Submitted:
29 April 2025
Posted:
30 April 2025
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Abstract
Keywords:
1. Introduction


2. Materials and Methods
2.1. Biological activity
2.1.1. Cell lines
2.1.2. Lymphocytes from normal donors.
2.1.3. Cytotoxic MTS assay
2.2. Spheroid formation
2.2.1. Spheroid viability assay
Chemistry

3.1.1. Isolation of caracasine acid (1)
3.1.2. Synthesis of derivatives
3.1.3. Plant material
3.1.4. Reagents and equipment
4. Synthesis and characterization
4.1.1. Caracasine acid (1)
4.1.2. Caracasine (2)
4.1.3. Caracasine acid cyclohexyl ester (3)
4.1.4. Caracasine acid eugenol ester (4)
4.1.5. Ent-3,4-seco-15-oxo-kaur-4(19)-en-3-oic acid (5)
4.1.6. Acetic-ent-3,4-seco-15-oxo-kaur-4(19)-en-anhydride (6)
4.1.7. Acetic/caracasine anhydride (7)
3. Results
| HUMAN FIBROBLASTS | ||||
|---|---|---|---|---|
| CODE | BJ | BJ LD | MRC-5 | MRC-5 LD |
| 7 | 7.68 | 7.63 | 6.45 | 5.53 |
| 3 | 7.38 | 6.5 | 5.45 | 2.69 |
| 4 | >50 | >50 | >50 | >50 |
| 5 | >50 | >50 | >50 | >50 |
| 6 | >50 | >50 | >50 | >50 |
| Caracasine acid (1) | 6.88 | 7.04 | 6.48 | 6.69 |
| Caracasine (2) | 7.28 | 7.42 | 6.84 | 6.36 |
| HUMAN LEUKEMIA CELL LINES | ||||
|---|---|---|---|---|
| CODE | CCRF-CEM | K562 | RAJI | RAMOS |
| 7 | 0.45 | 4.6 | 2.21 | 0.96 |
| 3 | 0.38 | 2.21 | 1.86 | 0.78 |
| 4 | >50 | >50 | >50 | >50 |
| 5 | >50 | >50 | >50 | >50 |
| 6 | >50 | >50 | >50 | >50 |
| Caracasine acid (1) | 0.38 | 4.77 | 0.85 | 0.62 |
| Caracasine (2) | 0.86 | 3.29 | 1.45 | 0.96 |
| HUMAN TUMORS 2D | ||||
|---|---|---|---|---|
| CODE | HCT116 par | HCT116KO53 | A549 | U2OS |
| 7 | 2.12 | 1.91 | 3.72 | 2.21 |
| 3 | 1.59 | 1.63 | 2.69 | 1.66 |
| 4 | >50 | >50 | >50 | >50 |
| 5 | >50 | >50 | >50 | >50 |
| 6 | >50 | >50 | >50 | >50 |
| Caracasine acid (1) | 1.73 | 1.52 | 5.98 | 1.79 |
| Caracasine (2) | 2.02 | 1.91 | 8.39 | 3.19 |
| HUMAN TUMORS SPHEROIDS | ||||
| CODE | HCT116 par | HCT116KO53 | A549 | U2OS |
| 7 | >50 | >50 | >50 | >50 |
| 3 | >50 | >50 | >50 | >50 |
| 4 | >50 | >50 | >50 | >50 |
| 5 | >50 | >50 | >50 | >50 |
| 6 | >50 | >50 | >50 | >50 |
| Caracasine acid (1) | >50 | >50 | >50 | >50 |
| Caracasine (2) | >50 | >50 | >50 | >50 |
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
- Coy-Barrera, C.A.; Galvis, L.; Rueda, M.J.; Torres-Cortés, S.A. The Croton genus (Euphorbiaceae) and its richness in chemical constituents with a potential range of applications. Phytomedicine Plus, 2025, 5(1), 100746. [CrossRef]
- Guerrero-Solano, J.A.; Urrutia-Hernández, T.A.; Flores-Bazán, T.; Casco-Gallardo, K.I.; Coutiño-Laguna, B.d.C.; Vega-Cabrera, N.V.; Jaramillo-Morales, O.A. Antinociceptive potential of Croton genus: A systematic review. Future Pharmacol. 2024, 4, 853-872. [CrossRef]
- Obende, S.O.; Ochieng, C.O.; Shikanga, E.A.; Cruz, J.N.; Santos, C.B.R.; Kimani, N.M. Croton’s therapeutic promise: A review of its phytochemistry and critical computacional ADME/Tox analysis. S. Afr. J. Bot., 2024, 171, 648-672. [CrossRef]
- Espinoza-Hernández, F.A.; Moreno-Vargas, A.D.; Andrade-Cetto, A. Diabetes-Related Mechanisms of Action Involved in the Therapeutic Effect of Croton Species: A Systematic Review. Plants 2023, 12(10), 2014. [CrossRef]
- Terefe, E.M.; Okalebo, F.A.; Derese, S.; Langat, M.K.; Mas-Claret,E.; Qureshi, K.A.; Jaremko, M.; Muriuki, J. Anti-HIV Ermiasolides from Croton megalocarpus. Molecules, 2022, 27(20), 7040. [CrossRef]
- Terefe, E.M.; Okalebo, F.A.; Derese, S.; Muruki, J.; Batiha, G.E-S. In Vitro Cytotoxicity and Anti-HIV Activity of Crude Extracts of Croton macrostachyus, Croton megalocarpus and Croton dichogamus. J. Exp. Pharmacology. 2021, 13, 971–979. [CrossRef]
- Nath, R.; Roy, S.; De, B.; Choudhury, D. Anticancer and antioxidant activity of Croton: A review. Int. J. Pharm. Pharm. Sci. 2013, 5, 63–70.
