1.Effects of quercetin-loaded nanoselenium on spermatogenesis in a mouse model of cyclophosphamide-induced testicular damage
Mahsa Ghaffari NOVIN ; Marefat Ghaffari NOVIN ; Mohammad-Amin ABDOLLAHIFAR ; Pourya RAEE ; Ali MORADI ; Hamidreza MOSLEH ; Hamid NAZARIAN ; Zahra Shams MOFARAHE
Clinical and Experimental Reproductive Medicine 2026;53(2):162-172
Objective:
Cyclophosphamide (CP), a chemotherapeutic agent, has been shown to inhibit spermatogenesis. Accordingly, the primary objective of this study was to evaluate the potential therapeutic benefits of quercetin‑loaded nanoselenium (quercetin‑loaded selenium nanoparticles [SeNPs]) in mice treated with CP.
Methods:
Thirty‑five adult male mice were randomly assigned to five groups (n=7 per group): control, quercetin‑loaded SeNPs (20 mg/kg, daily for 5 weeks), CP (200 mg/kg, single dose), treatment A (CP+quercetin‑loaded SeNPs), and treatment B (CP+quercetin, 20 mg/kg daily for 5 weeks). Sperm parameters, DNA fragmentation index, catalase activity, levels of glutathione (GSH), glutathione disulfide (GSSG), malondialdehyde (MDA), and reactive oxygen species (ROS) were evaluated in all groups, along with histological assessments of testicular tissue.
Results:
In CP‑treated mice, administration of quercetin‑loaded SeNPs (treatment A) significantly improved sperm parameters, including total count, motility, morphology, and DNA integrity. Treatment also markedly increased the numbers of spermatogonia, primary spermatocytes, spermatids, Sertoli cells, and Leydig cells in testicular tissue. Furthermore, treatment with quercetin‑loaded SeNPs resulted in a significant increase in catalase activity and GSH levels while significantly reducing GSSG, MDA, and ROS levels in CP‑induced testicular damage.
Conclusion
These findings suggest that quercetin‑loaded SeNPs enhance spermatogenesis in a CP‑induced mouse model by improving the antioxidant profile and testicular stereological parameters.
2.Therapeutic effects of curcumin nanoemulsion on cyclophosphamide-induced testicular toxicity in adult male mice
Pourya RAEE ; Shahin AGHAMIRI ; Mahsa Ghaffari NOVIN ; Azar AFSHAR ; Fakhroddin AGHAJANPOUR ; Farid ABDI ; Marefat Ghaffari NOVIN
Clinical and Experimental Reproductive Medicine 2025;52(2):157-166
Objective:
Several chemotherapeutic agents, including cyclophosphamide (CP) and busulfan, have been shown to interfere with spermatogenesis. Accordingly, the main objective of this study was to evaluate the potential therapeutic effects of curcumin nanoemulsion (CUR-NE) on spermatogenesis in mice with CP-induced testicular toxicity.
Methods:
A total of 28 adult male mice were equally divided into four groups: control, CUR-NE (30 mg/kg, daily for 5 weeks), CP (200 mg/kg, single dose), and CP+CUR-NE. Each group was evaluated regarding sperm parameters, DNA fragmentation index, chromatin maturation, reactive oxygen species (ROS) levels, and histological parameters of the testes. Serum levels of follicle-stimulating hormone (FSH), luteinizing hormone, and testosterone were also assessed in all groups.
Results:
In CP-induced mice, CUR-NE treatment significantly improved sperm parameters, including total sperm count, motility, morphology, and DNA integrity. CUR-NE administration was also associated with significantly higher serum levels of testosterone and FSH, as well as testis weight and volume, in the mice treated with CP. Furthermore, CUR-NE treatment significantly increased the number of spermatogonia, primary spermatocytes, round spermatids, and Leydig cells in the testicular tissue of these animals. A marked reduction in ROS levels in the testes tissue was observed following administration of CUR-NE to CP-induced mice.
Conclusion
CUR-NE appears to promote spermatogenesis in mice with CP-induced testicular toxicity by reducing ROS levels, improving testicular stereological parameters, and strengthening the reproductive hormone profile.
