Sign in

afranceschem.bsky.social

@afranceschem.bsky.social
63 followers 61 following 22 posts

🧪⚡️☀️⏰️ Photochemistry and chemical dynamics. Chemist at University of Valencia #Photochemistry #ExcitedStates #MolecularDynamics

PostsRepliesMedia
afranceschem.bsky.social @afranceschem.bsky.social · 25/07/2026
⚙️ Molecular mechanisms of strong photoactive complexes: This work focuses in Ruvidar, a Ru-based photodrug in phase II clinical trials, and cell membranes. Enjoy! doi.org/10.1021/acs.... @martaealberto.bsky.social @acs.org @icmoluv.bsky.social
doi.org
Oxygen-Dependent Light-Induced Lipid Membrane Perturbation by TLD1433 as a Potential Contributor to Phototoxicity
Abstract. TLD1433 (Ruvidar®) is a Ru(II) polypyridyl complex currently in phase II clinical trials for the treatment of non-muscle invasive bladder cancer
020
afranceschem.bsky.social @afranceschem.bsky.social · 16/07/2026
Do not miss the opportunity to know the last OpenMolcas developments and win fantastic prizes 📈 💡 OpenMolcas developers workshop 📍 València, Spain 📆 October 5-7, 2026 uv.es/openmolcas26/
uv.es
000
afranceschem.bsky.social @afranceschem.bsky.social · 22/06/2026
⚗️🧪This paper describes the molecular motions and reactivity that takes place when a [Fe(NHC)3]2+ complex is synthesized. Bridging the gap between experiments and theory is always a good idea. @icmoluv.bsky.social doi.org/10.1021/acs....
doi.org
Synthetic Mechanism of a Fe(II) N-Heterocyclic Carbene Bidentate Complex Revealed by Electronic Structure Methods
Octahedral Fe(II) complexes with bidentate N-heterocyclic (NHC) ligands are solid candidates for photoactive materials based on first-row transition metals. Despite the remarkable advances in ligand d...
021
afranceschem.bsky.social @afranceschem.bsky.social · 29/05/2026
🧬 DNA intercalation is usually associated with toxicity, but it can also be used to enhance DNA covalent photoreactions. This is proved in JCIM @acs.org @martaealberto.bsky.social doi.org/10.1021/acs....
doi.org
Intercalation Favors DNA Covalent Photobinding in Photoresponsive Dual PDT/PCT Bimetallic Assemblies
The local treatment of solid tumors through photoactivated therapies demands the development of alternative strategies independent of oxygen levels, which are often very low in cancerous tissues. In this regard, the combination of an efficient reactive oxygen species (ROS) photogenerator with a drug that covalently targets DNA represents a valuable approach due to the in situ combination of type I/II photodynamic reactions with the covalent blockage of the DNA biological function. In this context, the theoretical framework of the chemical events that cause the observed phototoxicity is far from being fully understood, especially the dynamic factors, timescales, and environmental effects. This work sheds light on the molecular basis of these events by studying the DNA photoreactivity of a Ru(II)/Os(II) and a Pt(II) bimetallic assembly via microsecond molecular dynamics and multiscale biased quantum mechanics/molecular mechanics (QM/MM) MD simulations. Analysis of the DNA interaction modes reveals persistent major/minor groove interactions of the photosensitizer and a thermodynamically favored DNA intercalation. On the other hand, the free energy landscapes reveal kinetically fast (energy barriers ca. 6 kcal·mol–1) ligand exchange reactions between the N7 position of guanine and the platinum center in the triplet excited state, clearly highlighting the role of light in accelerating the chemical process. Additional analyses suggest that DNA intercalation, often associated with high cellular toxicity, could instead be seen as an opportunity to increase phototoxicity indexes by reducing the DNA conformational space available for photoreactions and improving absorption properties.
110
afranceschem.bsky.social @afranceschem.bsky.social · 19/04/2026
✴️ Check out this ab initio combination with machine-learning to predict laser properties, presented in JCTC @pubs.acs.org doi.org/10.1021/acs....
doi.org
Predicting Molecular Laser Properties from First-Principles Using Machine Learning-Based Nuclear Ensemble Approach Spectra
The accurate prediction of absorption and emission spectra of molecular compounds using quantum mechanical (QM) methods is essential for understanding and designing laser materials, especially when ex...
