Widespread scientific interest in these cells rapidly birthed a multi-billion dollar industry that revolutionised medical research, and the book relays how reputations and fortunes were made, while Henrietta remained anonymous and her family unaware. They were first sent to local labs, where they continued to replicate, then across the country and eventually all over the world. Unbeknown to Henrietta’s family, news of this breakthrough spread throughout the scientific community as Dr Gey began distributing his ‘HeLa’ cells to other researchers.
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They were excited when a sample of Henrietta’s cancer cells, unlike any of the other tissue samples they had tried, grew quickly and easily in the culture lab. In that same hospital, Dr George Gey and his team were working to develop the first human cell culture, but were finding little success.
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When she became ill, she went to Johns Hopkins University which, at the time, was the only place offering medical treatment without charge to the black community. After her marriage to David ‘Day’ Lacks, she settled in Baltimore to work and raise her family of five children. Henrietta was born in 1920 to a family of tobacco farmers in Virginia. Part historical account, part detective story and part ethical debate, The Immortal Life of Henrietta Lacks combines these narrative threads into an absorbing and challenging book that should be on every physiologist’s reading list. Skloot’s account of Henrietta’s life is told with sensitivity and genuine warmth the explanation of attempts to culture cells and the subsequent commercialisation of the cell line have sufficient scientific integrity, despite the author’s lack of scientific training. Henrietta’s story and the development of the HeLa cell line are at the heart of Rebecca Skloot’s first book, The Immortal Life of Henrietta Lacks. Yet, despite this, some could not tell you that the acronym HeLa refers to Henrietta Lacks, an African-American woman who died of cervical cancer aged 31 and who, arguably, has contributed more to biomedical science than any other person to date. Over the decades, HeLa cells have led to important advances in gene mapping and in vitro fertilisation, as well as the life-saving development of vaccines for polio and cancer.
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