PRAGUE 16th International Conference on Bioscience, Biotechnology & Biomedical Engineering (PB3E-27) scheduled on July 26-28, 2027 Prague (Czech Republic)

Simmi Cook
PRAGUE 16th International Conference on Bioscience, Biotechnology & Biomedical Engineering (PB3E-27) scheduled on July 26-28, 2027 Prague (Czech Republic)
Event Holding type
Event type
Description

Call for papers/Topics

 

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

Section 1: Independent Core Topics & Subtopics
Bioscience

Focuses on fundamental biological mechanisms and living systems.

  • Molecular Biology & Genetics
    • DNA replication, transcription, and translation mechanics
    • Epigenetics, chromatin remodeling, and gene regulation
    • RNA biology, non-coding RNAs, and ribozymes
  • Cell Biology & Signaling
    • Organelle dynamics and intracellular transport
    • Signal transduction pathways and second messengers
    • Cell cycle regulation, apoptosis, and senescence
  • Microbiology & Immunology
    • Pathogenic bacteriology, virology, and mycology
    • Innate and adaptive immune response mechanisms
    • Microbiome dynamics and host-microbe interactions
  • Physiology & Structural Biology
    • Systemic homeostasis and neuroendocrine regulation
    • Protein folding, enzyme kinetics, and macromolecular structures
    • Metabolic pathways and bioenergetics

Biotechnology

Focuses on applying cellular and biomolecular processes to develop tools and products.

  • Genetic Engineering & Synthetic Biology
    • Recombinant DNA technology and molecular cloning
    • Genome editing tools (CRISPR-Cas, base editing, prime editing)
    • De novo gene synthesis and artificial genetic circuits
  • Bioprocess Engineering & Fermentation
    • Upstream processing: cell line development and media optimization
    • Downstream processing: separation, purification, and chromatography
    • Bioreactor design, scale-up dynamics, and monitoring
  • Agricultural & Environmental Biotechnology
    • Genetically modified crops and trait optimization
    • Bioremediation of environmental contaminants and plastics
    • Biofuel production, metabolic engineering of algae, and bioplastics
  • Industrial & Industrial Enzymology
    • Directed evolution and rational enzyme design
    • Biocatalysis for fine chemicals and green chemistry
    • Cell-free protein synthesis platforms

Biomedical Engineering

Focuses on engineering principles applied to medicine and clinical healthcare systems.

  • Biomechanics & Mechanobiology
    • Musculoskeletal mechanics and joint kinematics
    • Cardiovascular fluid mechanics and hemodynamics
    • Cellular force generation and mechanotransduction
  • Biomaterials & Tissue Engineering
    • Biocompatible metals, polymers, ceramics, and hydrogels
    • Scaffold fabrication, microfluidics, and 3D bioprinting
    • Host tissue integration, degradation kinetics, and foreign body response
  • Medical Instrumentation & Bioelectronics
    • Biosensor design (electrochemical, optical, and thermal)
    • Diagnostic imaging physics (MRI, CT, ultrasound, PET)
    • Implantable devices, neurostimulators, and pacemakers
  • Bioinformatics & Computational Medicine
    • Biomedical signal processing (EEG, ECG, EMG filtering)
    • Medical image segmentation and computer vision analysis
    • Computational modeling of physiological systems

Section 2: Interrelated Cross-Disciplinary Domains

These interdisciplinary fields operate at the intersection of two or all three disciplines.

1. Regenerative Medicine & Stem Cell Engineering

Intersection: Bioscience (Cellular Mechanisms) + Biotechnology (Gene/Cell Therapies) + Biomedical Engineering (Biomaterials/Scaffolding)

  • Induced pluripotent stem cells (iPSCs) reprogramming and lineage differentiation
  • Biomaterial-guided stem cell differentiation and niche engineering
  • Organ-on-a-chip microfluidic models for human disease testing

2. Advanced Drug Delivery Systems

Intersection: Bioscience (Pathology/Targets) + Biotechnology (Biopharmaceuticals) + Biomedical Engineering (Nanotechnology/Carriers)

  • Targeted nanoparticle formulation (liposomes, lipid nanoparticles, polymeric micelles)
  • Controlled-release mechanisms and stimulus-responsive hydrogels
  • Crossing biological barriers (blood-brain barrier, mucosal membranes)

3. Nanobiotechnology & Molecular Diagnostics

Intersection: Biotechnology (Molecular Probes) + Biomedical Engineering (Device Fabrication) + Bioscience (Biomarker Discovery)

  • Point-of-care biosensors utilizing lateral flow and microfluidic assays
  • Quantum dots and metallic nanoparticles for biological imaging
  • DNA nanotechnology, origami, and molecular machines for therapeutic delivery

4. Translational Bio-AI & Precision Medicine

Intersection: Bioscience (Omics Data) + Biotechnology (High-Throughput Assays) + Biomedical Engineering (Computational Modeling)

  • Predictive modeling for drug target discovery and binding affinity
  • Patient-specific biomechanical and physiological digital twins
  • AI-driven genomic variant interpretation and biomarker identification
Reviews

0 Comments

Write a Comment

Your email address will not be published. Required fields are marked *

Tags