This paper explores the institutional regulation of novel biosciences, hybrid technologies that often disturb and challenge existing regulatory frameworks. Developing a conceptual vocabulary for understanding the relationship between material and institutional hybrids, the paper compares human tissue engineering (TE) and xenotransplantation (XT), areas of innovation which regulators have sought to govern separately and in isolation from one another. Contrasting definitional boundaries and regulatory mechanisms partition them socio-institutionally. But despite these attempts at purification, TE and XT have proven increasingly difficult to tell apart in practical and material terms. Human and animal matters, cell cultures and tissue products have much greater corporeal connection than has been institutionally recognized, and are therefore a source of acute instability in the regulation of implants and transplants. This paper tells the story of how the messy worlds of TE and XT have leaked into one another, calling into question the abilities of regulation to adequately control hybrid innovations.
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http://dx.doi.org/10.1057/palgrave.sth.8700062 | DOI Listing |
Med Phys
January 2025
Department of Medical Physics, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
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View Article and Find Full Text PDFAnn Biomed Eng
January 2025
Department of Biomedical Engineering, Yildiz Technical University, Esenler, 34220, Istanbul, Türkiye.
Titanium (Ti)-based materials are favored for hard tissue applications, yet their bioinertness limits their success. This study hypothesizes that functionalizing Ti materials with chitosan nano/microspheres and calcitriol (VD) will enhance their bioactivity by improving cellular activities and mineralization. To test this, chitosan particles were applied uniformly onto Ti surfaces using electrophoretic deposition (EPD) at 20 V for 3 minutes.
View Article and Find Full Text PDFBrain Imaging Behav
January 2025
Macquarie Medical School, Macquarie University, Sydney, NSW, Australia.
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January 2025
Institute for Medical Engineering and Science, Massachusetts Institute of Technology, MA, Cambridge, USA.
Purpose: Atrial fibrillation (AF) is the most common chronic cardiac arrhythmia that increases the risk of stroke, primarily due to thrombus formation in the left atrial appendage (LAA). Left atrial appendage occlusion (LAAO) devices offer an alternative to oral anticoagulation for stroke prevention. However, the complex and variable anatomy of the LAA presents significant challenges to device design and deployment.
View Article and Find Full Text PDFMed Mol Morphol
January 2025
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