<?xml version="1.0" encoding="utf-8"?><rss xmlns:a10="http://www.w3.org/2005/Atom" version="2.0"><channel xml:base="https://www.umu.se/" xmlns:atom="http://www.w3.org/2005/Atom"><title>Kalender MIMS</title><link>https://www.umu.se/</link><description>MIMS kalenderevenemang</description><language>en-us</language><lastBuildDate>Sun, 26 Jul 2026 19:14:26 +0200</lastBuildDate><atom:link href="https://www.umu.se/om-umea-universitet/nyheter-och-evenemang/rss/mims/rssevent?id=11779311" rel="self" type="application/rss+xml" /><item xml:base="kalender/60-ar-av-molekylarbiologi-pa-umea-universitet--symposium_12181040/"><guid isPermaLink="false">https://www.umu.se/kalender/60-ar-av-molekylarbiologi-pa-umea-universitet--symposium_12181040/</guid><title>60 år av molekylärbiologi på Umeå universitet – Symposium</title><description>Symposiet kommer att lyfta fram årtionden av vetenskapliga prestationer, innovation och akademiskt samarbete.</description><pubDate>Fri, 28 Aug 2026 08:45:00 +0200</pubDate><atom:content type="html">&lt;p&gt;Programmet kommer att sammanf&amp;ouml;ra framst&amp;aring;ende nationella och internationella talare som har varit en del av Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi och dess f&amp;ouml;reg&amp;aring;ngare, inklusive mikrobiologi, till&amp;auml;mpad cell- och molekyl&amp;auml;rbiologi, genetik och integrativ organismfysiologi.&lt;/p&gt;&lt;p&gt;Symposiet kommer att lyfta fram &amp;aring;rtionden av vetenskapliga prestationer, innovation och akademiskt samarbete, samtidigt som det blickar fram&amp;aring;t mot framtiden av molekyl&amp;auml;r livsvetenskap.&lt;/p&gt;&lt;p&gt;&lt;em&gt;(fullst&amp;auml;ndigt program och schema f&amp;ouml;ljer)&lt;/em&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;V&amp;auml;rdar &amp;auml;r nuvarande doktorander vid Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi.&lt;/strong&gt;&lt;/p&gt;</atom:content><place>Aula Biologica (BIO.E.203), Biologihuset, Umeå universitet</place><type>Symposium</type><link>https://www.umu.se/kalender/60-ar-av-molekylarbiologi-pa-umea-universitet--symposium_12181040/</link><startdatum>2026-08-28T08:45:00+02:00</startdatum><slutdatum>2026-08-28T16:30:00+02:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-qiuwei-abdullah-pan_12180636/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-qiuwei-abdullah-pan_12180636/</guid><title>SSIBS seminar: Qiuwei Abdullah Pan</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Qiuwei Abdullah Pan, Erasmus MC-University Medical Centre</description><pubDate>Fri, 04 Sep 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;h2&gt;&lt;strong&gt;Organoids as translational platforms for emerging viral diseases&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Talare: Qiuwei Abdullah Pan, Erasmus MC-University Medical Center, Netherlands&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Aftab Nadeem, Department of Molecular Biology, UCMR&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Emerging viral diseases pose major public health, economic and societal challenges. To advance our understanding of the pathophysiology and develop effective interventions, experimental models are required that closely mimic human biology. In particular, organoid platforms have begun to address key limitations of 2D cell line cultures and animal models in infectious disease research. In this talk, Dr.&amp;nbsp;Pan&amp;nbsp;will present the diverse applications of human organoids in investigating organ-specific infections and disease manifestations across major physiological systems, as well as the applications for antiviral drug discovery. This talk will focus on representative pathogens, including hepatitis E virus, monkeypox virus, Oropouche virus and measles virus. Finally, Dr.&amp;nbsp;Pan&amp;nbsp;will further discuss the innovation of immune-augmented organoids for modelling complex virus-host interactions, better understanding pathophysiology, and developing multi-target therapeutics.&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-qiuwei-abdullah-pan_12180636/</link><startdatum>2026-09-04T14:00:00+02:00</startdatum><slutdatum>2026-09-04T15:00:00+02:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-bo-dong_12180842/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-bo-dong_12180842/</guid><title>SSIBS seminar: Bo Dong</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Bo Dong, Ocean University of China.