Biomaterials Group WUT
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Biomaterials Group WUT
@biomaterialsgroup.bsky.social
#Biomaterials Research Group WUT led by Prof Wojciech Święszkowski | Innovative biomaterials, tissue engineering, computer modeling | Warsaw University of Technology | #BioGroupWUT by Staff
🔗 Our website: https://bio.materials.pl/
New Publication Alert!
“Biofabricated hydrogel core-shell microfibers for endothelial-mesenchymal stem cells co-culture and microvascular organization” by Alessia Paradiso et al.

www.tandfonline.com/doi/full/10....

@tandfonline @PW_edu @ICHF_PAN
https://doi.org/10.1080/092050…
September 7, 2026 at 3:55 PM
Book Chapter out!
"Biofabrication of Skeletal Muscle Tissue and Its Interfaces" in | Biofabrication in Regenerative Medicine: Basic Technologies, Emerging Modalities, and Applications | Springer Nature.

Kudos to out @MarinaVolpi4 and Prof Wojciech Swieszkowski!

doi.org/10.1007/978-...
Biofabrication of Skeletal Muscle Tissue and Its Interfaces
Skeletal muscle tissue engineering has emerged as a critical field in regenerative medicine due to the limited capacity of large or chronically damaged muscles to self-repair. Native skeletal muscle displays a highly organized, vascularized, and mechanically...
doi.org
July 20, 2026 at 10:48 PM
New publication!
“Microfluidic Biofabrication of a Hydrogel Vessel-Like Structure for Interrogating Tumor Cell Propagation in a Breast Cancer-on-a-Chip Model” by Alessia Paradiso et al.

Congrats to all Authors!

doi.org/10.1002/adhm...

#BioGroupWUT
Microfluidic Biofabrication of a Hydrogel Vessel‐Like Structure for Interrogating Tumor Cell Propagation in a Breast Cancer‐on‐a‐Chip Model
A microfluidics-assisted breast cancer-on-a-chip (BCoC) model integrates tumor, vascular, and immune components within a perfusable three-dimensional (3D) construct. Cell-laden alginate-GelMA vessel-...
doi.org
July 15, 2026 at 4:05 PM
New Research Article!
"Drop-on-demand antimicrobial printed coatings loaded with a dehydroabietic acid derivative to prevent orthopedic implant infections" by David Martinez Perez et al.!
On Journal of Materials Chemistry B 🤩
@rsc.org
pubs.rsc.org/en/content/a...
Drop-on-demand antimicrobial printed coatings loaded with a dehydroabietic acid derivative to prevent orthopedic implant infections
Microvalve-based drop-on-demand (DOD) printing technology was applied to create antimicrobial coatings for orthopedic implants. Leveraging the high-precision deposition capabilities of DOD, coatings l...
pubs.rsc.org
June 12, 2026 at 4:40 PM
🧠🔬 New Review Article!
"AI for Bioactive Materials: From Material Design to Biological Applications" by Shi, Liang, Heljak et al. on Bioactive Materials, Elsevier.

Congrats to all Authors, special mention to our Dr Marcin Heljak and Prof Wojciech Święszkowski!

www.sciencedirect.com/science/arti...
www.sciencedirect.com
June 12, 2026 at 4:35 PM
If you are attending #TERMISEU2026, we would love to see you there! Prof Swieszkowski will deliver a presentation about our latest #BioGroupWUT works!
📌 Tuesday, 21st April h 15:15
April 19, 2026 at 1:41 PM
New publication!

“Bioactive Copper-Doped Natural Hydroxyapatite Quantum Dots/Graphene Oxide Nanocomposites in 3D-Printed PCL Scaffolds for Superior Osteogenic and Angiogenic Performance in Bone Tissue Engineering”

Kudos to dr M Khanmohammadi, M Volpi, Prof W Święszkowski!

