1. Park, J. I., Bae, H. R., Kim, C. G., Stonik, V. A., & Kwak, J. Y. (2014). Relationships between chemical structures and functions of triterpene glycosides isolated from sea cucumbers. Frontiers in Chemistry, 2, 77.
2. Inoue, Y., Shiraishi, A., Hada, T., Hirose, K., Hamashima, H., & Shimada, J. (2004). The antibacterial effects of terpene alcohols on Staphylococcus aureus and their mode of action. FEMS Microbiology Letters, 237(2), 325–331.
3. Dupont, C., Chen, Y., Xu, Z., Roquet-Banères, F., Blaise, M., Witt, A. K., Dubar, F., Biot, C., Guérardel, Y., Maurer, F. P., & Chng, S. S. (2019). A piperidinol-containing molecule is active against Mycobacterium tuberculosis by inhibiting the mycolic acid flippase activity of MmpL3. Journal of Biological Chemistry, 294(46), 17512–17523.
4. Ingólfsson, H. I., Thakur, P., Herold, K. F., Hobart, E. A., Ramsey, N. B., Periole, X., De Jong, D. H., Zwama, M., Yilmaz, D., Hall, K., & Maretzky, T. (2014). Phytochemicals perturb membranes and promiscuously alter protein function. ACS Chemical Biology, 9(8), 1788–1798.
5. Gauthier, C., Legault, J., Girard-Lalancette, K., Mshvildadze, V., & Pichette, A. (2009). Haemolytic activity, cytotoxicity and membrane cell permeabilization of semi-synthetic and natural lupaneand oleanane-type saponins. Bioorganic & Medicinal Chemistry, 17(5), 2002–2008.