International Conference on Physical Chemistry & Chemical Biology

Theme: Exploring the molecular interactions and dynamics that drive biological processes and the development of new therapeutic strategies

November 3-4, 2025 | Amsterdam, Netherlands

Physical Chemistry Conference & Chemical Biology Conference 2025, November 3-4, 2025. Come and join us in this premier event of experts, researchers, and professionals around the world to bring forward a stage for discussion of how physical chemistry relates to or combines with chemical biology. The participants could be updated with recent innovative results as well as the leading-edge applications that are pushing forward the boundaries in such exciting fields and promote the exchange of experiences and knowledge.

Join us in Amsterdam for a stimulating, inspiring, and educational experience at the Physical Chemistry & Chemical Biology Conference 2025. Keynotes, panel discussions, and highly interactive workshops will provide insight into the leading edge of developments and future directions. We welcome you to learn with us at the frontiers of physical chemistry and chemical biology research.

Scientific Session

Molecular dynamics simulations of great utility in understanding the biological molecules at the atomic scale. This symposium covers new developments and techniques in focus through MD simulations on the structure, dynamics, and interactions of biomolecules including proteins, nucleic acids, and lipid membranes. Exposed to computational tools and techniques used for MD simulations applied to a broad range of complex biological processes, such as protein folding, enzyme function, and drug binding, are interested people.

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Spectroscopy is one of the indispensable tools for investigating molecular structures and dynamics in chemical biology. This chapter discusses some of the spectroscopic methods available today, which include NMR and IR and UV-Vis spectroscopy, in consideration to throwing insight into molecular interactions, changes in conformation, and functional properties of biomolecules.

During the biological functions, both the change in energy and equilibria are relevant to thermodynamics. Principles of thermodynamics are brought into application in biological processes such as enzyme reaction, ligand binding, and membrane transport in this session. This will give participants a good idea of how Gibbs free energy and other thermodynamic parameters predict the direction and degree of biochemical reactions in gaining understanding in the matter of the energetics of life.

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Biomacromolecules such as proteins are the basic components of biological function, and good initial steps in understanding them will begin with biophysical tools. Principles of thermodynamics are brought into application in biological processes such as enzyme reaction, ligand binding, and membrane transport in this session. This will give participants a good idea of how Gibbs free energy and other thermodynamic parameters predict the direction and degree of biochemical reactions in gaining understanding in the matter of the energetics of life.

In this session, enzyme catalysis is essential to understanding biochemical mechanisms of reactions that will be further discussed. Indeed, it has focused on the basic theory applied to enzyme-catalyzed reactions, including discussions on rates of reaction, interactions between the enzyme and substrate, and catalytic efficiency. A kinetic model and experimental methods show how enzymes work, as well as provide the basis for industrial and medical applications.

Targeted and controlled therapeutics release drug delivery is revolutionizing nanotechnology. This symposium will focus on the design and applications of nanomaterials for drug delivery, that includes nanoparticles, liposomes, dendrimers, etc. Subsequently, it will appear how nanotechnology improves the solubility and stability of a drug, enhances bioavailability, and influences new approaches in crossing biological barriers and targeted drug delivery.

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Biological membranes are without any doubt the most important component of cellular processes. There must be an understanding of the physical chemical basis underpinning the functions. The session deals with properties of lipid bilayers, membrane dynamics, and transport phenomena in membrane systems. Important insights into how the membrane structure influences the permeability, fluidity, and function of membrane-associated proteins will be gained for pharmacological, cell-biological applications.

The necessity of computational methods in drug design is always and increasingly being on the rise. In addition to how much they speed up the possible identification of drug candidates, computational methods may also provide recognition for lead compounds which could then be optimized more effectively afterwards. This session includes interesting computational techniques like molecular docking, virtual screening, and QSAR modeling approaches that predict the interaction between drugs and their targets, eventually optimizing lead compounds and reducing cost and time expenditures in drug development.

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Biomolecular interaction has always stood at the forefront of many biological functions. From DNA replication to signal transduction, this session focuses on forces and principles that determine interactions between biomolecules, including hydrogen bonding, hydrophobic effects, and van der Waals forces. Presenters will outline both experimental and theoretical approaches for studying these interactions as an insight to stability and functionality in complex biological systems.

Electrochemical methods have the power to probe biochemical processes and probe the redox properties of biomolecules. This lecture will provide a review of biological research that has been done on electrochemical methods, such as cyclic voltammetry and amperometry, in terms of real-time information given by electron-transfer reaction, enzyme activity, and cellular metabolism for diagnosing the basis of electrochemical functions inside biology.

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Venue Attraction

Netherlands, Amsterdam has its beautiful canals, history and cultural activities. sobriquet “Venice of the North,” a set of canals lined with 17th-century townhouses is designated as a UNESCO World Heritage site. A cycling culture, pretty bridges, and neighborhoods like Jordaan easily characterize an easy-going atmosphere of this city. Important landmarks would include Anne Frank House, Van Gogh Museum, and the Rijksmuseum, where Dutch masterpieces lie.

Apart from its historical appeal, Amsterdam is also an ultra-modern and civilized city. The city is prominent for its rich arts life, an environmentally friendly lifestyle, and excellent universities. The city hosts a highly energetic nightlife, cozy cafes, music venues, and markets that make the city alive with its diverse urban lifestyles. This combination of a rich history, novation, warmth, and welcoming touch makes Amsterdam a must-see destination for all history buffs, art lovers, and adventurers.

Registration

Speaker Registration

Oral Presentations

$799

Student Registration

Post Graduates

$799

Delegate Registration

Participant & Attendants

$799

Get In Touch

Address

16192 Coastal Highway Lewes, Delaware, USA 19958

Phone number

+1 630 768 1199

E-mail address

jessie.walker@stripeconferences.com

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