doi.org/10.1002/adhm...
Bioactive Copper‐Doped Natural Hydroxyapatite Quantum Dots/Graphene Oxide Nanocomposites in 3D‐Printed PCL Scaffolds for Superior Osteogenic and Angiogenic Performance in Bone Tissue Engineering
A sustainable 3D-printed PCL scaffold is reinforced with copper-doped natural hydroxyapatite quantum dots (Cu-HA QDs) and graphene oxide (GO). Well-aligned F-actin highlights cell elongation and guid...
doi.org
April 10, 2026 at 5:58 PM
Exciting news!
🔬 We're launching RETIN-A-EYE, an international project developing AI-powered, nanoparticle-based drug delivery for personalized retinal disease therapy.
👁️ Fewer injections. Better outcomes. Smarter medicine.
www.linkedin.com/posts/biomat...
#biogroupwut | BioMaterials Group WUT
🔬 Exciting news from the #BioGroupWUT! We are thrilled to announce the launch of the international research project RETIN-A-EYE — "Machine Learning Platform for Personalized Intravitreal Anti-VEGF Th...
www.linkedin.com
March 16, 2026 at 5:08 PM
New paper out! "Manufacturing-driven biocorrosion differences in the Mg-1Ca-0.5Zn-0.1Y-0.03Mn (at.%) alloy: An integrated in vitro and short-term in vivo evaluation" by Dr Diana Martinez et al. on the biocorrosion behavior of Mg alloys for biomed applications.
Full article: doi.org/10.1016/j.jm...
February 10, 2026 at 8:18 PM
🚀 New Publication Alert!
Excited to share our latest research paper, “Recapitulating the Human Myotendinous Junction In Vitro Using a 3D Bioprinted Model”, published in #Biofabrication.
Special Kudos to our PhD Candidate @MarinaVolpi✨
iopscience.iop.org/article/10.1...
Recapitulating the human myotendinous junction in vitro using a 3D bioprinted model
Recapitulating the human myotendinous junction in vitro using a 3D bioprinted model, De Paolis, Francesca, Volpi, Marina, Fuoco, Claudia, Reggio, Alessio, Deodati, Rebecca, Bernardini, Sergio, Palma, Alessandro, Longo, Umile Giuseppe, Santorelli, Lucia, Scirocchi, Fabio, Vinci, Maria, Grumati, Paolo, Costantini, Marco, Święszkowski, Wojciech, Gargioli, Cesare
iopscience.iop.org
February 9, 2026 at 8:29 PM
Research paper alert!
Spherical-based Mechanical Metamaterials: from Prediction to Design via Machine Learning, authored by Pasquale Posabella, Marcin Heljak, Kamil Majchrowicz, Marco Costantini, and Wojciech Święszkowski.
doi.org/10.1016/j.tw...
@WUT_edu @ICHF_PAN
Redirecting
doi.org
January 20, 2026 at 9:05 PM
New research article out. "Methacrylated Pulmonary dECM-Enriched GelMA Bioinks Promote Endothelialization and Angiogenesis in 3D Printed Tubular Constructs" by N Celikkin. et al.
Special mention to Marina Volpi, PhD Student at our #BioGroupWUT!

www.linkedin.com/posts/biomat...
Methacrylated Pulmonary dECM-Enriched GelMA Bioinks Promote Endothelialization and Angiogenesis in 3D Printed Tubular Constructs | BioMaterials Group WUT
New research article out. "Methacrylated Pulmonary dECM-Enriched GelMA Bioinks Promote Endothelialization and Angiogenesis in 3D Printed Tubular Constructs" by Nehar Celikkin. et al. Congratulations t...
www.linkedin.com
January 7, 2026 at 12:27 PM
New paper! “Microwave-Assisted Synthesis of Novel Ni3S2/Ce2O2S 2D Hexagonal Nanoflakes for High-Performance Asymmetric Supercapacitors”.
Congrats to all Authors, special mention to our colleague Dr E Choińska (@EmiliaChoinska).
@WUT_edu @ifjpan @GdanskTech
www.dovepress.com/microwave-as...
Microwave-assisted synthesis of novel Ni3S2/Ce2O2S 2D hexagonal nanofl | NSA
To achieve enhanced electrochemical performance through novel 2D nanoarchitectures and improved charge transfer dynamics.
www.dovepress.com
December 29, 2025 at 3:44 PM
As the year comes to an end, we thank our students, researchers, collaborators, and partners for their hard work, creativity, and support throughout the year. We wish everyone a joyful Christmas and a restful holiday season, and we look forward to an exciting year ahead!
December 22, 2025 at 11:05 AM
Our PhD Student, Marlene A. González qualified for financing within the @NCN_PL PRELUDIUM competition, with a project titled "Printed, biodegradable zinc alloys: a breakthrough in the development of cardiovascular implants.

