Join the Springer Nature Biophysics Webinar Series

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Join the Springer Nature Biophysics Webinar Series
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Join the Springer Nature Biophysics Webinar Series 

Why join?

  • Always free to attend
  • Fully recorded — watch live or on your schedule
  • Citable with a DOI — get academic credit and share your engagement
  • Connect with leading researchers, important global societies in biophysics, emerging voices, and cutting-edge tools shaping modern biophysics

Whether you're exploring molecular mechanisms, developing new analytical approaches, or seeking interdisciplinary insight, this series delivers high-impact science in an accessible format. Our webinars span all elements of biophysics including techniques/approaches, fluorescence spectroscopy, NMR spectroscopy, membrane biology, bioenergetics, mechanobiology, structural biology and more 

⭐ Featured Webinars 

🧬 Molecular-scale data, tools & infrastructure (MOSBRI)

Explore the future of molecular biophysics research with insights into the Molecular Biophysics Database (MBDB) and the eSPC analysis suite—tools that enable cross-technique data analysis (including MST, DSF, DLS, CD, BLI, and more). Get real insights into how these techniques can enhance and streamline your work into structural biology. 

👉 Ideal for: researchers working with biomolecular interactions, structural biology, or multi-method datasets. https://cassyni.com/events/WDEKqUE7E9UHZGf7kgHVgh?cb=0.12cl


🚀 Future Leaders of Biophysics

Discover the next generation of scientific leaders as early-career researchers present cutting-edge work and emerging ideas shaping the field. See how you can submit to Springer Nature journals and have your work showcased and explored by other biophysicists. 
👉 Ideal for: staying ahead of trends, networking, and identifying collaborators or rising talent. https://cassyni.com/events/F1vuBGPCVdQ3jeEZrSyqEV?cb=0.tj2f


🌍 Latin American Federation of Biophysical Societies: Special Collection in Biophysical Reviews 

A special edition of the Biophysics Webinars showcasing research deriving from Latin American countries. Presentations on  molecular modelling, antimicrobial peptides in the context of membrane biology, and more 

👉 Ideal for: researchers in  health biophysics, those interested in broadening their world outlook within biophysics 

https://cassyni.com/events/UVut4UyuPK2fNyaqekJRuX?cb=0.vw0u


📅 Be part of the community

From quantum biology to advanced imaging metamaterials and global research initiatives, this series brings together diverse perspectives across biophysics.

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Biophysics
Physical Sciences > Physics and Astronomy > Biophysics
Membrane Biophysics
Physical Sciences > Physics and Astronomy > Biophysics > Membrane Biophysics
Molecular Biophysics
Physical Sciences > Physics and Astronomy > Biophysics > Molecular Biophysics
Nanoscale Biophysics
Physical Sciences > Physics and Astronomy > Biophysics > Nanoscale Biophysics
Single-Molecule Biophysics
Physical Sciences > Physics and Astronomy > Biophysics > Single-Molecule Biophysics

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Bioenergetic phenotypes in metabolic genetic diseases

Inherited diseases represent a vast group of pathologies resulting from variants in specific genes encoding different proteins, which directly or indirectly affect metabolic pathways or impair mitochondrial and cellular functions. Thus, genetic diseases, depending on which gene is involved, may generate subtle, mild, or severe metabolic phenotypes, caused by enzyme malfunction, structural or functional alterations in proteins or cofactors, or disruptions in cellular signaling or transport mechanisms. The consequences of deranged metabolic pathways can include: - The accumulation of compounds that may become toxic; - A deficiency or absence of the final products of metabolic pathways, leading to a shortage of essential substrates or disruptions in energy production; - The activation of alternative metabolic pathways, potentially producing secondary metabolites that are normally absent and may also be toxic. Emerging literature shows that bioenergetic defects, characterized by reduced energy availability or increased oxidative stress, lead to profound changes in fundamental processes such as mitochondrial biogenesis, mitophagy, and mitochondria–endoplasmic reticulum communication, with pathological consequences at both the cellular and organismal levels.

This Special Collection invites original research articles, reviews, and perspectives aimed at elucidating the mechanistic links between genetic variants and bioenergetic dysfunction. Contributions addressing how specific mutations directly or indirectly impact energy production systems, as well as studies exploring molecular and metabolic pathway alterations associated with these defects, are particularly encouraged.

Depending on where you are located, you may be able to publish open access at no additional cost to you. Researchers at many institutions such as Italy, France, Portugal, Spain, Germany and United Kingdom can publish open access in the journal at no additional cost.

Check your eligibility prior to submission here: Open access funding | Journal of Bioenergetics and Biomembranes | Springer Nature Link

Publishing Model: Hybrid

Deadline: Sep 30, 2026

Special Issue: "Modern Biophysical Methods: Insights from the Russian Autumn School on Biophysics in Kazan 2024"

We announce сall for papers for a special issue of Biophysical Reviews associated with the Russian Autumn School in Biophysics held in Kazan, Russia, 11-14 November 2024. The Autumn School was focused on modern biophysical methods and approaches to study living and model biological systems. It was the most important biophysical meeting within 2024 in Russia, organized for the first time with perspectives to make it regular. The Special issue accepts reviews on comprehensive analysis of experimental and computational methods currently used to study the dynamical structure of biological systems at all levels of living matter organization - from submolecular, molecular and supramolecular model systems to cells and whole organisms. Here we describe main themes and sections, types of papers and key dates for the journal issue.

Publishing Model: Hybrid

Deadline: Ongoing