</description><pubDate>Fri, 18 Sep 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;h2&gt;&lt;strong&gt;Identification of endogenous TH synthesis precursor and environmentally chemical attractant molecule for marine ascidian larvae settlement and metamorphosis&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Talare: Bo Dong, Ocean University of China, China&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Sun Nyunt Wai, Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi, UCMR&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Marine ascidians belong to the tunicates and sit at a key evolutionary node between invertebrates and vertebrates, making them as living fossils for studying evolutionary developmental biology. The tadpole larvae of ascidian show distinct vertebrate-like morphological features, however, they lose important vertebrate organs like the brain, CNS, and notochord after metamorphosis. In this talk, I will introduce our recent findings on identification of the protein precursor for thyroid hormone synthesis in ascidian. This protein is a first-identified TH precursor outside vertebrates, playing essential roles on larvae metamorphosis. Except this endogenous regulatory molecule, we also identified an external environmental factor that trigger marine ascidian larvae settlement and metamorphogesis. I will discuss the implications of our studies in the emerging field of marine Eco-Evo-Devo research by establishing a model system for understanding developmental mechanisms in the context of marine ecosystems and aquaculture. Of interest is the potential development of antifouling strategies by targeting specific chemosensation.&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-bo-dong_12180842/</link><startdatum>2026-09-18T14:00:00+02:00</startdatum><slutdatum>2026-09-18T15:00:00+02:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-shohei-hori_12180846/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-shohei-hori_12180846/</guid><title>SSIBS seminar: Shohei Hori</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Shohei Hori, Tokyo University, japan.</description><pubDate>Fri, 25 Sep 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;h2&gt;&lt;strong&gt;Control of regulatory T cell development and function by the transcription factor Foxp3&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Talare: Shohei Hori, Tokyo University, Japan&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Ryo Morimoto, Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi, MIMS&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Regulatory T (Treg) cells are central guardians of immune tolerance and tissue homeostasis. This notion is firmly supported by the finding that defective Treg development and function, caused by mutations in the Foxp3 gene, lead to devastating autoimmune diseases in both mice and humans. However, the molecular mechanisms that establish the epigenetic, transcriptional, and functional identity of Treg cells remain incompletely understood. Although Foxp3 has long been regarded as the master transcription factor of Treg cells, earlier studies suggested that its role in shaping their heterogeneous epigenetic and transcriptional landscapes might be limited or indirect. Our recent findings challenge this view. Using complementary gain- and loss-of-function approaches, we demonstrate that Foxp3 plays a more fundamental and direct role than previously appreciated, integrating cell-intrinsic states and environmental contexts to drive epigenetic and transcriptional programs that define Treg cell identity and function. Acting as a master yet context-dependent regulator, Foxp3 cooperates with signal-dependent transcription factors, including BATF, to coordinate the epigenetic and transcriptional programs underlying Treg cell identity and function.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;About IBSS&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Integrated Biomedical Science Seminars is a broad, open seminar series within life science.&lt;/p&gt;</atom:content><place>Major groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-shohei-hori_12180846/</link><startdatum>2026-09-25T14:00:00+02:00</startdatum><slutdatum>2026-09-25T15:00:00+02:00</slutdatum></item><item xml:base="kalender/basic-course-em-september-2026_12179287/"><guid isPermaLink="false">https://www.umu.se/kalender/basic-course-em-september-2026_12179287/</guid><title>Basic Course EM September 2026</title><description>Denna kurs kombinerar grundläggande teori med praktiska demonstrationer för att ge en solid förståelse för elektronmikroskopi inom biovetenskaperna.