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Dr. Camargo’s lab has had a long-standing interest in deciphering the mechanisms that control mammalian tissue growth. Particularly, his lab has made seminal contributions to the discovery and understanding of the Hippo signaling pathway. Hippo is a biochemical cascade that controls the development of our organs, and his work has discovered important mechanisms by which tissues control the number of cells in them. Dr. Camargo’s work has been very influential to establish Hippo pathway components as novel therapeutic targets in a wide range of epithelial malignancies. Pharmacological agents that act on the Hippo pathway, some generated in his group, are at different stages of pre-clinical testing for cancer therapy. Thus, his work has been critical for the discovery of a new class of cancer drugs.
Dr. Camargo’s innovative and ground-breaking work has also extended to the field of stem cell biology. His group has developed technologies that allow for cellular barcoding, a technique that allows for genetic tagging and tracing of thousands of cells at a time, providing an unprecedented measure of cellular histories at single cell resolution. Using these tools, his lab has defined novel biological properties of blood-producing stem cells, basically re-writing the textbook knowledge about lineages and fates in the blood. This has included identifying novel cellular sources of platelet and lymphoid production within the bone marrow, identification of a number of key regulators of the hematopoietic stem cell state, and the identification of novel bone marrow micro-niches that control stem cell activity. These discoveries have important implications for treatments that would improve the safety and efficiency of bone marrow transplantations.
Dr. Camargo’s innovative and ground-breaking work has also extended to the field of stem cell biology. His group has developed technologies that allow for cellular barcoding, a technique that allows for genetic tagging and tracing of thousands of cells at a time, providing an unprecedented measure of cellular histories at single cell resolution. Using these tools, his lab has defined novel biological properties of blood-producing stem cells, basically re-writing the textbook knowledge about lineages and fates in the blood. This has included identifying novel cellular sources of platelet and lymphoid production within the bone marrow, identification of a number of key regulators of the hematopoietic stem cell state, and the identification of novel bone marrow micro-niches that control stem cell activity. These discoveries have important implications for treatments that would improve the safety and efficiency of bone marrow transplantations.
研究兴趣
论文共 135 篇作者统计合作学者相似作者
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Cancer Researchno. 6_Supplement (2024): 3037-3037
PHYSIOLOGY (2024)
EXPERIMENTAL HEMATOLOGY (2023): S44-S44
Nourhan Abdelfattah,Sivaraman Natarajan, Jose Madonado, Hannah Borland, Rachael McMinimy,Shu-hsia Chen,Fernando Camargo, James Olson, Joshy George,Kyuson Yun
NEURO-ONCOLOGY (2023)
Nourhan Abdelfattah,Sivaraman Natarajan, José Maldonado,Han Nhat Tran,Hannah Borland,Rachael McMinimy,Shu‐Hsia Chen,Fernando D. Camargo, James M. Olson,Joshy George,Kyuson Yun
Cancer researchno. 7_Supplement (2023): 1708-1708
Shijie He,Peng Lei,Wenying Kang,Priscilla Cheung,Tao Xu,Miyeko Mana,Chan Young Park, Hongyan Wang,Shinya Imada,Jacquelyn O Russell,Jianxun Wang,Ruizhi Wang,Ziheng Zhou,Kashish Chetal,Eric Stas,Vidisha Mohad,Peter Bruun-Rasmussen,Ruslan I Sadreyev,Richard A Hodin,Yanhang Zhang,David T Breault,Fernando D Camargo,Ömer H Yilmaz,Jeffrey J Fredberg,Nima Saeidi
Nourhan Abdelfattah,Sivaraman Natarajan, Jose Madonado,Hannah Borland,Rachael McMinimy,Shu‐Hsia Chen,Fernando D. Camargo, James M. Olson,Joshy George,Kyuson Yun
Neuro-oncologyno. Supplement_5 (2023): v288-v288
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作者统计
#Papers: 137
#Citation: 22904
H-Index: 60
G-Index: 137
Sociability: 7
Diversity: 0
Activity: 1
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