CONFERENCES

HB2E2-27
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HELSINKI 16th International Conference on Bioscience, Biomedical & Environmental Engineering (HB2E2-27) scheduled on June 14-16, 2027 Helsinki (Finland)

posted by organizer: ||1 views||Release time:Aug 07, 2026

Conference DateJun 14-Jun 16, 2027PlaceHelsinki, Finland
Submission DeadlineJun 01, 2027E-mailcs@cbmsr.org
Websitehttps://urebe.urst.org/conference/204Telephone0000000000
DESCRIPTION
Call for papers/Topics All Abstracts, Reviews, short articles, Full articles, Posters are welcomed related with any of the following research fields: Bioscience (Life Sciences Core) Molecular & Cellular Biology Gene Expression and Regulation: Transcriptional control, epigenetics, RNA interference, and post-translational modifications. Cellular Metabolism & Bioenergetics: Glycolysis, oxidative phosphorylation, lipid metabolic pathways, and metabolic flux analysis. Signal Transduction: G-protein coupled receptors, kinase cascades, ligand-receptor kinetics, and cellular crosstalk. Synthetic Biology & Genetic Engineering Genome Editing Tools: CRISPR-Cas systems, TALENs, zinc finger nucleases, and base/prime editing. Metabolic Engineering: Pathway optimization, chassis organism design, heterologous protein production, and synthetic gene circuits. Structural Biology: Protein folding dynamics, macromolecular crystallography, cryo-EM analysis, and molecular docking. Immunology & Microbiology Immune Response Mechanisms: Innate and adaptive immunity, antigen presentation, auto-immunity, and hypersensitivity. Microbial Physiology & Genetics: Bacterial communication (quorum sensing), horizontal gene transfer, and antimicrobial resistance mechanisms. Host-Pathogen Interactions: Viral entry mechanisms, bacterial virulence factors, and immune evasion strategies. Biomedical Engineering Tissue Engineering & Regenerative Medicine Biomaterials Design: Biodegradable polymers, hydrogels, bio-inspired materials, and biocompatibility testing. Scaffold Fabrication & Bioprinting: 3D bioprinting techniques, decellularized extracellular matrices, and microfluidic scaffold architectures. Stem Cell Engineering: Induced pluripotent stem cells (iPSCs), lineage differentiation, organoid development, and mechanical strain signaling. Bioinstrumentation & Medical Devices Biosensors & Diagnostics: Point-of-care testing, electrochemical sensors, optical biosensors, and microfluidic lab-on-a-chip devices. Medical Imaging Systems: Magnetic Resonance Imaging (MRI), Positron Emission Tomography (PET), ultrasound beamforming, and computed tomography (CT) algorithms. Bioelectric Signal Processing: Electrocardiography (ECG), electroencephalography (EEG), electromyography (EMG), and noise-filtering signal conditioning. Biomechanics & Neural Engineering Orthopedic Mechanics: Bone modeling, joint kinematics, implant stress analysis, and cartilage tribology. Fluid Biomechanics: Blood flow dynamics (hemodynamics), arterial wall shear stress, microvascular transport, and heart valve mechanics. Brain-Computer Interfaces (BCIs): Neural signal decoding, invasive vs. non-invasive electrodes, neuroprosthetics, and deep brain stimulation parameters. Environmental Engineering Water & Wastewater Engineering Advanced Water Treatment: Membrane filtration (reverse osmosis, nanofiltration), advanced oxidation processes, and UV disinfection. Biological Wastewater Processing: Activated sludge systems, anaerobic digestion, nutrient removal (nitrogen and phosphorus), and membrane bioreactors. Hydrology & Groundwater Remediation: Aquifer recharge, contaminant transport modeling, pump-and-treat systems, and permeable reactive barriers. Air Quality & Atmospheric Engineering Pollutant Control Technologies: Electrostatic precipitators, baghouse filters, catalytic converters, and scrubbers for volatile organic compounds. Atmospheric Chemistry & Modeling: Particulate matter (PM2.5/PM10) dispersion, photochemical smog formation, and greenhouse gas flux accounting. Indoor Air Quality: HVAC filtration design, bioaerosol control, and source emissions characterization. Waste Management & Circular Economy Solid & Hazardous Waste Engineering: Landfill liner design, leachate collection, incineration, and hazardous material stabilization. Resource Recovery & Biorefining: Waste-to-energy systems, bioplastics production from organic waste, and nutrient recycling (e.g., phosphorus extraction). Life Cycle Assessment (LCA): Cradle-to-grave environmental impact evaluation, carbon footprint analysis, and circular materials flow analysis. Interrelated & Cross-Disciplinary Fields Bioremediation & Environmental Biotechnology (Intersection: Bioscience + Environmental Engineering) Microbial Remediation: Enzymatic degradation of hydrocarbons, organohalides, and persistent organic pollutants. Phytoremediation: Heavy metal hyperaccumulation in plants, rhizosphere degradation, and phytostabilization. Biosensors for Environmental Monitoring: Genetically engineered microbes and immobilized bio-recognition elements for real-time contaminant tracking. Environmental Health & Nanotoxicology (Intersection: Bioscience + Biomedical + Environmental Engineering) Nanoparticle Toxicity: Cellular uptake mechanisms, reactive oxygen species generation, and biological barrier penetration of engineered nanomaterials. Ecotoxicology & Risk Assessment: Endocrine disruptor exposure routes, dose-response modeling, bioaccumulation in food chains, and biomarkers of environmental stress. Bioaerosol Health Impacts: Respiratory deposition kinetics of airborne biological agents and occupational exposure limits. Sustainable Medical Technologies (Intersection: Biomedical Engineering + Environmental Engineering) Eco-Friendly Biomaterials: Bio-based polymers for disposable medical devices and circular supply chains for surgical tools. Pharmaceutical Contaminant Mitigation: Environmental lifecycle of drug residues, endocrine disruptors in municipal effluent, and targeted removal methods. Green Biomanufacturing: Energy-efficient bioreactor design, continuous manufacturing protocols, and low-waste cell-culture media formulations. Bioenergy & Bioprocess Engineering (Intersection: Bioscience + Environmental Engineering + Biomedical Fluid Principles) Algal Biotechnology: Microalgae cultivation systems, photobioreactor scale-up, and lipid extraction for biofuels. Bioelectrochemical Systems: Microbial fuel cells (MFCs) for simultaneous wastewater treatment and power generation, plus microbial electrosynthesis. Fermentation & Scale-Up Hydraulics: Mass transfer dynamics (oxygen transfer rates), fluid mixing in large-scale vessels, and rheology of complex biological fluids

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