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Reference List

Restrata Technology Master Reference List: 


1. MacEwan MR, MacEwan S, Wright AP, Kovacs TR, Batts J, Zhang L. Comparison of a Fully Synthetic Electrospun Matrix to a Bi-Layered Xenograft in Healing Full Thick-ness Cutaneous Wounds in a Porcine Model. Cureus. 2017;9(8):e1614. Published 2017 Aug 27. doi:10.7799/cureus.1614.
2. MacEwan MR, MacEwan S, Kovacs TR, Batts J. What Makes the Optimal Wound Healing Material? A Review of Current Science and Introduction of a Synthetic Nanofabricated Wound Care Scaffold. Cureus. 2017;9(10):e1736. Published 2017 Oct 2. doi:10.7799/cureus.1736
3. Sallade E, Grimes D, Jeng L, et al. (December 06, 2023) Antimicrobial Effectiveness Testing of Resorbable Electrospun Fiber Matrix per United States Pharmacopeia (USP) <51>. Cureus 15(12): e50055. doi:10.7759/cureus.50055
4. Part 58-good laboratory practice for nonclinical laboratory studies. (2023). Accessed: November 2023: https://www.ecfr.gov/cu
5. Schneider, LA., et al. Arch Dermatol Res 298 (2007): 413-420. https://link.springer.com/article/10.1007/s00403-006-0713-x
6. Kruse, CR., et al. Wound Repair and Regeneration 23 (2015): 456-464 https://onlinelibrary.wiley.com/doi/epdf/10.1111/wrr.12303
7. EDS-70023-11 (Data on file)
8. Regulski MJ, MacEwan MR. Implantable Nanomedical Scaffold Facilitates Healing of Chronic Lower Extremity Wounds. Wounds. 2018;30(8): E77-E80\
9. Fernandez L, Schar A, Matthews M, Kim PJ, Thompson C, Williams N, Stutsman M. Synthetic Hybrid-Scale Fiber Matrix in the Trauma and Acute Care Surgical Practice. Wounds. 2021 Sep;33(9):237-244. PMID: 34734842.
10. Data on File (GPSDP- Oct26-26-2022- FDA Executive Summary Absorbable Synthetic Wound Dressings)
11. EDS-60105-00 (Data on file)
12. MKG-20002-14
13. Acera Surgical Clinical Compendium. https://acera-surgical.com/pages
14. MKG-20005-04
15. EDS-80003-01 (Data on file)
16. Nagoba, Basavraj & Suryawanshi, Namdev & Wadher, Bharat & Selkar, Sohan. (2015). Acidic Environment and Wound Healing: A Review. Wounds: a compendium of clinical research and practice. 27. 5-11.
17. Bennison, LR., et al. Wound Practice & Research 25 (2017): 63.
18. SMKG-10064-02
19. Abicht BP, Deitrick GA, MacEwan MR, Jeng L. Evaluation of wound healing of diabetic foot ulcers in a prospective clinical trial using a synthetic hybrid-scale fiber matrix. Foot &amp; Ankle Surgery: Techniques, Reports &amp; Cases. 2022;2(1):100135. doi:10.1016/j.fastrc.2021.100135 Hou
20. Hou Y, Collinsworth A, Hasa F, Griffin L. Incidence and impact of surgical site complications on length of stay and cost of care for patients undergoing open procedures. Surg Open Sci. 2023 May 20; 14:31-45. doi: 10.1016/j.sopen.2023.05.004. PMID: 37599673; PMCID: PMC10436177.
21. Hall, Chad MD; Regner, Justin MD, FACS; Abernathy, Stephen MD, FACS; Isbell, Claire MD, FACS; Isbell, Travis MD; Kurek, Stan DO, FACS; Smith, Randall MD, FACS; Frazee, Richard MD, FACS*. Surgical Site Infection after Primary Closure of High-Risk Surgical Wounds in Emergency General Surgery Laparotomy and Closed Negative-Pressure Wound Therapy. Journal of the American College of Surgeons 228(4):p 393-397, April 2019. | DOI: 10.1016/j.jamcollsurg.2018.12.006
22. Rosen RD, Manna B. Wound Dehiscence. [Updated 2023 May 1]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan. 
23. EDS-80026-00 (Data on file)
24. EDS-80025-00 (Data on file)
25. EDS-71006-10 (Data on file)
26. MKG-20007-02
27. Husain K, Malik A, Kirchens J, Choi G. A Prospective, Blinded, Randomized Controlled Clinical Trial Evaluating the Effect of the Synthetic Electropsun Fiber Matrix in the Treatment of Chronic Diabetic Foot Ulcers. Foot & Ankle Surgery: Techniques, Reports & Cases. Published online January 1, 2024:100362-100362. doi:https://doi.org/10.1016/j.fastrc.2024.100362
28. EDS-80026-00 (Data on file)
29. EDS-71025-00 (Data on file)
30. EDS-71003-02 (Data on file)
31. Chen, S., Liu, B., Carlson, M. A., Gombart, A. F., Reilly, D. A., & Xie, J. (2017). Recent Advances in Electrospun Nanofibers for Wound Healing. Nanomedicine, 12(11), 1335–1352. https://doi.org/10.2217/nnm-2017-0017

 

 

MKG-30212-00, MKG-30213-00, MKG-30214-00

 

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