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A paradigm shift in trichinellosis management: curcumin-olive oil nanocomposite’s multi-faceted therapeutic approach
by
Youssef, Fady Sayed
, Fouad, Ehab A.
, Taha, Noha Madbouly
, Khalifa, Marwa M.
, Ramadan, Reem M.
, El-Bahy, Mohamed M.
, Kamel, Mohamed
in
adults
/ Albendazole
/ Animal models
/ Animals
/ Anthelmintics - therapeutic use
/ Anti-inflammatory agents
/ antioxidant activity
/ Antioxidants
/ Antiparasitic agents
/ antiparasitic properties
/ Bioavailability
/ Breeding of animals
/ Cancer
/ Care and treatment
/ Composite materials
/ Curcumin
/ Curcumin - administration & dosage
/ Curcumin - pharmacology
/ Curcumin - therapeutic use
/ Curcumin-olive oil nanocomposite
/ Cytotoxicity
/ dose response
/ Drug delivery systems
/ Drug dosages
/ encapsulation
/ Female
/ Glutathione
/ Health aspects
/ Infections
/ Inflammation
/ Inoculation
/ intestines
/ Laboratory animals
/ Larva - drug effects
/ Larvae
/ malondialdehyde
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred BALB C
/ Microscopy
/ muscles
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanocomposites - therapeutic use
/ Nanoparticles
/ Nanotechnology
/ neonates
/ oils
/ Olive oil
/ Oxidative stress
/ parasites
/ Particle size
/ Redox parameters
/ Testing
/ therapeutics
/ Transgenics
/ Treatment
/ Trichinella spiralis
/ Trichinella spiralis - drug effects
/ Trichinellosis
/ Trichinellosis - drug therapy
/ Trichinosis
/ Turmeric
/ Veterinary Medicine/Veterinary Science
/ Vitamin C
/ Xanthine oxidase
/ Zoology
/ Zoonoses
2025
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A paradigm shift in trichinellosis management: curcumin-olive oil nanocomposite’s multi-faceted therapeutic approach
by
Youssef, Fady Sayed
, Fouad, Ehab A.
, Taha, Noha Madbouly
, Khalifa, Marwa M.
, Ramadan, Reem M.
, El-Bahy, Mohamed M.
, Kamel, Mohamed
in
adults
/ Albendazole
/ Animal models
/ Animals
/ Anthelmintics - therapeutic use
/ Anti-inflammatory agents
/ antioxidant activity
/ Antioxidants
/ Antiparasitic agents
/ antiparasitic properties
/ Bioavailability
/ Breeding of animals
/ Cancer
/ Care and treatment
/ Composite materials
/ Curcumin
/ Curcumin - administration & dosage
/ Curcumin - pharmacology
/ Curcumin - therapeutic use
/ Curcumin-olive oil nanocomposite
/ Cytotoxicity
/ dose response
/ Drug delivery systems
/ Drug dosages
/ encapsulation
/ Female
/ Glutathione
/ Health aspects
/ Infections
/ Inflammation
/ Inoculation
/ intestines
/ Laboratory animals
/ Larva - drug effects
/ Larvae
/ malondialdehyde
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred BALB C
/ Microscopy
/ muscles
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanocomposites - therapeutic use
/ Nanoparticles
/ Nanotechnology
/ neonates
/ oils
/ Olive oil
/ Oxidative stress
/ parasites
/ Particle size
/ Redox parameters
/ Testing
/ therapeutics
/ Transgenics
/ Treatment
/ Trichinella spiralis
/ Trichinella spiralis - drug effects
/ Trichinellosis
/ Trichinellosis - drug therapy
/ Trichinosis
/ Turmeric
/ Veterinary Medicine/Veterinary Science
/ Vitamin C
/ Xanthine oxidase
/ Zoology
/ Zoonoses
2025
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A paradigm shift in trichinellosis management: curcumin-olive oil nanocomposite’s multi-faceted therapeutic approach
by
Youssef, Fady Sayed
, Fouad, Ehab A.
, Taha, Noha Madbouly
, Khalifa, Marwa M.
, Ramadan, Reem M.
, El-Bahy, Mohamed M.
