Biosensors and Nanotheranostics
Biosensors and Nanotheranostics is an open-access, peer-reviewed international journal dedicated to advancing the fields of biosensors, nanomedicine, and associated technologies. Our mission is to
Biosensors and Nanotheranostics
Volume 4 Number 1 2025
Table of Contents
Research Article
Pharmaceuticals and Drug Delivery
Nanomaterials Targeting Red Blood Cells: Implications for Drug Delivery and Biosensing
Zeljka Krpetic 1*, Andy Miah 1, Rosa Arrigo 1
This study advances RBC-based nano-carriers using pseudopeptidic polymers and improved purification, enhancing targeted, personalized, and sustained drug delivery.
Abstract | Full Text |PDF (832 KB) | Open Access Article
Zeljka Krpetic 1*, Andy Miah 1, Rosa Arrigo 1
This study demonstrates peptide nucleic acid conjugates stabilizing RNA G-quadruplexes, offering a novel approach to oncogene translation regulation.
Abstract | Full Text |PDF (586 KB) | Open Access Article
Development of Peptide-Polymer Conjugates for Enhanced Cartilage Tissue Engineering
Oleg Kolosov 1*, Gordon Hamilton 1, Cheryl Hawkes 1
This study develops bioactive peptide-polymer scaffolds, enhancing chondrocyte proliferation, ECM deposition, and mechanical properties for advanced cartilage tissue engineering applications.
Abstract | Full Text |PDF (1 MB) | Open Access Article
Polymer-Based Systems for Targeted miRNA Delivery
Oleg Kolosov 1*
This study develops thermoresponsive star copolymers with potential for efficient, biocompatible nucleic acid delivery in biomedical applications.
Abstract | Full Text |PDF (646 KB) | Open Access Article
Mourtas Spyridon 1,2*
Graphene and MoS2 functionalized with copolymers offer enhanced biocompatibility and efficiency for targeted cancer treatment via photothermal therapy.
Abstract | Full Text |PDF (778 KB) | Open Access Article
Ikram Ullah Khan 1*
This study determined the silica-gold core-shell nanoparticles' synthesis and characterization, with their superior catalytic potential for environmental applications.
Abstract | Full Text |PDF (422 KB) | Open Access Article
Covalently Crosslinked Lipid Nanocapsule-Based Hydrogels Induces the Modern Drug Delivery Efficacy
Saba Niaz 1*, Guillaume Bastiat Partner 2, Patrick Saulnier 2
This study showed a novel covalently crosslinked hydrogel system, enhancing drug delivery via improved mechanical stability and controlled release.
Abstract | Full Text |PDF (402 KB) | Open Access Article
Saba Niaz 1, Sam Au 1*
This study developed optimized nanogels for precise, pH-responsive drug release, potentially reducing side effects and improving targeted delivery efficiency.
Abstract | Full Text |PDF (467 KB) | Open Access Article
Sam Au 1*
Continuous LbL nanocapsule production could revolutionize scalable drug delivery, enhancing targeted, efficient treatments through controlled release mechanisms.
Abstract | Full Text |PDF (1 MB) | Open Access Article
Inorganic Drug Release from Mesoporous Silica Nanoparticles for Cancer Treatment
Carla Caramella 1*
The study demonstrated that controlled synthesis of mesoporous silica nanoparticles enables efficient, targeted cancer treatment with reduced toxicity.
Abstract | Full Text |PDF (860 KB) | Open Access Article
Carla Caramella 1*
This study demonstrated the potential of Zn and Mg doped MSNs in targeted cancer therapy and bone metastasis prevention.
Abstract | Full Text |PDF (585 KB) | Open Access Article
Klepetsanis Pavlos 1*
This study showed that the tailoring of nano-templates' surface properties can optimize lysozyme crystallization, improving efficiency in protein purification and structural studies.
