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- W4292474141 abstract "In the end of the second decade of 20th century, Warburg showed how cancer cells present a fermentative respiration process, related to a metabolic injury. Here, an analysis of the cell process is developed, based on its heat outflow, in order to control cancer progression. Engineering thermodynamics represents a powerful approach to develop this analysis. Indeed, the Engineering thermodynamic methods are introduced to analyse the bio-systems, in relation to heat outflow, in order to control this flux. Cells regulate their metabolisms by energy and ion flows, and the heat flux is controlled by the convective interaction with their environment. The bio-thermodynamic characteristic frequency is introduced and it is evaluated by a classical heat transfer approach. Resonance forces natural behaviours of systems, and, here, it is introduced to control both the fluxes, through the cancer membrane, and the cellular metabolic processes. Consequently, the energy available to cancer, for its growth, is controlled, too. The result, experimentally proven, consists in the decrease of rate of cancer growth." @default.
- W4292474141 created "2022-08-21" @default.
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- W4292474141 date "2022-09-01" @default.
- W4292474141 modified "2023-09-23" @default.
- W4292474141 title "Instrumental quality control and evaluation of mitochondrial respiration medium in high-resolution respirometry with living and permeabilized cells" @default.
- W4292474141 doi "https://doi.org/10.1016/j.bbabio.2022.148877" @default.
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