Ahmed, F., Toume, K., Ohtsuki, T., Rahman, M., Sadhu, S. K., & Ishibashi, M. (2011). Cryptolepine, isolated from Sida acuta, sensitizes human gastric adenocarcinoma cells to TRAIL‐induced apoptosis. Phytotherapy Research, 25(1), 147-150.
Ahmed, F., Toume, K., Ohtsuki, T., Rahman, M., Sadhu, S. K., & Ishibashi, M. (2011). Cryptolepine, isolated from Sida acuta, sensitizes human gastric adenocarcinoma cells to TRAIL‐induced apoptosis. Phytotherapy Research, 25(1), 147-150.
Cited by the following articles
2011
1. Nayeem, A. A., Khatun, A., Rahman, M. S., & Rahman, M. (2011). Evaluation of phytochemical and pharmacological properties of Mikania cordata (Asteraceae) leaves. Journal of Pharmacognosy and Phytotherapy, 3(8), 118-123.
2012
2. Minakawa, T., Toume, K., Arai, M. A., Sadhu, S. K., Ahmed, F., & Ishibashi, M. (2012). Eudesmane-type sesquiterpenoid and guaianolides from Kandelia candel in a screening program for compounds to overcome TRAIL resistance. Journal of Natural Products, 75(8), 1431-1435.
3. Siraj, M., Chakma, N., Rahman, M., Malik, S., & Sadhu, S. (2012). Assessment of analgesic, antidiarrhoeal and cytotoxic activity of ethanolic extract of the whole plant of Bacopa monnieri Linn. Int Res J Pharm, 3, 98-101.
2013
4. Dey, S. K., Hira, A., Ahmed, A., Howlader, M. S., Khatun, A., Rahman, M., & Siraj, M. A. (2013). Phytochemical screening and pharmacological activities of Entada scandens seeds. International Journal of Applied Research in Natural Products. 6(1), 20-26.
5. FU, C., & LI, B. (2013). Antitumor mechanism of kaempferol. Journal of International Oncology, 892-895.
6. Khatun, A., Rahman, M., Kabir, S., Akter, M. N., & Chowdhury, S. A. (2013). Phytochemical and pharmacological properties of the methanolic extract of Ardisia humilis Vahl.(Myrsinaceae). Int J of Res in Ayur and Pharm, 4(1), 38-41. DOI: 10.7897/2277-4343.04120
7. Rahman, M., Khatun, A., Islam, M. M., Akter, M. N., Chowdhury, S. A., Khan, M. A. A., ... & Rahman, A. A. (2013). Evaluation of antimicrobial, cytotoxic, thrombolytic, diuretic properties and total phenolic content of Cinnamomum tamala. International Journal of Green Pharmacy (IJGP), 7(3).
8. 付成瑞, & 李宝生. (2013). 山奈酚的抗肿瘤作用. 国际肿瘤学杂志, 40(12), 892-895.
9. Zhu, H., Huang, M., Ren, D., He, J., Zhao, F., Yi, C., & Huang, Y. (2013). The Synergistic Effects of Low Dose Fluorouracil and TRAIL on TRAIL‐Resistant Human Gastric Adenocarcinoma AGS Cells. BioMed research international, 2013(1), 293874.
2014
10. Biswas, A. S., Siraj, M. A., Saifuzzaman, M., Rahman, M., Khatun, A., Hossain, A., ... & Yasmin, F. (2014). Bioactivity of Xanthium indicum koen.(Compositae) leaf. Pharmacologyonline, 1, 21-28.
11. Bracca, A. B., Heredia, D. A., Larghi, E. L., & Kaufman, T. S. (2014). Neocryptolepine (cryprotackieine), a unique bioactive natural product: Isolation, synthesis, and profile of its biological activity. European Journal of Organic Chemistry, 2014(36), 7979-8003.
12. Hossain, T., Uddin, S., Rahman, M., Kundu, S. K., Rafiquzzaman. (2014). In vitro antimicrobial and phytochemical screening of three reputed Bangladeshi medicinal plants. International Journal of Current Pharmaceutical Research, 6(3) 32-34.
2015
13. Dinda, B., Das, N., Dinda, S., Dinda, M., & SilSarma, I. (2015). The genus Sida L.–A traditional medicine: Its ethnopharmacological, phytochemical and pharmacological data for commercial exploitation in herbal drugs industry. Journal of Ethnopharmacology, 176, 135-176.
