Related Experiment Video
Updated: Apr 14, 2026

In vitro Assessment of Myocardial Protection following Hypothermia-Preconditioning in a Human Cardiac Myocytes Model
Published on: October 27, 2020
Hypothermic temperature effects on organ survival and restoration
Jun Ishikawa1, Masamitsu Oshima2, Fumitaka Iwasaki3
11] Department of Biological Science and Technology, Graduate School of Industrial Science and Technology, Tokyo University of Science, Noda, Chiba. 278-8510, JAPAN [2] Laboratory for Organ Regeneration, RIKEN Center for Developmental Biology, Kobe, Hyogo. 650-0047, JAPAN.
Abstract:
A three-dimensional multicellular organism maintains the biological functions of life support by using the blood circulation to transport oxygen and nutrients and to regulate body temperature for intracellular enzymatic reactions. Donor organ transplantation using low-temperature storage is used as the fundamental treatment for dysfunctional organs. However, this approach has a serious problem in that donor organs maintain healthy conditions only during short-term storage. In this study, we developed a novel liver perfusion culture system based on biological metabolism that can maintain physiological functions, including albumin synthesis, bile secretion and urea production. This system also allows for the resurrection of a severely ischaemic liver. This study represents a significant advance for the development of an ex vivo organ perfusion system based on biological metabolism. It can be used not only to address donor organ shortages but also as the basis of future regenerative organ replacement therapy.
More Related Videos
Related Concept Videos
Decreased Body Temperature
Factors Affecting Body Temperature
Factors may include:
Homeostatic Imbalances in Body Temperature
Requirements for Human Life
Oxygen
Atmospheric air is only about 20 percent oxygen, but that oxygen is a key component of the chemical reactions that keep the body alive, including the reactions that produce ATP. Brain cells are susceptible to a lack of oxygen because they require a...
Responses to Heat and Cold Stress
Factors Influencing Microbial Growth: Temperature

