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The Isolation and Culture of Primary Epicardial Cells Derived from Human Adult and Fetal Heart Specimens
Published on: April 24, 2018
Investigating interactions between epicardial adipose tissue and cardiac myocytes: what can we learn from different
Katja Rietdorf1, Hilary MacQueen1
1School of Life, Health and Chemical Sciences, The Open University, Milton Keynes, UK.
Insights
Developing a novel 3D co-culture model is crucial for studying epicardial adipose tissue and cardiac myocytes, offering a better system for understanding heart disease mechanisms.
Area of Science:
- Cardiovascular Biology
- Adipose Tissue Research
- Cellular Cardiology
Background:
- Heart disease remains a leading cause of global mortality.
- While lifestyle and conventional treatments exist, targeted, less invasive therapies are needed.
- Epicardial adipose tissue's role in cardiac function is increasingly recognized.
Purpose of the Study:
- To address the limitations in studying epicardial adipose tissue at a molecular level.
- To develop a robust model system for investigating epicardial adipocyte and cardiac myocyte interactions.
- To facilitate physiologically relevant manipulations for heart disease research.
Main Methods:
- Discussion of the limitations of conventional cell culture methods for cardiac and adipose cells.
- Proposal and rationale for a three-dimensional (3D) co-culture system.
- Highlighting the advantages of 3D co-culture for replicating in vivo interactions.
Main Results:
- Conventional culture methods present challenges due to the specific requirements of cardiac myocytes and adipocytes.
- A 3D co-culture model offers a superior system for studying these cell types together.
- This model allows for the investigation of interactions that mimic in vivo conditions.
Conclusions:
- A novel 3D co-culture model is proposed as an effective system for studying epicardial adipose tissue and cardiac myocytes.
- This model overcomes the limitations of traditional culture techniques.
- It provides a valuable platform for advancing research into the molecular mechanisms of heart disease.
Abstract:
Heart disease is a major cause of morbidity and mortality throughout the world. Some cardiovascular conditions can be modulated by lifestyle factors such as increased exercise or a healthier diet, but many require surgical or pharmacological interventions for their management. More targeted and less invasive therapies would be beneficial. Recently, it has become apparent that epicardial adipose tissue plays an important role in normal and pathological cardiac function, and it is now the focus of considerable research. Epicardial adipose tissue can be studied by imaging of various kinds, and these approaches have yielded much useful information. However, at a molecular level, it is more difficult to study as it is relatively scarce in animal models and, for practical and ethical reasons, not always available in sufficient quantities from patients. What is needed is a robust model system in which the interactions between epicardial adipocytes and cardiac myocytes can be studied, and physiologically relevant manipulations performed. There are drawbacks to conventional culture methods, not least the difficulty of culturing both cardiac myocytes and adipocytes, each of which has special requirements. We discuss the benefits of a three-dimensional co-culture model in which in vivo interactions can be replicated.
Linked Articles:
This article is part of a themed section on Molecular Mechanisms Regulating Perivascular Adipose Tissue - Potential Pharmacological Targets? To view the other articles in this section visit http://onlinelibrary.wiley.com/doi/10.1111/bph.v174.20/issuetoc.
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