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[Studies on extraction and isolation of active constituents from Psoralen corylifolia L. and the antitumor effect of the constituents in vitro].

OBJECTIVE: To study the chemical constituents from Psoralea corylifolia L. and their antitumor activities. METHODS: The constituents were isolated on silica gel column chromatography and identified by physicochemical properties and spectroscopic analysis. Morphological and MTT assays in vitro were used to explore the inhibiting effect of the active compounds on the proliferation of BGC-823 cancer cell. RESULTS: Two compounds were isolated from its chloroform extract and identified as psoralen (I) and isopsoralen (II). IC50 of psoralen and isoporalen were 5.82 micrograms/ml and 148.8 micrograms/ml respectively. CONCLUSION: Compound I and II having antitumor activity against BGC-823 cancer cell were obtained from this plant with the yields of 0.048% and 0.11%.

Antineoplastic Agents, Phytogenic↗

Heparin increases human gastric carcinoma cell growth.

BACKGROUND: Heparin has been widely used to prevent cancer-associated thromboembolism in cancer patients. Recent evidence reveals that heparin could modulate cell proliferation in the stomach. The effect of heparin on gastric cancer growth, however, is unknown. The effect of heparin on the proliferation of a human gastric adenocarcinoma cell line, BGC-823, was investigated. MATERIALS AND METHODS: Cell proliferation was assessed by [3H]-thymidine incorporation. The expressions of several growth-related genes were determined by RT-PCR and Western blot. RESULTS: Heparin significantly increased cell proliferation in BGC-823 cancer cells by 15.5% at the dose of 0.2 microg/ml. Heparin also up-regulated c-Myc protein expression by 14.4%. In contrast, mRNA and protein levels of epidermal growth factor receptor (EGFR) were, respectively, down-regulated by 12.7% and 8.2% with no effect on cyclooxygenase-2 mRNA or protein expression. CONCLUSION: Our results suggest that heparin can promote the proliferation and up-regulation of c-Myc protein expression in gastric cancer cells.

Cell Growth Processes↗

[Pilot study on the mechanisms of growth inhibitory effect of cinobufagin on HeLa cells].

OBJECTIVE: To study the effect of cinobufagin (CBG) on HeLa cell proliferation, and to analyze its mechanism. METHODS: Proliferation inhibition in vitro was evaluated by MTT and Sulforhodamine B (SRB) assays in several human tumor cell lines, including Bel-7402, HeLa, MCF-7, BGC-823 and HL60. The cycle of HeLa cells was analyzed by flow cytometry. Two-dimensional electrophoresis was applied to analyze the influence of CBG on HeLa cell proteomics. RESULTS: CBG had inhibitory effects on proliferation of five human cancer cell lines, and the IC(50) values were 0.011 micromol/L (Bel-7402), 0.019 micromol/L (HeLa), 0.116 micromol/L (MCF-7), 0.149 micromol/L (BGC-823) and 1.369 micromol/L (HL60), respectively. HeLa and Bel-7402 cells were among the most sensitive. Flow cytometry assay indicated that the treatment of HeLa cells with various concentrations of CBG for 72 h was able to increase the cell number at G(2)/M phase, from 17.3% up to 35.6%. The results of two-dimensional electrophoresis showed that treatment of HeLa cells with 0.02 micromol/L CBG for 48 h resulted in apparent changes of certain small molecular weight (30,000 - 90,000) acidic proteins (pH 4 - 6). CONCLUSION: Cinobufagin has significant inhibitory effect on growth of five human cancer cells in vitro. It may lead to cell cycle arrest of HeLa cells at G(2)/M phase. It can also change the expression of some small molecular acidic proteins in HeLa cells.

Antineoplastic Agents↗

[CT evidence of high density area in bilateral striatum secondary to anoxia].

