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February 28, 2026The Journal of Supercritical Fluids0 citationsOpen Access

Development of a new polymeric formulation of rutin by supercritical antisolvent precipitation and evaluation of its nephroprotective capacity against cisplatin nephrotoxicity in rats

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ACAlfredo G. CasanovaLRLucía Rodríguez-LucasSPSara Pahino-Villardón

Key Result

A polymeric rutin formulation with improved in vitro release showed no significant nephroprotective effect against cisplatin nephrotoxicity in rats in vivo.

Key Points

  • The research aimed to develop a novel polymeric formulation of rutin and assess its nephroprotective effects against cisplatin-induced nephrotoxicity in rats.
  • Developed rutin polymeric nanoparticles using the Supercritical Anti Solvent (SAS) process.
  • Coated rutin with Eudragit® polymers for enhanced solubility.
  • Conducted in vitro dissolution studies to evaluate solubility and release profiles.
  • Administered the formulation to rats to assess nephroprotective capacity.
  • Micronization and coating of rutin were successfully achieved.
  • In vitro studies indicated enhanced solubility and controlled release of SAS-processed rutin.
  • The in vivo study revealed no significant nephroprotective effects of the formulation.
  • Histological analysis corroborated the lack of nephroprotective benefits.

Structured PICO

Does a polymeric formulation of rutin prevent cisplatin-induced nephrotoxicity in an experimental rat model?

P
Population
Experimental rat model of cisplatin nephrotoxicity
I
Intervention
Polymeric formulation of rutin (rutin coated with Eudragit polymers using Supercritical Anti Solvent process)
C
Comparator
Unprocessed rutin and pure SAS-processed rutin (in vitro)
O
Outcome
Nephroprotective capacity against cisplatin toxicity (functional and histological evaluation)surrogate

Although polymeric encapsulation of rutin improved its in vitro dissolution, it failed to provide significant in vivo nephroprotection against cisplatin toxicity in rats, likely due to low in vivo stability.

Limitations

  • Limited therapeutic efficiency probably due to low in vivo stability

Abstract

Nephrotoxicity associated with antitumor drugs such as cisplatin is a well-documented clinical challenge. The intrinsic toxicity of these drugs is driving the search for renoprotective strategies. Currently, one of the most popular is the use of natural substances with antioxidant properties, such as flavonoids. Rutin is a member of this family whose nephroprotective properties have already been studied. However, its bioavailability is very low due to its high lipophilicity. Polymeric nanoparticle design is one of the possible strategies used to solve pharmacokinetic problems. The aim of this work was to design and develop a new polymeric formulation of rutin and to evaluate its nephroprotective capacity against cisplatin toxicity in an experimental rat model. Rutin was processed and coated with Eudragit® polymers using the Supercritical Anti Solvent (SAS) process. A successful micronization and coating of rutin was achieved. In vitro release studies of the formulations obtained demonstrated that pure SAS-processed rutin showed a higher solubility and dissolution rate that unprocessed rutin, and that rutin coated with Eudragit® polymers combined this increased solubilization with a controlled release. However, after administration of the formulation with the best in vivo properties obtained in rats, they did not show a significant nephroprotective capacity. The histological study confirmed the negative results obtained in the functional study. Although this formulation did not show significant nephroprotective effects in vivo , the study provides valuable insights into the limitations of current polymeric encapsulation strategies for rutin. • Rutin was sucessfully encapsulated in Eudragit polymers by SAS technique • Formulations were in-vitro/in-vivo tested against cancer-therapy nephrotoxicity • Formulations showed enhanced in-vitro dissolution profiles • A limited therapeutic efficiency was observed probably due to low in vivo stability

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Cite This Study

Casanova et al. (2026) studied this question. A polymeric rutin formulation with improved in vitro release showed no significant nephroprotective effect against cisplatin nephrotoxicity in rats in vivo.

synapsesocial.com/papers/69a288060a974eb0d3c03ff4https://doi.org/10.1016/j.supflu.2026.106947
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