14. Galal, A., Raman, V., & A Khan, I. (2015). Sida cordifolia, a traditional herb in modern perspective–a review. Current Traditional Medicine, 1(1), 5-17.
15. L Larghi, E., BJ Bracca, A., A Arroyo Aguilar, A., A Heredia, D., L Pergomet, J., O Simonetti, S., & S Kaufman, T. (2015). Neocryptolepine: A promising indoloisoquinoline alkaloid with interesting biological activity. Evaluation of the drug and its most relevant analogs. Current Topics in Medicinal Chemistry, 15(17), 1683-1707.
2016
16. Ahmeda, F., & Ishibashi, M. (2016). Recent Progress in Study on the Biologically-Active Natural Products. Chem. Pharm. Bull. 64 (2), 119–127.
17. Ahmed, F., Toume, K., Ishikawa, N., Arai, M. A., Sadhu, S. K., & Ishibashi, M. (2016). Constituents from Entada scandens with TRAIL-resistance Overcoming Activity. Natural product communications, 11(7), 1934578X1601100731.
18. Benjumea, D. M., Gómez-Betancur, I. C., Vásquez, J., Alzate, F., García-Silva, A., & Fontenla, J. A. (2016). Neuropharmacological effects of the ethanolic extract of Sida acuta. Revista Brasileira de Farmacognosia, 26(2), 209-215.
19. Özek, G., Tabanca, N., Radwan, M. M., Shatar, S., Altantsetseg, A., Baatar, D., ... & Özek, T. (2016). Preparative capillary GC for characterization of five Dracocephalum essential oils from Mongolia, and their mosquito larvicidal activity. Natural product communications, 11(10), 1934578X1601101030.
20. Rahman, M., Khatun, A., Uddin, S., & A Shilpi, J. (2016). Comparative effect of lannea coromandelica (Houtt.) merr. leaves and stem barks on acetic acid induced pain model in mice and chromogenic reagents: Exploring the analgesic potential and phytochemical groups. Pharmacologyonline, 1, 146-152.
2017
21. Abat, J. K., Kumar, S., & Mohanty, A. (2017). Ethnomedicinal, phytochemical and ethnopharmacological aspects of four medicinal plants of Malvaceae used in Indian traditional medicines: A review. Medicines, 4(4), 75.
22. Chaves, O. S., Teles, Y. C. F., Monteiro, M. M. D. O., Mendes Junior, L. D. G., Agra, M. D. F., Braga, V. D. A., ... & Souza, M. D. F. V. D. (2017). Alkaloids and phenolic compounds from Sida rhombifolia L.(Malvaceae) and vasorelaxant activity of two indoquinoline alkaloids. Molecules, 22(1), 94.
23. Kaufman, T. S., Larghi, E. L., Bracca, A. B. J., Heredia, D. A., & Mendez, M. V. (2017). Efficient total synthesis of neocryptolepine and synthetic access to 6-methylquinindoline from a common intermediate.
24. Méndez, M. V., Heredia, D. A., Larghi, E. L., Bracca, A. B., & Kaufman, T. S. (2017). Efficient total synthesis of neocryptolepine and synthetic access to 6-methylquinindoline from a common intermediate. RSC advances, 7(45), 28298-28307. DOI: 10.1039/c7ra05349e
2018
25. Adeniyi, A., Asase, A., Ekpe, P. K., Asitoakor, B. K., Adu-Gyamfi, A., & Avekor, P. Y. (2018). Ethnobotanical study of medicinal plants from Ghana; confirmation of ethnobotanical uses, and review of biological and toxicological studies on medicinal plants used in Apra Hills Sacred Grove. Journal of herbal medicine, 14, 76-87.
26. Agyare, C., Spiegler, V., Asase, A., Scholz, M., Hempel, G., & Hensel, A. (2018). An ethnopharmacological survey of medicinal plants traditionally used for cancer treatment in the Ashanti region, Ghana. Journal of ethnopharmacology, 212, 137-152.
27. Ezhilarasan, B. (2018). Pharmacognostical, Phytochemical including Isolation of Cryptolepine and In Vitro Antioxidant, Alpha-Amylase Effect, Antimycobacterial and In Vivo Antihistaminic Activities of Sida acuta Burm.(Leaves) (Doctoral dissertation, College of Pharmacy, Madurai Medical College, Madurai).