We recently observed a patient in whom basal ganglia calcification (BGC) was demonstrated on sequential CT scans only 9 days after the anoxic episode. A 58-year-old woman had a history of diabetes mellitus for 23 years for which she was treated with insulin. She had a operation for retinal detachment under local anesthesia. Two days after the operation, she developed dyspnea, and was referred to our department. She was intubated, and respiratory support was begun. On neurological examination, she was semicomatose, and intermittent spontaneous movements involved in all extremities. The pupils were 3 mm in diameter, equal and responsive. Full doll's eye responses were obtained both horizontally and vertically. Deep tendon reflexes were hyperactive bilaterally without ankle jerks and extensor plantar responses. Arterial blood gas levels revealed a PaO2 of 49 mmHg, PaCO2 38 mmHg: pH 7.16. Serum Ca, P, Mg, Al-p and parathyroid hormone levels were normal. The EEG was isoelectric. Although the initial CT scan was normal, the subsequent CT scan 9 days later showed extensive high density change of the striatum, which was assumed to be BGC due to anoxia was briefly discussed.

Basal Ganglia Diseases↗

[The selective cytotoxicity of monoclonal antibody conjugated with mitomycin C on human gastric cancer cells].

The murine monoclonal antibody (MoAb)3H11 against human gastric cancer was purified with affinity column and conjugated with Mitomycin C (MMC). The binding activity of MoAb in the conjugate retained more than 90% of the original MoAb 3H11 when the molar ratios of MMC to 3H11 was 7-8:1. The killing rate of 3H11-MMC conjugate on human gastric cancer cells BGC 823 was increased significantly than that of free MMC in vitro. The selective cytotoxicity was verified with the following results: (1) the cytotoxicity of the conjugate was much higher than that of normal mouse IgG (nMuIgG) conjugated with MMC; (2) when breast cancer cells MCF-7 was used as target cells instead of BGC 823 cells, much lower cytotoxicity of the conjugate was observed; (3) the cytotoxicity of the conjugate on BGC823 cells could be blocked when the target cells was preincubated with MoAb 3H11, but not with MoAb 3G9 which did combine with BGC823 cells at binding sites different from MoAb 3H11. Nude mice were inoculated with BGC823 cells as a model of gastric cancer and treated with conjugate 3H11-MMC, nMuIgG-MMC, MMC or PBS (ip). It was shown that the time of tumor formation and the rate of tumor growth in 3H11-MMC conjugate treated animals were significantly different from that in control groups. The rate of inhibition of tumor weights was 60.4% for the conjugate 3H11-MMC treated group which was significantly higher than for other groups.

Animals↗

[Study of anticancer human monoclonal antibody--establishment of human monoclonal antibody to gastric cancer by human-mouse hybridoma].

A human immunoglobulin M (IgM) antibody secreting hybridoma, HMG1, has been established and studied for its reactivity against human gastric cancer cells. Lymphocytes isolated from a regional lymph node of patient with gastric adenocarcinoma were fused with mouse myeloma cells NS-1. Supernatants from the generated human-mouse hybrids were first screened for immunoglobulin production by ELISA. The identified human IgM-secreting hybridomas were expanded and subcloned for further analysis or cryopreservation. The screening for binding of antibodies to a panel of human cancer cell lines and normal fibroblast was carried out with PAP or indirect immunofluorescence stain. The selected hybridoma, HMG1 after being cloned three times, was stable in secreting IgM (about 4 micrograms/1 x 10(6) cells) for more than 9 months. Large amount of ascites was obtained by injecting this hybrid to BALB/C nude mice pretreated with anti-lymphocyte serum and pristane. The ascitic fluid contained 5-19 mg human Ig/ml. Subsequently this IgM was extracted from ascitic fluid by saturated ammonium sulphate solution. This crude extract was further purified with immuno-affinity chromatography. Both this purified ascite-IgM as well as IgM from HMG1 supernatant would react with gastric cancer cell line BGC-823 but not with human normal fibroblasts 350Q by PAP or immunofluorescence analysis. The human HMG1-IgM reacted with gastric cancer cells on paraffin embedded tissue section but did not react with normal gastric mucosa cells. HMG1-IgM had some complement dependent cytotoxicity against BGC-823. These results suggest that the establishment of anticancer human monoclonal antibodies with human-mouse hybridoma technique be feasible. There is a possibility for clinical applications of this human monoclonal antibody in the future.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

[DNA transformation activity of a human gastrocarcinoma cell line].

