Kyo Bin Kang

@kyobinkang.bsky.social

A natural product chemist using mass spec to discover chemical diversities in nature. Working at Sookmyung Women's University, Seoul, Korea as an associate professor.

The existence of unintentional fragmentation (often referred to as in-source fragments) in untargeted #metabolomics data can cause uncertainty among newcomers to the field and skepticism among data consumers such as medical experts or biologists. pubs.acs.org/doi/10.1021/...

A Perspective on Unintentional Fragments and Their Impact on the Dark Metabolome, Untargeted Profiling, Molecular Networking, Public Data, and Repository Scale Analysis

In/postsource fragments (ISFs) arise during electrospray ionization or ion transfer in mass spectrometry when molecular bonds break, generating ions that can complicate data interpretation. Although ISFs have been recognized for decades, their contribution to untargeted metabolomics─particularly in the context of the so-called “dark matter” (unannotated MS or MS/MS spectra) and the “dark metabolome” (unannotated molecules)─remains unsettled. This ongoing debate reflects a central tension: while some caution against overinterpreting unidentified signals lacking biological evidence, others argue that dismissing them too quickly risks overlooking genuine molecular discoveries. These discussions also raise a deeper question: what exactly should be considered part of the metabolome? As metabolomics advances toward large-scale data mining and high-throughput computational analysis, resolving these conceptual and methodological ambiguities has become essential. In this perspective, we propose a refined definition of the “dark metabolome” and present a systematic overview of ISFs and related ion forms, including adducts and multimers. We examine their impact on metabolite annotation, experimental design, statistical analysis, computational workflows, and repository-scale data mining. Finally, we provide practical recommendations─including a set of dos and do nots for researchers and reviewers─and discuss the broader implications of ISFs for how the field explores unknown molecular space. By embracing a more nuanced understanding of ISFs, metabolomics can achieve greater rigor, reduce misinterpretation, and unlock new opportunities for discovery.

pubs.acs.org

Dear all of my colleagues working on lipidomics, As an editorial board member of Scientific Data, I am serving as the collection (Lipidomics)’s Guest Editor and eager to read your submission. Learn more about the collection and how to contribute: go.nature.com/4mxI9yu

Lipidomics

This Scientific Data Collection welcomes descriptions of any technique relevant to lipidomics research, including mass spectrometry, NMR, theoretical studies, ...

go.nature.com

It is always great to see students' achievement. Two PhD students in my lab, Kyungha and Yukyung, won the PhD student fellowship from the Ministry of Education of Korea. Each will be funded 50m KRW (about 36000USD) for 2 years. Congratulations!

This paper represents a great effort by @roman-bushuiev.bsky.social and his brother @anton-bushuiev.bsky.social. The DreaMS foundation model for mass spectra of small molecules now opens lots of avenues for possible downstream applications. It might be a game changer for computational metabolomics.

Nature Biotechnology@natbiotech.nature.com · last yr.

Self-supervised learning of molecular representations from millions of tandem mass spectra using DreaMS - @pluskal-lab.org @iocbprague.bsky.social go.nature.com/4k1n5iC

I am thrilled to share after years of work/procrastination that the MassQL manuscript is finally published in @natmethods.nature.com - "A universal language for finding mass spectrometry data patterns". This was an team effort from all co-authors that helped shape MassQL and how it could be used.

It was so fun to be a part of this project. Updating MIADB, we also retrieved MS/MS spectral features specific to each MIA subclasses, which can be applied to MassQL for subclass-level annotation.

Mehdi Beniddir@mehdibeni.bsky.social · last yr.

It is with tremendous emotion that I share with you our recent work @jcheminf.bsky.social rb.gy/gynwlf that resulted in the update of the MIADB and the generation of valuable spectrometric signatures that could be used as #MassQL queries 🙏 S. Szwarc @univparissaclay.bsky.social @adafede.bsky.social

With the #ASMS2025 app now available, here is a quick summary of what I've found so far from the abstracts: Sciex - New ZenoTOF 8600, Echo-DMS Thermo - New Exploris, New Astral (one of these is named Excedion), New OptiFlow source Agilent - New single quad Bruker - OmniTIMS, new triple quad, new LC