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Biomedical subjects

L I Korochkin

Publications and source records attributed to L I Korochkin.

At least 19 recordsLinked to original sources

Cell-based therapy of chronic degenerative diseases of the central nervous system.

The traditional methods of pharmacotherapy of the degenerative diseases of the central nervous system do not frequently allow one to achieve the desired clinical effect. The fundamentally new approach for the treatment of severe neurological diseases is provided by the methods of biological medicine, in particular, transplantation of a complex of fetal tissues. Cell-based therapy was used to treat patients with multiple sclerosis; ante-, intra- and postnatal lesions; consequences of hemorrhagic and ischemic apoplexies; neuritis of facial nerve; sclerosis; Parkinson's disease; Alzheimer's disease; epilepsy and other types of pathologic process. The source material for obtaining a suspension of cells was the fetuses of allogenic origin. The suspension of brain cells in amounts of up to 1.5 x 10(8) cells and vitality not less than 40% was administered to the patients into liquor spaces using the method of endolumbar puncture. The total number of transplantations was 1900. Practically in all the cases FT was tolerated well. Positive clinical and immunologic changes were observed in the majority of the patients, thus, remission induction (in the patients with the progressive course of multiple sclerosis) for a period over 12 months was registered in 87.5% of the cases. Noteworthy that considerable changes were observed in immunograms: depression of antibody levels to brain-specific proteins, native and denatured DNA; quantitative and qualitative improvement of lymphocyte subpopulation indices, positive changes in the immunoregulatory index. Clinically, in 69% of the cases there was an improvement in more than one neurological defect and a change in the values of the Kurtzke scale towards a decrease by 2-3 points. The conduct of cell therapy with the MS patients under the acute process conditions after liquorosorption allowed the arresting of clinical manifestations and the creation of preconditions for further restoration. The retrobulbar transplantations provided a quick arrest of the retrobulbar neuritis clinical symptoms and in one case an almost complete restoration of vision in the patient with amaurosis (blindness). The remission duration has a marked direct dependence on the number of courses of endolumbar transplantations. Thus, the method of cell therapy with the use of human tissue transplantations is safe and can be used for different neurodegenerative lesions of the central nervous system. The high efficacy of the method suggests the possibility and necessity of using this method as an alternative of classical pharmacological therapy. An important element of cell therapy is the control after the state of the patient's immunity system.

Cell Transplantation↗

[Was August Weismann right?].

A new hypothesis of the genetic regulation of cell differentiation is put forward. The hypothesis is based on the assumption that the diminution and hyper-replication patterns of repetitive nucleotide sequences depend on the differentiation pathways of cells and tissues.

Animals↗

[Variation of mini- and microsatellite DNA repeats in parthenogenetic lizard Darevskia armeniaca as revealed by DNA fingerprinting analysis].

Population and family samples of two morphological forms (mutant and normal with respect to dorsal color) of pathogenetic lizard Darevskia armeniaca were examined by means of DNA fingerprinting using M13 mini- and (GATA)n and (TCC)n microsatellite DNA markers. The morphological forms examined were characterized by clonally inherited, species-specific patterns of the DNA markers, which were different from the species-specific DNA fingerprints of the other parthenogenetic species of the genus Darevskia (D. dahli. D. unisexualis, and D. rostombekovi). The mean index of similarity (S) obtained for a sample of 36 individuals from three isolated populations using three types of DNA markers was 0.966. This was similar to the variability level observed in D. dahli (0.962) (P > 0.05), but higher than that in D. unisexualis (0.950) (P < 0.05) and D. rostombekovi (0.875) (P < 0.01). Inheritance of M13 minisatellite and (TCC)n microsatellite DNA markers in the F1 offspring of parthenogenetic lizards was examined. It was shown that variability and clonal diversity of the fingerprint phenotypes observed in the populations and families of D. armeniaca could be at least partly explained by RFLP mutations in microsatellite repeats.