020
afranceschem.bsky.social @afranceschem.bsky.social · 09/12/2025
📢 easyPARM v4.00 continues its development. Now, multimetallic proteins and metal-organic polyhedra can be automatically parameterized. Check the new features here 👇 doi.org/10.1063/5.03...
doi.org
easyPARM v4.00: A Python-based tool for the automated parameterization of metalloproteins and metal-organic polyhedra with multiple metal centers
Force-field parameters for classical molecular dynamics simulations of metal centers are often derived from electronic structure calculations due to the inexist
010
afranceschem.bsky.social @afranceschem.bsky.social · 08/12/2025
The study on the nanomolar phototoxic Ru(II) COUBPY anticancer agents in vivo activated with NIR light is now published in @jacs.acspublications.org Wonderful collaboration with @martaealberto.bsky.social @icmoluv.bsky.social @gassergroup.bsky.social @agandioso.bsky.social doi.org/10.1021/jacs...
doi.org
π-Extended Ru–COUBPY Photosensitizers for In Vivo Anticancer Phototherapy Using One-Photon 780 nm Near-Infrared Light
Photodynamic therapy (PDT) is a promising cancer treatment modality, offering precise spatial and temporal control of drug activation using light. However, clinical translation of current photosensiti...
012
afranceschem.bsky.social @afranceschem.bsky.social · 17/10/2025
It is a pleasure to have Alessandra G. Ritacca presenting her results at @icmoluv.bsky.social today. Very interesting science and discussions 💡🔬 #icmoltalks #moleculardynamics #compchem #anticancer #Alzheimer
011
afranceschem.bsky.social @afranceschem.bsky.social · 10/09/2025
The outstanding photocatalytic properties of metallacarboranes in water have been published in CRPS. An interesting dependence on the excitation wavelength is discussed with ab initio calculations! @icmoluv.bsky.social @icmabcsic.bsky.social www.cell.com/cell-reports...
cell.com
Low-load Θ-metallacarboranes as safe and efficient photoredox catalysts for UVA-driven oxidation in water
Guerrero et al. report two efficient 3d6 and 3d5 metallacarborane photoredox catalysts with identical structures that selectively oxidize alcohols and alkenes in water at low catalyst loadings. UVA irradiation enhances performance despite weak absorption, demonstrating that earth-abundant metals can rival precious metal catalysts in photoredox applications.
031
afranceschem.bsky.social @afranceschem.bsky.social · 28/08/2025
Deeply honored to the ESP for the young investigator award #ESPcongress2025 @photobiologyeurope.bsky.social
2153
afranceschem.bsky.social @afranceschem.bsky.social · 26/08/2025
Listening to Sherri McFarland's plenary lecture. Top science! #ESPcongress2025
090
afranceschem.bsky.social @afranceschem.bsky.social · 24/08/2025
All ready to start the #ESPcongress2025. Hi Bari!!
072
afranceschem.bsky.social @afranceschem.bsky.social · 27/06/2025
Enjoying #paella with good friends #Valencia #compchemp @antoniomonari.bsky.social @inakitunon.bsky.social
062
afranceschem.bsky.social @afranceschem.bsky.social · 11/06/2025
Deeply honoured to receive this award. Thank you @photobiologyeurope.bsky.social !!! See you in Bari
010
Reposted by @afranceschem.bsky.social
Leticia González @letigonzalez.bsky.social · 04/04/2025
18 positions with one more in theory! 📣📣📣 Fancy theory, catalysis , excellent research, and working in the most liveable city of the world? 🖥️☀️🎓🇦🇹 Apply now! #phdjobs
064
Reposted by @afranceschem.bsky.social
Albert Gandioso Ubieto @agandioso.bsky.social · 27/03/2025
🧪📣❗ #PhDPosition to develop light-activated drugs for cancer phototherapy. We are seeking candidates with a strong background in #OrganicChemistry #ChemBio and #MedChem to apply for FI-STEP predoctoral fellowships #PDT #Metallodrugs #ScienceJobs
043
Reposted by @afranceschem.bsky.social
Élise Duboué-Dijon @elisedd.bsky.social · 26/03/2025
Job alert ! I am looking for a postdoc to work on "computational investigation of ion-effects in ribozyme catalysis" to work with me in Paris (France). 1-year contract funded by @agencerecherche.bsky.social, with possible 2nd year in collab. with P. Jungwirth @iocbprague.bsky.social #compchem #RNA
01015
Reposted by @afranceschem.bsky.social
Miquel Huix-Rotllant @huixrotllant.bsky.social · 20/03/2025
A PhD position in theoretical chemistry (2025-2028) is available in my group starting in October. Info&Apply: huixrotllant.github.io/openings.html #academicjobs #compchem Please RT
huixrotllant.github.io
Openings
01615
afranceschem.bsky.social @afranceschem.bsky.social · 08/03/2025
Glad to see our last collaboration on Ir metal complexes for anticancer photodynamic therapy published in Inorg. Chem. Front.!!! @inorgchemfront.rsc.org doi.org/10.1039/D4QI...
