Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry

Background: The application of nanoencapsulation technology to mangosteen rind aims to increase the stability, bioavailability, and solubility of bioactive compounds. The nanoencapsulation using chitosan and sodium tripolyphosphate (STPP) via ionic gelation yielded the best nanocapsule characterist...

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Main Authors: Andri Kusmayadi, Richa Mardianingrum, Yanti Yanti
Format: Article
Language:English
Published: Tripoli University 2025-04-01
Series:Open Veterinary Journal
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Online Access:http://www.ejmanager.com/fulltextpdf.php?mno=241594
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author Andri Kusmayadi
Richa Mardianingrum
Yanti Yanti
author_facet Andri Kusmayadi
Richa Mardianingrum
Yanti Yanti
author_sort Andri Kusmayadi
collection DOAJ
description Background: The application of nanoencapsulation technology to mangosteen rind aims to increase the stability, bioavailability, and solubility of bioactive compounds. The nanoencapsulation using chitosan and sodium tripolyphosphate (STPP) via ionic gelation yielded the best nanocapsule characteristics compared to other methods. Aim: To investigate the formulation and characterization of mangosteen rind extract nanocapsules (MREN) using chitosan cross-linked with STPP at different ratios as a candidate poultry feed additive. Methods: Ethanol was used as a solvent in the maceration process to extract mangosteen rind. After weighing the mangosteen rind, a solvent was added at a 1:5 (w/v) ratio. At room temperature, maceration lasted for 24 hours. A rotary vacuum evaporator was used to concentrate the filtrate from each extraction process for 20 minutes at a temperature between 40°C and 45°C. Mangosteen rind extract (MRE), chitosan, and STPP were combined to obtain MREN. Chitosan and STPP were used at the following ratios: 1:1, 2:1, 3:1, 4:1, and 5:1 (MREN1–MREN5, respectively). Following mixing, the mixture was homogenized for 5 minutes using a homogenizer, hydrated for 18 hours at 4°C, and then homogenized once more for 30 seconds. With an input temperature of 170°C, feed rate of 15 ml/min, and nozzle atomizer pressure of one bar, spray drying was performed using a spray drier. The final nanocapsule products were then examined for particle size, zeta potential, and morphology. Results: The application of MREN as a candidate poultry feed additive was investigated based on the results of its characterization. The findings demonstrated that the addition of chitosan and STPP to the nanoencapsulation of mangosteen rind extract significantly affected the particle size, zeta potential, and morphology. The particle size increased with increasing chitosan content relative to STPP; the smallest particle size was obtained in the 1:1 treatment at the lowest chitosan dosage. In comparison with the other characteristics, the best and most stable zeta potential was obtained when chitosan was used at 2:1 and 3:1. Compared with the other treatments, the 1:1 treatment resulted in the ideal nanocapsule morphology in terms of morphological features. Conclusion: The mangosteen rind extract nanocapsule product, at a 1:1 ratio, has great potential for application as a feed additive in poultry. Nanoencapsulated mangosteen rind extract products have great potential as feed additives for poultry. [Open Vet J 2025; 15(4.000): 1771-1783]
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spelling doaj-art-a1cb1e8750ce41b2a74e4cca0e6de5e62025-08-20T03:09:38ZengTripoli UniversityOpen Veterinary Journal2226-44852218-60502025-04-011541771178310.5455/OVJ.2025.v15.i4.29241594Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultryAndri Kusmayadi0Richa Mardianingrum1Yanti YantiUniversitas Perjuangan Tasikmalaya Universitas Perjuangan TasikmalayaBackground: The application of nanoencapsulation technology to mangosteen rind aims to increase the stability, bioavailability, and solubility of bioactive compounds. The nanoencapsulation using chitosan and sodium tripolyphosphate (STPP) via ionic gelation yielded the best nanocapsule characteristics compared to other methods. Aim: To investigate the formulation and characterization of mangosteen rind extract nanocapsules (MREN) using chitosan cross-linked with STPP at different ratios as a candidate poultry feed additive. Methods: Ethanol was used as a solvent in the maceration process to extract mangosteen rind. After weighing the mangosteen rind, a solvent was added at a 1:5 (w/v) ratio. At room temperature, maceration lasted for 24 hours. A rotary vacuum evaporator was used to concentrate the filtrate from each extraction process for 20 minutes at a temperature between 40°C and 45°C. Mangosteen rind extract (MRE), chitosan, and STPP were combined to obtain MREN. Chitosan and STPP were used at the following ratios: 1:1, 2:1, 3:1, 4:1, and 5:1 (MREN1–MREN5, respectively). Following mixing, the mixture was homogenized for 5 minutes using a homogenizer, hydrated for 18 hours at 4°C, and then homogenized once more for 30 seconds. With an input temperature of 170°C, feed rate of 15 ml/min, and nozzle atomizer pressure of one bar, spray drying was performed using a spray drier. The final nanocapsule products were then examined for particle size, zeta potential, and morphology. Results: The application of MREN as a candidate poultry feed additive was investigated based on the results of its characterization. The findings demonstrated that the addition of chitosan and STPP to the nanoencapsulation of mangosteen rind extract significantly affected the particle size, zeta potential, and morphology. The particle size increased with increasing chitosan content relative to STPP; the smallest particle size was obtained in the 1:1 treatment at the lowest chitosan dosage. In comparison with the other characteristics, the best and most stable zeta potential was obtained when chitosan was used at 2:1 and 3:1. Compared with the other treatments, the 1:1 treatment resulted in the ideal nanocapsule morphology in terms of morphological features. Conclusion: The mangosteen rind extract nanocapsule product, at a 1:1 ratio, has great potential for application as a feed additive in poultry. Nanoencapsulated mangosteen rind extract products have great potential as feed additives for poultry. [Open Vet J 2025; 15(4.000): 1771-1783]http://www.ejmanager.com/fulltextpdf.php?mno=241594characterizationfeed additiveformulationmangosteen rind extract nanocapsulespoultry
spellingShingle Andri Kusmayadi
Richa Mardianingrum
Yanti Yanti
Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
Open Veterinary Journal
characterization
feed additive
formulation
mangosteen rind extract nanocapsules
poultry
title Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
title_full Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
title_fullStr Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
title_full_unstemmed Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
title_short Formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
title_sort formulation and characterization of mangosteen rind extract nanocapsules as a feed additive candidate of poultry
topic characterization
feed additive
formulation
mangosteen rind extract nanocapsules
poultry
url http://www.ejmanager.com/fulltextpdf.php?mno=241594
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AT richamardianingrum formulationandcharacterizationofmangosteenrindextractnanocapsulesasafeedadditivecandidateofpoultry
AT yantiyanti formulationandcharacterizationofmangosteenrindextractnanocapsulesasafeedadditivecandidateofpoultry