DNAs of three cell lines of human gastrocarcinoma (MGC-803, BGC-823 and PACM-82) and two fresh solid tumors of human stomach cancer were used to transfect NIH3T3 and Rat-1 cells. The transformed cells were selected with high concentration of glucose and low concentration of serum, or with medium containing Geneticin (G418) after co-transfection of pSVneo and DNAs of stomach cancer cell line or primary transformants. From the second round transfection, we had obtained transformants which could grow with high colony forming efficiency in soft agarose and were tumorigenic in nude mice. The southern blot analysis showed that the cellular DNA of the transformants contained human Alu repeat sequence and the transformed gene from stomach cancer cell line (BGC-823) and was homologous to proto-oncogene c-Ha-ras. The transforming gene is able to induce neoplastic transformation of NIH3T3 and Rat-1 cells.

Animals↗

Regulation of the Na+-dependent high affinity glutamate/aspartate transporter in cultured Bergmann glia by phorbol esters.

The effects of phorbol 12-tetradecanoyl-13-acetate (TPA) and dibutyryl cAMP on the glutamate transport present in chick Bergmann glial cell (BGC) cultures were examined. TPA produced a significant decrease in [3H]-D-aspartate uptake, while dibutyryl cAMP treatment elicited a slight reduction in the transport. This effect was dose and time dependent and sensitive to staurosporine, a Ca2+/diacylglycerol-dependent protein kinase C (PKC) inhibitor. Long-term exposure of the culture to TPA results in a dramatic fall of the transporter activity and a decrease in the amount of the transporter protein. These findings suggest that PKC is involved in transport modulation and possibly in the regulation of the transporter gene expression.

ATP-Binding Cassette Transporters↗

A Pseudokinase Catalyzes Nitrile Formation in the Biosynthesis of a Potent Marine Toxin.

Several pseudokinases, previously regarded as dead enzymes due to the lack of catalytic residues, catalyze nucleotidylation. While they often utilize macromolecular substrates such as proteins and RNAs in primary metabolism, those acting on non-macromolecules in specialized metabolisms are limited. Calyculin A, a cytotoxic natural product produced by an uncultured sponge symbiont, possesses a unique nitrile group at the end of its tetraene tail. Even though its biosynthetic gene cluster (BGC) has been identified, the enzyme responsible for nitrile formation remains unknown. Herein, through a comparative analysis of the BGCs for calyculin derivatives in symbiotic bacteria from distinct sources, we identified a novel nitrile-forming enzyme, CalN. While CalN lacks sequence homology with other known nitrile-forming enzymes, it is structurally similar to pseudokinases. In vitro enzymatic reactions demonstrated that CalN specifically catalyzes nitrile formation through the adenylation of an amide substrate, calyculinamide A. In silico analyses and mutational experiments showed that CalN's structure features a unique insertion that plays critical roles in ATP recognition and the spatial coordination of catalytic residues. This study not only identifies a new family of nitrile-forming enzymes but also expands the variety of chemical reactions mediated by pseudokinases in nature.

Marine Toxins↗

Isoprenylated xanthones and flavonoids from Cudrania tricuspidata.

Further phytochemical investigation on the roots of Cudrania tricuspidata afforded a new isoprenylated xanthone, cudratricusxanthone I (1), two new isoprenylated flavanones, cudraflavanones C and D (2 and 3, resp.), and seven known compounds, 1,7-dihydroxy-3,6-dimethoxyxanthone (4), macluraxanthone C (5), cudraxanthones E, K, and L (6, 7, and 8, resp.), cudraflavanone A (9), and cudraflavone C (10). Their structures were identified by spectroscopic methods. Cudratricusxanthone H (12), macluraxanthone B (13), two xanthones previously isolated from this plant, and 5, showed significant inhibitory effects on four kinds of human digestive apparatus tumor cell lines (HCT-116, SMMC-7721, SGC-7901, and BGC-823) with IC50 values of 2.70-12.66 microM.