Animals↗

[Assessment of population differentiation using DNA fingerprinting and modified Wright's Fst-statistics].

Using our results and literature data on multilocus DNA fingerprinting, we propose a method of obtaining unbiased estimates of the between--population genetic similarity index and a measure of population subdivision based on modified Wright's FST-statistics. On the basis of multiple comparison T2 Hotelling's test and Holmes' procedure, the FST-statistics was applied to assess differentiation of four (Pacific and Atlantic) subpopulations of humpback whale Megaptera novaeangliae, six populations of California island gray fox Urocyon littoralis, and geographically isolated Ob' and Yakutia populations of Siberian white crane Crus leucogeranus. It was shown that the regional humpback whale subpopulations do not constitute a single panmictic unit (P < 10(-4)). The subdivision index of the Pacific and Atlantic populations expressed in terms of FST-statistics varied from 0.101 to 0.157. The differentiation estimates for the island fox populations, which ranged from 0.2109 to 0.4027, indicate that subdivision of these populations is a function of the distance between the islands, island size, and population size. In particular, the smallest and the greatest differences were found respectively between the populations of the geographically closest northern islands (FST = 0.2157, FST = 0.2109) and between those of the most distant northern and southern islands (FST = 0.4027, FST = 0.3869). Subdivision of the island populations with minimum areas and low population number was intermediate (FST = 0.3789). Mean values of heterozygosity, within-population genetic similarity index, and the number of coinciding fragments for two random individuals of Siberian white crane from the Ob' and Yakutia population were not statistically significantly different (P > or = 0.852, (P > or = 0.491, (P > or = 0.325). However, pairwise comparisons of mean FST values indicated that the differentiation estimates for samples from these populations fall within the limits of population subdivision (P = 0.01). The subdivision estimate (0.108-0.133) of various groups of Siberian white cranes is comparable to interregional subdivision of humpback whale. Based on the results of this study, we recommend the approach based on modified Wright's FST-statistics for studying genetic population structure aimed at detecting population subdivision.

Animals↗

[Development of human brain neural/progenitor cells after transplantation into the brain of adult rats].

The purpose of the present study was the investigation of human neural stem/progenitor cells (SPC) cultured in vitro, with special reference to their capacity for grafting, migration and differentiation after transplantation into adult rat brain. SPC were isolated from the brain of 9-week-old human embryos and were cultured in a selective medium for 3 weeks. For transplantation, cell suspension or whole neurospheres were used; they were studied 4 weeks following the transplantation in hippocampus, striatum and lateral ventricle of adult rat brain. For the analysis of transplanted SPC, various histological and immunohistochemical staining methods were applied (bisbenzidine, BrdU, antibodies against human nuclei, vimentin, beta-tubulin, neurofilaments, GFAP), that allowed an independent evaluation of their state and differentiation. Transplanted human brain SPC were shown to survive well for one month in all the areas of adult rat brain without immunosuppression. Cells from suspension transplants actively migrated and differentiated into neurons and glial cells. Meanwhile, cell migration from the transplanted whole neurospheres was limited or absent due to the formation of glial barrier.

Animals↗

Behavior of human neural progenitor cells transplanted to rat brain.

Human neural stem/progenitor cells provide a useful tool for studies of neural development and differentiation, as well as a potential means for neuroreplacement therapeutic needs in the human CNS. Stem cells isolated from developing human central nervous system of 8-12-week fetuses were transplanted to the forebrain and cerebellum of young and adult rats after 14 days of in vitro expansion. Cells were labeled by bisbenzimide prior to transplantation without immunosuppression. Recipient brains were examined 10 and 20 days after transplantation. Labeled stem cells were found in the neocortex, lateral ventricle and caudate nucleus in the forebrain, and in the molecular layer, Purkinje cell layer, and granular layer of the cerebellum. Mitotically dividing stem cells were observed in graft core, confirming their proliferative potential in new microenvironment. Engrafted cells migrate through the parenchyme of striatum, along the ventricular ependymal layer and callosal fibers, some of them reaching the opposite hemisphere. Some cells migrating along the capillaries express glial acid fibrillary protein, demonstrating their differentiation into astrocytes. Grafted cells expressing calbindin were found in the Purkinje cell layer, suggesting their differentiation into the Purkinje cells. At the same time, some grafted cells were undifferentiated and expressed vimentin. Our results demonstrate that cultured human neural stem/progenitor cells migrate and differentiate into both neurons and astrocytes after transplantation to the rat forebrain or cerebellum of young and adult rats.

