Murine T Cell Engineering

Murine T cell engineering is the modification of mouse T lymphocytes to alter their receptors, gene expression, or functional properties for controlled studies of immune responses. Typically, researchers isolate T cells, activate them through antigen-receptor and costimulatory signals, and introduce genetic material using viral transduction or electroporation before expanding and characterizing the modified cells. Engineered cells can express defined T cell receptors, chimeric antigen receptors, cytokines, or gene-edited traits, enabling precise analysis of antigen recognition, signaling, persistence, and cytotoxicity. In immunology and infection research, this approach supports mechanistic studies of pathogen-specific immunity, adoptive cell transfer models, vaccine evaluation, and development of therapeutic strategies.

Murine T Cell Engineering - Related Videos

Research

JoVE Journal - Bioengineering

Tissue Engineering of the Intestine in a Murine Model

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Cited by 29 •

2012

This article and the accompanying video present our protocol for generating tissue-engineered intestine in the mouse, using an organoid units-on-scaffold approach.

Engineering Skeletal Muscle Tissues from Murine Myoblast Progenitor Cells and Application of Electrical Stimulation

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Cited by 40 •

2013

Engineered muscle tissue has great potential in regenerative medicine, as disease model and also as an alternative source for meat. Here we describe the engineering of a muscle construct, in this case from mouse myoblast progenitor cells, and the stimulation by electrical pulses.

Isolation of Murine Adipose Tissue-derived Microvascular Fragments as Vascularization Units for Tissue Engineering

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Cited by 58 •

2017

We present a protocol to isolate adipose tissue-derived microvascular fragments that represent promising vascularization units. They can be rapidly isolated, do not require in vitro processing and, thus, may be used for one-step prevascularization in different fields of tissue engineering.

Research

JoVE Journal - Biology
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Engineering Cell-permeable Protein

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Cited by 12 •

2009

Protein transduction enables the direct delivery of biologically active proteins into cells. In contrast to conventional methods such as DNA transfection or viral transduction this non-invasive paradigm allows highly efficient cellular manipulation in a titratable manner circumventing cellular toxicity and the risk of oncogenic transformation by permanent genetic modification.

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