PATTAYA 3rd World Conference on Bioscience, Biotechnology & Biomedical Engineering: B3E-27

Call for papers/Topics

All Abstracts, Reviews, short articles, Full articles, Posters are welcomed related with any of the following research fields:

1. Core Biosciences 

Bioscience serves as the discovery engine, mapping the fundamental rules of living systems.

  • Molecular and Cellular Biology

    • Structural biology and macromolecular complexes

    • Cell signaling pathways, receptor mechanics, and intracellular trafficking

    • Organelle biogenesis, cellular metabolism, and bioenergetics

    • Epigenetics, chromatin remodeling, and transcriptional regulation

  • Genetics and Genomics

    • Classical Mendelian genetics and population genomics

    • Functional genomics and transcriptomics

    • Comparative genomics and evolutionary dynamics

    • Non-coding RNA networks and post-transcriptional modifications

  • Microbiology and Virology

    • Bacterial physiology, virulence factors, and resistance mechanisms

    • Viral replication strategies, host-pathogen interactions, and zoonotic spillover

    • Mycology and parasitology

    • Environmental and extreme-environment microbiology

  • Physiology and Systems Biology

    • Organ system physiology and homeostatic feedback loops

    • Neurobiology, synaptic plasticity, and neural circuitry

    • Immunology, innate and adaptive immune responses, and auto-immunity

    • Developmental biology, morphogen gradients, and organogenesis

  • Ecology and Evolutionary Biology

    • Population dynamics and community ecology

    • Molecular evolution and phylogenetics

    • Chemical ecology and metabolic niches

2. Biotechnology

Biotechnology takes the discoveries of bioscience and engineers biological systems, organisms, or derivatives to create products and technologies.

  • Molecular Tools and Genetic Engineering

    • Recombinant DNA technology and molecular cloning

    • Advanced gene editing platforms (CRISPR-Cas systems, base editing, prime editing)

    • Synthetic biology and artificial gene synthesis

    • Directed evolution and protein engineering

  • Bioprocess and Fermentation Technology

    • Bioreactor design, scale-up kinetics, and mass transfer

    • Upstream processing (media optimization, cell line development)

    • Downstream processing (chromatography, filtration, purification)

    • Metabolic engineering and microbial cell factories

  • Industrial and Environmental Biotechnology (White & Grey Biotech)

    • Biofuels, biogas, and renewable energy vectors

    • Bioremediation of toxic waste, heavy metals, and plastics

    • Industrial enzyme discovery and biocatalysis

    • Bioplastics and circular bio-economy workflows

  • Agricultural and Food Biotechnology (Green Biotech)

    • Genetically modified crops for pest resistance and climate resilience

    • Molecular breeding and marker-assisted selection

    • Cellular agriculture, cultured meat, and alternative proteins

    • Plant-made pharmaceuticals and molecular farming

  • Medical and Pharmaceutical Biotechnology (Red Biotech)

    • Monoclonal antibodies and therapeutic proteins

    • Vaccine technologies (mRNA, viral vectors, subunit vaccines)

    • RNA interference (RNAi) and antisense oligonucleotide therapies

    • Microbiome therapeutics and engineered probiotics

3. Biomedical Engineering 

Biomedical Engineering applies classical engineering principles (mechanical, electrical, chemical, computational) to medicine and biology for healthcare solutions.

  • Biomaterials and Tissue Engineering

    • Biocompatible polymers, ceramics, and composite materials

    • Surface modification, protein adsorption, and foreign body response

    • 3D bioprinting and bio-inks

    • Scaffold design, vascularization strategies, and stem cell differentiation

  • Biomechanics and Mechanobiology

    • Cardiovascular fluid dynamics and hemodynamics

    • Orthopedic biomechanics (gait analysis, joint mechanics, bone remodeling)

    • Cellular mechanotransduction (how physical forces change cell behavior)

    • Rehabilitation engineering and assistive prosthetics

  • Biomedical Imaging and Optics

    • Physics of medical imaging (MRI, CT, Ultrasound, X-Ray)

    • Molecular imaging, fluorescent probes, and optical coherence tomography

    • Image processing, reconstruction algorithms, and automated diagnostic systems

    • Nuclear medicine and positron emission tomography (PET)

  • Bioinstrumentation and Biosensors

    • Biopotential amplifiers, electrodes, and physiological signal processing (ECG, EEG, EMG)

    • Wearable health monitors and implantable medical electronics

    • Microfluidics and Lab-on-a-Chip diagnostic platforms

    • Electrochemical, optical, and piezoelectric biosensors

  • Neural Engineering and Prosthetics

    • Brain-computer interfaces (BCIs) and neural decoding

    • Neurostimulation, deep brain stimulation (DBS), and retinal implants

    • Neural tissue modeling and peripheral nerve interfaces

4. Major Interrelated and Convergent Domains

These critical subtopics exist directly at the intersection of two or all three fields, demonstrating how they weave together.

  • Bioinformatics, Computational Biology, and AI

    • Where it intersects: Bioscience (data generation) + Biotech (design) + Engineering (computation)

    • Subtopics: High-throughput sequencing data analysis, structural bioinformatics, protein structure prediction (e.g., AlphaFold workflows), metabolic network modeling, and machine learning for drug discovery.

  • Nanobiotechnology and Nanomedicine

    • Where it intersects: Biotech (molecular control) + Biomedical Engineering (device/delivery scale)

    • Subtopics: Targeted drug delivery vehicles (lipid nanoparticles, polymeric micelles), theranostics (combined therapy and diagnostics), quantum dots for bio-imaging, and nano-scaffolds for accelerated tissue growth.

  • Regenerative Medicine and Advanced Therapeutics

    • Where it intersects: Bioscience (stem cell biology) + Biotech (genetic modification) + Biomedical Engineering (biomaterial scaffolds)

    • Subtopics: CAR-T cell therapy engineering, ex vivo and in vivo gene therapies, induced pluripotent stem cell (iPSC) reprogramming, and bioartificial organ development.

  • Omics Technologies and Precision Medicine

    • Where it intersects: Bioscience (pathway discovery) + Biomedical Engineering (high-throughput diagnostic hardware)

    • Subtopics: Single-cell metabolomics, proteomic profiling, liquid biopsies for early cancer detection, and biomarker discovery pipelines.

  • Synthetic Biology and Bio-inspired Design

    • Where it intersects: Bioscience (evolutionary baselines) + Biotech (gene writing) + Biomedical Engineering (systems logic)

    • Subtopics: Creation of minimal synthetic genomes, xenobiology (altered genetic codes), biomimetic materials, and soft robotics utilizing living muscle tissue.

  • Biosafety, Bioethics, and Regulatory Affairs

    • Where it intersects: Governs all three domains

    • Subtopics: Dual-use research of concern (DURC), ethical boundaries of human germline editing, clinical trial design for medical devices and biologics, and environmental risk assessment of genetically modified organisms.