</description><pubDate>Mon, 28 Sep 2026 09:00:00 +0200</pubDate><atom:content type="html">&lt;p&gt;Mer information finns p&amp;aring; den &lt;strong&gt;engelska sidan&lt;/strong&gt; och p&amp;aring; &lt;a href="/link/323364d8a6674d759890987ec079a25d.aspx?epslanguage=en" target="_blank" rel="noopener"&gt;kursens hemsida&lt;/a&gt;.&lt;/p&gt;&lt;p&gt;Registreringen &amp;auml;r &amp;ouml;ppen fram till den &lt;strong&gt;19 september 2026&lt;/strong&gt;.&lt;/p&gt;&lt;p&gt;Arrang&amp;ouml;r: &lt;a href="/EPiServer/CMS/Content/en/research,,5054554/infrastructure/umea-centre-for-electron-microscopy-ucem/?epieditmode=False&amp;amp;epslanguage=en"&gt;&lt;strong&gt;Ume&amp;aring; Centre for Electron Microscopy (UCEM)&lt;/strong&gt;&lt;/a&gt;&lt;/p&gt;</atom:content><place>Glasburen, KBC-huset, och UCEM, EM-huset</place><type>Kurs/Utbildning</type><link>https://www.umu.se/kalender/basic-course-em-september-2026_12179287/</link><startdatum>2026-09-28T09:00:00+02:00</startdatum><slutdatum>2026-09-30T16:00:00+02:00</slutdatum></item><item xml:base="kalender/ibss-seminar-conceicao-bettencour_12180850/"><guid isPermaLink="false">https://www.umu.se/kalender/ibss-seminar-conceicao-bettencour_12180850/</guid><title>SSIBS seminar Conceicao Bettencour</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Conceicao Bettencourt from the University College London, UK.</description><pubDate>Fri, 02 Oct 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;h2&gt;&lt;strong&gt;Could dysregulation of oligodendrocyte and myelin-related genes be an early sign of neurodegenerative diseases?&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;F&amp;ouml;rel&amp;auml;sare: Conceicao Bettencourt, University College London, UK&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Vivien Horv&amp;aacute;th, WCMM&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;Much research into the aetiology of neurodegenerative diseases has focused on neuronal dysfunction, while studies on the contribution of glial cells, particularly oligodendrocytes, which produce the myelin sheath insulating neuronal axons, are only starting to emerge. Altered DNA methylation, an epigenetic modification that regulates gene expression, is well documented in Alzheimer&amp;rsquo;s disease, and other neurodegenerative diseases, as well as in ageing. Yet, investigations on the contributions of DNA methylation to dysregulation of specific brain cell types remain limited. In recent years, the Bettencourt lab has been investigating the role of DNA methylation on the dysregulation of oligodendrocyte and myelin-related genes across neurodegenerative diseases, and how these changes may impact gene expression. Our DNA methylomic studies cover a range of neurodegenerative diseases, including Alzheimer&amp;rsquo;s disease, frontotemporal dementias, Parkinson&amp;rsquo;s disease and multiples system atrophy. Our findings suggest that oligodendrocyte-associated DNA methylation changes occur early across neurodegenerative diseases.&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ibss-seminar-conceicao-bettencour_12180850/</link><startdatum>2026-10-02T14:00:00+02:00</startdatum><slutdatum>2026-10-02T15:00:00+02:00</slutdatum></item><item xml:base="kalender/ibbs-seminar-hjm-harmsen-_12180854/"><guid isPermaLink="false">https://www.umu.se/kalender/ibbs-seminar-hjm-harmsen-_12180854/</guid><title>SSIBS seminar: HJM Harmsen</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser HJM Harmsen (Hermie) from the University of Groningen, Netherlands.</description><pubDate>Fri, 09 Oct 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;p&gt;Title: TBA&lt;/p&gt;&lt;p&gt;Host: Chinmay Dwibedi, Department of Clinical Microbiologi, MIMS&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ibbs-seminar-hjm-harmsen-_12180854/</link><startdatum>2026-10-09T14:00:00+02:00</startdatum><slutdatum>2026-10-09T15:00:00+02:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-karin-forsberg-_12180856/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-karin-forsberg-_12180856/</guid><title>SSIBS seminar: Karin Forsberg Nilsson</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Karin Forsberg Nilsson från Uppsala universitet.