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[Effects and mechanisms of ethanol extract of Salvia miltiorrhiza on liver fibrosis in mice].

To identify clinically advantageous TCMs for anti-hepatic fibrosis and to elucidate the effects and molecular mechanisms of Salvia miltiorrhiza ethanol extract in the intervention of liver fibrosis, this study screened high-frequency anti-hepatic fibrosis TCMs through a review of clinical literature. The S. miltiorrhiza active components, potential targets, and liver fibrosis-related disease targets were obtained using the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform(TCMSP), the GeneCards database, and other databases. Gene Ontology(GO) functional annotation and Kyoto Encyclopedia of Genes and Genomes(KEGG) pathway enrichment analyses were performed on the shared targets between drugs and diseases. Molecular docking was conducted to evaluate the binding affinities between key components and core targets. In animal experiments, male Kunming mice were used to establish a liver fibrosis model induced by carbon tetrachloride(CCl_4). The mice were administered low, medium, and high doses of S. miltiorrhiza ethanol extract by gavage. The liver index, as well as serum aspartate aminotransferase(AST) and alanine aminotransferase(ALT) levels, were measured. Histopathological changes in liver tissue were observed using hematoxylin-eosin(HE) staining and Masson's trichrome staining. Western blot analysis was used to detect the protein expression levels of α-smooth muscle actin(α-SMA), Collagen Ⅰ, and heat shock protein 90 alpha family class A member 1(HSP90AA1) in liver tissue. The results showed that S. miltiorrhiza was the most frequently used TCM in clinical anti-hepatic fibrosis. A total of 65 active components and 135 potential targets were identified, and 109 common targets were obtained by intersecting these with liver fibrosis-related targets. The core targets included tumor protein p53(TP53), serine/threonine protein kinase AKT1(AKT1), Jun proto-oncogene(JUN), signal transducer and activator of transcription 3(STAT3), and HSP90AA1, which were mainly enriched in pathways related to cancer, hepatitis B, and the PI3K-AKT signaling pathway. Molecular docking indicated that the main active components of S. miltiorrhiza bound stably to the core targets, with the strongest binding affinity observed for HSP90AA1. Animal experiments demonstrated that the liver index, serum ALT and AST levels, and the expression of α-SMA, Collagen Ⅰ, and HSP90AA1 in liver tissue were significantly increased in the model group, accompanied by obvious pathological manifestations of fibrosis. Compared with the model group, different dose groups of S. miltiorrhiza ethanol extract reduced the liver index and serum ALT and AST levels to varying degrees, alleviated pathological damage and collagen deposition in liver tissue, and downregulated the protein expression of α-SMA, Collagen Ⅰ, and HSP90AA1. In conclusion, S. miltiorrhiza ethanol extract exerts a significant protective effect on CCl_4-induced liver fibrosis in mice, and its mechanisms may be related to the inhibition of HSP90AA1 expression and the regulation of liver fibrosis-related signaling pathways.

Animals

Cardiac heterotransplantation. Morphological and immunohistological studies.

A vascularized heterograft model using outbred strains of animals was developed by transplanting mouse hearts heterotopically into rats. With this species desparity rapid but not immediate graft rejection was observed, with a predictably narrow range of graft survival times. Morphological and immunohistological studies showed early deposition of fibrinogen and vascular and myocardial inflammation without prominent or consistent localization of either IgG or C3. Later more extensive changes were observed, and deposition of IgG and C3 were more prominent in the grafts. Pretreatment of the recipient with cyclophosphamide alone or cyclophosphamide plus antigen prolonged graft survival; however, no statistically significant difference was noted between these groups. Morphological and immunohistological alterations preceded clinical rejection, and tissue injury appeared to be mediated by humoral and cellular immune mechanisms and by the coagulation system. This model is potentially useful for the study of heterotransplantation.

Animals

The major histocompatibility complex of the guinea pig. I. Serologic and genetic studies.

Serologic and genetic studies of the antigens which comprise the guinea pig MHC have demonstrated three distinct but linked genetic regions. Antisera to the B region were raised by cross-immunization of random-bred animals; this region controls antigens B.1, B.2, B.3, and B.4 which behave as alleles at a single locus and which resemble the products of the murine D or K region genes in their tissue distribution and molecular characteristics. Cross-immunization of inbred strain 2 and strain 13 animals, both of which bear the B.1 antigen, leads to sera which identify antigens which resemble the products of the I region of the murine MHC. Specific absorption experiments have demonstrated four distinct I region antigens. In addition to the B and I regions, inbred strain 2, strain 13, and some outbred animals bear an antigen (S.1) which is the product of a third genetic region and which also resembles the murine D or K region gene products in molecular size. The results of these studies should facilitate the use of the guinea pig as an experimental model for studies of genetic control of the immune response and the function of the histocompatibility-linked Ir genes.