Antineoplastic Agents, Phytogenic↗

Diorganotin(IV) derivatives of substituted benzohydroxamic acids with high antitumor activity.

A series of diorganotin(IV) and dichlorotin(IV) derivatives of 4-X-benzohydroxamic acids, [HL(1) (X = Cl) or HL(2) (X = OCH(3))] formulated as [R(2)SnL(2)] (R = Me, Et, nBu, Ph or Cl; L = L(1) or L(2)), along with their corresponding mixed-ligand complexes [R(2)Sn(L(1))(L(2))] have been prepared and characterized by FT-IR, (1)H, (13)C, and (119)Sn NMR spectroscopy, mass spectrometry, elemental analysis, and melting points. In addition, single-crystal X-ray diffraction analyses were carried out for [Me(2)SnL(2)] (L = L(1) or L(2)), which show coordination structures intermediate between distorted octahedra and bicapped tetrahedra. The hydroxamate ligands are asymmetrically coordinated by the oxygen atoms, the carbonyl oxygen atom is further away from the metal center than the other oxygen atom. The complexes are stable monomeric species; most of them are soluble not only in chlorohydrocarbon solvents, but also in alcohols and hydroalcoholic solutions. In polar solvents, the mixed-ligand complexes gradually decompose into the corresponding single-ligand complex couples. The complexes exhibit in vitro antitumor activities (against a series of human tumor cell lines) which, in some cases, are identical to, or even higher than, that of cisplatin. For the dialkyltin complexes, the activity increases with the length of the carbon chain of the alkyl ligand and is higher in the case of the chloro-substituted benzohydroxamato ligand. The [nBu(2)Sn(L(1))(2)] complex displays a high in vivo activity against H22 liver and BGC-823 gastric tumors, and has a relatively low toxicity.

Antineoplastic Agents↗

Pangenome of Streptomyces sampsonii and Relatives Highlights Horizontal Gene Transfer and Secondary Metabolism in Environmental Adaptation and Ecological Significance.

Streptomyces sampsonii is a promising biocontrol bacterium, but its genomic basis of adaptation and secondary metabolism remains unclear. Here, we present a chromosome-level genome assembly of S. sampsonii (7.20 Mb, 6015 protein-coding genes) and perform comparative analyses with 95 related Streptomyces species. Phylogenomic and synteny analyses revealed its closest relationship with S. albidoflavus, while extensive structural variations distinguished more distant lineages. Pangenome analysis uncovered 84,178 gene clusters, with pan_shell and pan_cloud genes predominantly enriched in xenobiotic biodegradation, metabolism, and antibiotic biosynthesis, highlighting their roles in ecological adaptation and biocontrol potential. Biosynthetic gene cluster (BGC) analysis identified numerous NRPS, PKS, and terpene pathways, many of which belong to pan_shell and pan_cloud regions, suggesting dynamic evolutionary origins. We further detected 66,260 horizontally transferred (HGT) genes, including 438 in BGCs, underscoring HGT as a major driver of metabolic innovation. Together, these findings provide novel insights into the genomic diversity, adaptive capacity, and secondary metabolic potential of S. sampsonii and its close relatives.

BGCs↗

Transforming growth factor beta1 regulates follistatin mRNA expression during in vitro bovine granulosa cell differentiation.

