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Actions of flavonoids and the novel anti-inflammatory flavone, hypolaetin-8-glucoside, on prostaglandin biosynthesis and inactivation.

The newly identified plant-derived flavone-glycoside hypolaetin-8-glucoside, which has anti-inflammatory and gastric ulcer protective properties, and its corresponding aglycone, hypolaetin, were tested for effects on prostaglandin biosynthesis and degradation. They were compared with four other flavonoids, viz. rutin and its corresponding aglycone, quercetin, and the aglycones isoscutellarein and kaempferol. Over the range 10-1000 microM the glycosides rutin and hypolaetin-8-glucoside stimulated prostaglandin formation by sheep seminal vesicle microsomes incubated with radiolabelled arachidonic acid; the other compounds were essentially inactive. Over 5-5000 microM rutin and hypolaetin-8-glucoside enhanced the release of prostacyclin (and other prostanoids) from fragments of rat caecum incubated in the absence of additional arachidonic acid; the four aglycones compounds did not stimulate prostacyclin release but some reduced it at 5000 microM. However, the glycosides did not affect the enzymatic inactivation of radiolabelled prostaglandin F2 alpha by semi-purified bovine lung prostaglandin 15-hydroxydehydrogenase (PGDH) or in 100,000 g supernatants prepared from homogenised rat stomach. Three of the four aglycones (quercetin, kaempferol, isoscutellarein, in descending order of potency) were inhibitory to PGDH with ID50 values in the range 130-2100 microM. The results show that the capacity of flavonoids to enhance prostaglandin formation is associated with the presence of glycosidic substitution, whereas PGDH inhibition requires its absence. The relevance of this biochemical profile of hypolaetin-8-glucoside to its anti-inflammatory gastroprotective effects in vivo is discussed.

Animals↗

Chrysin (5,7-di-OH-flavone), a naturally-occurring ligand for benzodiazepine receptors, with anticonvulsant properties.

Chrysin (5,7-di-OH-flavone) was identified in Passiflora coerulea L., a plant used as a sedative in folkloric medicine. Chrysin was found to be a ligand for the benzodiazepine receptors, both central (Ki = 3 microM, competitive mechanism) and peripheral (Ki = 13 microM, mixed-type mechanism). Administered to mice by the intracerebroventricular route, chrysin was able to prevent the expression of tonic-clonic seizures induced by pentylenetertrazol. Ro 15-1788, a central benzodiazepine receptor antagonist, abolished this effect. In addition, all of the treated mice lose the normal righting reflex which suggests a myorelaxant action of the flavonoid. The presence in P. coerulea of benzodiazepine-like compounds was also confirmed.

Animals↗

Stimulation of macrophage tumouricidal activity by 5,6-dimethyl-xanthenone-4-acetic acid, a potent analogue of the antitumour agent flavone-8-acetic acid.

The new antitumour drug 5,6-dimethylxanthenone-4-acetic acid (5,6-MeXAA; NSC 640488) was 14-fold more potent than the investigational chemotherapeutic drug flavone-8-acetic acid (NSC 347512) in stimulating tumouricidal activity in cultures of resident murine peritoneal macrophages. The tumouricidal activity of thioglycollate-elicited and Bacillus Calmette-Guérin-primed macrophages was also significantly enhanced by 5,6-MeXAA. Stimulation of macrophage tumouricidal activity by 5,6-MeXAA was not affected by inhibitors of superoxide and nitric oxide production, but was reduced by cyclosporin A, an inhibitor of protein secretion. Inhibitors of neutral proteases had no effect. Cortisone, dexamethasone, indomethacin, dibutyryl cAMP, prostaglandin E2 and prostacyclin, but not prostaglandin F2 alpha, inhibited stimulation, suggesting the involvement of tumour necrosis factor-alpha (TNF). However, antibodies to TNF did not inhibit stimulation. The results suggest that 5,6-MeXAA acts on macrophages in a manner similar to that of endotoxin, utilizing a pathway which includes arachidonic acid metabolism and requiring cell-cell contact with target cells for a tumouricidal effect.

