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September 24, 2025ACS Applied Materials & Interfaces7 citationsOpen Access

Stimuli-Responsive Hydrogels from Liquid–Liquid Phase Separations of FUS-Derived Peptides

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ERElisabetta RosaMPMariantonietta PizzellaLCLuca Cimmino

Key Points

  • The study reveals that hydrogels made from LARKS peptides can dynamically respond to environmental triggers.
  • Using various multi-LARKS peptides, changes in mechanical properties and temperature stability were successfully achieved.
  • These hydrogels demonstrated effective drug release capabilities, especially at elevated temperatures.
  • The findings suggest a new model for designing hydrogels for targeted drug delivery in biotechnological applications.

Abstract

Defining soft biomaterials, including stimuli-responsive hydrogels, is essential for advancing applications such as targeted drug delivery, biosensing, and tissue engineering due to their ability to respond to environmental triggers dynamically. In this study, we characterized phase-separating peptides and elucidated the principles governing their self-assembly into hydrogels. Low-complexity aromatic-rich kinked segments (LARKS) were employed as building blocks to generate stimuli-responsive materials. By analyzing the properties of various multi-LARKS peptides, we developed a model informing the rational design of point mutations to modulate the mechanical properties and temperature stability of LARKS-based hydrogels, resulting in stimuli-responsive matrices. Our findings were further supported by demonstrating that these hydrogels effectively act as reservoir matrices capable of releasing drugs efficiently at 40 °C, highlighting their potential for biotechnological and medical applications.

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Cite This Study

Rosa et al. (2025) studied this question.

synapsesocial.com/papers/68d6e14f8b2b6861e4c3fce5https://doi.org/10.1021/acsami.5c15249
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