In order to test the hypothesis that transforming growth factor beta (TGF-beta) acts by FS regulation on bovine granulosa cells in in vitro differentiation, we analyzed the effect of TGF-beta1 on follistatin mRNA expression in three differentiation states of bovine granulosa cells. We showed a positive regulation of FS mRNA after TGF-beta1 (1 ng/ml) treatment of freshly isolated granulosa cells from small-medium antral follicles (2-8 mm). This effect was abolished by the addition of exogenous follistatin (100 ng/ml), suggesting that this effect could be mediated by activin. Although these cells showed a similar effect on FS mRNA expression after treatment with activin-A, a soluble form of activin receptor type IIA was unable to inactivate the TGF-beta effect. When we tested the TGF-beta effect on FS mRNA in different granulosa cell states, TGF-beta1 regulation was associated with progesterone production only in freshly isolated cells. The amount of total activin-A produced by first passage cells (dedifferentiated cells), was ten times smaller than the one measured in a conditioned medium from freshly isolated cells (mature cells). The TGF-beta1-dependent FS mRNA expression persisted in first passage cells without changes with FS addition. On the other hand, the BGC-1 granulosa cell line (immature cells) produced large amounts of activin-A regulated by TGF-beta1 and an invariable steady state of FS mRNAs. In summary, our results showed that FS mRNA expression is regulated by TGF-beta1 independently of activin effects in differentiated granulosa cells.

Activin Receptors, Type II↗

In vitro antitumor reactivity of mononuclear leukocytes from cancer patients receiving immunotherapy with BCG.

Mononuclear cell-mediated cytotoxicity (MCMC) against cultured tumor target cells was studied sequentially in melanoma and breast cancer patients before and during BGC administration. MCMC showed temporary fluctuations. In patients with locally advanced melanoma and carcinoma of the breast after tumor load reduction, the administration of BCG may increase the MCMC. This did not always correlate with a favorable clinical course. Potentiating serum factors appeared in 50% of these patients during BCG therapy, while blocking factors were rare. Neither correlated with prognosis. In patients with disseminated melanoma receiving chemoimmunotherapy, increases in MCMC may be related to clinical course. Blocking serum factors frequently developed in this group of patients and potentiating factors were rare. Neither correlated with the clinical course. Significant MCMC among normal donors and the apparent lack of specificity suggest a common nonspecific (? natural) cellular reactivity against cultured tumor target cells.

BCG Vaccine↗

Deciphering the Function and Structure of PA1216 as an S-Adenosyl-l-Methionine Binding Protein Using Differential Scanning Fluorimetry and Circular Dichroism.

Microbes produce bioactive secondary metabolites as toxins, pigments, or virulence factors. These specialized compounds are produced by nonribosomal peptide synthetases (NRPS), polyketide synthases (PKS), or hybrid NRPS/PKS pathways. The genes encoding NRPS and PKS reside in biosynthetic gene clusters (BGCs), some of which have no identified metabolite associated with them. Characterization of these orphan BGCs could provide insights into potential bioactive compounds that have yet to be discovered. Here, we characterize PA1216, a putative methyltransferase embedded within an NRPS BGC in Pseudomonas aeruginosa strain PAO1. We cloned, expressed, and purified PA1216, and developed an optimized differential scanning fluorimetry assay to measure its thermal stability, demonstrating concentration-dependent stabilization in the presence of established methyltransferase cofactors and inhibitors. We then adapted this assay for high-throughput screening of potential PA1216 substrates, identifying destabilizing compounds, including glycyl-glycine dipeptides, amino esters with aromatic or basic side chains, and N-Boc-protected amino acids. In contrast, sodium salts of organic acids stabilized PA1216. Lastly, we employed AlphaFold to construct a predictive model, revealing that PA1216 contains a Rossmann-like fold and a glycine-rich loop, typical of class I methyltransferases, and we corroborated these secondary structural elements using circular dichroism spectroscopy. Overall, these studies illuminate PA1216 function and establish a platform for characterizing cryptic gene clusters within secondary metabolic pathways.

Circular Dichroism↗

Extraction of CO2 from air samples for isotopic analysis and limits to ultra high precision delta18O determination in CO2 gas.

