siddiqui | Reihaneh Hosseinzadeh | B. Currie | Bahram Mirani | Erik Pagan | Reihaneh Hosseinzadeh
[1] Huaping Tan,et al. Alginate-Based Biomaterials for Regenerative Medicine Applications , 2013, Materials.
[2] Tim R. Dargaville,et al. Sensors and imaging for wound healing: a review. , 2013, Biosensors & bioelectronics.
[3] K. Erzurumlu,et al. Effect of Local Gentamicin Application on Healing and Wound Infection in Patients with Modified Radical Mastectomy: A Prospective Randomized Study , 2010, The Journal of international medical research.
[4] Ali Khademhosseini,et al. Dermal Patch with Integrated Flexible Heater for on Demand Drug Delivery , 2016, Advanced healthcare materials.
[5] J. Davidson. Current concepts in wound management and wound healing products. , 2015, The Veterinary clinics of North America. Small animal practice.
[6] Daniel Bar-Shalom,et al. Alginate drug delivery systems: application in context of pharmaceutical and biomedical research , 2014, Drug development and industrial pharmacy.
[7] Brendon M. Baker,et al. Rapid casting of patterned vascular networks for perfusable engineered 3D tissues , 2012, Nature materials.
[8] Ali Navaei,et al. Emerging Biofabrication Strategies for Engineering Complex Tissue Constructs , 2017, Advanced materials.
[9] Kevin Woo,et al. The role of moisture balance in wound healing. , 2007, Advances in skin & wound care.
[10] A. MacCormick,et al. Gentamicin-Collagen Implants to Reduce Surgical Site Infection: Systematic Review and Meta-analysis of Randomized Trials , 2013, Annals of surgery.
[11] M. Haberal,et al. Effectiveness of human amnion preserved long-term in glycerol as a temporary biological dressing. , 1999, Burns : journal of the International Society for Burn Injuries.
[12] Joachim Dissemond,et al. Influence of pH on wound-healing: a new perspective for wound-therapy? , 2007, Archives of Dermatological Research.
[13] Phillip Won,et al. A soft, wearable microfluidic device for the capture, storage, and colorimetric sensing of sweat , 2016, Science Translational Medicine.
[14] Ali Navaei,et al. Bioprinting technologies for disease modeling , 2017, Biotechnology Letters.
[15] E. Caterson,et al. Topical Delivery of Ultrahigh Concentrations of Gentamicin Is Highly Effective in Reducing Bacterial Levels in Infected Porcine Full-Thickness Wounds , 2015, Plastic and reconstructive surgery.
[16] Xian Huang,et al. Stretchable, wireless sensors and functional substrates for epidermal characterization of sweat. , 2014, Small.
[17] B. Tighe,et al. Synthetic hydrogels. VI. Hydrogel composites as wound dressings and implant materials. , 1989, Biomaterials.
[18] S. Fuchs,et al. Anaerobic Gene Expression in Staphylococcus aureus , 2007, Journal of bacteriology.
[19] M. Walker,et al. Importance of moisture balance at the wound-dressing interface. , 2003, Journal of wound care.
[20] Dawes Ea,et al. The Endogenous Metabolism of Microorganisms , 1962 .
[21] S. Logsetty,et al. Pseudomonas infections in the thermally injured patient. , 2004, Burns : journal of the International Society for Burn Injuries.
[22] Shingo Nakamura,et al. Hydrogel blends of chitin/chitosan, fucoidan and alginate as healing-impaired wound dressings. , 2010, Biomaterials.
[23] Ali Khademhosseini,et al. A toolkit of thread-based microfluidics, sensors, and electronics for 3D tissue embedding for medical diagnostics , 2016, Microsystems & Nanoengineering.
[24] J. Evans,et al. The preclinical evaluation of the water vapour transmission rate through burn wound dressings. , 1987, Biomaterials.
[25] Xiaoming Yang,et al. Cytotoxicity and wound healing properties of PVA/ws-chitosan/glycerol hydrogels made by irradiation followed by freeze–thawing , 2010 .
[26] M. Lavorgna,et al. Study of the combined effect of both clay and glycerol plasticizer on the properties of chitosan films , 2010 .
[27] A. Khademhosseini,et al. Composite Living Fibers for Creating Tissue Constructs Using Textile Techniques , 2014, Advanced functional materials.
[28] Babak Ziaie,et al. Biodegradable Nanofibrous Polymeric Substrates for Generating Elastic and Flexible Electronics , 2014, Advanced materials.
[29] G. Bloemsma,et al. Mortality and causes of death in a burn centre. , 2008, Burns : journal of the International Society for Burn Injuries.
[30] M. Falagas,et al. Gentamicin collagen sponges for the prevention of sternal wound infection: a meta-analysis of randomized controlled trials. , 2012, The Journal of thoracic and cardiovascular surgery.
[31] Amir Sanati-Nezhad,et al. Skin Diseases Modeling using Combined Tissue Engineering and Microfluidic Technologies , 2016, Advanced healthcare materials.
[32] David Juncker,et al. Microfluidic direct writer with integrated declogging mechanism for fabricating cell-laden hydrogel constructs , 2014, Biomedical microdevices.
[33] D. Mooney,et al. Alginate: properties and biomedical applications. , 2012, Progress in polymer science.
[34] James J S Norton,et al. Epidermal mechano-acoustic sensing electronics for cardiovascular diagnostics and human-machine interfaces , 2016, Science Advances.
[35] D. Church,et al. Burn Wound Infections , 2006, Clinical Microbiology Reviews.
[36] D. Seliktar. Designing Cell-Compatible Hydrogels for Biomedical Applications , 2012, Science.
[37] Yu Chen,et al. Paper based platform for colorimetric sensing of dissolved NH3 and CO2. , 2015, Biosensors & bioelectronics.