2019
28. Mondal, A., Gandhi, A., Fimognari, C., Atanasov, A. G., & Bishayee, A. (2019). Alkaloids for cancer prevention and therapy: Current progress and future perspectives. European journal of pharmacology, 858, 172472.
29. Oliveira, M. D. S. (2019). Estudo fitoquímico de Pavonia glazioviana Gurke e Sida rhombifolia L.(Malvaceae), preparação de derivados de criptolepinona, avaliação antimicrobiana e antioxidante dos compostos obtidos. Phytochemical study of Pavonia glazioviana Gurke and Sida rhombifolia L. (Malvaceae), preparation of cryptolepinone derivatives, antimicrobial and antioxidant evaluation of the compounds obtained. Universidade Federal Da Paraíba. Thesis in foreign language.
30. Sydnes, M. O. (2019). Synthetic Strategies for the Synthesis of Indoloquinoline Natural Products. Targets in Heterocyclic Systems; Attanasi, OA, Merino, P., Spinelli, D., Eds, 201-219.
2020
31. Adekeye, A. O., Irawo, G. J., & Fafure, A. A. (2020). Ficus exasperata Vahl leaves extract attenuates motor deficit in vanadium-induced parkinsonism mice. Anatomy & cell biology, 53(2), 183-193.
32. Adewole, K. E. (2020). Nigerian antimalarial plants and their anticancer potential: A review. Journal of Integrative Medicine, 18(2), 92-113.
33. Ali, S., Wisal, A., Tahir, M. N., Ali, A., Hameed, S., & Ahmed, M. N. (2020). One-pot synthesis, crystal structure and antimicrobial activity of 6-benzyl-11-(p-tolyl)-6H-indolo [2, 3-b] quinoline. Journal of Molecular Structure, 1210, 128035.
34. Oyeyemi, I., T. (2020), The protective effect of the aqueous extract of Sida acuta BURM.F on lead nitrate-induced genotoxicity. Nova Biotechnologica et Chimica. 19(2), 192-199
35. Tenywa, M. G., Agaba, A., Ogwang, P. E., Tolo, C. U., Ajayi, C. O., & Katuura, E. (2020). Medicinal plants used in gynecological procedures in Uganda.
2021
36. Islam, T., Pieroni, A., Uddin, SB., Faruque MO. (2021). Medical ethnobotany of the Marma community of Rangamati district of Bangladesh. Nordic Journal of Botany, 39(12). https://doi.org/10.1111/njb.03247.
37. Marques, A. E. F., Monteiro, T. M., dos Santos, C. R. B., Piuzevan, M. R., de Souza, M. D. F. V., Mororó, G. T., ... & da Costa, D. A. (2021). Flavonoides isolados de Sida santaremnensis H. Monteiro (“Guanxuma”) e avaliação das atividades biológicas [Flavonoids isolated from Sida santaremnensis H. Monteiro (“Guanxuma”) and evaluation of biological activities]. Ciência e Natura, Santa Maria, 43, e58-e58.
38. Shnyder, S. D., & Wright, C. W. (2021). Recent advances in the chemistry and pharmacology of Cryptolepine. Progress in the Chemistry of Organic Natural Products 115, 177-203.
2022
39. Ahmadi, M., Ebrahimzadeh, M. A., Rafiei, A., Kardan, M., & Ebrahimi, M. A. (2022). Sida rhombifolia exerts anti-proliferative and pro-apoptotic effects in human liver cancer HepG2 cells in Vitro. Asian Pacific Journal of Cancer Prevention: APJCP, 23(11), 3677.
40. Begum, S., Jena, S., & Chand, P. K. (2022). Silver Nanocrystals Bio-Fabricated Using Rhizobium rhizogenes-Transformed In Vitro Root Extracts Demonstrate Health Proactive Properties. BioNanoScience, 12(4), 1172-1196.
41. Fabiyi, O. A. (2022). Evaluation of weeds against root-knot nematode (Meloidogyne incognita) in vegetables. Sarhad Journal of Agriculture, 38(4), 1289-1299.
