Explore the most recent editions of MPO Magazine, featuring expert commentary, industry trends, and breakthrough technologies.
Access the full digital version of MPO Magazine anytime, anywhere, with interactive content and enhanced features.
Join our community of medical device professionals. Subscribe to MPO Magazine for the latest news and updates delivered straight to your mailbox.
Explore the transformative impact of additive manufacturing on medical devices, including design flexibility and materials.
Learn about outsourcing options in the medical device sector, focusing on quality, compliance, and operational excellence.
Stay updated on the latest electronic components and technologies driving innovation in medical devices.
Discover precision machining and laser processing solutions that enhance the quality and performance of medical devices.
Explore the latest materials and their applications in medical devices, focusing on performance, biocompatibility, and regulatory compliance.
Learn about advanced molding techniques for producing high-quality, complex medical device components.
Stay informed on best practices for packaging and sterilization methods that ensure product safety and compliance.
Explore the latest trends in research and development, as well as design innovations that drive the medical device industry forward.
Discover the role of software and IT solutions in enhancing the design, functionality, and security of medical devices.
Learn about the essential testing methods and standards that ensure the safety and effectiveness of medical devices.
Stay updated on innovations in tubing and extrusion processes for medical applications, focusing on precision and reliability.
Stay ahead with real-time updates on critical news affecting the medical device industry.
Access unique content and insights not available in the print edition of the MPO Magazine.
Explore feature articles that delve into specific topics within the medical device industry, providing in-depth analysis and insights.
Gain perspective from industry experts through regular columns addressing key challenges and innovations in medical devices.
Read the editor’s thoughts on the current state of the medical device industry.
Discover the leading companies in the medical device sector, showcasing their innovations and contributions to the industry.
Explore detailed profiles of medical device contract manufacturing and service provider companies, highlighting their capabilities and offerings.
Learn about the capabilities of medical device contract manufacturing and service provider companies, showcasing their expertise and resources.
Watch informative videos featuring industry leaders discussing trends, technologies, and insights in medical devices.
Short, engaging videos providing quick insights and updates on key topics within the medical device industry.
Tune in to discussions with industry experts sharing their insights on trends, challenges, and innovations in the medical device sector.
Participate in informative webinars led by industry experts, covering various topics relevant to the medical device sector.
Stay informed on the latest press releases and announcements from leading companies in the medical device manufacturing industry.
Access comprehensive eBooks covering a range of topics on medical device manufacturing, design, and innovation.
Highlighting the innovators and entrepreneurs who are shaping the future of medical technology.
Explore sponsored articles and insights from leading companies in the medical device manufacturing sector.
Read in-depth whitepapers that explore key issues, trends, and research findings for the medical device industry.
Discover major industry events, trade shows, and conferences focused on medical devices and technology.
Get real-time updates and insights live from the CompaMed/Medica conference floor.
Join discussions and networking opportunities at the MPO Medtech Forum, focusing on the latest trends and challenges in the industry.
Attend the MPO Summit for insights and strategies from industry leaders shaping the future of medical devices.
Participate in the ODT Forum, focusing on orthopedic device trends and innovations.
Discover advertising opportunities with MPO to reach a targeted audience of medical device professionals.
Review our editorial guidelines for submissions and contributions to MPO.
Read about our commitment to protecting your privacy and personal information.
Familiarize yourself with the terms and conditions governing the use of MPOmag.com.
What are you searching for?
Up to 50 percent of users experience encrustations and subsequent blockage.
New research could lead to new treatments to prevent blockages and urinary tract infections experienced by many long-term catheter users. Up to 50 percent of long-term catheter users experience encrustations and subsequent blockage, which result in severe trauma and pain for the individual and place high burdens on healthcare services and finances. Using an imaging technique called episcopic differential interference contrast (EDIC) microscopy, researchers from the University of Southampton identified four clear stages to the development of a crystalline biofilm, which leads to encrustations. The research also provided new insights into the role of the Proteus mirabilis (P. mirabilis) bacterium that causes the biofilm to form. Dr. Sandra Wilks, senior research fellow in the University’s Centre for Biological Science and lead author of the study, said, “This has greatly enhanced our understanding of the components and stages involved in the formation of crystalline biofilms and encrustations. It provides important information, which will aid in the development of anti-biofilm materials and treatments to manage and ultimately prevent blockage, improving the quality of life of many long-term catheter users.” The Southampton team used EDIC microscopy to study the development of the crystalline biofilm over a 24-day period on two common catheter materials—silicone and hydrogel latex. They found four distinct stages: (1) an initial foundation layer formed by individual “colonizing” P. mirabilis cells, which occurred in less than one hour; (2) this was rapidly followed by a sheet-like microcrystalline material that covers this conditioning film from which; (3) after 24-hour exposure, large amounts of crystalline material extends out and; (4) within four days the entire surface (of both catheter materials) was covered with a crystalline biofilm, in which P. mirabilis was embedded throughout this structure. The results showed that the biofilm occurred equally on silicone and hydrogel latex and that the two materials had no effect on the time progression of development. Dr. Wilks said, “In order to find ways to control and prevent catheter blockages, it is essential that we have a full understanding of biofilm formation. The observations made in this work advance our understanding when placed in the context of previous studies. When considering the various stages, it is clear that if primary attachment and development of a conditioning film can be prevented the subsequent formation of encrustations could have reduced impact.” The study is being presented at the official launch of the University’s Network on Antimicrobial Resistance and Infection Prevention today (December 14). Professor Dame Sally Davies, the Chief Medical Officer for England, will be the keynote speaker at the event, which will highlight the University’s world-class interdisciplinary research to address the global challenge of Antimicrobial resistance. The new findings, published in the journal PLoS ONE, challenge traditional theories and previous findings and add further important information. Dr. Wilks added, “The use of EDIC microscopy provides a rapid and effective method for visualizing crystalline biofilm development directly on catheters, offering considerable improvement over previous imaging techniques. “ Previous studies also suggest that the biofilm layer primarily forms around the eyehole area of the catheter, whereas our work shows they form anywhere on the catheter surface. We also demonstrated that the colonizing P. mirabilis cells attached themselves to the catheter surface prior to the formation of the conditioning film, which hadn’t previously been observed.” The multidisciplinary study was funded by a Knowledge Mobilisation Fellowship in Healthcare Technologies from the University’s Institute for Life Sciences, a leader in life sciences research, development, and innovation.
Enter your account email.
A verification code was sent to your email, Enter the 6-digit code sent to your mail.
Didn't get the code? Check your spam folder or resend code
Set a new password for signing in and accessing your data.
Your Password has been Updated !