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Usage Examples
Filter by Meaning The extracellular matrix plays a critical role in tissue development and repair.
The extracellular space in the lungs is crucial for gas exchange during respiration.
Some bacteria are able to live in the extracellular space and evade the immune system.
The extracellular space in the brain plays a role in neurotransmission.
Extracellular enzymes break down large molecules outside the cell.
Cancer cells can manipulate extracellular signaling pathways.
The extracellular space between cells is important for transporting nutrients.
The extracellular space is filled with cerebrospinal fluid in the brain.
High levels of extracellular potassium ions can cause cardiac arrhythmias.
Extracellular DNA is released by bacteria and can act as a virulence factor.
The extracellular fluid surrounding cells regulates their environment and maintains homeostasis.
Extracellular enzymes are secreted by microorganisms to break down complex organic matter in the environment.
Extracellular deposits in the brain are associated with Alzheimer's disease.
The extracellular space in the brain is critical for the exchange of nutrients and waste products.
Extracellular fluid is the solution that surrounds cells and provides them with nutrients.
Extracellular traps can trap and kill pathogens.
Extracellular lipids can contribute to atherosclerosis.
Collagen is a protein found in the extracellular space.
An extracellular signal can trigger a cellular response.
Some viruses are capable of surviving in the extracellular space for extended periods of time.
Blood pressure is regulated in part by extracellular signals.
Scientists discovered an extracellular matrix that plays a vital role in tissue regeneration.
Extracellular fluid helps transport nutrients throughout the body.
Extracellular acidification can be a sign of metabolic dysfunction in cells.
The extracellular fluid in the body maintains the balance of electrolytes.
The extracellular environment plays a crucial role in the survival of bacteria.
Neurons use extracellular signaling molecules to communicate with each other.
Extracellular vesicles are small membrane-bound particles that transport molecules between cells.
Extracellular signals from neighboring cells can influence the behavior of stem cells.
Extracellular fluid provides a crucial environment for cellular activities.
The extracellular environment plays a crucial role in the development of cancer cells.
Bacteria release extracellular polymeric substances that help them attach to surfaces.
Researchers are studying the effect of extracellular vesicles on cancer cell growth.
Extracellular matrix proteins play a crucial role in tissue development.
The extracellular layer of skin provides protection against external factors.
Extracellular vesicles are involved in cell-to-cell communication in various biological processes.
Extracellular fluid acts as a buffer to maintain the pH of the blood.
Some organisms are able to survive in extracellular environments, such as extreme temperatures or high pressure.
The extracellular fluid is important for maintaining proper electrolyte balance.
Cancer cells can invade the extracellular matrix to spread to other parts of the body.
The extracellular space in the brain plays an important role in communication between neurons.
The extracellular environment can modulate gene expression in cells.
Extracellular enzymes are released by bacteria to digest food.
Researchers are studying extracellular vesicles as a potential biomarker for cancer.
The extracellular concentration of neurotransmitters affects their signaling in the brain.
The extracellular concentration of ions can influence cell membrane potential.
The extracellular pH level can affect the function of enzymes.
The extracellular domain of a protein can be a target for drug development.
Extracellular vesicles are used by cells to transport proteins and genetic material.
Extracellular pathogens can evade the immune system by hiding outside of cells.
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