Biomedical Applications of Graphene and 2D Nanomaterials provides a much-needed reference on the biomedical applications of 2D nanomaterials, as well as theoretical knowledge on their structure, physicochemical properties and biomedical applications. Chapters are dedicated to growth areas, such as size and shape-dependent chemical and physical properties and applications, such as in diagnostic and therapeutic products. The book also discusses the concept, development and preclinical studies of 2D nanomaterials-based biomedical tools, such as biosensors, artificial organs and photomedicine. Case studies and reports form the core of the book, making it an ideal resource on potential applications in biomedical science and engineering.
This timely resource for scientists and engineers in this rapidly advancing field features contributions from over 30 leaders who address advanced methods and strategies for controlling the physical-chemical properties of 2D nanomaterials, along with expert opinions on a range of 2D nanomaterials that have therapeutic and diagnostic applications.
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Dr. Md Nurunnabi is an Assistant Professor of Pharmaceutical Sciences in the School of Pharmacy and Adjunct faculty in Biomedical Engineering and Environmental Science & Engineering at the University of Texas at El Paso. Over the past decade, he received training in biomaterials, nanotechnology, and drug delivery. He received Bachelor in Pharmacy from UODA, and MS and PhD in Bioengineering and from the Korea National University of Transportation. Prior to starting his postdoctoral training at Harvard University in 2016, he has completed a short postdoctoral training at the Chungnam National University. In addition to his academic research, he has been involved in industrial research. He was co-founder and chief scientist at the KB BioMed Inc. (Currently Scientific Advisory Board), and an Associate Scientist in Chunbo Corporation Ltd, in South Korea.
Dr. Nurunnabi has published over 50 peer-reviewed papers and edited two books and holds 10 issued/pending patents. Currently, he serves on the editorial advisory board of ACS Biomaterials Science & Engineering since and as Vice Chair of Controlled Release Society’s Bioinspired and Biomimetic Delivery focus group. He served as Secretary of Postdoc Association at Harvard Medical School (2016-2017) and President of Postdoc Association Massachusetts General Hospital (2017-2018) among various leadership roles.
Dr. Jason R. McCarthy is an Assistant Professor in Radiology at Harvard Medical School and an Assistant in Chemistry at the Massachusetts General Hospital (MGH). In 2003, Dr. McCarthy received his Ph.D. in Inorganic Chemistry at the University of Connecticut under the tutelage of Dr. Christian Bruckner. Following graduate school, he joined the Center for Molecular Imaging Research (CMIR) at the MGH as an NIH Ruth L. Kirschstein National Research Service Award post-doctoral fellow, under the direction of Dr. Ralph Weissleder.
In 2006, Dr. McCarthy was promoted to faculty at CMIR, subsequently joining CSB in 2009. The research being conducted by the McCarthy group at Centre for Systems Biology (CSB) is currently funded by several NIH grants and contracts, and is focused upon the synthesis and application of nanomaterials in the imaging and therapy of disease.
Biomedical Applications of Graphene and 2D Nanomaterials provides a much-needed reference for biomedical applications of 2D nanomaterials, as well as theoretical knowledge on the structure, physicochemical properties, and their biomedical application with chapters dedicated to growth areas such as size and shape-dependent chemical and physical properties, and applications such as diagnostic and therapeutic. It also discusses the concept, development, and preclinical studies of 2D nanomaterials-based biomedical tools such as biosensors, artificial organs, and photomedicine.
The many case studies and reports that form the core of the book as a source of unique and large references cover theory and practical of 2D nanomaterials and their potential application and limitation in biomedical science and engineering.
Biomedical Applications of Graphene and 2D Nanomaterials provides a timely resource for scientists and engineers in this rapidly advancing field, features contributions from over 30 leaders in the field, and addresses: advanced methods and strategy for controlling physical-chemical properties of the 2D nanomaterials through controlling their size and shape, state-of-the-art biomedical applications for 2D nanomaterials, including graphene and boron nitride, key information from a broad selection of subject areas for researchers in both materials, engineering, and medicine, expert opinion on a range of 2D nanomaterials that have potential application as therapeutic as well as diagnostic, and advantages of 2D nanomaterials over other materials in biosensor and electrochemistry.
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