Animals

Bone formation in cartilage produced by transplanted epiphyseal chondrocytes.

Chondrocytes were isolated from rat epiphyseal cartilage, cultured in vitro, and exposed to exogenous tracers which accumulated in their lysosomes. The cells were then injected into the posterior tibial muscle of animals from the same outbred strain, where they reconstructed calcifying hyaline cartilage. The mineralization of the tissue was followed by ingrowth of blood capillaries from the host bed. Macrophage-like cells surrounding the vessels phagocytized degenerated chondrocytes and unmineralized matrix, whereas multinucleated chondroclasts removed some of the mineralized cartilage matrix. Mesenchyme-like cells accompanying the invading vessels attached to the remaining septa of calcified cartilage matrix and developed into osteoblasts depositing bone matrix on the surface of these septa. The apparent lack of inherent tracer labeling of the lysosomes in the different bone cells indicate that they were derived from the host. No signs of transformation of chondrocytes into bone cells were observed. When isolated rat epiphyseal chondrocytes were injected into the wall of the hamster cheek pouch, calcifying cartilage was reconstructed without signs of subsequent ossification. Transplantation of cartilage reconstructed in the hamster into the dorsal muscles of rats was, however, followed by formation of bone by a sequence analogous to that described above. Such an osteogenetic response was also obtained when the cartilage had been devitalized before transplantation. These experiments show that calcified cartilage, developing in or grafted into an intramuscular site, is able to induce and serve as a substrate for endochondral bone formation, similar to that occurring during normal development. They further indicate that bone induction by calcified cartilage does not require the presence of living chondrocytes.

Animals

An IgG thymolytic autoantibody in rats which has specificity for a subpopulation of T cells.

A cytotoxic anti-thymocyte IgG auto-antibody is present in Lewis rats which, in the presence of autologous complement, destroys (in vitro) 12-28 per cent of isologous or autologous thymocytes, a smaller number of lymph node cells and splenocytes, but not bone marrow or circulating lymphocytes. The labile cells in the thymus represent a finite subpopulation which is autologous antithymocyte antibody (ATS) sensitive and steroid resistant. The presence of the autoantibody is randomly distributed in outbred animals whereas in inbred Lewis rats, a strain in which the induction of some autoimmune reactions is under genetic control, the antibody is always present. In this strain, the susceptible T cells and the quantity of circulating autoantibody is significantly depressed during the productive phase of a T-cell mediated disease (adjuvant polyarthritis) and returns to normal after the disease becomes stabilized. There is a direct relationship between the amount of susceptible cells in the thymus and the amount of antibody in circulation, suggesting that the antibody could serve as a marker for a specific subpopulation of thymocytes which may have a regulatory influence on T-cell reactivity.

Animals

Interaction between 6/94 virus, a parainfluenza type 1 strain, and mouse macrophages.

The 6/94 virus, a type 1 parainfluenza virus recovered from multiple sclerosis brain cells after lysolecithin-induced fusion of these cells with African green monkey kidney cells (CV-1), has been found to grow in splenic and peritoneal macrophages obtained from outbred and different strains of inbred mice. Macrophages from C57BL animals were least susceptible to infection, a resistance apparently partially age related. The virus also has been found to replicate in IC21 cells, a line of simian virus 40 virus-transformed mouse macrophages. Viral growth was detected by development of hemadsorption in infected cells, followed by the appearance of infectious virus. The growth of 6/94 virus had different kinetics in mouse macrophages, in the standard continuous cell lines L, 3T3, and CV-1, and in primary mouse kidney and mouse embryo cells. The virus produced in macrophages could be passed in series to other macrophage cultures. In addition, once infected, the cultures continued to produce virus, and permanently infected cell lines were thus obtained. Macrophages from immunized mice with high titers of humoral neutralizing antibodies were found variably able to support virus growth.

Animals

Immune response gene control of determinant selection. I. Intramolecular mapping of the immunogenic sites on insulin recognized by guinea pig T and B cells.

T-cell DNA synthesis and T-helper cell function in response to isolated insulin chains and naturally occurring insulin variants was assessed in insulin immune guinea pigs. Two distinct antigenic determinants, recognized by T cells, were defined. One localized in the B chain and the other one constituted by amino acids A8, A9, and A10 of the insulin A-chain loop. Recognition of the B-chain determinant is under the control of Ir genes linked to the strain 13 major histocompatibility complex. This was shown by studying the response to isolated insulin B chain in F1(2 x 13) guinea pigs, as well as serologically defined backcrosses and outbred animals. Insulin recognition through the A-chain loop determinant is specific for strain 2 guinea pigs. These animals recognize this region of the molecule even when displaying different amino acid sequences. The strain differences observed in those antigenic sites eliciting T-cell recognition was not found at an antibody level. No differences could be detected in the ability of the different insulin variants to inhibit the binding of 125I-labeled pork insulin to strain 2 guinea pig anti-pork insulin or to strain 13 guinea pig anti-pork insulin.

