Study of the effect of 1-({4-[(2,4-dichlorobenzoyl)amino]phenyl}sulfonyl-(2S,4R)-4-hydroxypyrrolidine-2-carboxylic acid (GGM-27) on tumor growth and survival in BALB/c mice bearing ACATOL colon adenocarcinoma in comparison with doxorubicin
https://doi.org/10.37489/2587-7836-2026-2-37-44
EDN: NWBWJB
Abstract
Introduction. Matrix metalloproteinases (MMPs) belong to the family of zinc-dependent endopeptidases capable of degrading the main components of extracellular matrix proteins that form the basis of connective tissue; they are also involved in many pathological processes in the body. MMP-2 is actively expressed in lung cancer tissues, while MMP-2 and MMP-9 play a significant role in the development of colorectal cancer.
Objective. To evaluate the effect of 1-({4-[(2,4-dichlorobenzoyl)amino]phenyl}sulfonyl-(2S,4R)-4-hydroxypyrrolidine-2 carboxylic acid (GGM-27) on tumor growth and survival in BALB/c mice using the AKATOL colon adenocarcinoma model.
Materials and methods. AKATOL colon adenocarcinoma was implanted subcutaneously into the axillary region of male BALB/c mice at a dose of 1×10⁶ cells. From day 2 to day 15 of tumor development, GGM-27 was administered intraperitoneally (i.p.) at doses of 1 mg/kg and 10 mg/kg. Doxorubicin was used as a reference drug, administered at a dose of 5 mg/kg i.p. on days 2 and 4 of tumor development. The antitumor activity of GGM-27 was assessed by tumor growth inhibition (TGI) and lifespan extension (LSE).
Results. After a 14-day course of i.p. administration of GGM-27 at a dose of 1 mg/kg, TGI was 72.8 % on day 21 of the experiment and 71 % on day 28. After i.p. administration of GGM-27 at a dose of 10 mg/kg, TGI was 63 % on day 21 and 56% on day 28. LSE after a course of GGM-27 at a dose of 10 mg/kg was 24 %. After two i.p. administrations of doxorubicin at a dose of 5 mg/kg, TGI was 82 % on day 21 and 69 % on day 28; however, two of the 12 animals died due to drug toxicity.
Conclusions. Administration of 1-({4-[(2,4-dichlorobenzoyl)amino]phenyl}sulfonyl-(2S,4R)-4-hydroxypyrrolidine-2-carboxylic acid at a dose of 1 mg/kg caused TGI. On day 21 of the experiment, with GGM-27 administration, TGI was 73 %, and on day 28, TGI was 71 %.
About the Authors
L. P. KovalenkoRussian Federation
Larisa P. Kovalenko – PhD, Dr. Sci. (Biology), Leading Research Scientist of Laboratory Drug Toxicology Department of Drug Toxicology
Moscow
R. V. Zhurikov
Russian Federation
Ruslan V. Zhurikov – Leading Engineer of the Department of Drug Toxicology
Moscow
O. S. Grigorkevich
Russian Federation
Oksana S. Grigorkevich – PhD, Cand. Sci. (Biology),
Research Scientist of the Laboratory of Peptide Bioregulators of the Medicinal Chemistry Department
Moscow
E. A. Ivanova
Russian Federation
Elena A. Ivanova – PhD, Cand. Sci. (Pharm.), Leading Research Scientist of Laboratory of Experimental Pain Pharmacology
Moscow
A. G. Vasilchuk
Russian Federation
Anastasia G. Vasilchuk – Research Scientist of Laboratory of Experimental Pain Pharmacology
Moscow
G. V. Mokrov
Russian Federation
Grigory V. Mokrov – PhD, Cand. Sci. (Chemical), Chief Researcher, Head of Medicinal Chemistry Department
Moscow
A. K. Zhanatayev
Russian Federation
Aliy K. Zhanataev – PhD, Cand. Sci. (Biology), Head of the Department of Drug Toxicology
Moscow
T. A. Gudasheva
Russian Federation
Tatiana A. Gudasheva – PhD, Dr. Sci. (Biology), Professor, RAS Corresponding Member, Chief Researcher, Head of the Laboratory of Peptide Bioregulators of the Medicinal Chemistry Department
Moscow
V. L. Dorofeev
Russian Federation
Vladimir L. Dorofeev – PhD, Dr. Sci. (Pharm), Professor, Acting General Director
Moscow
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Review
For citations:
Kovalenko L.P., Zhurikov R.V., Grigorkevich O.S., Ivanova E.A., Vasilchuk A.G., Mokrov G.V., Zhanatayev A.K., Gudasheva T.A., Dorofeev V.L. Study of the effect of 1-({4-[(2,4-dichlorobenzoyl)amino]phenyl}sulfonyl-(2S,4R)-4-hydroxypyrrolidine-2-carboxylic acid (GGM-27) on tumor growth and survival in BALB/c mice bearing ACATOL colon adenocarcinoma in comparison with doxorubicin. Pharmacokinetics and Pharmacodynamics. 2026;(2):37-44. (In Russ.) https://doi.org/10.37489/2587-7836-2026-2-37-44. EDN: NWBWJB
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