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Of the 121,000 people on donor lists in the U.S., over 100,000 need kidney transplants and thousands die each year while waiting. Bioprinting aspires to build healthy kidney tissue from a patient's own cells and transplant this to boost failing kidneys without fear of rejection... As the 21st century dawned, a handful of inspired scientists tried to use 3D printing to create living human tissue. Their vision was to restore the health of people with intractable injuries, such as worn out cartilage, severed nerves, ailing kidneys, failing hearts—the gamut of human frailties. Their modest success energized others to join the quest. Now, after two decades of ingenious effort and hard work, they have carved out a vibrant new discipline: bioprinting. In Bioprinting: To Make Ourselves Anew, physicist Kenneth Douglas casts an eye over the achievements and future of bioprinting. He explains the science with rigor but with a minimum of technical baggage. This is the first book on the subject written expressly for the lay audience: accessible and even entertaining. Douglas interviewed two dozen bioprinting researchers from around the world, and he enriches the narrative by sharing stories from the scientists behind the science. These contemporary vignettes are complemented by historical accounts of the women and men whose prescient contributions were foundational to the development of bioprinting. The book describes the challenges and accomplishments in the bioprinting of blood vessels, cartilage, skin, bone, skeletal muscle, neuromuscular junctions, liver, heart, lung, kidney, and so-called organs-on-a-chip, as well as the challenges of providing a blood supply and nerves to bioprinted tissues. This is a compelling tale of a work in progress: to imitate nature and help heal people with debilitating afflictions.
Can the emerging field of bioprinting successfully engineer functional human tissues and organs to address the critical shortage of transplantable donor organs? Kenneth Douglas, a physicist, examines the evolution of bioprinting from its inception at the turn of the 21st century to its current state as a specialized scientific discipline. By synthesizing interviews with two dozen global researchers and historical accounts of foundational contributors, the author argues that while significant technical hurdles remain, the field is steadily progressing toward the goal of creating viable, patient-specific biological replacements.
What You Will Find
Scope Limits
Experts and readers recognize this work as a primary entry point for laypeople seeking to understand the mechanics and history of bioprinting. The text is noted for its ability to balance scientific rigor with an accessible narrative style that avoids excessive technical jargon.
Page Count:
318
Publication Date:
2021-01-01
Publisher:
Oxford University Press
ISBN-10:
0190943564
ISBN-13:
9780190943561
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