Development Of Protease-Encapsulated Microcapsules For Improved Digestion In Pancreatic Insufficiency

Authors

  • Amit Kumar
  • Gyan Singh
  • Guno Sindhu Chakraborthy
  • G Sai Sruti
  • Hamid Hussain Wani
  • Priti Singh
  • Pratibha Sharma
  • Bhargav Bhongiri

DOI:

https://doi.org/10.67440/ahj.v21i5s.1450

Keywords:

Microencapsulation; Exocrine pancreatic insufficiency; Spray drying; Ethylcellulose; Protease; Trehalose; Oral enzyme delivery.

Abstract

Exocrine pancreatic insufficiency remains a major therapeutic challenge because orally administered enzymes undergo rapid degradation in the acidic gastric environment before reaching the intestine. The present study developed a scalable solid-in-oil (s/o) spray-drying technique for encapsulating protease within semi-permeable ethylcellulose (EC) microcapsules intended for targeted intestinal enzyme delivery. Pre-formulation studies identified a critical thermal deactivation threshold above 55°C, emphasizing the need for effective thermal stabilization during spray drying. Trehalose and sucrose were investigated as thermoprotective excipients, with 1.5 M trehalose demonstrating the highest protective effect by preserving 95.7% of the native enzyme activity following thermal exposure at 75°C. Circular dichroism spectroscopy confirmed the preservation of the native secondary structure in the stabilized formulations. The optimized microcapsules exhibited a production yield of 71.8%, an encapsulation efficiency of 85.3%, a median particle size (dv50) of 5.19 μm, and a narrow particle size distribution (span = 1.80), indicating excellent manufacturing reproducibility and particle uniformity. In vitro release studies demonstrated a biphasic release profile characterized by an initial burst release followed by sustained diffusion through the ethylcellulose membrane. Mathematical modeling revealed excellent agreement with the Higuchi model (R² = 0.9974), confirming that solute transport occurred predominantly through Fickian diffusion across the hydrated polymer matrix. The semi-permeable membrane effectively retained the encapsulated enzyme while allowing diffusion of low-molecular-weight substrates and reaction products. Overall, the developed solid-in-oil spray-dried ethylcellulose microcapsules represent a promising oral enzyme delivery platform with potential applications in enzyme replacement therapy for exocrine pancreatic insufficiency, phenylketonuria, and related metabolic disorders.

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Published

2026-08-01

How to Cite

Kumar , A., Singh , G., Chakraborthy , G. S., Sruti , G. S., Wani, H. H., Singh , P., … Bhongiri , B. (2026). Development Of Protease-Encapsulated Microcapsules For Improved Digestion In Pancreatic Insufficiency. Adolescência E Saúde, 21(5s), 689–697. https://doi.org/10.67440/ahj.v21i5s.1450

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Original Articles