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Quantifying proliferation rate and transcriptional activity in human blood cancer cell lines treated with differentiation-inducing hemin
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Protein Science.
2024 (English)Independent thesis Advanced level (degree of Master (Two Years)), 20 credits / 30 HE creditsStudent thesisAlternative title
Kvantifiering av tillväxthastighet och transkriptionsaktivitet i humana blodcancercellinjer behandlade med differentieringsinducerande hemin (Swedish)
Abstract [sv]

Cellers tillväxthastighet varierar avsevärt mellan olika celltyper. Fullt specialiserade celler delar sig sällan och fokuserar i stället på sina specifika funktioner, medan stamceller aktivt delar sig för att upprätthålla en balans av nya och gamla celler. Denna studie syftar till att odla och analysera två mänskliga blodcancercellinjer: erytroleukemiska K562-celler och L428-celler från Hodgkins lymfom. Studien fokuserar på de två cellinjernas olika tillväxthastighet samt transkriptionsaktivitet under olika förhållanden och behandlingar. Projektet inkluderar även att ta fram ett helt nytt, effektiviserat protokoll för extraktion och kvantifiering av DNA, nascent RNA, mRNA och protein från ett enda prov.

Projektet tar också upp utmaningen att se om det finns en koppling mellan cellernas tillstånd och deras transkriptionsaktivitet, eftersom nuvarande sekvenseringsnormaliseringstekniker gör att de totala nivåerna av transkription inte blir jämförbara mellan olika cellinjer. Genom att kvantifiera cellernas tillväxthastighet och transkriptionsaktivitet identifierades en potentiell koppling mellan högre tillväxthastighet och ökad mängd RNA-produktion, vilket tyder på ett samband som ser till att tillräckligt stor mängd cellkomponenter produceras för dottercellerna.

Dessutom syftar studien till att undersöka de två cellinjernas respons på behandling med differentieringsinducerande hemin, känt för att inducera erytroid differentiering hos myeloida celler såsom K562-cellinjen. Trots deras olika hematopoetiska ursprung visade sig både K562- och L428-cellinjerna reagera på behandlingen och utvecklas mot röda blodkroppar. Detta kan påvisas genom att hemin gör att deras respektive tillväxthastigheter påverkas på samma sätt, samt att cellerna får en djupröd färg, vilket indikerar produktion av hemoglobin och är ett välkänt tecken på erytroid differentiering.

Abstract [en]

Cell proliferation rates vary significantly among different cell types. Terminally differentiated cells rarely divide, focusing on their specialized functions, while stem cells actively proliferate to maintain tissue homeostasis. This study aims to culture and analyze two human blood cancer cell lines: erythroleukemia K562 cells and Hodgkin's lymphoma L428 cells. The investigation focuses on their proliferation rates and transcriptional activities under various conditions and treatments. The project also includes the establishment of a novel, streamline protocol for extracting and quantifying DNA, nascent RNA, mRNA and protein from one single sample.

The study also addresses the challenge of correlating cell state with transcriptional activity, noting that current sequencing normalization techniques renders total levels of transcription incomparable between cell lines. By quantifying proliferation rates and transcriptional activity, a potential connection between proliferation rate and transcriptional activity was found. Higher proliferation rate corresponded to samples with larger amounts of RNA and higher transcription of nascent RNA, indicating an association that facilitates the production of sufficient cellular components necessary for the two daughter cells. 

Additionally, the study investigates the two cell lines’ responsiveness to differentiation-inducing hemin, known to induce differentiation toward the erythrocyte lineage for myeloid cells such as the K562 cell line. The findings from this study show that, despite belonging to different parts of the hematopoietic lineage, both the K562 cells and the L428 cells are responsive to hemin-induced differentiation toward the erythrocyte lineage. This is demonstrated by the fact that their proliferation rates are equally affected upon hemin treatments, and because both K562 and L428 cells turn red as a reflection of the induced production of hemoglobin, which is a recognized effect of hemin-induced erythrocytic differentiation.

Place, publisher, year, edition, pages
2024.
Series
TRITA-CBH-GRU ; 2024:230
Keywords [en]
Hematopoietic cell lines, proliferation rate, transcriptional activity, hemin, differentiation
Keywords [sv]
Hematopoetiska cellinjer, tillväxthastighet, transkriptionsaktivitet, hemin, differentiering
National Category
Medical Biotechnology (with a focus on Cell Biology (including Stem Cell Biology), Molecular Biology, Microbiology, Biochemistry or Biopharmacy)
Identifiers
URN: urn:nbn:se:kth:diva-348420OAI: oai:DiVA.org:kth-348420DiVA, id: diva2:1876163
Subject / course
Biotechnology
Educational program
Master of Science - Medical Biotechnology
Supervisors
Examiners
Available from: 2024-06-24 Created: 2024-06-24

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