Tuying Yong
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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
Disrupting sympathetic nerve-tumor crosstalk via biomimetic nanovesicles to augment chemotherapy efficacy under chronic stress
Abstract Chronic stress significantly impacts cancer progression by activating the sympathetic nervous system, leading to increased tumor growth, metastasis, and resistance to chemotherapy. To address these challenges, we develop biomimetic hybrid nanovesicles (Pro@hNVs) by fusing M1 macrophage-derived vesicles with pH-sensitive liposomes (hNVs) to encapsulate the β-adrenergic receptor (ADRB) blocker propranolol (Pro).
Synergistic mechanical and therapeutic modulation of engineered tumor cell-derived microparticles for enhanced cancer treatment
Keywords mechanical modulation cancer stem cells circulating tumor cells microparticles ginsenoside Rh2 softness tumor accumulation deep tumor penetration tumor metastasis Introduction Cancer stem cells (CSCs) are pivotal drivers of tumor progression, therapeutic resistance, and metastasis, contributing significantly to poor clinical outcomes.1,2,3 Effective eradication of CSCs is essential for long-term treatment success.
Integration of acoustic, optical, and electrical methods in picoliter droplet microfluidics for rare particles enrichment - Communications Engineering
Abstract Rare particle enrichment plays a pivotal role in advancing numerous scientific research areas and industrial processes. Traditional enrichment methods encounter obstacles such as low efficiency, high cost, and complexity. Acoustic focusing, optical fiber detection, and electrical manipulation have shown potential in microfluidics for particle manipulation and analysis.
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