International Conference on

Proteomics, Structural Biology and Molecular Interactions (ICPSBMI-26)

Conference Date

6th Oct - 7th Oct 2026

Conference Venue

Montreal, Canada

Conference Mode

Hybrid Conference
Proudly organized by:- Science Leagues

"Join global experts in Proteomics, Structural Biology and Molecular Interactions"

Registration Options

View all registration categories and choose the best fit.

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 3
SDG 3 Good Health and Well-being
SDG 4
SDG 4 Quality Education
SDG 7
SDG 7 Affordable and Clean Energy
SDG 9
SDG 9 Industry, Innovation and Infrastructure
Track 01

Advancements in Proteomics Techniques

This track focuses on the latest methodologies and technologies in proteomics, including mass spectrometry and protein array technologies. Participants will explore innovative approaches for protein identification and quantification in complex biological systems.

Track 02

Structural Biology of Protein Complexes

This session will delve into the structural characterization of protein complexes and their functional implications. Attendees will discuss techniques such as X-ray crystallography and cryo-electron microscopy in elucidating complex biomolecular architectures.

Track 03

Molecular Interactions and Network Biology

This track examines the principles of molecular interactions and their role in cellular networks. Researchers will present findings on protein-protein interactions and the implications for understanding cellular functions and disease mechanisms.

Track 04

Protein Folding and Misfolding Mechanisms

This session will explore the fundamental processes of protein folding and the consequences of misfolding. Discussions will include the role of chaperones and the impact of misfolded proteins in diseases such as Alzheimer's and Parkinson's.

Track 05

Interconnectivity of Genomics and Proteomics

This track highlights the integration of genomic data with proteomic analyses to enhance our understanding of biological systems. Participants will discuss case studies demonstrating how genomic insights can inform proteomic research.

Track 06

Functional Proteomics in Disease Research

This session focuses on the application of functional proteomics in understanding disease mechanisms and identifying potential therapeutic targets. Researchers will present novel findings that link proteomic alterations to specific pathologies.

Track 07

Structural Genomics: Mapping the Proteome

This track addresses the challenges and advancements in structural genomics aimed at mapping the entire proteome. Discussions will include high-throughput methods for determining protein structures and their functional implications.

Track 08

3D Structures and Their Biological Relevance

This session will explore the significance of three-dimensional protein structures in biological processes. Researchers will discuss how structural insights can lead to a better understanding of molecular mechanisms and interactions.

Track 09

Proteome Analysis and Biomarker Discovery

This track focuses on the application of proteome analysis in identifying biomarkers for various diseases. Participants will discuss methodologies for biomarker validation and their potential in clinical diagnostics.

Track 10

Structural Dynamics of Biomolecules

This session will investigate the dynamic properties of biomolecules and their influence on function. Researchers will present studies utilizing techniques like NMR and molecular dynamics simulations to elucidate structural flexibility.

Track 11

Innovations in Protein Modeling and Simulation

This track highlights the latest advancements in computational protein modeling and simulation techniques. Participants will discuss the implications of these innovations for predicting protein behavior and interactions in silico.