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The story of how the HeLa cell line came to be was also the subject of a 2010 episode of the podcast Radiolab. [69] HeLa cells were the subject of a 2010 book by Rebecca Skloot, The Immortal Life of Henrietta Lacks, investigating the historical context of the cell line and how the Lacks family was involved in its use. [14]
This is an accepted version of this page This is the latest accepted revision, reviewed on 24 January 2025. African-American woman (1920–1951), source of HeLa immortal cell line "Lacks" redirects here. For other uses, see Lack. Henrietta Lacks Lacks c. 1945–1951. Born Loretta Pleasant (1920-08-01) August 1, 1920 Roanoke, Virginia, U.S. Died October 4, 1951 (1951-10-04) (aged 31) Baltimore ...
The origins of some immortal cell lines – for example, HeLa human cells – are from naturally occurring cancers. HeLa, the first immortal human cell line on record to be successfully isolated and proliferated by a laboratory, was taken from Henrietta Lacks in 1951 at Johns Hopkins Hospital in Baltimore, Maryland. [1]
As a cancer researcher who uses HeLa cells in my everyday work, even I sometimes find it hard to believe. ... On Aug. 1, 2023, over 70 years after doctors took Lacks’ cells without her consent ...
The book is about Henrietta Lacks and the immortal cell line, known as HeLa, that came from Lacks's cervical cancer cells in 1951. Skloot became interested in Lacks after a biology teacher referenced her but knew little about her. Skloot began conducting extensive research on her and worked with Lacks' family to create the book.
The Immortal Life of Henrietta Lacks is a drama television film directed by George C. Wolfe and starring Oprah Winfrey and Rose Byrne.It is based on the book of the same name by Rebecca Skloot and documents the story of Henrietta Lacks, who was diagnosed with cervical cancer in the 1950s, and whose cancer cells (later known as HeLa) would change the course of cancer treatment.
The HEL cell line is an immortalised cell line from a 30-year old male Acute erythroid leukemia patient, [1] used in biomedical research. [2] HEL cell is capable of induced globin synthesis, producing mainly Gγ and Aγ chains. [1]
Many methods are used to identify cell lines, including isoenzyme analysis, human lymphocyte antigen (HLA) typing, chromosomal analysis, karyotyping, morphology and STR analysis. [35] One significant cell-line cross contaminant is the immortal HeLa cell line. HeLa contamination was first noted in the early 1960s in non-human culture in the USA.