3.Therapeutic effects of curcumin nanoemulsion on cyclophosphamide-induced testicular toxicity in adult male mice
Pourya RAEE ; Shahin AGHAMIRI ; Mahsa Ghaffari NOVIN ; Azar AFSHAR ; Fakhroddin AGHAJANPOUR ; Farid ABDI ; Marefat Ghaffari NOVIN
Clinical and Experimental Reproductive Medicine 2025;52(2):157-166
Objective:
Several chemotherapeutic agents, including cyclophosphamide (CP) and busulfan, have been shown to interfere with spermatogenesis. Accordingly, the main objective of this study was to evaluate the potential therapeutic effects of curcumin nanoemulsion (CUR-NE) on spermatogenesis in mice with CP-induced testicular toxicity.
Methods:
A total of 28 adult male mice were equally divided into four groups: control, CUR-NE (30 mg/kg, daily for 5 weeks), CP (200 mg/kg, single dose), and CP+CUR-NE. Each group was evaluated regarding sperm parameters, DNA fragmentation index, chromatin maturation, reactive oxygen species (ROS) levels, and histological parameters of the testes. Serum levels of follicle-stimulating hormone (FSH), luteinizing hormone, and testosterone were also assessed in all groups.
Results:
In CP-induced mice, CUR-NE treatment significantly improved sperm parameters, including total sperm count, motility, morphology, and DNA integrity. CUR-NE administration was also associated with significantly higher serum levels of testosterone and FSH, as well as testis weight and volume, in the mice treated with CP. Furthermore, CUR-NE treatment significantly increased the number of spermatogonia, primary spermatocytes, round spermatids, and Leydig cells in the testicular tissue of these animals. A marked reduction in ROS levels in the testes tissue was observed following administration of CUR-NE to CP-induced mice.
Conclusion
CUR-NE appears to promote spermatogenesis in mice with CP-induced testicular toxicity by reducing ROS levels, improving testicular stereological parameters, and strengthening the reproductive hormone profile.
4.Therapeutic effects of curcumin nanoemulsion on cyclophosphamide-induced testicular toxicity in adult male mice
Pourya RAEE ; Shahin AGHAMIRI ; Mahsa Ghaffari NOVIN ; Azar AFSHAR ; Fakhroddin AGHAJANPOUR ; Farid ABDI ; Marefat Ghaffari NOVIN
Clinical and Experimental Reproductive Medicine 2025;52(2):157-166
Objective:
Several chemotherapeutic agents, including cyclophosphamide (CP) and busulfan, have been shown to interfere with spermatogenesis. Accordingly, the main objective of this study was to evaluate the potential therapeutic effects of curcumin nanoemulsion (CUR-NE) on spermatogenesis in mice with CP-induced testicular toxicity.
Methods:
A total of 28 adult male mice were equally divided into four groups: control, CUR-NE (30 mg/kg, daily for 5 weeks), CP (200 mg/kg, single dose), and CP+CUR-NE. Each group was evaluated regarding sperm parameters, DNA fragmentation index, chromatin maturation, reactive oxygen species (ROS) levels, and histological parameters of the testes. Serum levels of follicle-stimulating hormone (FSH), luteinizing hormone, and testosterone were also assessed in all groups.
Results:
In CP-induced mice, CUR-NE treatment significantly improved sperm parameters, including total sperm count, motility, morphology, and DNA integrity. CUR-NE administration was also associated with significantly higher serum levels of testosterone and FSH, as well as testis weight and volume, in the mice treated with CP. Furthermore, CUR-NE treatment significantly increased the number of spermatogonia, primary spermatocytes, round spermatids, and Leydig cells in the testicular tissue of these animals. A marked reduction in ROS levels in the testes tissue was observed following administration of CUR-NE to CP-induced mice.
Conclusion
CUR-NE appears to promote spermatogenesis in mice with CP-induced testicular toxicity by reducing ROS levels, improving testicular stereological parameters, and strengthening the reproductive hormone profile.

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