Phoenix Cells

Phoenix cells are specialized mammalian packaging cell lines used to produce replication-incompetent retroviral particles for efficient gene delivery, making them valuable tools in cancer research. When researchers introduce a retroviral vector into these cells, the cells supply viral structural and enzymatic proteins, including gag, pol, and envelope functions, while the vector carries the gene of interest; assembled particles are then released into the culture medium and used to transduce target cells. This system supports stable gene expression in cancer cell models, enabling studies of oncogene function, tumor-suppressor activity, signaling pathways, drug response, and genome-scale functional screens.

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Research

JoVE Journal - Medicine

Isolation and Immortalization of Patient-derived Cell Lines from Muscle Biopsy for Disease Modeling

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Cited by 19 •

2015

This protocol describes techniques for live cell isolation and primary culture of myogenic and fibroblast cell lines from muscle or skin tissue. A technique for the immortalization of these cell lines is also described. Altogether, these protocols provide a reliable tool to generate and preserve patient-derived cells for downstream applications.

Selecting and Isolating Colonies of Human Induced Pluripotent Stem Cells Reprogrammed from Adult Fibroblasts

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Cited by 13 •

2012

We present a protocol for efficient reprogramming of human somatic cells into human induced pluripotent stem cells (hiPSC) using retroviral vectors encoding Oct3/4, Sox2, Klf4 and c-myc (OSKM) and identification of correctly reprogrammed hiPSC by live staining with Tra-1-81 antibody.

Recombinant Retroviral Production and Infection of B Cells

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Cited by 2 •

2011

An efficient system of structure and function analysis of a gene in an ex vivo culture of splenic B-lymphocytes is described. This method takes advantage of recombinant retroviral production in a helper free, ecotrophic packaging cell line. Stable, heritable expression of a gene of interest within primary lymphocytes is achieved leading to generation of surface antibodies on B cells undergoing class switch recombination.

Culturing and Applications of Rotating Wall Vessel Bioreactor Derived 3D Epithelial Cell Models

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Cited by 80 •

2012

A rotating cell culture system that allows epithelial cells to grow under physiological conditions resulting in 3-D cellular aggregate formation is described. The aggregates generated display in vivo-like characteristics not observed in conventional culture models and serve as a more accurate organotypic model system for a multitude of scientific investigations.

Generation of Genetically Modified Organotypic Skin Cultures Using Devitalized Human Dermis

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Cited by 22 •

2015

The goal of this paper is to provide a comprehensive and detailed protocol on how to generate genetically modified human organotypic skin from epidermal keratinocytes and devitalized human dermis.

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