京都大学 · 医学
Saeko Nakajima教授の研究室では、皮膚や呼吸器・消化管などのバリア表面における免疫応答の制御機構を、特にTSLPやPGI(2)といったサイトカイン・リガンド・シグナル伝達系に注目して解明しています。特に、型2炎症反応や自己免疫性皮膚炎(例:乾癬)の発症メカニズムにおいて、微生物や自己抗原に対する記憶性T細胞応答がどのように炎症を促進するかを、トランスクリプトミクスやオミクス統合解析を用いて解明しています。また、皮膚常在菌やプロスタグランジン経路が免疫細胞の活性化に与える影響を、マウスモデルと臨床的サンプルを統合して研究しています。
Figures are computed from collected data and may differ slightly.
TSLP is an epithelial cell-derived cytokine synthesized in response to various stimuli, including protease allergens and microorganisms like viruses and bacteria. Biological functions of TSLP require heterodimer formation between the TSLP receptor (TSLPR) and IL-7 receptor-α, which polarize dendritic cells to induce type 2 inflammation and directly expand and/or activate Th2 cells, group 2 innate lymphoid cells, basophils, and other immune cells. TSLP is thus considered a master regulator of typ
Under steady-state conditions, the immune system is poised to sense and respond to the microbiota. As such, immunity to the microbiota, including T cell responses, is expected to precede any inflammatory trigger. How this pool of preformed microbiota-specific T cells contributes to tissue pathologies remains unclear. Here, using an experimental model of psoriasis, we show that recall responses to commensal skin fungi can significantly aggravate tissue inflammation. Enhanced pathology caused by f
PGI(2), which exerts its actions via its specific Gs-coupled I prostanoid receptor (IP), is known to be present in the lymph nodes, but its roles in acquired cutaneous immune responses remain unclear. To investigate the role of PGI(2)-IP signaling in cutaneous immune responses, we applied IP-deficient (Ptgir(-/-)) mice to contact hypersensitivity as a model of acquired immune response and found that Ptgir(-/-) mice exhibited a significantly decreased contact hypersensitivity response. Lymph node
Atopic dermatitis (AD), a complex and heterogeneous chronic inflammatory skin disorder, manifests in a spectrum of clinical subtypes. The application of genomics has elucidated the role of genetic variations in predisposing individuals to AD. Transcriptomics, analyzing gene expression alterations, sheds light on the molecular underpinnings of AD. Proteomics explores the involvement of proteins in AD pathophysiology, while epigenomics examines the impact of environmental factors on gene expressio
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