Amino Acid Sequence

Investigation of the histocompatibility of the NYA:NYLAR mouse colony by skin grafting.

The histocompatibility status of the Nya:NYLAR mouse colony was studied by exchange of skin grafts between female mice. The colony had been divided into two portions since 1962, a larger, outbred stock (Nya:NYLAR), and a smaller, inbred strain (NYLR/Nya). The results of skin graft exchanges between mice of the inbred strain indicated that they were skin-compatible. There was weak skin-incompatibility within the outbred stock and between this stock and the inbred strain, and strong skin-incompatibility between the outbred stock and outbred Webster Swiss mice.

Animals

Studies on the effect of the anti-phagocytic agent cytochalasin B on Leishmania-macrophage interaction.

Mouse peritoneal exudate cells were cultured on coverslips in Eagle's Basal Essential Medium. The adhering cells were infected with promastigotes of three different species of Leishmania. After 8 h incubation, the macrophages were fixed and stained, and a total of one hundred cells were counted. The rates of infection of macrophages were respectively 53.5 +/- 5% for L. enriettii, 52.3 +/- 5% for L. donovani and 11.7 +/- 2% for L. tropica. When cytochalasin B at concentrations of 2.5, 5 and 10 microgram/ml and Leishmania promastigotes were added to the adhering cells at the same time, the drug did not have any effect on the uptake of the organisms by the macrophages. However, when the cells were treated for a 2-h period with the drug and then were infected with the promastigotes, only 1-2% of the cells were infected. On the other hand, when cytochalasin B-treated cells which had lost their phagocytic ability were washed and then were infected with the promastigotes, some degree of cellular infection was observed. It was concluded that infection of mouse p.e.c. by three different species of Leishmania which were used in our study was by phagocytosis rather than active penetration of the organisms into the cells. It was also of interest to note that although our outbred strain of mice gets infected easily with L. tropica, the p.e.c. of these animals phagocytosed L. tropica with least efficiency in comparison with L. donovani and L. enriettii.

Animals

[Nomenclature of laboratory animals].

It is essential to use a correct nomenclature for laboratory animals to avoid mistakes in the strain and stock designation, just as it is important to use the correct species name. Firstly the rules of the nomenclature for inbred animals (strains) are dealt with. The strain symbol is followed by a slant line and an appropriate substrain symbol and possible additional symbols. Different types of symbols and combinations are discussed and examples are given. Next the nomenclature of the outbred animals (stocks) is treated. The code of the breeder is followed by a colon, the stock symbol and possible additional symbols.

Abbreviations as Topic

Effect of uremia on tumor growth in mice.

Outbred Swiss mice of the Hebrew University strain were subtotally nephrectomized. The experimental and control animals were both divided into two subgroups, with one group kept on a regular animal house diet and one on a low-protein diet. All the animals were injected with Ehrlich's ascites tumor cells s.c. into the neck region. Two weeks later, the animals were killed and the tumor was excised and weighed to the nearest milligram. Tumor size in the uremic animals--the nephrectomized animals kept on a regular diet--was significantly smaller than in all other groups, which had blood urea nitrogen levels well within the normal range. It is suggested that urea may be a factor responsible for inhibiting tumor growth.

Animals

Statistical design of toxicity assays: role of genetic structure of test animal population.

This paper concerns certain statistical aspects of the problem of among-strain differences in cancer susceptibility and how these differences may affect the design of toxicity assays. First, the data of Innes et al. (1969) were examined to investigate the magnitude of within-study, between-strain differences in tumor induction. Although there was a very high overall association between mouse strains with respect to the induction of hepatomas, evidence of strain-to-strain variability was found for several compounds. Next, a number of long-term carcinogenicity studies with DDT were considered, and among-strain differences in cancer susceptibility for this compound were noted. Finally, it was shown that if susceptible subgroups do exist, and certain simplifying assumptions are made, then in many cases tumor increases can be detected more readily by studying several inbred mouse strains rather than a single outbred stock.

Animals

Susceptibility of laboratory animals to infection by spotted fever group rickettsiae.

An attempt was made to find a suitable animal model for studies of spotted fever group rickettsiae. Inbred and outbred mice, the guinea pig, ferret, gerbil, hamster, wild rabbit, cotton rat, sheep, and miniature swine were tested. Of these, only certain strains of the mouse [Mai:(S) and BALB/cJ] and the guinea pig [Hla:(HA)] exhibited, overtly, the desired characteristics of disease. Other laboratory animals (such as sheep or rabbits) can be used for the production of antiserum against the spotted fever group of rickettsiae; however, these rickettsiae apparently have little or no effect on several other animal species. The lack of overt disease might explain the role of these animals or related genera as reservoirs for the tick-borne spotted fever rickettsiae.

Animals