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The history of stem cell research traces over 150 years of scientific discovery, beginning with early theories of blood cell formation and culminating in revolutionary advances such as bone marrow transplantation, embryonic stem cell isolation, induced pluripotent stem cells (iPSCs), and cutting-edge regenerative medicine therapies. More Less
1964
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In 1964, researchers Lewis Kleinsmith and G. Barry Pierce made early contributions to the identification and understanding of stem cells, laying important groundwork for the modern field of stem cell research.
Image source: Stem cell
1981
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Embryonic stem cells were independently first derived from mouse embryos in 1981 by two separate research groups. This breakthrough established the foundation for decades of subsequent research into pluripotent cells and their potential therapeutic applications.
Image source: Embryonic stem cell
1998
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In 1998, a team from the University of Wisconsin, Madison led by James A. Thomson successfully derived human embryonic stem cell lines, opening new possibilities for regenerative medicine while sparking ethical debate.
Image source: Stem cell controversy
Jan 24, 2005
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The online edition of Nature Medicine published a study on January 24, 2005, stating that the human embryonic stem cells available for federally funded research were contaminated with non-human molecules from the culture medium used to grow the cells.
Mar 8, 2005
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A study published in the online edition of Lancet Medical Journal on March 8, 2005 detailed a new stem cell line derived from human embryos under completely cell- and serum-free conditions, addressing contamination concerns.
Image source: Stem-cell line
Aug 23, 2006
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On August 23, 2006, the online edition of Nature published a letter by Dr. Robert Lanza and colleagues describing a method of deriving embryonic stem cell lines without destroying embryos. This technical achievement could potentially enable scientists to work with new lines of embryonic stem cells using public funding in the US.
2010
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Multilineage-differentiating stress-enduring (Muse) cells were discovered in 2010 by Mari Dezawa and her research group, adding a novel type of endogenous pluripotent-compatible stem cell to the field.
1996
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In 1996, Dolly became the first mammal cloned from an adult cell by the Roslin Institute of the University of Edinburgh. Her creation demonstrated that adult differentiated cells could be reprogrammed, revolutionizing ideas about cellular plasticity.
Image source: Dolly (sheep)
Jan 16, 2008
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On January 16, 2008, California-based company Stemagen announced that they had created the first mature cloned human embryos from single skin cells taken from adults, advancing somatic cell nuclear transfer techniques.
2001
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In August 2001, President George W. Bush announced restrictions limiting federal funding for embryonic stem cell research to existing cell lines derived prior to August 2001, significantly shaping the direction of US research.
Image source: Stem cell controversy
Mar 9, 2009
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Executive Order 13505 was signed by President Barack Obama in March 2009, removing the restrictions placed on federal funding for human embryonic stem cell research by the previous presidential administration.
Image source: List of executive actions by Barack Obama
2006
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Japanese scientists Shinya Yamanaka and Kazutoshi Takahashi published a paper describing the induction of pluripotent stem cells from cultures of adult mouse fibroblasts by introducing four specific genes encoding transcription factors, pioneering iPS cell technology.
Image source: Induced pluripotent stem cell
2007
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In 2007, it was shown that pluripotent stem cells highly similar to embryonic stem cells can be induced by delivery of four factors (Oct3/4, Sox2, c-Myc, and Klf4) to differentiated human cells, confirming iPS technology in humans.
Dec 6, 2007
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As a first indication that iPS cell technology could rapidly lead to new cures, a research team headed by Rudolf Jaenisch of the Whitehead Institute used iPS cells to cure mice of sickle cell anemia, as reported by Science journal's online edition on December 6, 2007.
Jan 23, 2009
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The US Food and Drug Administration approved Geron Corporation's phase I clinical trial of their human embryonic stem cell-derived treatment for spinal cord injuries. Phase I trials involved transplanting oligodendrocytes derived from human ESCs into spinal cord-injured individuals.
Image source: Geron Corporation
Aug 2009
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In August 2009, the FDA placed Geron's spinal cord injury trial on hold due to concerns regarding a small number of microscopic cysts found in several treated rat models.
Jul 30, 2010
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On July 30, 2010, the FDA lifted its hold on Geron's phase I clinical trial, allowing the study of human embryonic stem cell-derived oligodendrocytes in spinal cord injury patients to resume.
Oct 2010
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In October 2010, researchers enrolled and administered human embryonic stem cell-derived treatment to the first patient at Shepherd Center in Atlanta, marking the first-ever use of hESC therapy in a human patient in the United States.
Nov 2011
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In November 2011, Geron announced it was halting the trial and dropping out of stem cell research for financial reasons, but would continue monitoring existing patients and attempted to find a partner that could continue their research.
2013
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In 2013, BioTime, led by CEO Dr. Michael West, took up continuation of the spinal cord injury program originally developed by Geron, keeping the pursuit of embryonic stem cell therapies alive after Geron's exit.
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