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In vitro proučevanje pomena proteasoma v trombocitih in njegove vloge pri oblikovanju tumorskega mikrookolja
ID Smrdel, Lara (Author), ID Gobec, Martina (Author)

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Description: 1 A systematic review and meta-analysis of carfilzomib-associated thrombocytopenia as an adverse event in patients with MM
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Abstract
Trombociti imajo ključno vlogo pri regulaciji hemostaze, a so danes prepoznani tudi kot aktivni regulatorji imunosti, vnetja in napredovanja tumorjev. Kljub njihovim številnim biološkim vlogam pa ostajajo molekularni mehanizmi, ki uravnavajo aktivacijo trombocitov in njihovo sekretorno vedenje, pomanjkljivo opredeljeni. Nedavne raziskave so pokazale, da trombociti vsebujejo tako konstitutivni proteasom kot tudi imunoproteasom, ki ju običajno povezujemo predvsem z jedrnimi in imunskimi celicami. Ta doktorska disertacija preučuje, kako ti proteolitični sistemi oblikujejo biologijo trombocitov in vplivajo na trombocitno posredovane imunske in tumorske interakcije. Klinično pomembnost delovanja proteasoma v trombocitih smo definirali s kvantifikacijo trombocitopenije pri bolnikih z diseminiranim plazmocitomom, zdravljenih z zaviralci proteasoma. Zaviranje proteasoma je pomembno povečalo pojavnost trombocitopenije, pri čemer je bilo tveganje odvisno od uporabljenega zaviralca in njegovega odmerka. V okviru mehanističnih raziskav smo zato okarakterizirali aktivnost proteasoma in imunoproteasoma v človeških trombocitih ter zaznali pomembne inter-individualne razlike v proteasomskih profilih, kar nakazuje, da sestava proteasoma prispeva k specifičnim razlikam med donorji v odzivnosti trombocitov. Za razliko od jedrnih celic trombociti ob izpostavitvi vnetnim citokinom ne povišajo proteinskega nivoja katalitičnih podenot imunoproteasoma, kar nakazuje, da je njihova proteasomska sestava določena že med megakariopoezo. Selektivno zaviranje katalitičnih podenot okrepi izločanje gostih granul, a ne vpliva na proces agregacije, kar dokazuje, da imunoproteasom natančno uravnava sekretorne odzive trombocitov, ne da bi pri tem ogrozil njihovo osnovno hemostatsko funkcijo. Proteomske analize so pokazale spremenjeno izločanje proteinov iz trombocitov, povezanih s presnovnimi in mitohondrijskimi potmi, kar kaže na vlogo imunoproteasoma pri uravnavanju trombocitne bioenergetike in medcelične komunikacije. Selektivno zaviranje izbranih podenot proteasomov v trombocitih vodi v sproščanje dejavnikov, ki izrazito modulirajo vedenje celic raka dojk. Zlasti zaviranje podenote β1i sproži sekretorni profil, ki okrepi migracijo celic trojno negativnega raka dojk, poveča angiogeno signaliziranje ter zviša izražanje označevalcev značilnih za epitelijsko-mezenhimski prehod. Ti izsledki kažejo, da imunoproteasom trombocitov neposredno oblikuje tumorsko relevantne parakrine signale in lahko vpliva na metastatsko napredovanje.

Language:Slovenian
Keywords:degranulacija trombocitov, imunoproteasom, imunska regulacija, metastaziranje, proteasom, rak dojke, trombociti
Typology:2.20 - Complete scientific database of research data
Organization:FFA - Faculty of Pharmacy
Year:2026
PID:20.500.12556/RUL-179010 This link opens in a new window
Data col. methods:Experiment: Laboratory
Publication date in RUL:05.02.2026
Views:392
Downloads:7
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License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Licensing start date:03.02.2026

Secondary language

Language:English
Title:Elucidating the significance of platelet proteasome function and its role in shaping the tumour microenvironment in vitro
Abstract:
Platelets, traditionally recognized for their role in haemostasis, are now understood to actively regulate immune responses, inflammation, and tumour progression. Despite their broad functional repertoire, the molecular mechanisms governing platelet activation and secretion remain incompletely defined. Recent evidence has revealed that platelets contain both the constitutive proteasome and the immunoproteasome, proteolytic complexes previously thought to function primarily in nucleated immune cells. This dissertation investigates how these systems regulate platelet biology and influence platelet-driven immune and tumour interactions. The clinical relevance of platelet proteasome function was assessed through a meta-analysis of thrombocytopenia in multiple myeloma patients treated with proteasome inhibitors. Proteasome inhibition significantly increased thrombocytopenia incidence, with risk dependent on inhibitor type and dosage, underscoring the hematologic consequences of targeting proteasomal pathways. Mechanistic studies in human platelets revealed substantial interindividual variability in proteasome and immunoproteasome activity, suggesting that proteasomal composition contributes to donor-specific differences in platelet responsiveness. Unlike nucleated cells, platelets do not upregulate immunoproteasome subunits in response to inflammatory stimuli, indicating that their proteasomal profile is established during megakaryopoiesis. Selective inhibition of immunoproteasome catalytic subunits modulated platelet secretion in a subunit-specific manner, enhancing dense-granule release without impairing aggregation. Proteomic analysis of activated platelet supernatants demonstrated altered secretion of proteins linked to metabolic and mitochondrial pathways, implicating the immunoproteasome in the regulation of platelet bioenergetics and intercellular communication. Importantly, platelets with selectively inhibited immunoproteasome subunits released factors that markedly influenced breast cancer cell behaviour. Inhibition of the β1i subunit promoted migration of triple-negative breast cancer cells, increased angiogenic signalling, and induced markers associated with epithelial-mesenchymal transition. Collectively, this work establishes the platelet immunoproteasome as regulator of platelet secretion and signalling, with implications for immune regulation and tumour progression.

Keywords:breast cancer, immune regulation, immunoproteasome, metastasis, platelets, platelet degranulation, proteasome

Projects

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J3-1745
Name:Vloga imunoproteasoma v oblikovanju imunskega odziva posredovanega s trombociti

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P1-0420
Name:Napredna imunološka zdravila in celični pristopi v farmaciji

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