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Zaviranje delovanja Ninjurina-1 z uporabo kratkih protismernih oligonukleotidov
ID Kores, Anja (Author), ID Železnik Ramuta, Taja (Mentor) More about this mentor... This link opens in a new window

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Abstract
Ninjurin-1 (NINJ-1) je protein, ki ima v procesu litične celične smrti pomembno vlogo pri poškodbi plazmaleme, pri čemer se iz poškodovanih celic sprostijo s poškodbo povezane molekule (angl. damage-associated molecular patterns, DAMP), ki sprožijo proces vnetja. Zapleti se lahko pojavijo pri bolnikih s kroničnimi vnetnimi boleznimi, pri katerih sproščanje vnetnih molekul DAMP kot posledica uničenja plazmaleme z NINJ-1 prispeva k napredovanju vnetnih bolezni. V nalogi smo želeli razviti nov pristop za zaviranje delovanja NINJ-1. Odločili smo se za uporabo metode protismernih oligonukleotidov (angl. antisense oligonucleotides, ASO), saj z njo dosežemo natančno in specifično tarčno delovanje in se je že izkazala kot varna in učinkovita metoda. V magistrskem delu smo testirali delovanje različnih ASO na zaviranje izražanja NINJ-1 in razvijali različne sisteme, s katerimi bi lahko delovanje ASO ovrednotili. S testom živosti s propidijevim jodidom smo dokazali, da prekomerno izražanje NINJ-1 sproži celično smrt v celični liniji HEK293T. Delovanje petih različnih ASO smo preizkusili z dvema različnima pristopoma – najprej smo razvili sistem z luciferaznim reporterjem, nato pa še sistem, ki temelji na določanju deleža celične smrti s propidijevim jodidom. Preizkušeni ASO niso znižali izražanja NINJ-1. V sklopu naloge smo razvijali še tri dodatne pristope za vrednotenje delovanja protismernih oligonuklotidov na izražanje NINJ-1. Ugotovili smo, da posrednih učinkov ASO na izražanje NINJ-1 ne moremo spremljati na podlagi aktivacije z vnetjem povezanih promotorjev, ki se odzivajo na vnetne dejavnike, medtem ko lahko spremembe v izražanju NINJ-1 posredno spremljamo preko vnetnih citokinov, ki jih izločajo imunske celice, ki so v stiku s celicami, ki izražajo NINJ-1.

Language:Slovenian
Keywords:protismerni oligonukleotidi, Ninjurin-1, kloniranje po Gibsonu, transfekcija, transformacija, razvoj sistemov, luciferazni reporterski sistem, test s propidijevim jodidom, ELISA, konfokalna mikroskopija, celice HEK 293, celice HEK293T, makrofagi
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Year:2026
PID:20.500.12556/RUL-178447 This link opens in a new window
COBISS.SI-ID:266523651 This link opens in a new window
Publication date in RUL:28.01.2026
Views:45
Downloads:8
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Secondary language

Language:English
Title:Development of an approach to inhibit Ninjurin-1 using antisense oligonucleotides
Abstract:
Ninjurin-1 (NINJ-1) is a protein that plays an important role in plasma membrane rupture during lytic cell death, during which DAMP (damage-associated molecular patterns) molecules are released from damaged cells and trigger the inflammatory process. In patients with chronic inflammatory diseases, complications may arise due to the release of inflammatory DAMP molecules resulting from plasma membrane disruption by NINJ-1, which may contribute to the progression of inflammatory diseases. In this thesis, we aimed to develop a novel approach to inhibit NINJ-1 activity. We used antisense oligonucleotides (ASO), as they enable precise and specific targeting and have also beenproven to be a safe and effective approach for regulation of gene expression. In the master’s thesis, we tested the effect of different ASO on the expression of NINJ-1 and developed various systems to evaluate ASO activity. Using the propidium iodide viability assay, we demonstrated that NINJ-1 overexpression triggers cell death in the HEK293T cell line. The activity of five different ASOs was tested using two approaches – first, we developed a luciferase reporter system, and second, we used a system based on the quantification of cell death with propidium iodide. The tested ASOs did not reduce NINJ-1 expression. In scope of this project, we also developed three additional approaches for indirect evaluation of ASO activity. While the indirect effects of ASOs on NINJ-1 expression cannot be monitored through the activation of inflammation-responsive promoters changes in NINJ-1 expression can be indirectly assessed via inflammatory cytokines secreted by immune cells that come into contact with NINJ-1-expressing cells.

Keywords:antisense oligonucleotides, NINJ-1, Gibson Assembly, transfection, transformation, system development, luciferase reporter system, propidium iodide assay, ELISA, confocal microscopy, cells HEK 293, cells HEK293T, macrophages

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