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Updated: Feb 6, 2026

Minimally Invasive Isolated Limb Perfusion (MI-ILP) for Locally Advanced Melanomas and Sarcomas of the Extremity
Published on: January 31, 2025
MIPUP: minimum perfect unmixed phylogenies for multi-sampled tumors via branchings and ILP
Edin Husić1, Xinyue Li2, Ademir Hujdurović3,4
1Department of Mathematics, London School of Economics and Political Science, London, UK.
Motivation:
Discovering the evolution of a tumor may help identify driver mutations and provide a more comprehensive view on the history of the tumor. Recent studies have tackled this problem using multiple samples sequenced from a tumor, and due to clinical implications, this has attracted great interest. However, such samples usually mix several distinct tumor subclones, which confounds the discovery of the tumor phylogeny.
Results:
We study a natural problem formulation requiring to decompose the tumor samples into several subclones with the objective of forming a minimum perfect phylogeny. We propose an Integer Linear Programming formulation for it, and implement it into a method called MIPUP. We tested the ability of MIPUP and of four popular tools LICHeE, AncesTree, CITUP, Treeomics to reconstruct the tumor phylogeny. On simulated data, MIPUP shows up to a 34% improvement under the ancestor-descendant relations metric. On four real datasets, MIPUP's reconstructions proved to be generally more faithful than those of LICHeE.
Availability And Implementation:
MIPUP is available at https://github.com/zhero9/MIPUP as open source.
Supplementary Information:
Supplementary data are available at Bioinformatics online.
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