The determination of delta18O values in CO2 at a precision level of +/-0.02 per thousand (delta-notation) has always been a challenging, if not impossible, analytical task. Here, we demonstrate that beyond the usually assumed major cause of uncertainty - water contamination - there are other, hitherto underestimated sources of contamination and processes which can alter the oxygen isotope composition of CO2. Active surfaces in the preparation line with which CO2 comes into contact, as well as traces of air in the sample, can alter the apparent delta18O value both temporarily and permanently. We investigated the effects of different surface materials including electropolished stainless steel, Duran glass, gold and quartz, the latter both untreated and silanized. CO2 frozen with liquid nitrogen showed a transient alteration of the 18O/16O ratio on all surfaces tested. The time to recover from the alteration as well as the size of the alteration varied with surface type. Quartz that had been ultrasonically cleaned for several hours with high purity water (0.05 microS) exhibited the smallest effect on the measured oxygen isotopic composition of CO2 before and after freezing. However, quartz proved to be mechanically unstable with time when subjected to repeated large temperature changes during operation. After several days of operation the gas released from the freezing step contained progressively increasing trace amounts of O2 probably originating from inclusions within the quartz, which precludes the use of quartz for cryogenically trapping CO2. Stainless steel or gold proved to be suitable materials after proper pre-treatment. To ensure a high trapping efficiency of CO2 from a flow of gas, a cold trap design was chosen comprising a thin wall 1/4" outer tube and a 1/8" inner tube, made respectively from electropolished stainless steel and gold. Due to a considerable 18O specific isotope effect during the release of CO2 from the cold surface, the thawing time had to be as long as 20 min for high precision delta18O measurements. The presence of traces of air in almost all CO2 gases that we analyzed was another major source of error. Nitrogen and oxygen in the ion source of our mass spectrometer (MAT 252, Finnigan MAT, Bremen, Germany) give rise to the production of NO2 at the hot tungsten filament. NO2+ is isobaric with C16O18O+ (m/z 46) and interferes with the delta18O measurement. Trace amounts of air are present in CO2 extracted cryogenically from air at -196 degrees C. This air, trapped at the cold surface, cannot be pumped away quantitatively. The amount of air present depends on the surface structure and, hence, the alteration of the measured delta18O value varies with the surface conditions. For automated high precision measurement of the isotopic composition of CO2 of air samples stored in glass flasks an extraction interface ('BGC-AirTrap') was developed which allows 18 analyses (including standards) per day to be made. For our reference CO2-in-air, stored in high pressure cylinders, the long term (>9 months) single sample precision was 0.012 per thousand for delta13C and 0.019 per thousand for delta18O.

Air Pollution↗

Growth promoting activity of oocytes on granulosa cells is decreased upon meiotic maturation.

An increasing body of evidence indicates that the oocyte plays an active role in the control of ovarian follicle development in mammals. In the present study, we have examined the role of oocytes in regulating granulosa cell proliferation. Rat and bovine oocytes cocultured with rat granulosa cells stimulated granulosa cell DNA synthesis and DNA content in the cultures. FSH or cAMP further amplified this effect. Poor-quality oocytes showed a marked decrease in their stimulatory effect. Stimulation of DNA synthesis by bovine oocytes seems to be cell-type specific, since Swiss 3T3 fibroblasts and CCL-64 mink lung epithelial cells were not responsive, while primary cultures of rat and bovine granulosa cells and the bovine granulosa cell line BGC-1 showed significant responses. Oocyte-conditioned medium produced only a slight stimulation of rat granulosa cell DNA synthesis. However, the effect of oocyte coculture was dependent on the total incubation volume, suggesting that the growth promoting activity was mediated by a soluble factor. The stimulation elicited by bovine oocytes was evident even in the presence of maximally effective doses of transforming growth factor-beta or tumor necrosis factor-alpha, indicating that neither of these growth factors was responsible for this effect. In vitro maturation of bovine oocytes was associated with a marked decrease in the stimulatory activity. This decrease was partially prevented when maturation was blocked by addition of cycloheximide. Comparison of the developmental pattern of the secretion of the growth promoting activity with that of the cumulus expansion-enabling factor indicated that both activities can be dissociated. Our data suggest the existence of a very labile factor produced by the oocyte before completion of the first meiotic division that promotes granulosa cell proliferation.

Animals↗