- Salatino, A.; Salatino, M.L.F.; Negri, G. Traditional uses, chemistry and pharmacology of Croton species (Euphorbiaceae). J. Braz. Chem. Soc. 2007, 18(1), 11–33. [CrossRef]
- Wu, X.A.; Zhao, Y.M. Advance on chemical composition and pharmacological action of Croton L. Nat. Prod. Res. Dev. 2004, 16(5), 467–472.
- Xu, W.H.; Liu, W.Y.; Liang, Q. Chemical constituents from Croton species and their biological activities. Molecules 2018, 23(9), 2333. [CrossRef]
- Sun, H-D.; Huang, S-H.; Han, Q-B. Diterpenoids from Isodon species and their biological activities. Nat. Prod. Rep., 2006, 23, 673–698.
- García, P.B.; de Oliveira, A.B.; Batista, R. Occurrence, Biological Activities and Synthesis of Kaurane Diterpenes and their Glycosides. Molecules, 2007, 12(3), 455-483. [CrossRef]
- Ghisalberti, E.L. The biological activity of natural occurring kaurane diterpenes. Fitoterapia 1997, 68, 303–325.
- Kibet, S.; Kimani, N.M.; Mwanza, S.S.; Mudalungu, C.M.; Santos, C.B.R.; Tanga, C.M. Unveiling the Potential of Ent-Kaurane Diterpenoids: Multifaceted Natural Products for Drug Discovery. Pharmaceuticals 2024, 17(4), 510. [CrossRef]
- Trang, N.T.K. The Review on Biological Activities of Ent-Kaurane Diterpenoids extracted from Croton tonkinensis. Thai Binh J. Med. Pharm, 2024, 14, (5), 23-28. [CrossRef]
- Wang, L., Li, D., Wang, C., Zhang, Y., and Xu, J. Recent progress in the development of natural ent-kaurane diterpenoids with anti-tumor activity. Mini Rev. Med. Chem. 2011, 11(10), 910–919. [CrossRef]
- Ibrahim TS, Khongorzul P, Muyaba M and Alolga RN. Ent-kaurane diterpenoids from the Annonaceae family: a review of research progress and call for further research. Front. Pharmacol. 2023, 14:1227574. [CrossRef]
- Luo Y., Wang Z., Li Y., Zhang L. Longikaurin A, a natural ent-kaurane, suppresses proliferation, invasion and tumorigenicity in oral squamous cell carcinoma cell by via inhibiting PI3K/Akt pathway in vitro and in vivo. J. Cancer 2025, 16(3), 708-719. [CrossRef]
- Li, D.; Han, T.; Liao, J.; Hu, X.; Xu, S.; Tian, K.; Gu, X.; Cheng, K.; Li, Z.; Hua, H.; et al. Oridonin, a promising ent-kaurane diterpenoid lead compound. Int. J. Mol. Sci. 2016, 17(9), 1395.
- Tsichritzis, F and Jakupovic J. Diterpenes and other Constituents from Relhania species. Phytochemistry, 1990, 29(10), 3173-3187. [CrossRef]
- Li, H., Jiao, R.; Mu, M.; Xu, S.; Li, X.; Wang, X.; Li, Z.,Xu, J.; Hua, H.; Li, D. Bioactive Natural Spirolactone-Type 6,7-seco-ent-Kaurane Diterpenoids and Synthetic Derivatives. Molecules 2018, 23(11), 2914;. [CrossRef]
- Fan, R-Z., Chen, L.; Su, T.; Li, W.; Huang, J-L.; Sang, J.; Tang, G-H.; Yin, S. Discovery of 8,9-seco-ent-Kaurane Diterpenoids as Potential Leads for the Treatment of Triple-Negative Breast Cancer. J. Med. Chem. 2021, 64(14), 14, 9926–9942. https://pubs.acs.org/doi/10.1021/acs.jmedchem.1c00166.
