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Showing 1 to 5 of 5 for “"Physiologic Activity"”.

  1. Toxicology and pharmacology of N¹-acetylspermidine and N⁸-acetylspermidine

    … as normal constituents in human urine, but their physiological role is unknown. Recent studies have indicated the presence of enzymes in the tissues capable of converting spermidine into N<sup>1</sup>-acetylspermidine and N<sup>8</sup>-acetylspermidine and other enzyme activities which catalyze …

    u-pacific Repository record for Toxicology and pharmacology of N¹-acetylspermidine and N⁸-acetylspermidine (opens in a new tab)

  2. Novel Roles of the Aryl Hydrocarbon Receptor in Normal Physiology and Epigenetic Reprogramming

    … to address the gap in knowledge of the normal, physiologic functions of AhR in the absence of man-made toxicants. In addition to revealing the physiologic functions of AhR, this work also investigates a non-canonical AhR signaling pathway mediated by a novel protein complex consisting of AhR, …

    utmb Repository record for Novel Roles of the Aryl Hydrocarbon Receptor in Normal Physiology and Epigenetic Reprogramming (opens in a new tab)

  3. The Role of METTL21A in Kras-driven Cancers

    … in cancer etiology. However, the catalytic activity and substrate specificity for many of these enzymes remain unknown. Our work aimed to explore the role of Methyltransferase like 21A (METTL21A), amember of the little-studied seven β- strand family of candidate lysine methyltransferases …

    uthsc Repository record for The Role of METTL21A in Kras-driven Cancers (opens in a new tab)

  4. Physikochemische und biologische Charakterisierung von texturiertem Silikon als Grundlage für die Entwicklung eines Retina-Patchs

    … increased significantly cell density and physiologic activity in contrast to steam sterilization. Furthermore, glial cells grew in larger pores (> 50 µm) with the whole cell body and were physiologically active with these pores. In smaller pores, the glial cells proliferated only with the …

    aachen Repository record for Physikochemische und biologische Charakterisierung von texturiertem Silikon als Grundlage für die Entwicklung eines Retina-Patchs (opens in a new tab)