Animals↗

Nitric oxide production in endotoxin-resistant C3H/HeJ mice stimulated with flavone-8-acetic acid and xanthenone-4-acetic acid analogues.

The production of nitric oxide in endotoxin-resistant C3H/HeJ mice in response to flavone-8-acetic acid (FAA), derivatives of xanthenone-4-acetic (XAA), endotoxin and recombinant human tumour necrosis factor-alpha (TNF-alpha) was investigated and compared with the induction of haemorrhagic necrosis in subcutaneous M16/C tumours. FAA and XAA analogues stimulated nitric oxide production both in vitro (activated macrophages) and in vivo (plasma nitrate elevation) in both C3H/HeJ and C3H/HeN mice (5,6-dimethyl-XAA greater than 5-methyl-XAA greater than FAA greater than XAA greater than 8-methyl-XAA). Recombinant human TNF-alpha stimulated nitric oxide production equally from both murine strains while endotoxin stimulated nitric oxide production only by C3H/HeN mice. The extent of induction of haemorrhagic necrosis in tumour-bearing mice treated with FAA, 5,6-dimethyl XAA or endotoxin paralleled the effects on nitric oxide production, showing a differential between the two strains of mice only in the case of endotoxin.

Animals↗

Alteration of the phosphorylation state of p34cdc2 kinase by the flavone L86-8275 in breast carcinoma cells. Correlation with decreased H1 kinase activity.

The flavone L86-8275 [(-)cis-5,7-dihydroxy-2-(2-chlorophenyl)-8-[4-(3-hydroxy-1-methyl)- piperidinyl]-4H-1-benzopyran-4-one] delayed the progression of aphidicolin-synchronized MDA-468 breast carcinoma cells through S phase and prevented progression through G2. L86-8275 prevented the G2-related increase in histone H1 kinase activity mediated by cyclin-dependent kinase-1 (p34cdc2 kinase). L86-8275 inhibited [32P]orthophosphate labeling of p34cdc2 threonine and tyrosine residues and decreased the phosphotyrosine content of p34cdc2. Diminution of p34cdc2 phosphotyrosine appeared selective, as a general depletion of cellular phosphotyrosine was not observed. The mass of p34cdc2 in L86-8275-exposed cells was not decreased during the period over which these effects occurred. [35S]Methionine labeling of p34cdc2 or other cellular proteins was not inhibited at concentrations that were effective for complete cellular growth inhibition. We hypothesize that L86-8275 interferes with the normal cell cycle-dependent phosphorylation of p34cdc2, resulting in decreased kinase activity and cell cycle arrest.

Amino Acid Sequence↗

Flavone glycosides from Asplenium normale.

Eight flavone glycosides were isolated from fronds of Asplenium normale, its two varieties, var. boreale and var. shimurae, and related species, A. oligophlebium. Six of the glycosides were identified: apigenin 7-O-dirhamnoside and 7-O-glucosylrhamnoside, luteolin 7-O-dirhamnoside and 7-O-glucosylrhamnoside, genkwanin 4'-O-glucosylrhamnoside, and vicenin-2. The remaining two glycosides were tentatively characterized as genkwanin 4'-O-glycoside and 6,8-di-C-glycosylluteolin. The four taxa analysed in this survey all had distinctive flavonoid profiles.

Carbohydrate Sequence↗

Three flavone glycosides from Gelonium multiflorum.

Two new flavone diglycosides along with 7,4'-O-dimethylscuttelarein 6-O-beta-D-glucopyranoside, a known glycoside, were isolated from the seeds of Gelonium multiflorum and their structures were elucidated as 7,4'-O-dimethylscuttelarein 6-O-alpha-L-rhamnopyranosyl(1-->2)-beta-D-glucopyranoside and 6-O-beta-D-xylopyranosyl(1-->2)-beta-D-glucopyranoside.

