Full Articles/ Reviews/ Shorts Papers/ Abstracts are welcomed in the following research fields:
Biomolecules and macromolecular structure, proteins and amino acids, enzymes and enzyme kinetics, carbohydrates, lipids, nucleic acids, DNA and RNA structure, gene expression, protein synthesis, metabolic pathways, bioenergetics, cellular respiration, photosynthesis, membrane biochemistry, molecular interactions, biochemical signaling, hormones, vitamins, cofactors, oxidative stress, free radicals, antioxidants, molecular diagnostics, biochemical regulation and metabolic disorders.
Enzyme structure and function, enzyme inhibition, industrial enzymes, metabolic regulation, glycolysis, Krebs cycle, oxidative phosphorylation, lipid metabolism, amino acid metabolism, nucleotide metabolism, carbohydrate metabolism, metabolic engineering, secondary metabolites, fermentation pathways, energy metabolism, metabolic diseases, biomarkers and therapeutic modulation of biochemical pathways.
DNA replication, transcription and translation, gene regulation, mutations, genetic variation, molecular genetics, genomics, transcriptomics, epigenetics, genome sequencing, gene editing, CRISPR technologies, functional genomics, comparative genomics, microbial genomics, environmental genomics, pharmacogenomics, genetic engineering and synthetic biology.
Cell structure and function, organelles, cell division, cell cycle regulation, apoptosis, cellular signaling, membrane transport, stem cells, cell culture, tissue engineering, regenerative biology, cellular stress responses, cell-based assays, biotechnology applications, bioprocessing and cellular production systems.
Bacteriology, virology, mycology, microbial ecology, microbial physiology, microbial genetics, pathogenic microorganisms, antimicrobial resistance, probiotics, industrial microbiology, environmental microbiology, microbial fermentation, microbial enzymes, bioremediation, wastewater microorganisms, biofilms, microbial fuel cells and beneficial microbial communities.
Bioprocess engineering, fermentation technology, bioreactors, downstream processing, recombinant DNA technology, protein engineering, enzyme engineering, metabolic engineering, synthetic biology, biosensors, biomaterials, bioseparation, bioinstrumentation, biomanufacturing, biopharmaceutical production and industrial biotechnology.
Human physiology, molecular medicine, disease mechanisms, cancer biology, immunology, infectious diseases, neuroscience, clinical biochemistry, biomarkers, molecular diagnostics, drug discovery, pharmacology, toxicology, personalized medicine, therapeutic proteins, vaccines, diagnostic technologies and biomedical biotechnology.
Innate and adaptive immunity, antibodies, antigens, immune signaling, inflammation, autoimmune diseases, immunodeficiency, vaccines, viral diseases, bacterial infections, emerging pathogens, host-pathogen interactions, antimicrobial resistance, molecular epidemiology, diagnostic immunology and immunotherapeutics.
Plant biochemistry, plant physiology, crop biotechnology, plant genetics, photosynthesis, plant-microbe interactions, soil microbiology, plant stress responses, biofertilizers, biopesticides, sustainable agriculture, precision agriculture, crop improvement, plant tissue culture, genetic modification and agricultural waste valorization.
Food chemistry, nutritional biochemistry, food microbiology, food biotechnology, functional foods, probiotics and prebiotics, food enzymes, food processing, food safety, nutritional metabolism, antioxidants, bioactive compounds, food contaminants, food preservation, fermentation, nutraceuticals and sustainable food production.
Biochemical processes in natural environments, pollutant metabolism, contaminant transformation, environmental enzymes, biogeochemical cycles, carbon cycle, nitrogen cycle, phosphorus cycle, oxidative processes, environmental toxicology, biomonitoring, biochemical indicators of pollution and biological responses to environmental stress.
Microorganisms in soil, water and air, microbial ecology, biodegradation, microbial communities, wastewater microbiology, drinking-water microbiology, pathogenic microorganisms in the environment, biofilms, microbial remediation, anaerobic digestion, nutrient cycling and microbial monitoring technologies.
Water treatment, wastewater treatment, drinking-water purification, air-pollution control, solid-waste management, hazardous-waste treatment, soil remediation, environmental monitoring, pollution prevention, environmental modelling, environmental impact assessment, sustainable infrastructure, resource recovery and environmental risk assessment.
Physical, chemical and biological water treatment, activated sludge, membrane filtration, reverse osmosis, advanced oxidation, adsorption, coagulation and flocculation, nutrient removal, anaerobic treatment, sludge management, wastewater reuse, desalination, emerging contaminants, pharmaceutical residues and water-quality monitoring.
