Home > Press > JPK reports on the use of SPM in the Messersmith Group at UC Berkeley looking at biologically inspired polymer adhesives.
Abstract:
JPK Instruments, a world-leading manufacturer of nanoanalytic instrumentation for research in life sciences and soft matter, reports on the use of their NanoWizard®3a AFM and ForceRobot systems by the Messersmith Research Group at UC Berkeley to study biologically inspired polymer adhesives.
Dr. Phillip Messersmith is the Class of 1941 Professor in the Departments of Bioengineering and Materials Science and Engineering at the University of California at Berkeley. His research group is interested in understanding structure-processing- property relationships of materials in biological systems, and in using this information to inform the design, synthesis and application of biologically inspired synthetic materials used in a variety of practical applications. Current projects include molecular mechanochemical studies of biological wet adhesives, the design of biomimetic wet adhesive polymers and polymer composites, the control of biointerfacial phenomena in nanosystems and in antifouling surface coatings, and the development of novel biomaterials for regenerative medicine.
One of the Group members, Dr Yang Wei, describes how they started to use JPK's range of SPM systems in a project about biologically inspired polymer adhesives. The goal is to understand wet biological adhesion and then to develop biologically inspired surgical adhesives for use in medicine and dentistry. Measuring forces of interaction between proteins and polymers and surfaces are crucial to understanding how organisms such as the mussel are capable of attaching to underwater surfaces. To achieve these measurements, atomic force microscopy has been applied to provide a very convenient way of performing biophysical studies of mussel adhesive proteins. In this work, multiple force-extension curves have been measured. Typical of this work, a single polymer chain containing the DOPA functional group adapted from mussel adhesive proteins is pulled from a surface using an AFM tip, (see diagram). This experiment was then automated with the use of JPK's ForceRobot®300 system.
Speaking of its performance, Dr Wei said “I specifically enjoy using this fully automated force spectroscope with automated laser and detector alignment which provides high quality in terms of maximum sum values and lowest Z-sensor noise level in force data output.”
For more details about JPK's NanoWizard® AFM and ForceRobot®300 systems and their applications for the bio & nano sciences, please contact JPK in the USA on (408) 807 8878 and in Germany on +49 30726243 500. Alternatively, please visit the web site: www.jpk.com or see more on Facebook: www.jpk.com/facebook and on You Tube: www.youtube.com/jpkinstruments.
####
About JPK Instruments
JPK Instruments AG is a world-leading manufacturer of nanoanalytic instruments - particularly atomic force microscope (AFM) systems and optical tweezers - for a broad range of applications reaching from soft matter physics to nano-optics, from surface chemistry to cell and molecular biology. From its earliest days applying atomic force microscope (AFM) technology, JPK has recognized the opportunities provided by nanotechnology for transforming life sciences and soft matter research. This focus has driven JPK's success in uniting the worlds of nanotechnology tools and life science applications by offering cutting-edge technology and unique applications expertise. Headquartered in Berlin and with direct operations in Dresden, Cambridge (UK), Singapore, Tokyo, Shanghai (China), Paris (France) and Carpinteria (USA), JPK maintains a global network of distributors and support centers and provides on the spot applications and service support to an ever-growing community of researchers.
For more information, please click here
Contacts:
JPK Instruments AG
Colditzstrasse 34-36
Haus 13, Eingang B
Berlin 12099
Germany
T +49 30726243 500
F +49 30726243 999
http://www.jpk.com/
Talking Science Limited
39 de Bohun Court
Saffron Walden
Essex CB10 2BA
United Kingdom
T +44(0)1799 521881
M +44(0)7843 012997
http://www.talking-science.com/
Copyright © JPK Instruments
If you have a comment, please Contact us.Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
Related News Press |
Imaging
News and information
Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024
Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024
Nanotechnology: Flexible biosensors with modular design November 8th, 2024
Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024
Academic/Education
Rice University launches Rice Synthetic Biology Institute to improve lives January 12th, 2024
Multi-institution, $4.6 million NSF grant to fund nanotechnology training September 9th, 2022
Discoveries
Breaking carbon–hydrogen bonds to make complex molecules November 8th, 2024
Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024
Turning up the signal November 8th, 2024
Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024
Materials/Metamaterials/Magnetoresistance
Nanoscale CL thermometry with lanthanide-doped heavy-metal oxide in TEM March 8th, 2024
Focused ion beam technology: A single tool for a wide range of applications January 12th, 2024
Announcements
Nanotechnology: Flexible biosensors with modular design November 8th, 2024
Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024
Turning up the signal November 8th, 2024
Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024
Tools
Turning up the signal November 8th, 2024
Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024
Faster than one pixel at a time – new imaging method for neutral atomic beam microscopes developed by Swansea researchers August 16th, 2024
The latest news from around the world, FREE | ||
Premium Products | ||
Only the news you want to read!
Learn More |
||
Full-service, expert consulting
Learn More |
||