, Kamel, Mohamed
in
adults
/ Albendazole
/ Animal models
/ Animals
/ Anthelmintics - therapeutic use
/ Anti-inflammatory agents
/ antioxidant activity
/ Antioxidants
/ Antiparasitic agents
/ antiparasitic properties
/ Bioavailability
/ Breeding of animals
/ Cancer
/ Care and treatment
/ Composite materials
/ Curcumin
/ Curcumin - administration & dosage
/ Curcumin - pharmacology
/ Curcumin - therapeutic use
/ Curcumin-olive oil nanocomposite
/ Cytotoxicity
/ dose response
/ Drug delivery systems
/ Drug dosages
/ encapsulation
/ Female
/ Glutathione
/ Health aspects
/ Infections
/ Inflammation
/ Inoculation
/ intestines
/ Laboratory animals
/ Larva - drug effects
/ Larvae
/ malondialdehyde
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred BALB C
/ Microscopy
/ muscles
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanocomposites - therapeutic use
/ Nanoparticles
/ Nanotechnology
/ neonates
/ oils
/ Olive oil
/ Oxidative stress
/ parasites
/ Particle size
/ Redox parameters
/ Testing
/ therapeutics
/ Transgenics
/ Treatment
/ Trichinella spiralis
/ Trichinella spiralis - drug effects
/ Trichinellosis
/ Trichinellosis - drug therapy
/ Trichinosis
/ Turmeric
/ Veterinary Medicine/Veterinary Science
/ Vitamin C
/ Xanthine oxidase
/ Zoology
/ Zoonoses
2025
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A paradigm shift in trichinellosis management: curcumin-olive oil nanocomposite’s multi-faceted therapeutic approach
Journal Article
A paradigm shift in trichinellosis management: curcumin-olive oil nanocomposite’s multi-faceted therapeutic approach
2025
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Overview
Background
Trichinella spiralis
, a globally widespread zoonotic parasite, poses significant health and economic burdens due to its complex life cycle and the scarcity of effective, multi-stage treatments.
Methods
This study investigated the therapeutic potential of a novel curcumin-olive oil nanocomposite (CO-NC) against three critical stages of
T. spiralis
infection in a murine model: adult worms (3–5 days post-inoculation, dpi), newborn larvae (8–10 dpi), and encapsulated larvae (33–35 dpi). CO-NC exhibited potent, stage-specific, and dose-dependent antiparasitic activity.
Results
Remarkably, a 100 mg/kg dose achieved complete eradication of both newborn and encapsulated larvae, mirroring the efficacy of the current standard treatment, albendazole (50 mg/kg). This high dose also significantly reduced adult worm burdens by 91.6%. Even at a lower dose of 50 mg/kg, CO-NC demonstrated substantial activity, reducing adult worms and encapsulated larvae by 55.2% and 43.8%, respectively. Beyond its direct antiparasitic effects, CO-NC (100 mg/kg) significantly mitigated infection-induced oxidative stress by restoring key redox markers in muscle and intestinal tissues, including xanthine oxidase, glutathione, malondialdehyde, and total antioxidant capacity. Furthermore, complementary in vitro studies revealed superior anticancer and anti-inflammatory properties of CO-NC compared to crude curcumin and standard reference compounds at their respective IC
50
values.
Conclusions
These findings highlight CO-NC as a promising multi-faceted therapeutic candidate for trichinellosis, offering potent antiparasitic efficacy comparable to albendazole alongside valuable antioxidant, anti-inflammatory, and anticancer properties. This integrated approach underscores the potential of CO-NC as an innovative and comprehensive solution for the challenges posed by
T. spiralis
infections.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Animals
/ Anthelmintics - therapeutic use
/ Cancer
/ Curcumin
/ Curcumin - administration & dosage
/ Curcumin-olive oil nanocomposite
/ Female
/ Larvae
/ Medicine
/ Mice
/ muscles
/ Nanocomposites - therapeutic use
/ neonates
/ oils
/ Testing
/ Trichinella spiralis - drug effects
/ Trichinellosis - drug therapy
/ Turmeric
/ Veterinary Medicine/Veterinary Science
/ Zoology
/ Zoonoses
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