Microbial bioremediation, phytoremediation, mycoremediation, biosorption, biodegradation, contaminated soil treatment, groundwater remediation, oil-spill remediation, heavy-metal removal, pesticide degradation, persistent organic pollutants, biological treatment of industrial effluents and nature-based remediation technologies.
Municipal solid waste, industrial waste, biomedical waste, hazardous waste, electronic waste, agricultural waste, waste segregation, recycling, composting, anaerobic digestion, waste-to-energy, landfill management, circular economy, nutrient recovery, material recovery and waste valorization.
Biofuels, biodiesel, bioethanol, biogas, biomass conversion, anaerobic digestion, microbial fuel cells, algal biofuels, hydrogen production, waste-to-energy, lignocellulosic biomass, biorefineries, renewable feedstocks, energy recovery and sustainable bioenergy systems.
Biological wastewater treatment, biofiltration, biosorption, bioreactors for pollution control, microbial degradation, enzyme-based remediation, phytotechnology, biosensors for environmental monitoring, bioaugmentation, biostimulation, resource recovery and biotechnology for sustainable environmental management.
Electrochemical biosensors, optical biosensors, microbial biosensors, enzyme-based sensors, nanobiosensors, wearable biosensors, water-quality sensors, air-quality monitoring, pollutant detection, pathogen detection, heavy-metal detection, real-time monitoring, remote sensing and smart environmental monitoring systems.
Nanoparticles, nanocomposites, nanobiosensors, nanomedicine, drug delivery, antimicrobial nanomaterials, nanoenzymes, environmental nanotechnology, nanoparticle toxicity, water purification using nanomaterials, photocatalysis, adsorption and sustainable nanomaterial production.
Chemical toxicity, environmental toxicants, heavy metals, pesticides, pharmaceuticals, endocrine-disrupting chemicals, microplastics, nanomaterial toxicity, molecular toxicology, aquatic toxicology, terrestrial ecotoxicology, bioaccumulation, biomagnification, toxicity testing and ecological risk assessment.
Climate change biology, greenhouse gases, carbon sequestration, ecosystem responses, climate-related stress, biodiversity loss, microbial responses to climate change, soil carbon, ocean acidification, climate adaptation, ecosystem restoration, nature-based solutions and biological approaches to climate mitigation.
Ecosystem ecology, population ecology, community ecology, biodiversity assessment, conservation biology, habitat restoration, ecological monitoring, ecosystem services, invasive species, wildlife conservation, microbial diversity, environmental DNA, ecological genetics and sustainable ecosystem management.
Soil chemistry, soil microbiology, soil contamination, erosion control, nutrient management, irrigation, drainage, salinity management, agricultural runoff, pesticide pollution, organic amendments, biochar, compost, sustainable soil management and restoration of degraded lands.
Marine microbiology, aquatic ecology, marine biotechnology, algal biotechnology, water pollution, marine toxicology, coral ecosystems, fisheries biology, aquatic biodiversity, microplastics, eutrophication, harmful algal blooms, ocean biogeochemistry and marine resource conservation.
Green solvents, cleaner production, sustainable synthesis, enzyme catalysis, renewable raw materials, waste minimization, low-energy bioprocessing, biodegradable materials, life-cycle thinking, process intensification, industrial symbiosis and environmentally responsible chemical and biological production.
Biopolymers, biodegradable plastics, natural polymers, cellulose, chitosan, alginate, protein-based materials, biomedical materials, sustainable packaging, bio-based composites, material degradation, environmental compatibility and circular use of biological materials.
Bio-based products, waste valorization, biomass utilization, biorefineries, resource efficiency, circular production systems, industrial biotechnology, sustainable supply chains, life-cycle assessment, carbon footprint, environmental economics, sustainable development and transition toward low-waste biological industries.
Bioinformatics, sequence analysis, protein modelling, molecular docking, systems biology, computational genomics, biological databases, machine learning in bioscience, environmental data analysis, microbial community analysis, omics integration, predictive modelling and computational toxicology.
Genomics, transcriptomics, proteomics, metabolomics, lipidomics, epigenomics, metagenomics, environmental omics, multi-omics analysis, biomarkers, systems biology and applications of omics technologies in medicine, biotechnology, agriculture and environmental monitoring.
Environmental impact assessment, life-cycle assessment, carbon footprint, water footprint, sustainability indicators, cleaner production, environmental policy, sustainable technologies, circular economy, environmental management systems, ecological risk assessment and sustainability evaluation of industrial and biological processes.