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March 4, 2026Journal of Biomaterials Applications0 citations

Gelatin hydrogel cross-linked with glutaraldehyde loaded with methylene blue for photodynamic action in gliosarcoma strain 9 L/lacZ

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JCJanicy Arantes CarvalhoJAJéssica Aparecida Ribeiro AmbrósioPOPamela Ingrid de Oliveira

Key Points

  • Evaluate the potential of a gelatin hydrogel loaded with methylene blue as a treatment for gliosarcoma using photodynamic therapy.
  • Synthesize gelatin hydrogel via chemical cross-linking with glutaraldehyde
  • Encapsulate methylene blue into the hydrogel
  • Analyze hydrogel structure using scanning electron microscopy (SEM)
  • Conduct swelling tests to assess water-retention capacity
  • Assess cell viability after photodynamic treatment using the trypan blue exclusion test.
  • Encapsulation efficiency of 95.35% for methylene blue in the hydrogel
  • Photodynamic treatment reduced cell viability by approximately 95% in gliosarcoma cells
  • Hydrogel displayed excellent photophysical properties for effective treatment.

Abstract

Since the prognosis and treatment of nervous system tumors are still not beneficial to the patient, alternative therapies need to be investigated as primary or supplemental treatments to current methods. Hydrogel systems are well-known for their high-water absorption capacity, three-dimensional network composition, and biocompatibility, making them suitable as photosensitizers (PS) carriers for photodynamic therapy (PDT). A gelatin hydrogel system was synthesized via chemical cross-linking with varying glutaraldehyde concentrations, and the optimal hydrogel was encapsulated with methylene blue (MB). Scanning electron microscopy (SEM) analysis demonstrated that the formulation formed three-dimensional networks. The freeze-drying procedure increases the hydrogel's water-retention capacity, as shown by the swelling test. All spectroscopic results showed excellent photophysical properties of MB when incorporated into the system. The encapsulation efficiency was 95.35%. According to the trypan blue exclusion test, the cell viability in the PDT-treated groups was significantly lower (p -1 for the hydrogel with MB. Based on the data obtained, the system's viability has been confirmed, and it is expected to demonstrate potential in the treatment of neoplasms.

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Cite This Study

Carvalho et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd0bd48f933b5eed8f88https://doi.org/10.1177/08853282261429830
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Also Consider

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  1. 1A multifunctional hydrogel containing gold nanorods and methylene blue for synergistic cancer phototherapy2021 · 31 citations
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  4. 4Synthesis and Characterization of Chemically Cross-Linked Acrylic Acid/Gelatin Hydrogels: Effect of pH and Composition on Swelling and Drug Release2015 · 232 citations
  5. 5Treatments of gliosarcoma of the brain: a systematic review and meta-analysis2020 · 18 citations