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Urine pH serves as an indicator of systemic acid-base balance and helps detect early-stage urinary and renal disorders. However, conventional monitoring methods rely on instruments or manual procedures, limiting their use among vulnerable groups such as infants and bedridden elderly individuals. In this study, a pH-responsive smart hydrogel was developed and integrated into diapers to enable real-time, equipment-free, and visually interpretable urine pH monitoring. An optimised degumming process enabled one-step preparation of a silk fibroin-sericin aqueous solution. We employed a visible light-induced photo-crosslinking strategy to fabricate a dual-network hydrogel with enhanced strength and stability. Increasing sericin content accelerated gelation (≤15 min) and improved performance, achieving a maximum stress of 54 kPa, strain of 168%, and water absorption of 566%. We incorporated natural anthocyanins and fine-tuned them to produce four distinct colour changes in response to urine pH, with significantly improved colour differentiation (ΔE). Upon contact with urine, the hydrogel displays green within the normal pH range, indicating a healthy state. At the same time, a reddish-purple or blue colour serves as a visual warning of abnormal acidity or alkalinity. This intelligent hydrogel system combines rapid gelation, excellent mechanical properties, and a sensitive visual response, offering a promising platform for body fluid monitoring.
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http://dx.doi.org/10.3390/gels11080671 | DOI Listing |
Gels
August 2025
College of Textile and Clothing Engineering, Soochow University, Suzhou 215021, China.
Urine pH serves as an indicator of systemic acid-base balance and helps detect early-stage urinary and renal disorders. However, conventional monitoring methods rely on instruments or manual procedures, limiting their use among vulnerable groups such as infants and bedridden elderly individuals. In this study, a pH-responsive smart hydrogel was developed and integrated into diapers to enable real-time, equipment-free, and visually interpretable urine pH monitoring.
View Article and Find Full Text PDFInt J Mol Sci
July 2025
Biomedical Research Networking Center in Bioengineering, Biomaterials, and Nanomedicine (CIBER-BBN), 28029 Madrid, Spain.
The cryopreservation of three-dimensional (3D) biofabricated constructs is a key enabler for their clinical application in regenerative medicine. Unlike two-dimensional (2D) cultures, 3D systems such as encapsulated cell spheroids, molded hydrogels, and bioprinted tissues present specific challenges related to cryoprotectant (CPA) diffusion, thermal gradients, and ice formation during freezing and thawing. This review examines the current strategies for preserving 3D constructs, focusing on the role of biomaterials as cryoprotective matrices.
View Article and Find Full Text PDFInsect Sci
April 2025
Biological Science Research Center, Integrative Science Center of Germplasm Creation in Western China (Chongqing) Science City, Southwest University, Chongqing, China.
The greater wax moth Galleria mellonella is a major pest of brood combs, and produces large quantities of strong, elastic silk in the environment. However, little research has been conducted on the silk glands (SGs), silk composition and functions of G. mellonella.
View Article and Find Full Text PDFSpectrochim Acta A Mol Biomol Spectrosc
August 2025
Centre Asie du Sud-Est (CASE, UMR 8170), EHESS, 2 Cours des Humanités, 93300 Aubervilliers, France.
"Wild" silks, produced by various silkworm species, are often valued in textile production, but present greater challenges in dyeing compared to the "domestic" mulberry silk from Bombyx mori. This study investigates the reasons behind these challenges, focusing on key components such as fibroin, sericin proteins, and calcium oxalate crystals. The degumming process, which removes sericin, generally enhances dye penetration; however, its efficiency varies with the type of silk and its chemical composition.
View Article and Find Full Text PDFBiomed Mater
January 2024
School of Medical Science and Technology, IIT Kharagpur, Kharagpur, West Bengal 721302, India.
The quest for an ideal wound dressing material has been a strong motivation for researchers to explore novel biomaterials for this purpose. Such explorations have led to the extensive use of silk fibroin (SF) as a suitable polymer for several applications over the years. Unfortunately, another major silk protein-sericin has not received its due attention yet in spite of having favorable biological properties.
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