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122.
Timofey V. Malyarenko Alla A. Kicha Natalia V. Ivanchina Anatoly I. Kalinovsky Pavel S. Dmitrenok Svetlana P. Ermakova Valentin A. Stonik 《Steroids》2011,76(12):1280-1287
Six new steroidal biglycosides, cariniferosides A–F (1–6), were isolated along with six previously known glycosides, 7–12, from the alcoholic extract of the starfish Asteropsis carinifera. The structures of 1–6 were determined by extensive NMR and ESIMS techniques. The isolated compounds did not show any apparent cytotoxicity in cancer cell lines HCT-116, RPMI-7951, and T-47D, but sulfated compounds 6, 11, and 12 demonstrated a significant inhibition of RPMI-7951 and T-47D cell colony formation in a soft agar clonogenic assay. 相似文献
123.
Herman Ehrlich Yury N. Elkin Alexandr A. Artoukov Valentin A. Stonik Peter P. Safronov Vasily V. Bazhenov Denis V. Kurek Valery P. Varlamov Ren�� Born Heike Meissner Gert Richter 《Marine biotechnology (New York, N.Y.)》2011,13(3):402-410
Unique skeletal formations of marine invertebrates, including representatives of Echinodermata, have the unique potential to serve as templates for bio-inspired materials chemistry, biomimetics, and materials science. The sand dollar Scaphechinus mirabilis (Agassiz, 1983) is widely distributed in the northwest of the Pacific Ocean from southern Japan to the Aleutian Islands. This animal is the main source of naphtochinone-based substances. These compounds have recently drawn medical attention for their use as cardiological and ophthalmological drugs. Unfortunately, after extraction of the naphtochinones, the residual skeletons and spines of the sand dollars were usually discarded. Here, we report the first method for the preparation of nanostructurally organized spines of S. mirabilis, using a simple enzymatic and hydrogen peroxide-based treatment. Application of this method opens the way for development of non-wasteful environmentally clean technology of sand dollars as well-known industrial marine invertebrates. 相似文献