Animals↗

Evaluation of progenitor cell cultures from human embryos for neurotransplantation.

Human neural stem cells (HNSCs) are used in studies of neural development and differentiation, and are regarded as an alternative source of tissue for neural transplantation in degenerative diseases. Selection and standardization of HNSC samples is an important task in research and clinical approaches. We evaluated embryonal brain matter obtained from human 8-12-week-old fetuses by means of flow cytometry on a panel including: nestin; vimentin; NeuN; GFAP; beta-tubulin III; CD56; N-Cad; OB-Cad; HLA-ABC; HLA-DR; CD34, and annexin. Samples from embryos of even the same gestation differ dramatically regarding neural cell development, their phenotype and viability. The samples containing the highest proportion of stem cells and multipotent progenitors of neural types, and the least of definitive cells and antigens of histocompatibility, were selected for further expansion in serum-free medium. Secondary phenotyping 14 days later revealed again a marked heterogeneity of the cultures. For the final culturing for 24 h in a serum-containing medium we selected only samples having following phenotype: nestin+, and vimentin+ no less than 25%; HLA-DR+ and CD34+ no more than 5%; GFAP+ no more than 10%; beta-tubulin+ no more than 20%; CD56+, N-Cad+, OB-Cad+, HLA-A,B,C+, and annexin+ no more than 15%; cell viability no less than 60%. Immunocytochemical study of selected samples proved that numerous neural stem cells, and neuro- and glioblasts necessary for transplantation were present. Our results demonstrate that the flow cytometry phenotyping allows the screening and standardization of HNSC samples for further expansion and transplantation.

Brain↗

[The relationship between ontogenesis and phylogeny in the light of genetics: the problem of macro mutations (morphological and molecular aspects)].

An original hypothesis of the molecular genetic basis of evolution is considered. Evolutionary events were assumed to result from a temporal discordance in the interaction between tissue anlages in the course of individual development. The discordance may be caused by satellite DNA rearrangement by macromutations associated with mobile element insertion in the genome.

Animals↗

[Induction of murine bone marrow stromal cell differentiation into nerve cells].

The in vitro induced differentiation of mouse bone marrow stromal cells into nerve cells by retinoic acid and leukemia inhibitory factor has been shown, using morphological, histochemical and immunocytochemical analyses. The developed techniques allow to obtain up to 30% of neural cells in vitro. A suggestion about pluripotency of bone marrow stromal cells and possibility of their application to the cell therapy is discussed.

Animals↗

Xenografts of embryonic nerve tissue from Drosophila neuromutants stimulate development of neural homografts in rat brain and block glial scar formation.

The influence of xenografts of Drosophila melanogaster embryonic nerve cells on the development of embryonic neurohomografts in the adult rat brain has been investigated. Embryonic nerve cells, marked with bacterial galactosidase gene (lacZ) from D. melanogaster strain with a mutation in the Delta locus, were transplanted into adult rat brain. Drosophila cells were easily identifiable in brain histological sections by X-gal staining. Xenografts survived for at least 2-3 weeks in the recipient brain after the operation to be subsequently attacked by macrophages. Importantly, no glial scar was formed around the xenograft. The addition of Drosophila embryonic nerve cells to a homograft of rat embryonic neural tissue facilitated the survival and development of this homograft by blocking the glial scar formation, stimulating vascularization of the graft area and differentiation of the implanted embryonic nerve cells.

