Contera, Sonia,

Nano comes to life : how nanotechnology is transforming medicine and the future of biology / Sonia Contera. - 1 online resource (xii, 216 pages) : illustrations (some color)

Includes bibliographical references (pages 189-205) and index.

Introduction : sciences converge in biology to transform health -- Embracing biology's complexity, at last -- Learning by making : DNA and protein nanotechnology -- Nano in medicine -- Recreating tissues and organs -- Conclusions : life changes everything.

"Increasingly, scientists are gaining control over matter at the nanometer scale. Spearheaded by physical scientists operating at the interfaces of physics and biology (such as the author herself), advances in nanoscience and technology are transforming how we think about life and treat human health. This is due to a convergence of size. To do medicine, one must understand and be able to reach the nanoscale environment of healthy cells in tissues and organs, as well as other nano-sized building blocks that constitute a living organism, such as proteins and DNA. The ground-breaking advances being made at the frontiers of nanoscience and -technology, specifically in the areas of biology and medicine, are the subject of this short, popular-level book. Chapter 1 describes how nanotechnology and quantitative methods in biology are progressively being deployed to embrace life in all its multiscale, hierarchical intricacy and multiplicity. Chapters 2 through 4 review how bioinspired and biomimetic nanostructures and nanomachines are being created and integrated into strategies aimed at solving specific medical problems. In particular, Chapter 2 summarizes how scientists are seeking to build artificial nanostructures using both biological molecules and the organizational principles of biology. Chapter 3 gives an account of how nanotechnology is being used to develop drug-delivery strategies that specifically target cancer cells and tumors to improve the efficacy of current cancer chemotherapies. Chapter 4 reviews the science of one of the most potentially transformative scientific fields: tissue engineering. In a concluding chapter (Chapter 5), Contera reviews how nanotechnology, biology, and medicine will continue fusing with other sciences and technologies - incorporating more mathematical and computational modelling, as well as AI and robotics. Nanoscale devices will be used to learn biology; and biology will be used to inspire increasingly sophisticated "transmaterial" devices that mimic some of the characteristics of biology and incorporate new features that are not available in the biological world. The effects on human health and longevity will be profound. In a more personal epilogue, Contera describes the crossroads at which we find ourselves. Accessing our own biology evokes a mixture of possibility and dread. However, Contera maintains that we can create a positive transmaterial world for the benefit of humankind, and she describes ways in which scientists are proactively engaging with the public, politicians, industry, and entrepreneurs, as well as the media and the arts, to communicate the power and risks of new advances and to influence the ways in which new technologies will affect our future"--

0691189285 9780691189284

16356116

22573/ctvgz0t5v JSTOR C91A9016-F941-45BD-8339-062DABFC237C OverDrive, Inc. http://www.overdrive.com 9452623 IEEE

2019023185


Nanotechnology.
Nanomedicine.
Nanobiotechnology.
Nanotechnology
Nanobiotechnologie.
Nanotechnologie.
SCIENCE--Nanoscience.
Nanobiotechnology.
Nanomedicine.
Nanotechnology.


Electronic books.

QH324.25 / .C66 2019

570.285

QT 36.5