Epigenetic Mechanisms in Breast Cancer Therapy and Resistance: Advances in Experimental Medicine and Biology, cartea XXXX
Editat de Sanchita Bhatnagaren Limba Engleză Hardback – 27 oct 2024
This book focuses on the epigenetic mechanisms in breast cancertherapy and resistance. It is organized into three sections, including epigenetic mechanisms in breast cancer, targeting epigenetic mechanisms for new therapies, and new and emerging methodologies to study epigenetic alterations in breast cancer. Chapters highlight various epigenetic regulations that prevent breast cancer growth and progression, as well as epigenetic alterations that contribute to breast cancer progression. This text is a useful methodology book for researchers and students interested in epigenetics in breast cancer and the fundamentals of cancer biology.
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Specificații
ISBN-13: 9783031666858
ISBN-10: 3031666852
Pagini: 300
Ilustrații: Approx. 300 p.
Dimensiuni: 155 x 235 mm
Greutate: 0.42 kg
Ediția:2025
Editura: Springer Nature Switzerland
Colecția Springer
Seria Advances in Experimental Medicine and Biology
Locul publicării:Cham, Switzerland
ISBN-10: 3031666852
Pagini: 300
Ilustrații: Approx. 300 p.
Dimensiuni: 155 x 235 mm
Greutate: 0.42 kg
Ediția:2025
Editura: Springer Nature Switzerland
Colecția Springer
Seria Advances in Experimental Medicine and Biology
Locul publicării:Cham, Switzerland
Cuprins
Chapter 1 - MDIG in breast cancer progression and metastasis.- Chapter 2 - Tumor Microenvironment and Epigenetic Implications in Breast Cancer Progression.- Chapter 3 - The Epigenetic Landscape of Breast Cancer, Metabolism, and Obesity.- Chapter 4 - Epigenetic Modulations by Microbiome in Breast Cancer.- Chapter 5 - Facilitates chromatin transcription in breast and other cancers.- Chapter 6 - Advances in epigenetic therapeutics for breast cancer.- Chapter 7 - Detection methods for epigenetic mechanisms in breast cancer.
Notă biografică
Dr. Bhatnagar received her Ph.D. in Infectious diseases from the University of Notre Dame in 2007. She carried out her postdoctoral research with Dr. Michael R. Green at the University of Massachusetts Medical School in Worcester, MA. It was there that Dr. Bhatnagar began her work in understanding the epigenetic regulation of mammalian gene expression.
Dr. Bhatnagar began her independent research career at the University of Virginia School of Medicine in 2015, where she was an Associate Professor in Biochemistry and Molecular Genetics. Recently, Dr. Bhatnagar joined the Medical Microbiology and Immunology department at University of California Davis. Dr. Bhatnagar’s research program focuses on (i) understanding epigenetic silencing mechanisms in the control of mammalian gene expression, (ii) investigate how these mechanisms are deployed during development, and (iii) identify critical steps that, when altered, disrupt normal function.
Dr. Bhatnagar began her independent research career at the University of Virginia School of Medicine in 2015, where she was an Associate Professor in Biochemistry and Molecular Genetics. Recently, Dr. Bhatnagar joined the Medical Microbiology and Immunology department at University of California Davis. Dr. Bhatnagar’s research program focuses on (i) understanding epigenetic silencing mechanisms in the control of mammalian gene expression, (ii) investigate how these mechanisms are deployed during development, and (iii) identify critical steps that, when altered, disrupt normal function.
Textul de pe ultima copertă
Epigenetic mechanisms are essential for normal mammalian development and maintenance of gene expression patterns. Disruption of epigenetic processes can lead to altered transcriptional regulation, gene levels, and malignant cellular transformation. Global alterations of the epigenetic landscape are a hallmark of tumorigenesis and metastasis. Conventionally, cancer was thought to be a genetic disease, but recent advancement in the field identified an abundance of epigenetic abnormalities along with genetic alterations. The extensive reprogramming of epigenetic machinery in cancer includes DNA methylation, histone modifications, nucleosome positioning and non-coding RNAs, specifically microRNA expression. Additionally, the reversible nature of epigenetic aberrations has led to the emergence of the promising field of epigenetic therapy, and recent FDA approval of epigenetic drugs for cancer treatment.
This book focuses on the epigenetic mechanisms in breast cancertherapy and resistance. It is organized into three sections, including epigenetic mechanisms in breast cancer, targeting epigenetic mechanisms for new therapies, and new and emerging methodologies to study epigenetic alterations in breast cancer. Chapters highlight various epigenetic regulations that prevent breast cancer growth and progression, as well as epigenetic alterations that contribute to breast cancer progression. This text is a useful methodology book for researchers and students interested in epigenetics in breast cancer and the fundamentals of cancer biology.
This book focuses on the epigenetic mechanisms in breast cancertherapy and resistance. It is organized into three sections, including epigenetic mechanisms in breast cancer, targeting epigenetic mechanisms for new therapies, and new and emerging methodologies to study epigenetic alterations in breast cancer. Chapters highlight various epigenetic regulations that prevent breast cancer growth and progression, as well as epigenetic alterations that contribute to breast cancer progression. This text is a useful methodology book for researchers and students interested in epigenetics in breast cancer and the fundamentals of cancer biology.
Caracteristici
Explores epigenetic mechanisms in breast cancer, targeting epigenetic mechanisms for new therapies Highlights various epigenetic regulations that prevent breast cancer growth and progression Useful as a methodology book for researchers and students interested in epigenetics in breast cancer