Journal Information

Biofunctional Materials

Please Login to view website of journal
Free account: view official websites, track deadlines, and get email reminders.
Get this via API
Search and ranking lists need no credentials at all; full detail for this page needs a free API key. See the developer guide.
Publisher:
ELSP
ISSN:
2959-0574
Viewed:
6808
Tracked:
0

Call For Papers

Biofunctional Materials is an academic journal published by ELSP. (ISSN 2959-0574).

Biofunctional Materials is an online multidisciplinary open access journal aiming to provide a peer-reviewed forum for innovation, research and development related to bioactive materials, biomedical materials, bio-inspired materials, bio-fabrications and other bio-functional materials. The Subject Areas include, but are not limited to: Nanomedical materials in drug delivery and drug release, gene and immune therapy nanostructured coatings for enhanced adhesive, anti-bacterial, anti-viral properties, and anti-fouling properties. Regenerative biomaterials, materials with engineered interfaces, self-assembled materials, materials with selective mechanical and functional properties, and multi-scale scaffolds for tissue engineering and thrombogenic control, and dental materials for soft and hard tissue reconstruction and regeneration. 3D/4D printing for bioactive materials. Theoretical (In-Silico) Biomaterials modeling, design, and AI applications.
Last updated by Dou Sun on

Special Issues

Special Issue on Biofunctional Materials for Tissue Regeneration Submission Date: 2026-09-30 The primary attribute of biofunctional materials is their biocompatibility. This ability allows them to perform a desired function in the body without creating any adverse host response. The initial immune response would depend on the route and the administration site for short-term implants such as drug, gene, or cell delivery systems. However, in the long term, implants such as stents, and bone implants, etc., even after the body tolerates the material, there could be further complications and implant rejection. In both cases, the biofunctional materials must be immunomodulatory to attain tissue regeneration successfully. Immunomodulation can be achieved by carefully tuning the microscopic and macroscopic properties of the materials, such as surface chemistry, degradability, topography, physical properties, etc. In this special issue, we invite research and review articles demonstrating the biocompatibility, survival, and function of biomaterials achieved by immuno-bioengineering for both short-term and long-term applications. This includes but is not limited to the following categories: Studies demonstrating basic biocompatibility analytical methods such as blood compatibility, cytotoxicity, immunocytochemistry, immunohistochemistry, etc. Designing and synthesizing biomaterials with desirable surface chemistry to prevent the infiltration of immune cells into the implants. Adopting techniques to modulate the microenvironment by engineering the surface topography, including 3D bioprinting scaffolds. Machine learning and computational modeling tools to detect and predict the fate of bioengineered materials.
Last updated by Dou Sun on

Related Journals

CCFFull NameImpact FactorPublisherISSN
AI & MaterialsELSP3006-7588
AI+ELSP3007-7443
BlockchainELSP2959-1260
Advanced Information and CommunicationELSP3106-1443
Mechatronics TechnologyELSP2959-376X
Advanced ManufacturingELSP2959-3263
Electronics and Signal ProcessingELSP2959-913X
Biomedical InformaticsELSP3005-3862
Robot LearningELSP2960-1436
Artificial Intelligence and Autonomous SystemsELSP2959-0744

Related Conferences

Comments 0

No comments yet.

Please Login to post a comment