doi.org
Achieving red-light anticancer photodynamic therapy under hypoxia using Ir(III)-COUPY conjugates
Despite the potential of photodynamic therapy (PDT), this oxygen-dependent oncological treatment is greatly restricted in the clinic by the well-known hypoxic feature of solid tumors. Here we provide ...
011
afranceschem.bsky.social @afranceschem.bsky.social · 17/02/2025
My colleagues from the University of Geneva talking about a very interesting interleukin project. Many mysteries and therapeutic opportunities to be revealed!! #interleukin #biology #proteins #inflammation www.linkedin.com/feed/update/...
linkedin.com
Geneva Centre for Inflammation Research - UNIGE on LinkedIn: #psoriasis #interleukin #il38 #inflammation #cytokine #researcharticle…
🔬 What if IL-38 could unlock new ways to treat inflammatory diseases like #psoriasis? After the discovery of interleukin (IL)-38 in 2001, early studies…
010
afranceschem.bsky.social @afranceschem.bsky.social · 15/02/2025
⏬️ Potent Ru(III) photosensitizers with high anticancer activity in hypoxia conditions. Very happy to collaborate in such an interesting topic!! ✴️
010
afranceschem.bsky.social @afranceschem.bsky.social · 07/02/2025
🔎easyPARM is officially presented in JCTC!! ✅️ Check out the validation and new capabilities 🔆 Great work of A. Abdelgawwad, code developer. doi.org/10.1021/acs.... #JCTC #CompChem #MetalComplex #MolecularDynamics
doi.org
easyPARM: Automated, Versatile, and Reliable Force Field Parameters for Metal-Containing Molecules with Unique Labeling of Coordinating Atoms
The dynamics of metal centers are challenging to describe due to the vast variety of ligands, metals, and coordination spheres, hampering the existence of general databases of transferable force field parameters for classical molecular dynamics simulations. Here, we present easyPARM, a Python-based tool that can calculate force field parameters for a wide range of metal complexes from routine frequency calculations with electronic structure methods. The approach is based on a unique labeling strategy, in which each ligand atom that coordinates the metal receives a unique atom type. This design prevents parameter shortage, labeling duplication, and the necessity to post-process output files, even for very complicated coordination spheres, whose parametrization process remain automatic. The program requires the Cartesian Hessian matrix, the geometry xyz file, and the atomic charges to provide reliable force-field parameters extensively benchmarked against density functional theory dynamics in both the gas and condensed phases. The procedure allows the classical description of metal complexes at a low computational cost with an accuracy as good as the quality of the Hessian matrix obtained by quantum chemistry methods. easyPARM v2.00 reads vibrational frequencies and charges in Gaussian (version 09 or 16) or ORCA (version 5 or 6) format and provides refined force-field parameters in Amber format. These can be directly used in Amber and NAMD molecular dynamics engines or converted to other formats. The tool is available free of charge in the GitHub platform (https://github.com/Abdelazim-Abdelgawwad/easyPARM.git).
031
afranceschem.bsky.social @afranceschem.bsky.social · 01/02/2025
🚀 easyPARM V3.00 Release! 🚀New features: ✅ Force field parameterization for metalloproteins ✅ Support for GAMESS & RESP charges from ORCA & GAMESS ✅ Convert AMBER force fields to OpenMM & GROMACS Check out the manual for details! 🔬📖 github.com/Abdelazim-Ab...
github.com
GitHub - Abdelazim-Abdelgawwad/easyPARM: easyPARM is a computational tool developed to simplify the derivation of force field parameters for metal-containing molecular systems and to enable charge res...
easyPARM is a computational tool developed to simplify the derivation of force field parameters for metal-containing molecular systems and to enable charge restraints on specific atoms. - Abdelazim...
010
afranceschem.bsky.social @afranceschem.bsky.social · 01/12/2024
Here we introduce easyPARM, a free code to generate force field parameters for transition metal complexes. The program requires only the Gaussian/ORCA frequencies and the RESP charges. The output is in Amber format. chemrxiv.org/engage/chemr...
130