Abstract | Full Text |PDF (467 KB) | Open Access Article
Synthesis, Characterization and Biomedical Potential of Peptide-Gold Nanoparticle Hydrogels
Ikram Ullah Khan 1*
This study demonstrated multifunctional hybrid hydrogels with potential for biomedical applications, combining enhanced mechanical properties and tunable optical characteristics.
Abstract | Full Text |PDF (344 KB) | Open Access Article
Advancements in Hydrogel Applications for Mechanobiological Research and Mechanomedicine
Oleg Kolosov 1*
This study provides insights into optimizing photopolymerised MPC hydrogels for biomedical applications in mechanobiology and mechanomedicine, enhancing material design.
Abstract | Full Text |PDF (2 MB) | Open Access Article
Mourtas Spyridon 1*
This study determined nanoparticle synthesis via micelles for biofunctionalization, optimizing conditions for stable quantum dot arrays.
Abstract | Full Text |PDF (349 KB) | Open Access Article
Carla Caramella 1*
This study determines Zn-loaded mesoporous silica nanoparticles as a scalable, pH-responsive drug delivery system for cancer therapy.
Abstract | Full Text |PDF (659 KB) | Open Access Article
Klepetsanis Pavlos 1*
This research advances cancer drug delivery using mesoporous silica nanoparticles, offering precise, stimuli-responsive, and biocompatible therapeutic solutions.
Abstract | Full Text |PDF (486 KB) | Open Access Article
Antibacterial Efficacy and Proteomic Response of Silver Nanoparticles in Escherichia coli XL1-Red
Klepetsanis Pavlos 1*
This study determined AgNP antibacterial efficacy, resistance mechanisms in E. coli mutants, and impact of particle aggregation on nanoparticle performance.
Abstract | Full Text |PDF (355 KB) | Open Access Article
Ikram Ullah Khan 1*
This study showed cost-effective methods for synthesizing gold nanoparticles using polymeric micelles, enhancing their potential for biomedical applications.
Abstract | Full Text |PDF (1 MB) | Open Access Article
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These articles have been peer reviewed and accepted for publication. They are still in production and have not been edited, so may differ from the final published form.
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Targeting mRNA G-quadruplexes with peptide nucleic acid conjugates to regulate gene expression in vivo
This study demonstrates peptide nucleic acid conjugates stabilizing RNA G-quadruplexes, offering a novel approach to oncogene translation regulation.
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Smartphone-Integrated Point-of-Care Sensor for Rapid and Sensitive Malaria Detection in Resource-Limited Settings
A low-cost, portable diagnostic device enables sensitive, rapid malaria detection, aiding intervention programs to reduce transmission and improve outcomes globally.
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Rapid and Low-Cost Field Toxin Analysis to Monitor Harmful Algal Blooms
The GinerSTAT enables rapid, cost-effective detection of brevetoxins in seawater, revolutionizing harmful algal bloom monitoring and mitigating health and economic impacts.
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Green Nanotechnology: Sustainable Approaches for Environmental Remediation and Waste Management
The study highlights the potential of green nanotechnology in sustainable pollution control, waste treatment, and advancing circular economy principles for environmental remediation.
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Sustainable Development and Characterization of Biodegradable Collagen-Calcium Carbonate (Col-Caco3) Microporous Composite Scaffold For Bone Tissue Regeneration
Microporous COL-CaCO3 scaffolds with additives and compression tuning significantly improved mechanical strength, supporting sustainable bone tissue engineering applications.
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Polymer-Based Systems for Targeted miRNA Delivery
This study develops thermoresponsive star copolymers with potential for efficient, biocompatible nucleic acid delivery in biomedical applications.
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Development of Peptide-Polymer Conjugates for Enhanced Cartilage Tissue Engineering
This study develops bioactive peptide-polymer scaffolds, enhancing chondrocyte proliferation, ECM deposition, and mechanical properties for advanced cartilage tissue engineering applications.
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Nanomaterials Targeting Red Blood Cells: Implications for Drug Delivery and Biosensing
This study advances RBC-based nano-carriers using pseudopeptidic polymers and improved purification, enhancing targeted, personalized, and sustained drug delivery.
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