In Vivo Method

In vivo methods are experimental approaches that investigate biological processes, treatments, or disease responses within a living organism, preserving interactions among cells, tissues, organs, and the immune system. In cancer research, investigators may establish or study tumors in animal models, administer a candidate treatment, and monitor changes in tumor growth, survival, toxicity, or molecular responses over time. These methods complement cell culture and other in vitro systems by revealing how drug distribution, metabolism, tissue environments, and host responses influence therapeutic effects. In vivo findings can guide dose selection, clarify treatment mechanisms, and support decisions about whether an intervention warrants further preclinical or clinical evaluation.

In Vivo Method - Related Videos

Research

JoVE Journal - Biology

A Novel Ex vivo Culture Method for the Embryonic Mouse Heart

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Cited by 12 •

2013

Developmental studies in the mouse are hampered by the inaccessibility of the embryo during gestation. To promote the long-term culture of the embryonic heart at late stages of gestation, we developed a protocol in which the excised heart is cultured in a semi-solid, dilute Matrigel.

Simultaneous ex vivo Functional Testing of Two Retinas by in vivo Electroretinogram System

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Cited by 36 •

2015

Ex vivo ERG can be used to record electrical activity of retinal cells directly from isolated intact retinas of animals or humans. We demonstrate here how common in vivo ERG systems can be adapted for ex vivo ERG recordings in order to dissect the electrical activity of retinal cells.

Research

JoVE Journal - Neuroscience
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A Method for High Fidelity Optogenetic Control of Individual Pyramidal Neurons In vivo

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Cited by 2 •

2013

The recent development of neuroscience tools that combine genetics and optics, termed "optogenetics", enables control over neural circuit activity with an unprecedented level of spatial and temporal resolution. Here we provide a protocol for integrating in vivo recording with optogenetic manipulation of genetically-defined subsets of prefrontal cortical and subicular pyramidal neurons.

An Ex Vivo Method for Time-Lapse Imaging of Cultured Rat Mesenteric Microvascular Networks

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Cited by 18 •

2017

Angiogenesis involves multi-cell, multi-system interactions that need to be investigated in a physiologically relevant environment. The objective of this study is to demonstrate the ability of the rat mesentery culture model to make time-lapse comparisons of intact microvascular networks during angiogenesis.

In vivo 19F MRI for Cell Tracking

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Cited by 21 •

2013

We describe a general protocol for in vivo cell tracking using MRI in a mouse model with ex vivo labeled cells. A typical protocol for cell labeling, image acquisition processing and quantification is included.

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