

Welcome to the electrospinning edition of the Nanoscience Instruments newsletter, nanoNews. We are excited to share the latest updates from the community with you!
In this Spring newsletter, you will find recent webinars, white papers, and blogs that highlight the ways Fluidnatek electrospinning equipment have empowered biomedical research and development. If you are interested in more updates about electrospinning, we invite you to follow us on LinkedIn!

Contract R&D
Will Electrospinning Work for Me?
Nanoscience Analytical can help you create customized polymers for your application and will help scale-up and run feasibility testing for your product.
We can send you an electrospun sample made from one of the many common polymers we keep in stock, or discuss a proof-of-concept project using the material(s) of your choice. For more details, contact our team of research scientists.

NEWS & UPDATES
NEW Fluidnatek LE-100 Added to our Phoenix Lab!

We are excited to share the new addition to our Phoenix, AZ lab! Our Electrospinning lab is fully equipped to take your research from concept to production. Develop nanofibers and nanoparticles, explore needle-based and needle-less processing, optimize sensitive materials with precise environmental control, or scale advanced sample development. The Fluidnatek® LE-100 supports a wide range of research, development, and small-scale manufacturing applications with flexible configurations, cGMP-certifiable capabilities, and comprehensive process control.

CUSTOMER SHOWCASE
Penn State University – The Mather Group

The Mather Group at Penn State University recently upgraded its Fluidnatek LE-50 G1 electrospinning system. The upgrade provides co-spinning capabilities and a multi-needle system, giving the team the ability to build more complex fiber architectures and begin scaling up its process. The Mather Group focuses on healthcare and energy, developing shape-memory polymers, nanocomposites, and bio-inspired materials for applications ranging from minimally invasive surgical devices to wearable sensors.

ON DEMAND WEBINARS
Electrospinning and Electrospraying of Plant-Based Materials for Scalable, Animal Component-Free Cell Culture Systems
Advancing sustainable, animal component-free (ACF) materials for cell culture is critical for tissue engineering, regenerative medicine, and cellular agriculture, yet conventional scaffolds and microcarriers rely heavily on synthetic or animal-derived …

CONFERENCE CORNER
ACS Fall 2026 | August 23- 27 | Chicago, IL

Visit us in Booth #441 to learn about the power and versatility of the electrospinning technique and discover all our solutions for medical device development and manufacturing. We will be running live demonstrations of our advanced electrospinning equipment and offering test drives of the best-selling desktop SEM to visualize the microstructure of the nanofiber samples. Our team of experts look forward to discussing how adding this technology to your lab will help you achieve your production goals!

WHITE PAPERS
TECH NOTE
Fabrication and Characterization of Electrospun Fibers
Polymer fibers play an essential role in applications ranging from biomedical devices to energy storage. While several fabrication methods are available, electrospinning offers unique advantages by producing micro- and nanoscale fibers with high surface area, controlled porosity, and tunable properties. These capabilities have made electrospinning a leading technology for tissue engineering, drug delivery, filtration, and advanced materials development.

APP NOTE
Enhancing Medical Device Performance Through Electrospinning
Medical devices require advanced materials that promote tissue integration, durability, and long-term performance. Electrospinning enables the fabrication of nanofibrous coatings with high surface area, controlled porosity, and tunable properties, making it an ideal technology for enhancing wound dressings, catheters, implantable devices, and other next-generation medical technologies.


RECENT ELECTROSPINNING PUBLICATIONS
Discover recently published journal articles from our Customers!
- Electrospinning of ultra-high molecular weight polymers into aligned nanofibers and their application in chemical separations | https://doi.org/10.1039/d6lp00187d
- Pneumatospinning and Electrospinning Scaffolds for Meniscus Regeneration Using Human Embryonic-Derived Mesenchymal Stem Cells | https://doi.org/10.3390/bioengineering13030314
- High crystallinity and polar-phase content in electrospun P(VDF-TrFE) nanofibers with low molecular weight | https://doi.org/10.1063/5.0267697
If you are a Fluidnatek user and would like your paper to be featured in a future newsletter, please send us a link to the publication via email: marketing@nanoscience.com.




