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Authors = Rokas Bagdonas

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19 pages, 8135 KiB  
Article
The Effect of CaV1.2 Inhibitor Nifedipine on Chondrogenic Differentiation of Human Bone Marrow or Menstrual Blood-Derived Mesenchymal Stem Cells and Chondrocytes
by Ilona Uzieliene, Daiva Bironaite, Rokas Miksiunas, Edvardas Bagdonas, Raminta Vaiciuleviciute, Ali Mobasheri and Eiva Bernotiene
Int. J. Mol. Sci. 2023, 24(7), 6730; https://doi.org/10.3390/ijms24076730 - 4 Apr 2023
Cited by 5 | Viewed by 2808
Abstract
Cartilage is an avascular tissue and sensitive to mechanical trauma and/or age-related degenerative processes leading to the development of osteoarthritis (OA). Therefore, it is important to investigate the mesenchymal cell-based chondrogenic regenerating mechanisms and possible their regulation. The aim of this study was [...] Read more.
Cartilage is an avascular tissue and sensitive to mechanical trauma and/or age-related degenerative processes leading to the development of osteoarthritis (OA). Therefore, it is important to investigate the mesenchymal cell-based chondrogenic regenerating mechanisms and possible their regulation. The aim of this study was to investigate the role of intracellular calcium (iCa2+) and its regulation through voltage-operated calcium channels (VOCC) on chondrogenic differentiation of mesenchymal stem/stromal cells derived from human bone marrow (BMMSCs) and menstrual blood (MenSCs) in comparison to OA chondrocytes. The level of iCa2+ was highest in chondrocytes, whereas iCa2+ store capacity was biggest in MenSCs and they proliferated better as compared to other cells. The level of CaV1.2 channels was also highest in OA chondrocytes than in other cells. CaV1.2 antagonist nifedipine slightly suppressed iCa2+, Cav1.2 and the proliferation of all cells and affected iCa2+ stores, particularly in BMMSCs. The expression of the CaV1.2 gene during 21 days of chondrogenic differentiation was highest in MenSCs, showing the weakest chondrogenic differentiation, which was stimulated by the nifedipine. The best chondrogenic differentiation potential showed BMMSCs (SOX9 and COL2A1 expression); however, purposeful iCa2+ and VOCC regulation by blockers can stimulate a chondrogenic response at least in MenSCs. Full article
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4 pages, 316 KiB  
Article
Reconstruction of nasal defect with the composite expanded forehead flap
by Saulius Vikšraitis, Kęstutis Maslauskas and Rokas Bagdonas
Medicina 2010, 46(1), 34; https://doi.org/10.3390/medicina46010006 - 9 Jan 2010
Viewed by 1236
Abstract
Nasal tip and septal perforations may lead to significant upper airway problems as well as disturbing esthetic changes in the external contour of the nose. Nasal defects impede normal social contact and create great self-identity problems for the patients.
We report the case [...] Read more.
Nasal tip and septal perforations may lead to significant upper airway problems as well as disturbing esthetic changes in the external contour of the nose. Nasal defects impede normal social contact and create great self-identity problems for the patients.
We report the case of a 37-year-old woman, taking drugs for 10 years, who had sepsis and nasal abscess with necrosis of the nasal tip and septum. Using a composite expanded forehead flap for reconstruction of the nose, good esthetic and functional results were achieved. Full article
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