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Precise hepatic base editing of ASGR1 enables robust and durable LDLR-independent lipid lowering in vivo

Yang and colleagues demonstrate that lipid nanoparticle-mediated precise hepatic ASGR1 base editing safely produces robust and durable lipid lowering in an LDLR-deficient mouse model of familial hypercholesterolemia. Their work further benchmarks the lipid-lowering effects of ASGR1 and ANGPTL3 editing and supports combined ASGR1/ANGPTL3 targeting for enhanced cholesterol lowering.
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Dataset Distillation via Committee Voting

arXiv:2501.07575v2 Announce Type: replace-cross Abstract: Dataset distillation aims to synthesize a compact yet representative dataset that preserves the essential characteristics of the original data for efficient model training. Existing methods mainly focus on improving data-synthetic alignment or scaling distillation to large datasets. In this work, we propose $\textbf{C}$ommittee $\textbf{V}$oting for $\textbf{D}$ataset $\textbf{D}$istillation ($\textbf{CV-DD}$), an orthogonal approach that leverages the collective knowledge of multiple models to produce higher-quality distilled data. We first establish a strong baseline that achieves state-of-the-art performance through modern architectural and optimization choices. By integrating distributions and predictions from multiple models and generating high-quality soft labels, our method captures a broader range of data characteristics, reduces model-specific bias and the impact of distribution shifts, and significantly improves generalization. This voting-based strategy enhances diversity and robustness, alleviates overfitting, and improves post-evaluation performance. Extensive experiments across multiple datasets and IPC settings demonstrate that CV-DD consistently outperforms single- and multi-model distillation methods and generalizes well to non-training-based frameworks and challenging synthetic-to-real transfer tasks. Code is available at: https://github.com/Jiacheng8/CV-DD.
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