42. da Rosa, H. S., Santos, M. C., Costa, M. T., Salgueiro, A., da Silva, M. D., Nogueira-Librelotto, D. R., ... & Mendez, A. S. (2022). Sida tuberculata: In vitro cytotoxicity and in vivo anti-inflammatory effect. Journal of Ethnopharmacology, 287, 114956.
43. Srinivasan, N., & Murali, R. (2022). An overview of the traditional importance, phytochemistry, and pharmacological properties of Sida acuta Burm. f. Annals of Phytomedicine, 11(2), 245-54.
2023
44. Ansong, S., Nkrumah, D., Nketia, R. I., Bekoe, S. O., Brobbey, A. A., Asante-Kwatia, E., & Komlaga, G. (2023). Antimalarial Properties of Sida cordifolia L. Leaf Extract in Mice: Survivability Depends Less on Parasitaemia Suppression. Evidence‐Based Complementary and Alternative Medicine, 2023(1), 5560711.
45. Bhat, N. A., Jeri, L., Karmakar, D., Mipun, P., Bharali, P., Sheikh, N., ... & Kumar, Y. (2023). Ethnoveterinary practises of medicinal plants used for the treatment of different cattle diseases: A case study in East Khasi Hill district of Meghalaya, North East India. Heliyon, 9(7).
46. Gu, C., Tang, L., Hao, Y., Dong, S., Shen, J., Xie, F., ... & Yu, L. (2023). Network pharmacology and bioinformatics were used to construct a prognostic model and immunoassay of core target genes in the combination of quercetin and kaempferol in the treatment of colorectal cancer. Journal of Cancer, 14(11), 1956.
47. Sari, E. R., Suharti, N., Ismed, F., & Putra, D. P. (2023). Metabolite profiling, in vitro antioxidant and xanthine oxidase inhibitory properties of six Sumatran sidaguri (Sida L.). Journal of Pharmacy & Pharmacognosy Research, 11(3), 401-413. DOI: https://doi.org/10.56499/jppres22.1551_11.3.401
2024
48. Chen, L., Yang, T., Wu, J., Cheng, G., Zhao, M., Zhou, Y., ... & Wang, J. (2024). Multi-omics strategy reveals that Cordyceps Sinensis ameliorates sepsis-associated acute kidney injury via reprogramming of mitochondrial energy metabolism and macrophage polarization. Acta Materia Medica, 3(3), 269-288.
49. Ma, Y., Zhou, Z., Tu, L., Lu, J. J., Du, L., Yue, Y., ... & Chen, P. (2024). Research advances in anti-cancer activities and mechanism of action of neocryptolepine and its derivatives. Acta Materia Medica, 3(4), 436-461. DOI: 10.15212/AMM-2024-0054
50. Sameh, S., Elissawy, A. M., Al-Sayed, E., Labib, R. M., Chang, H. W., Yu, S. Y., ... & Singab, A. N. B. (2024). Family Malvaceae: a potential source of secondary metabolites with chemopreventive and anticancer activities supported with in silico pharmacokinetic and pharmacodynamic profiles. Frontiers in Pharmacology, 15, 1465055.
2025
51. Bello, L., Shodehinde, S.A., Arowolo, K.G., Arowolo, B.D., Adegnenga, A.G., Ayodeji, R.D., Jayeola, H.A., Awojulu, O.V., Awelewa, O.V., Ojo, E.F., Olukoju, O.A., Olubode, S.O., Sabitu, A.S. (2025). Phytochemical Analysis and Antioxidant Activity of Ficus exasperata. Asian Science Bulletin, 3(1), 102-110. https://doi.org/10.3923/asb.2025.102.110
52. Pandey, V., Parihar, S., Saxena, H.O., Yadav, A.K., Pawar, G. (2025). Sida species: A review of the active constituents, toxicology and pharmacological properties. Journal of Non-Timber Forest Products, 32(1), 17-31. https://doi.org/10.54207/bsmps2000-2025-W0AIJ3
53. Xie, H., Jiang, W. Q., Ding, Y., Li, A. P., Pang, Z., Liang, J., ... & Liu, T. (2025). Cryptolepine Derivatives Are Insecticide Leads by Targeting Insect Chitinolytic Enzymes and Bilin-Binding Protein. Journal of Agricultural and Food Chemistry.
Cited by above FIFTY THREE articles. Updated 9 January 2026. Google Scholar page for this article is here.