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Thymoquinone-Loaded Chitosan Nanoparticles Combat Testicular Aging and Oxidative Stress Through SIRT1/FOXO3a
Enas A Kasem1, Gehan Hamza1, Nagi M El-Shafai2
1Faculty of Science, Zoology Department, Kafrelsheikh University, Kafrelsheikh 33516, Egypt.
Abstract:
Background: Aging is a complex biological process characterized by the accumulation of molecular and cellular damage over time, often driven by oxidative stress. This oxidative stress is particularly detrimental to the testes, where it causes degeneration, reduced testosterone levels, and compromised fertility. D-galactose (D-gal) is commonly used to model aging as it induces oxidative stress, mimicking age-related cellular and molecular damage. Testicular aging is of significant concern due to its implications for reproductive health and hormonal balance. This research examines the protection by thymoquinone (TQ) or thymoquinone-loaded chitosan nanoparticles (NCPs) against D-galactose (D-gal)-induced aging in rat testes, focusing on biochemical, histological, and molecular changes. Aging, which is driven largely by oxidative stress, leads to significant testicular degeneration, reducing fertility. D-gal is widely used to model aging due to its ability to induce oxidative stress and mimic age-related damage. TQ, a bioactive ingredient of Nigella sativa, has earned a reputation for its anti-inflammatory, anti-apoptotic, and antioxidant characteristics, but its therapeutic application is limited by its poor bioavailability. Methods: Thymoquinone was loaded into chitosan nanoparticles (NCPs) to enhance its efficacy, and this was hypothesized to improve its stability and bioavailability. Four groups of male Wistar rats participated in the study: one for the control, one for D-gal, one for D-gal + TQ, and the last one for D-gal + NCP. Results: The results exhibited that D-gal substantially increased oxidative injury, reduced testosterone levels, and caused testicular damage. Treatment with TQ and NCPs significantly reduced oxidative stress, improved antioxidant enzyme levels, and restored testosterone levels, with NCPs showing a stronger protective effect than TQ alone. A histological analysis confirmed that NCPs better preserved testicular structure and function. Additionally, the NCP treatment upregulated the expression of key genes of oxidative stress resistance, mitochondrial function, and reproductive health, including SIRT1, FOXO3a, and TERT. Conclusions: The findings suggest that NCPs offer enhanced protection against aging-related testicular damage compared with TQ alone, which is likely due to the improved bioavailability and stability provided by the nanoparticle delivery system. This research emphasizes the potential of NCPs as a more effective therapeutic strategy for mitigating oxidative stress and age-related reproductive dysfunction. Future research should further explore the mechanisms underlying these protective effects.
Insights
Chitosan nanoparticles loaded with thymoquinone (TQ) effectively protect aging rat testes from oxidative damage, improving testosterone levels and preserving testicular structure better than TQ alone.
Area of Science:
- Reproductive biology and toxicology
- Nanomedicine and drug delivery systems
- Aging research and oxidative stress mechanisms
Background:
- Aging is characterized by accumulated cellular damage, particularly oxidative stress, which negatively impacts testicular function, leading to reduced testosterone and fertility.
- D-galactose (D-gal) is a common inducer of oxidative stress used to model age-related testicular damage.
- Thymoquinone (TQ), from Nigella sativa, possesses antioxidant and anti-inflammatory properties but suffers from poor bioavailability.
Purpose of the Study:
- To investigate the protective effects of thymoquinone (TQ) and thymoquinone-loaded chitosan nanoparticles (NCPs) against D-galactose-induced testicular aging in rats.
- To evaluate the efficacy of NCPs in enhancing TQ's bioavailability and therapeutic potential for mitigating age-related testicular dysfunction.
Main Methods:
- Male Wistar rats were divided into four groups: control, D-galactose-induced aging, D-galactose + TQ, and D-galactose + NCP.
- Biochemical assays measured oxidative stress markers and testosterone levels.
- Histological analysis assessed testicular tissue integrity, and gene expression analysis identified changes in key regulatory pathways (SIRT1, FOXO3a, TERT).
Main Results:
- D-galactose significantly increased oxidative stress, reduced testosterone, and caused testicular damage.
- Both TQ and NCP treatments reduced oxidative stress and restored testosterone levels, with NCPs demonstrating superior protective effects.
- Histological examination showed better preservation of testicular structure with NCP treatment, which also upregulated protective genes.
Conclusions:
- Thymoquinone-loaded chitosan nanoparticles provide enhanced protection against D-galactose-induced testicular aging compared to thymoquinone alone.
- The improved bioavailability and stability of TQ within chitosan nanoparticles contribute to their superior efficacy in mitigating oxidative stress and reproductive dysfunction.
- NCPs represent a promising therapeutic strategy for combating age-related testicular damage and improving reproductive health.
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