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Preučevanje vpliva različno obdelanih kovinskih površin na človeške osteosarkomske celice MG-63
ID Urh, Nejc (Author), ID Drobne, Damjana (Mentor) More about this mentor... This link opens in a new window, ID Kononenko, Veno (Comentor)

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Abstract
Razumevanje in raziskovanje interakcij med celicami in različno lasersko obdelanimi kovinskimi površinami je ključno za razvoj inovativnih biomaterialov s potencialno uporabo v medicinskih aplikacijah. V magistrski nalogi smo se osredotočili na preučevanje interakcij med človeškimi osteosarkomskimi celicami MG-63 ter različno lasersko teksturiranimi in 3D lasersko natisnjenimi vzorci jekla 316L. Celicam na različno lasersko teksturiranih kovinskih površinah smo po 24, 72 in 168 urah inkubacije s pomočjo diferencialnega barvanja z barviloma Hoechst 33342 in propidijev jodid določili viabilnost. Za oceno citotoksičnosti in fiziološkega stanja celic na različno lasersko teksturiranih površinah smo uporabili barvilo resazurin za merjenje metabolne aktivnosti in nevtralno rdeče (NR) barvilo za merjenje integritete celičnih lizosomov. S pomočjo vrstičnega elektronskega mikroskopa smo pregledali morfologijo celic, ki so rasle na različnih vzorcih. Rezultati kažejo razlike v viabilnosti celic, metabolni aktivnosti, integriteti lizosomov in morfologiji celic med različnimi vzorci. Predpostavljamo, da je k citotoksičnemu delovanju vzorcev prispevalo več dejavnikov, med njimi tudi razpokanost oksidnih slojev, luščenje kovinskih ionov in različna struktura površin vzorcev. Pokazali smo, da je morfologija celic odvisna od podlage, na kateri celice rastejo, in hkrati skupaj s citotoksičnostjo odraža biokompatibilnost materialov. Delo ponuja prvi vpogled med interakcijo celic MG-63 in različnimi lasersko obdelanimi vzorci, ki bi jih lahko potencialno uporabili v medicinske namene.

Language:Slovenian
Keywords:Biokompatibilnost, celice MG-63, citotoksičnost, laserska obdelava, nerjavno jeklo
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Year:2024
PID:20.500.12556/RUL-160721-86b1e4d9-c9cc-13fa-74ef-35b7dcd36a82 This link opens in a new window
COBISS.SI-ID:206471683 This link opens in a new window
Publication date in RUL:04.09.2024
Views:179
Downloads:40
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Secondary language

Language:English
Title:The effect of differently treated metal surfaces on MG-63 human osteosarcoma cells
Abstract:
Understanding and investigating interactions between cells and differently laser-treated metal surfaces is crucial for the development of innovative biomaterials with potential applications in medical settings. In this master's thesis, we focused on investigating interactions between human osteosarcoma cells MG-63 and various laser-textured and 3D laser-printed patterns of 316L steel. Cell viability on differently laser-textured metal surfaces was assessed after 24, 72, and 168 hours of incubation using differential staining with Hoechst and propidium iodide dyes. To evaluate cytotoxicity and cellular physiological status on various laser-textured surfaces, we utilized resazurin dye for measuring metabolic activity and neutral red (NR) dye for assessing lysosomal integrity. Cell morphology was examined using scanning electron microscopy. Results indicate differences in cell viability, metabolic activity, lysosomal integrity, and cell morphology among various samples. We hypothesize that multiple factors, including the cracking of oxide layers, leaching of metal ions, and diverse surface structures of the samples, contribute to the cytotoxicity observed. We demonstrated that cell morphology is dependent on the substrate on which cells grow and, together with cytotoxicity, reflects the biocompatibility of materials. This study provides initial insights into the interaction between MG-63 cells and differently laser-treated samples, which could potentially be utilized for medical purposes.

Keywords:Biocompatibility, cytotoxicity, laser treatment, MG-63 cells, stainless steel

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