</description><pubDate>Fri, 23 Oct 2026 14:00:00 +0200</pubDate><atom:content type="html">&lt;h2&gt;&lt;strong&gt;Leveraging non-coding mutations with evolutionary constraint to discover novel driver genes in solid tumors&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;F&amp;ouml;rel&amp;auml;sare: Karin Forsberg Nilsson, Uppsala universitet&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Silvia Remeseiro, WCMM&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;TBA&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-karin-forsberg-_12180856/</link><startdatum>2026-10-23T14:00:00+02:00</startdatum><slutdatum>2026-10-23T15:00:00+02:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-mirjam-munch_12180857/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-mirjam-munch_12180857/</guid><title>SSIBS seminar: Mirjam Münch</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Mirjam Münch, Psychiatric Hospital of the University of Basel, Switzerland.</description><pubDate>Fri, 13 Nov 2026 14:00:00 +0100</pubDate><atom:content type="html">&lt;h2&gt;What do we know about the effects of light on human health?&lt;/h2&gt;&lt;p&gt;F&amp;ouml;rel&amp;auml;sare: Mirjam M&amp;uuml;nch, Psychiatric Hospital of the University of Basel, Switzerland&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Katharina Wulff, Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;There is growing evidence that light is essential for human health and well-being. Beyond vision, light influences a wide range of physiological and behavioural processes through non-visual pathways via the eye, including sleep&amp;ndash;wake regulation, circadian rhythms, cognitive performance, mood, and metabolic function. However, many fundamental questions remain unanswered. We still do not know the optimal dose, timing, duration, or spectral composition of light exposure required to promote different health outcomes, nor do we fully understand the mechanisms linking acute and chronic light exposure to physical and mental health beyond circadian regulation.&lt;br /&gt;A major challenge is to account for the substantial inter-individual variability in responses to light. Factors such as age, sex, chronotype, genetics, skin pigmentation, pre-existing health conditions, occupation, and geographical location all influence how individuals respond to light exposure.&lt;br /&gt;This presentation will summarize some aspects of the current state of knowledge, highlight key research gaps, and provide examples of how emerging evidence is being translated into practical applications.&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-mirjam-munch_12180857/</link><startdatum>2026-11-13T14:00:00+01:00</startdatum><slutdatum>2026-11-13T15:00:00+01:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-marco-marcia_12180861/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-marco-marcia_12180861/</guid><title>SSIBS seminar: Marco Marcia</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Marco Marica från Uppsala universitet i Sverige.</description><pubDate>Fri, 20 Nov 2026 14:00:00 +0100</pubDate><atom:content type="html">&lt;p&gt;Titel: TBA&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Xisca, Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-marco-marcia_12180861/</link><startdatum>2026-11-20T14:00:00+01:00</startdatum><slutdatum>2026-11-20T15:00:00+01:00</slutdatum></item><item xml:base="kalender/ssibs-seminar-shahriar-mobashery_12180862/"><guid isPermaLink="false">https://www.umu.se/kalender/ssibs-seminar-shahriar-mobashery_12180862/</guid><title>SSIBS seminar: Shahriar Mobashery</title><description>Inom ramen för Integrated Biomedical Sciences  Seminars föreläser Shahriar Mobashery, Notre Damme University, US</description><pubDate>Fri, 27 Nov 2026 14:00:00 +0100</pubDate><atom:content type="html">&lt;h2&gt;Repair Mechanism of Damaged Cell Wall as Target in Antibacterial Strategies&lt;/h2&gt;&lt;p&gt;Talare: Shahriar Mobashery, Notre Damme University, USA&amp;nbsp;&lt;/p&gt;&lt;p&gt;V&amp;auml;rd: Felipe Cava, Institutionen f&amp;ouml;r molekyl&amp;auml;rbiologi, MIMS&lt;/p&gt;&lt;p&gt;&lt;em&gt;F&amp;ouml;rel&amp;auml;sningen &amp;auml;r p&amp;aring; engelska&lt;/em&gt;&lt;/p&gt;&lt;h2&gt;&lt;strong&gt;Om f&amp;ouml;rel&amp;auml;sningen:&lt;/strong&gt;&lt;/h2&gt;&lt;p&gt;TBA&lt;/p&gt;</atom:content><place>Major Groove</place><type>Seminarium</type><link>https://www.umu.se/kalender/ssibs-seminar-shahriar-mobashery_12180862/</link><startdatum>2026-11-27T14:00:00+01:00</startdatum><slutdatum>2026-11-27T15:00:00+01:00</slutdatum></item></channel></rss>