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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
ApoE4 disrupts intracellular trafficking and iron homeostasis in a reproducible iPSC-based model of human brain endothelial cells
ArticleVolume 20, Issue 9102607Open access 1Roche Pharma Research and Early Development (pRED), Roche Innovation Center Basel, Basel, Switzerland 2Department of Pharmaceutical Sciences, University of Basel, Basel, Switzerland 3MIMETAS BV, Oegstgeest, the Netherlands Publication History: Received October 26, 2024; Revised July 28, 2025; Accepted July 28, 2025; Published online August 21, 2025 DOI: 10.1016/j.stemcr.2025.102607 External LinkAlso available on ScienceDirect External Link...
Human CD4+CD103+ cutaneous resident memory T cells are found in the circulation of healthy individuals
Human resident memory T cells hit the road Skin and other barrier tissues are home to long-lived tissue-resident memory T cells (TRM) that function as sentries capable of rapidly responding to previously encountered antigens. Klicznik et al. investigated the relationship between human skin CD4+ TRM and human blood CD4+ memory T cells expressing skin-homing markers by comparing immunophenotypes, gene expression, and T cell receptor sequences.
Human CD4+CD103+ cutaneous resident memory T cells are found in the circulation of healthy individuals
Human resident memory T cells hit the road Skin and other barrier tissues are home to long-lived tissue-resident memory T cells (TRM) that function as sentries capable of rapidly responding to previously encountered antigens. Klicznik et al. investigated the relationship between human skin CD4+ TRM and human blood CD4+ memory T cells expressing skin-homing markers by comparing immunophenotypes, gene expression, and T cell receptor sequences.
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