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Exact(5)
SCP mechanisms include those that alter the physical (and in some instances the immediate social) environment in which crimes occur in the five ways described above.
Such mechanisms include those involving free radical and peroxide scavenging enzymes, e.g., superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT) (McDonald 1999; Li et al. 2008).
Intrinsic mechanisms include those that alter the epigenetic state of these cells such as those regulated by chromatin modifiers like the polycomb group proteins.
These energy-demanding mechanisms include those involved in the movement of mitochondria to the cell locus with the highest energy requirement (axons and synapses), in the repair of damaged mitochondria (including mtDNA), in the destruction of badly damaged mitochondria, and in the synthesis of new mitochondria.
These mechanisms include those mediated not only by CD8+ T cells, natural killer cells and macrophages, but also by antibody-dependent cell-mediated cytotoxicity, antiangiogenesis, direct antiproliferative effects, inhibition of expression of cyclooxygenase-2 and prostaglandin E2, and suppression of epithelial mesenchymal transition, depending on the characteristics of individual tumors.
Similar(55)
Redd policies operate through a variety of mechanisms, including those administered by the United Nations (UN-REDD) and the World Bank.
Finally, we explore potential regulation of physical activity through epigenetic mechanisms, including those that persist across multiple generations.
First, the structural reliability of a specified component is evaluated considering potentially active degradation mechanisms, including those that are not explicitly addressed in the design codes.
While myelin may be viewed as the crowning innovation bringing about rapid conduction, the evolution of rapid communication mechanisms, including those refined and enhanced in the evolution of myelin, has much deeper roots.
The role of cytokines in modulating the formation of new tumors is mediated by their ability to regulate antigen-specific anti-tumor responses and by the activation of non-specific mechanisms, including those involved in the processes of inflammation and innate resistance.
Glutamic acid and aspartic acid residues act as general acid-base catalysts in several established enzyme mechanisms, including those of lysozyme and protein tyrosine phosphatases [19], [20], and apparently support the same role in hCE1.
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