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Tomasz Debski

Explore the profile of Tomasz Debski including associated specialties, affiliations and a list of published articles. Areas
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Articles 17
Citations 118
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Recent Articles
1.
Rusinek K, Slysz A, Debski T, Siennicka K, Zolocinska A, Miszkiewicz-Jasinska J, et al.
J Appl Biomater Funct Mater . 2023 Dec; 21:22808000231211423. PMID: 38131345
There are scarce published data suggesting, that collagen extracted from fish skin may be an attractive alternative to mammalian-derived collagen for the cell cultures. In this study, we investigated proliferation...
2.
Debski T, Siennicka K, Idaszek J, Roszkowski B, Swieszkowski W, Pojda Z
J Biomater Appl . 2023 Sep; 38(4):548-561. PMID: 37732423
The study aimed to evaluate an angiogenic effect of adipose-derived stem cells (ASCs) seeding and surgical prefabrication (placing a vascular pedicle inside the scaffold) on developed composite scaffolds made of...
3.
Slysz A, Siennicka K, Kijenska-Gawronska E, Debski T, Zolocinska A, Swieszkowski W, et al.
Tissue Cell . 2022 Aug; 78:101899. PMID: 36030673
Background: The development of tissue-engineered scaffolds with electrical properties is the primary motivation of novel regenerative medicine. Electroconductive scaffolds are designed to mimic the injured tissue environment's electrical properties and...
4.
Debski T, Wysocki J, Siennicka K, Jaroszewicz J, Szlazak K, Swieszkowski W, et al.
Materials (Basel) . 2022 Mar; 15(5). PMID: 35268968
Poly-ɛ-caprolactone (PCL) is now widely studied in relation to the engineering of bone, cartilage, tendons, and other tissues. Standard histological protocols can destroy the carefully created trabecular and honeycomb-like architecture...
5.
Debski T, Zlotorowicz M, Noszczyk B
Eur J Trauma Emerg Surg . 2021 Jul; 48(3):2341-2347. PMID: 34279668
Background: Recovery of sensibility after digital nerve injury is crucial for restoring normal hand function. We evaluated long-term outcomes of digital nerve reconstruction with autografts. Methods: This retrospective study included...
6.
Siennicka K, Zolocinska A, Debski T, Pojda Z
Stem Cells Int . 2021 Jun; 2021:6665358. PMID: 34093710
Clinical experiments suggest that mesenchymal stem cells (MSCs) may be useful for tissue repair therapies or treatment of the autoimmune disorders. There is still lack of consensus concerning the age...
7.
Debski T, Kijenska-Gawronska E, Zolocinska A, Siennicka K, Slysz A, Paskal W, et al.
Int J Mol Sci . 2021 Jun; 22(11). PMID: 34070436
The aim was to examine the efficiency of a scaffold made of poly (L-lactic acid)-co-poly(ϵ-caprolactone), collagen (COL), polyaniline (PANI), and enriched with adipose-derived stem cells (ASCs) as a nerve conduit...
8.
Debski T, Noszczyk B
Eur J Trauma Emerg Surg . 2020 Feb; 47(5):1607-1612. PMID: 32025767
Background: Trauma to the hand is common and potentially serious, impairing daily living and general quality of life. Patients are often unable to work for several months, with hand function...
9.
Debski T, Kurzyk A, Ostrowska B, Wysocki J, Jaroszewicz J, Swieszkowski W, et al.
Stem Cell Res Ther . 2020 Jan; 11(1):34. PMID: 31973733
Background: Vascularization is important for the clinical application of tissue engineered products. Both adipose-derived stem cells (ASCs) and surgical prefabrication can be used to induce angiogenesis in scaffolds. Our aim...
10.
Kurzyk A, Debski T, Swieszkowski W, Pojda Z
J Biomater Sci Polym Ed . 2019 Jan; 30(5):376-397. PMID: 30686126
Adipose tissue yields adult adipose stem cells (ASCs) in large quantities via less-invasive methods. These cells are of interest owing to their modulating properties and paracrine activities, which can be...