Comments on “Quercetin and Nano Quercetin: Cytotoxicity, Antileishmanial and Antimicrobial Activities against Resistance Strains: Insights and Future Directions”
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1. Hanif H, Javani Jouni F, Zafari J, Rahimi Esboei B, Mousavi P, Vazini H. Quercetin and nano quercetin: Cytotoxicity, antileishmanial and antimicrobial activities against resistance strains. Iran J Parasitol. 2025;20(1):8-16.
2. Salehi B, Machin L, Monzote L, et al. Therapeutic potential of quercetin: New insights and perspectives for human health. ACS Omega. 2020;5(20):11849-11872.
3. Ponte-Sucre A, Gamarro F, Dujardin JC, et al. Drug resistance and treatment failure in leishmaniasis: A 21st century challenge. PLoS Negl Trop Dis. 2017;11(12):e0006052.
4. Ghadri ZS, Dinarvand R, Asemi N, et al. Preparation, characterization and in vivo evaluation of novel hyaluronan containing niosomes tailored by box-behnken design to co-encapsulate curcumin and quercetin. Eur J Pharm Sci. 2019;130:234-246.
5. Lakhanpal P, Rai DK. Quercetin: A versatile flavonoid. Internet J Med Update. 2007;2:22-37.
6. Elmi T, Esboei BR, Sadeghi F, et al. In vitro antiprotozoal effects of nano-chitosan on Plasmodium falciparum, Giardia lamblia and Trichomonas vaginalis. Acta Parasitol. 2021;66:39-52.
7. Othman L, Sleiman A, Abdel-Massih RM. Antimicrobial activity of polyphenols and alkaloids in middle eastern plants. Front Microbiol. 2019;10:911.
8. Najm M, Hadighi R, Heidari-Kharaji M, et al. Anti-leishmanial activity of Artemisia persica, A. spicigera, and A. fragrance against Leishmania major. Iran J Parasitol. 2021;16(3):464-473.
9. Chabra A, Rahimi-Esboei B, Habibi E, et al. Effects of some natural products from fungal and herbal sources on Giardia lamblia in vivo. Parasitology. 2019;146:1188-1198.
10. Raeisi M, Mirkarimi K, Jannat B, et al. In vitro effect of some medicinal plants on Leishmania major strain MRHO/IR/75/ER. Med Lab J. 2020;14:46-52.
2. Salehi B, Machin L, Monzote L, et al. Therapeutic potential of quercetin: New insights and perspectives for human health. ACS Omega. 2020;5(20):11849-11872.
3. Ponte-Sucre A, Gamarro F, Dujardin JC, et al. Drug resistance and treatment failure in leishmaniasis: A 21st century challenge. PLoS Negl Trop Dis. 2017;11(12):e0006052.
4. Ghadri ZS, Dinarvand R, Asemi N, et al. Preparation, characterization and in vivo evaluation of novel hyaluronan containing niosomes tailored by box-behnken design to co-encapsulate curcumin and quercetin. Eur J Pharm Sci. 2019;130:234-246.
5. Lakhanpal P, Rai DK. Quercetin: A versatile flavonoid. Internet J Med Update. 2007;2:22-37.
6. Elmi T, Esboei BR, Sadeghi F, et al. In vitro antiprotozoal effects of nano-chitosan on Plasmodium falciparum, Giardia lamblia and Trichomonas vaginalis. Acta Parasitol. 2021;66:39-52.
7. Othman L, Sleiman A, Abdel-Massih RM. Antimicrobial activity of polyphenols and alkaloids in middle eastern plants. Front Microbiol. 2019;10:911.
8. Najm M, Hadighi R, Heidari-Kharaji M, et al. Anti-leishmanial activity of Artemisia persica, A. spicigera, and A. fragrance against Leishmania major. Iran J Parasitol. 2021;16(3):464-473.
9. Chabra A, Rahimi-Esboei B, Habibi E, et al. Effects of some natural products from fungal and herbal sources on Giardia lamblia in vivo. Parasitology. 2019;146:1188-1198.
10. Raeisi M, Mirkarimi K, Jannat B, et al. In vitro effect of some medicinal plants on Leishmania major strain MRHO/IR/75/ER. Med Lab J. 2020;14:46-52.
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| Issue | Vol 21 No 3 (2026) | |
| Section | Letter to the Editor | |
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How to Cite
1.
Mohammadi MR. Comments on “Quercetin and Nano Quercetin: Cytotoxicity, Antileishmanial and Antimicrobial Activities against Resistance Strains: Insights and Future Directions”. Iran J Parasitol. 2026;21(3):440-442.