Animals↗

Cerd4, third member of the d4 gene family: expression and organization of genomic locus.

Two members of the d4 family of presumptive transcription modulators, neuro-d4 (Neud4) and ubi-d4/Requiem (Req), have been characterized previously. We cloned and characterized the third member of this gene family, cer-d4 (Cerd4), from chicken and mouse cDNA libraries. The expression patterns of Cerd4 gene in both species are similar and more restricted than expression patterns of other two d4 genes. The main sites of Cerd4 expression are retina and cerebellum, where multiple transcripts could be detected. Two major types of Cerd4 proteins are a full-length isoform possessing all domains characteristic to the d4 family and truncated XZ isoform without C-terminal tandem of PHD fingers. The developmental kinetics of expression of these isoforms is different. The intron/exon structure of human Cerd4 gene is similar to that of neuro-d4 and ubi-d4/Requiem genes, but most introns of Cerd4 gene are much larger than the corresponding introns of the other two genes.

Amino Acid Sequence↗

Structure of cell clusters formed in cultures of dissociated human embryonic brain.

Cell clusters in a culture of dissociated brain from human fetuses at 8-12 weeks gestation in a serum-free growth medium were studied by immunohistochemical methods and electron microscopy. Heterogeneity of cell population in culture was demonstrated. Despite the influence of proliferation-stimulating factors, cell clusters contained not only nestin-immunopositive stem cells, but also beta-tubulin-, vimentin-, and GFAP-positive cells differentiating by the neural pathway. Stem cells were localized on the surface of clusters. The percentage of stem cells in large clusters was lower than in small clusters.

Brain↗

In vitro development of neural progenitor cells from human embryos.

Behavior of stem/progenitor cells from the brain of human embryos during in vitro culturing was studied. Cultured cells from human embryonic brain developed and formed neurospheres heterogeneous by their cell composition. In a serum-containing medium some cells underwent differentiation by the neuronal pathway, while others remained in the stem state.

Cell Differentiation↗

Transplantation of cultured human neural progenitor cells into rat brain: migration and differentiation.

We studied the fate in vitro cultured human stem/progenitor cells after transplantation into rat brain. The cells from human fetuses at 8-12 weeks' gestation were cultured in vitro for 14 days and transplanted into the brain of 10-day-old and adult rats. Microscopic examination showed that human stem/progenitor cells migrated into various regions of rat brain. Immunohistochemical assay demonstrated that some cells differentiated into astrocytes and neurons, while others retained the embryonic phenotype.

Animals↗

[Some regularities in the genetic control of the stress reaction in Drosophila].

The heat-shock response was studied in Drosophila virilis strains with normal and impaired neurohormonal stress reaction. Flies from the latter strain were shown to have the impaired heat-shock response. In this strain, transcription of the heat shock gene hsp83 is reduced and synthesis of all heat shock proteins is suppressed. The neurohormonal stress reaction (status of dopamine, octopamine, and juvenile hormone metabolic systems) was examined in D. melanogaster strains having normal and impaired heat-shock response. The impairment of this response did not prevent the development of the stress reaction: in flies of both strains, the stress exposure resulted in an increase in the dopamine content and in a decrease in the activity of tyrosine decarboxylase (the first enzyme of dopamine synthesis) and in the level of juvenile hormone degradation. However, stress reactivity in mutant individuals differed from that in flies that did not carry stress-related mutations.

Animals↗

[Genomic organization of the murine neuro-d4 gene].

As the first step toward obtaining the null mutation or knock out of the neuro-d4 gene, we isolated phages containing fragments of the gene from a mouse genomic library. The nucleotide sequence of a region of the gene more than 10 kb in size was determined.

Amino Acid Sequence↗