- Sun, H-D.; Huang, S-H.; Han, Q-B. Diterpenoids from Isodon species and their biological activities. Nat. Prod. Rep., 2006, 23, 673–698.
- Ding, G., Fei, J.; Wang, J.; Xi, Y.; Li, R.; Gong, N.; L, Y.; Yu, C.; Zou, Z. Fimbriatols A–J, Highly Oxidized ent-Kaurane Diterpenoids from Traditional Chinese Plant Flickingeria fimbriata (B1.) Hawkes. Sci. Rep. 2016, 6, 30560. [CrossRef]
- Mora, S.; Castro, V.; Poveda, L.; Chavarr, M.; Murillo, R. Two New 3,4-Seco-ent-kaurenes and Other Constituents from the Costa Rican Endemic Species Croton megistocarpus. Helv. Chim. Acta, 2011, 94, 1888-1892. [CrossRef]
- Suárez, A.I.; Chavez, K.; Delle Monache, F.; Vasquez, L.; Orsini, G.; Compagnone, R.S. New 3,4-seco-entkaurenes from Croton caracasana Flowers. Nat. Prod. Comm. 2008, 3, 319-322. [CrossRef]
- Fu, Y-Y.; Kun Hu, K.; Hou, S-Y, B-C., Li, X-N., X-Z., Sun. H-D., Puno, P-T. 8,14-seco-ent-Kaurane Diterpenoids from Isodon glutinosus: Enol-Enol Tautomerism and Antitumor Activity. Org. Chem. Front. 2025. [CrossRef]
- Mateu, E.; Chávez, LK.; R Riina, R.; Compagnone, R.S.; Delle Monache, F.; Suárez, A.I. New 3,4-Seco-ent-kaurene Dimers from Croton micans. Nat. Prod. Comm. 2012, 7(1), 5-8. [CrossRef]
- Suárez A.I.; Chávez, K.; Mateu, E.; Compagnone, R.S.; Muñoz, A.; Sojo, F.; Arvelo, F.; Mijares, M.; De Sanctis, J.B. Cytotoxic activity of seco-ent-kaurenes from Croton caracasana on human cancer cell lines, Nat. Prod. Comm. 2009, 4, 1547-1550. ISSN 1555-9475 (online).
- Martínez GP, Mijares MR, Chávez K, Suárez A.I., Compagnone R.S., Chirinos P., De Sanctis J.B. Caracasine acid, an ent-3,4-seco-kaurene, promotes apoptosis and cell differentiation through NFkB signal pathway inhibition in leukemia cells. Eur J Pharmacol. 2019, 172624. [CrossRef]
- Martínez GP, Mijares MR, Chávez K, a Chirinos P, Suárez A.I, De Sanctis JB. Caracasine, an ent-kaurane diterpene with proapoptotic and pro-differentiator activity in human leukemia cell lines. Anticancer Agents Med. Chem. 2023; 23(10):1145-1155. DOI: 10.2174/1871520622666220415105615.
- Chávez K., Compagnone R.S., Alvarez A, Figarella K., Galindo-Castro I., Marsicobrete S., Trivino J., Arocha I., Taddei A., Orsini G, Tillett S., and Suárez A. I. Synthesis and biological evaluation of caracasine acid derivatives. Biorg. Med. Chem. 2015, 23, 3687-3695. [CrossRef]
- Gutiérrez, J.E.; Fernandez-Moreira, E.; Rodríguez, M.A.; Mijares, M.R.; De Sanctis, J.B.; Gurská, S.; et al. Novel 7-Chloro-(4-thioalkylquinoline) Derivatives: Synthesis and Antiproliferative Activity through Inducing Apoptosis and DNA/RNA Damage. Pharmaceuticals (Basel). 2022 Oct 8;15(10):1234. [CrossRef]
- Das, V., Fürst, T., Gurská, S., Džubák, P., & Hajdúch, M. Evaporation-reducing Culture Condition Increases the Reproducibility of Multicellular Spheroid Formation in Microtiter Plates. J. Vis. Exp. 2017, 7(121), 55403. [CrossRef]
- Muñoz-Garcia, J., Jubelin, C., Loussouarn, A., Goumard, M., Griscom, L., Renodon-Cornière, A., Heymann, M. F., & Heymann, D. In vitro three-dimensional cell cultures for bone sarcomas. J. Bone Oncol. 2021, 30, 100379. [CrossRef]
- Jian, Z-P.; Zou, B-H.; Li, X-J.; Liu, J-J.; Shen, L.; Wu, J. Ent-kauranes from the Chinese Excoecaria agallocha L. and NF-κB inhibitory activity. Fitoterapia 2019, 133, 159-170. [CrossRef]
- Htwe SS, Harrington H, Knox A, Rose F, Aylott J, Haycock JW, Ghaemmaghami AM. Investigating NF-κB signaling in lung fibroblasts in 2D and 3D culture systems. Respir Res. 2015 Dec 1;16:144. [CrossRef]
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