www.linkedin.com/posts/biomat...
Sześć grantów NCN dla naszych naukowców | BioMaterials Group WUT
We are pleased to announce that six researchers from our faculty Wydział Inżynierii Materiałowej Politechniki Warszawskiej have recently received fundings by NCN National Science Centre to pursue thei...
www.linkedin.com
December 2, 2025 at 5:48 PM
Project announcement! Our team, led by Prof. Wojciech Święszkowski, has received funding by NCBR to develop next-gen osteogenic, porous subperiosteal dental implants for patients with severe bone loss. Co-financed by the EU’s ERDF. More info below! 🔬✨

bio.materials.pl/projects/#17...
Projects – Biomaterials Group
bio.materials.pl
November 26, 2025 at 6:22 PM
<< New Review Article Out >>
“Zn and Zn alloys for Cardiovascular Stents: Influence of Manufacture Techniques on Microstructure, Mechanical and Corrosion Performance”
Authored by M.A. González García, A. Dobkowska, and W. Święszkowski.
Link to article: imim.pl/files/archiw...
November 8, 2025 at 3:43 PM
📢#TermisEU2026 Announcement
Prof W. Święszkowski will organize the session “Biomimetic 3D Models of Tissue Interfaces for Translational Research” with Prof Maria Chatzinkolaidou. Prof Shulamit Levenberg is Invited Speaker.
📥 Submit your abstract and join #TermisEU2026!
October 13, 2025 at 4:22 PM
Our #BioGroupWUT leader, Prof. Wojciech Święszkowski, is again in the Elsevier's top 2% scientists list!
83 researchers @WUT_edu are in the ranking, while a total of 1412 Polish scientists represent 203 Polish institutions 🔬

Congratulations!

www.pw.edu.pl/aktualnosci/...
TOP 2% Scientists 2025 – rośnie liczba naszych naukowców
Aż 83 przedstawicieli z Politechniki Warszawskiej znalazło się w tegorocznej edycji zestawienia World’s TOP 2% Scientists. To wynik lepszy niż w roku ubiegłym – wówczas na listach widniało 77 naszych ...
www.pw.edu.pl
October 11, 2025 at 9:21 PM
New paper out! “The role of microstructure on the degradation behavior and biocompatibility of Mg-Ca-Zn-Y-Mn alloy” @PW_edu @CharlesUniPRG @ELTE_UNI @kumamotoUniv_PR
www.sciencedirect.com/science/arti...
The role of microstructure on the degradation behavior and biocompatibility of Mg-Ca-Zn-Y-Mn alloy
In this study, the effect of annealing on the microstructure and following corrosion and biological properties of Mg-1.0Ca-0.5Zn-0.1Y-0.03Mn (at. %) a…
www.sciencedirect.com
September 17, 2025 at 7:37 PM
✨ The Biomaterials Group is at Biofabrication 2025 in Warsaw 🇵🇱
Our team will be contributing with engaging presentations, sharing our advances in the #biofabrication field! #ISBFWarsaw2025 #biofabrication2025
September 14, 2025 at 6:24 PM
🇵🇱 The Polish #biomaterials community is strongly present at @ESB_2025 in Turin!

Among the participants, our #BiomaterialsGroupWUT leader, Prof Wojciech Swieszkowski

Photo credits: biomat.krakow.pl/en
Via LinkedIn: linkedin.com/posts/psbiomat…
September 9, 2025 at 10:40 AM
Today, Prof Wojciech Swieszkowski will be keynote speaker at @ESB_2025 for the collaborative symposium with @ISBioFab “Biomaterials for #biofabrication and advanced in vitro models”.
Chairs: @gosia_wlod @SilviaFare

#BioGroupWUT @WUT_edu @PW_edu @Biofab2025
September 9, 2025 at 9:07 AM