Cellular Integrity

Cellular integrity is the ability of a cell to preserve its structural organization, molecular balance, and essential functions, making it a foundation of healthy tissue and organ performance. It depends on coordinated maintenance of plasma membrane barriers, cytoskeletal architecture, organelle function, DNA stability, and energy and ion homeostasis; damage to these systems can trigger signaling, dysfunction, or cell death. In medicine, assessing cellular integrity helps researchers understand infection, inflammation, toxic injury, cancer, and degenerative disease, while informing biomarker development, drug safety testing, and therapeutic strategies that protect or restore cells.

Cellular Integrity - Related Videos

Research

JoVE Journal - Bioengineering

Imaging Integrin Tension and Cellular Force at Submicron Resolution with an Integrative Tension Sensor

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Cited by 7 •

2019

Integrin tension plays important roles in various cell functions. With an integrative tension sensor, integrin tension is calibrated with picoNewton (pN) sensitivity and imaged at submicron resolution.

Safranin-O Staining: A Method to Visualize the Structural Integrity and Cellularity of Cartilage

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2025

In this video, we demonstrate a staining procedure for cartilage using safranin-orange. This method helps visualize the cartilage and detect any damage.

Research

JoVE Journal - Biology
Free Sample

Integrative Toolkit to Analyze Cellular Signals: Forces, Motion, Morphology, and Fluorescence

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Cited by 7 •

2022

The Integrative Toolkit to Analyze Cellular Signals (iTACS) platform automates the process of simultaneously measuring a wide variety of chemical and mechanical signals in adherent cells. iTACS is designed to facilitate community-driven development and enable researchers to use all platform features regardless of their educational background.

Education

JoVE Lab Manual - Biology

Cellular Respiration - Concepts

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2019

Autotrophs and Heterotrophs Living organisms require a continuous input of energy to maintain cellular and organismal functions such as growth, repair, movement, defense, and reproduction. Cells can only use chemical energy to fuel their functions, therefore they need to harvest energy from chemical bonds of biomolecules, such as sugars and lipids. Autotrophic organisms, namely plants, algae, and photosynthetic and chemosynthetic bacteria, convert inorganic materials into such biomolecules by...

Cellular Respiration - Student Protocol

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2019

Quantifying Respiration using Microrespirometers ExpandNOTE: In this experiment, you will measure the rate of cellular respiration for germinating seeds by measuring the rate of exchange for oxygen. As oxygen is consumed to provide energy, germinating seeds release carbon dioxide. This carbon dioxide is absorbed by potassium carbonate and thus the overall gaseous pressure of the respirometer will be reduced. HYPOTHESES: The experimental hypothesis is that germinating seeds will show a greater...

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