Bioorganičeskaâ himiâ
The Journal was founded in 1975 by Prof. Yurii A. Ovchinnikov. The Editorial Board uses the term "bioorganic chemistry" to cover a wide range of problems related to the investigation of the structure and function of biomolecules using the methods of organic, biochemical and physical chemistry.
The journal is intended for scientists, for those in the health professions, educators, and students in universities and researchers in industrial, medical, agricultural, and environmental control laboratories.
Russian Journal of Bioorganic Chemistry (Bioorganicheskaya Khimiya) welcomes papers on all aspects of bioorganic chemistry, biochemistry, cell and molecular biology, genomics, proteomics, bioinformatics, immunology, molecular virology, molecular evolution and developmental biology.
The Journal publishes reviews, minireviews, research articles and theoretical investigations, hypothesis and short communications.
The Journal is published in Russian (under the name Bioorganicheskaya Khimiya in the Russian Federation) and in English (under the name Russian Journal
of Bioorganic Chemistry) six times a year by Russian Academy of Sciences (IKC "Akademkniga") in Moscow (Russia) and Pleiades Publishing Inc. in the United States. The English edition is distributed worldwide by Springer.
Articles are published in Russian and English. Publication of articles in the Russian Journal of Bioorganic Chemistry (Bioorganicheskaya Khimiya) – free.
Media registration certificate: № 0110214 от 08.02.1993
Ағымдағы шығарылым
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			Том 51, № 4 (2025)
Articles
BCR-ABL Inhibitors in Targeted Therapy of Chronic Myeloid Leukemia
Аннотация
 547-563
				
					547-563
				
						 
			
				 
				
			
		Reactivity of (–)-Shikimic Acid as the Basis of Its Biological Role and a Template for the Development of Antiviral Agents: A Case Study of Oseltamivir Phosphate
Аннотация
 564-580
				
					564-580
				
						 
			
				 
				
			
		Application of 3D Visualization in Biomedical Research
Аннотация
 581-598
				
					581-598
				
						 
			
				 
				
			
		Integration of Software for 3D Tissue Reconstruction Based on Optical Probe Nanotomography Data
Аннотация
 599-606
				
					599-606
				
						 
			
				 
				
			
		Synthesis of Reactive Pegylated Indocyanine Dyes
Аннотация
 607-611
				
					607-611
				
						 
			
				 
				
			
		Solid-Phase PCR on Film Biochips with Brush Polymer Cells, "Lab-on-a-Chip"
Аннотация
 612-626
				
					612-626
				
						 
			
				 
				
			
		C-Terminal Domain of Bacillus cereus Hemolysin II is Capable of Forming Homo- and Hetero-Oligomeric Forms of Toxin on the Membrane Surface
Аннотация
 627-635
				
					627-635
				
						 
			
				 
				
			
		Synthesis of Tetraesters of Indolyl-3-acetic Acid with 24-Epibrassinosteroids and Their Influence on the Initial Growth of Wheat Plants
Аннотация
 636-643
				
					636-643
				
						 
			
				 
				
			
		Pharmacokinetic Features of Ecdystene and Ursolic Acid in Plant Extracts After Oral Administration In Vivo
Аннотация
 644-653
				
					644-653
				
						 
			
				 
				
			
		Molecular Species of Membrane Lipids of the Sea Anemone Exaiptasia diaphana and Its Symbionts
Аннотация
 654-666
				
					654-666
				
						 
			
				 
				
			
		Synthesis and Anti-Leukemia Activity N-[1-(1-Adamantile)ethyl]-3-hydroxylup-20(29)-en-28-amide
Аннотация
 667-677
				
					667-677
				
						 
			
				 
				
			
		Comparison of Alternative Piperidine Deblocking Agents in Solid-Phase Synthesis of Ingramon and Methylin
Аннотация
 678-687
				
					678-687
				
						 
			
				 
				
			
		Chimeric Amides of Substituted Allyl- and Phenylcarboxylic Acids with Pharmacophore Fragments of Aromatic and Heteroaromatic Rings – Potential Multitarget Protein Kinase Inhibitors: Design, Synthesis, Determination of Antitumor Activity, and In Silico Analysis
Аннотация
 688-705
				
					688-705
				
						 
			
				 
				
			
		Enzymatic Synthesis and Molecular Docking Studies of Substituted 5-Phenyl-1,2,4-triazole-3-thione Deoxyribosides
Аннотация
 706-714
				
					706-714
				
						 
			
				 
				
			
		A Phenol-Free Method for the Robust Isolation of the Double-Stranded RNA Produced in the E. coli HT115 Strain
Аннотация
 715-723
				
					715-723
				
						 
			
				 
				
			
		 
						 
					 
						 
						 
						

 
				
