Serum-free Adaptation

Serum-free adaptation is the controlled process of transitioning cultured cells from serum-containing medium to a chemically defined formulation without animal-derived serum. It typically involves gradually reducing serum while supplying essential nutrients, growth factors, hormones, and attachment-supporting components, allowing cells to adjust their metabolism, survival pathways, and proliferation under the new conditions. In biochemistry, this approach improves control over media composition and reduces batch-to-batch variability and undefined components. It supports reproducible studies of cell signaling, protein production, drug responses, and bioprocess development, while helping identify the specific biochemical requirements that sustain a cell culture.

Serum-free Adaptation - Related Videos

Research

JoVE Journal - Biology
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Feeder-Free Adaptation, Culture and Passaging of Human IPS Cells using Complete KnockOut Serum Replacement Feeder-Free Medium

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Cited by 14 •

2010

The following protocol provides instruction for adapting human induced Pluripotent Stem (iPS) Cells to feeder-free culture using complete KnockOut Serum Replacement Feeder-Free medium (KSR-FF). Once adapted, instructions for continual maintenance are also provided.

Research

JoVE Journal - Biology

Isolation of Small Noncoding RNAs from Human Serum

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Cited by 13 •

2014

This protocol describes a method for extracting small RNAs from human serum. We have used this method to isolate microRNAs from cancer serum for use in DNA arrays and also singleplex quantitative PCR. The protocol utilizes phenol and guanidinium thiocyanate reagents with modifications to yield high quality RNA.

Development and Maintenance of Serum-Free Embryoid Bodies

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2025

The video describes the procedure for developing serum-free embryoid bodies (SFEBs) from neuronal progenitor cells using various serum-free differentiation mediums or DM. DM-2 facilitates neurons' maturation and arrangement to form SFEBs, while DM-3 is used for further growth maintenance.

A Molecular Readout of Long-term Olfactory Adaptation in C. elegans

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Cited by 2 •

2012

Here we describe a molecular readout of long-term olfactory adaptation in Caenorhabditis elegans. The Protein Kinase G, EGL-4, is necessary for stable adaptation responses in the primary sensory neuron pair called AWC. During prolonged odor exposure EGL-4 translocates from the cytosol to nucleus of the AWC.

Education

JoVE Core - Pathophysiology

Cellular Adaptation II: Hypertrophy

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2026

Hypertrophy is the increase in the size of individual cells, resulting in the enlargement of a tissue or organ. Unlike hyperplasia, which involves an increase in cell number, hypertrophy is characterized by an increase in cell volume. This process often occurs in response to higher functional demand or hormonal stimulation, leading to the production of more structural proteins and organelles, thereby enhancing the cells' work capacity.There are two primary types of hypertrophy: physiological...

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