Description

55th PARIS World Congress on “Bioscience, Biotechnology & Biomedical Engineering” (Bio3E-26) scheduled on Dec. 3-5, 2026 Paris (France) is for the engineers, practitioners, scientists, researchers, scholars, and students from all around the world and it also includes the industry people to present ongoing research activities, and hence to foster research relations between Academia and industry. The conference is sponsored by Eminent Association of Pioneers (EAP). This conference provides opportunities for the delegates to share new ideas and application experiences face to face, to establish business or research relations and to find global partners for future collaboration. All the submitted conference papers will be peer reviewed by the program/technical committees of the Conference.

Call For Papers

Call for papers/Topics

Topics of interest for submission include any topics related to:

1. Bioscience:

Bioscience focuses on the study of living organisms and vital processes to understand the "rules" of life.

  • Molecular & Cellular Biology

    • Genetics and Genomics (DNA/RNA sequencing)

    • Proteomics (Protein structure and function)

    • Cell signaling and metabolic pathways

  • Microbiology

    • Bacteriology, Virology, and Mycology

    • Microbial ecology and evolution

  • Organismal Biology

    • Physiology and Anatomy

    • Developmental Biology (Embryology)

    • Neurobiology (Brain and nervous system function)

  • Ecology & Evolution

    • Population genetics

    • Environmental biology and biodiversity

2. Biotechnology:

Biotechnology uses the insights from Bioscience to develop products, technologies, and processes for specific uses.

  • Genetic Engineering

    • CRISPR/Cas9 and gene editing

    • Recombinant DNA technology

    • Synthetic Biology (Creating new biological parts)

  • Industrial Biotechnology (White Biotech)

    • Bioprocessing and fermentation

    • Biofuels and biodegradable plastics

    • Enzyme engineering for manufacturing

  • Agricultural Biotechnology (Green Biotech)

    • Genetically Modified Organisms (GMOs)

    • Molecular breeding and pest resistance

  • Pharmacogenomics

    • Personalized medicine based on genetic profiles

    • Vaccine development and monoclonal antibodies

3. Biomedical Engineering (BME):

BME applies engineering principles and design concepts to healthcare, bridging the gap between engineering and medicine.

  • Biomechanics

    • Kinesiology and human movement analysis

    • Fluid mechanics (Blood flow dynamics)

  • Biomaterials

    • Biocompatible coatings

    • Scaffolds for tissue regeneration

    • Drug delivery systems (Nanoparticles)

  • Bioinstrumentation & Imaging

    • Medical imaging (MRI, CT, Ultrasound)

    • Biosensors (Wearable health monitors)

    • Diagnostic devices

  • Neural Engineering & Rehabilitation

    • Brain-computer interfaces (BCIs)

    • Prosthetics and orthotics

    • Neural stimulation (Pacemakers, Cochlear implants)

4. Interrelated & Hybrid Fields

These topics exist at the intersection of two or all three disciplines, where the most modern breakthroughs occur.

  • Tissue Engineering & Regenerative Medicine

    • Intersection: Bioscience (cell growth) + BME (scaffolds) + Biotech (growth factors).

    • Focus: Lab-grown organs and skin grafts.

  • Bioinformatics & Computational Biology

    • Intersection: Bioscience (data) + Engineering (algorithms/coding).

    • Focus: Analyzing massive biological datasets to predict disease or protein folding.

  • Nanobiotechnology

    • Intersection: Biotech + BME.

    • Focus: Using "nano-bots" or molecules for targeted cancer therapy.

  • Systems Biology

    • Intersection: Bioscience + Engineering.

    • Focus: Using mathematical modeling to understand how complex biological systems interact as a whole.

  • Bioethics & Regulatory Affairs

    • The overarching study of the legal and moral implications of editing genes, creating life, or implanting machines into humans.