Carbohydrate Sequence↗

Three acylated flavone glycosides from Sideritis syriaca.

From the aerial parts of Sideritis syriaca a new flavone glycoside, 5,8,3'-trihydroxy-4'-methoxyflavone 7-(6"'-O-acetylsophoroside) was identified together with apigenin 7-(6"-p-coumaroylglucoside) and apigenin 7-(4"-p-coumaroylglucoside) which are reported for the first time in the genus Sideritis. The compounds were characterized using 1H NMR, 13C NMR, MS and chemical methods.

Acylation↗

Two flavone 2'-glucosides from Scutellaria baicalensis.

Two new flavone glucosides, 5,2',6'-trihydroxy-6,7,8-trimethoxyflavone 2'-O-glucoside and 5,2',6'-trihydroxy-6,7-dimethoxyflavone 2'-O-glucoside were isolated from the aqueous methanol extract of the roots of Scutellaria baicalensis. From the extract, seven phenolics, 5,7,2',6'-terahydroxyflavone, 5,7,2',5'-tetrahydroxy-8,6'-dimethoxyflavone, skullcapflavone II, baicalin, baicalin methyl ester, wogonin 7-glucuronide and 3,5,7,2',6'-pentahydroxyflavanone were also isolated.

Flavonoids↗

Flavone acetic acid suppresses human peripheral blood lymphocyte and human colonic lamina propria lymphocyte DNA synthesis.

Flavone 8-acetic acid (FAA) is a new experimental antitumor drug with activity against various murine and human solid tumors in vitro and in vivo. We previously demonstrated that FAA suppressed the growth of a human colon cancer cell line (HCT-116). In this study we investigated the effect of FAA on human peripheral blood (PBL) and human colonic lamina propria lymphocyte (LPL) DNA synthesis. Our results show that FAA inhibited DNA synthesis in PBL and LPL in a dose-dependent fashion. In addition, FAA inhibited the activity of the intracellular enzyme, ornithine decarboxylase (ODC), in stimulated PBL and LPL. FAA did not inhibit phorbol ester (PDB) and calcium ionophor(ionomycin)-stimulated LPL DNA synthesis. These results suggest that FAA alters DNA synthesis of human peripheral and colonic mucosal lymphocytes. We postulate that FAA may affect the human peripheral and mucosal immune system.

Antineoplastic Agents↗

Antiproliferative properties of flavone acetic acid (NSC 347512) (LM 975), a new anticancer agent.

The antiproliferative activity of flavone acetic acid (LM 975) was investigated on human adenocarcinoma cell lines (HCC-P2998, HCC-M1544, HCC-M1410, HT 29, LoVo), on a murine colon adenocarcinoma cell line (Colon 26), on murine pancreatic adenocarcinoma cells growing in primary culture (Pan 03) and on human normal fibroblasts (N1). No cytotoxic effects were found against human normal fibroblasts. LM 975 was active against murine adenocarcinoma Pan 03 and Colon 26, known to be sensitive in vivo too and, to variable extents, on human adenocarcinoma cell lines. LM 975 in vitro cytotoxic potency was relatively low. The high concentrations (1.0-1.4 mM) required to obtain a cytotoxic effect are, however, pharmacologically reasonable since they are comparable with drug plasma levels in mice or in patients treated with tolerable doses. After a relatively short LM 975 treatment (2 h) DNA, RNA and protein synthesis were inhibited in different proportions. In more sensitive cells LM 975 appeared to inhibit RNA synthesis more than DNA and protein synthesis. Inhibition of macromolecule synthesis after 2 h exposure was completely reversed in 24 h recovery. After 2 h treatment no detectable DNA breakage was found by the alkaline elution method, thus corroborating the idea that this compound does not act by causing DNA damage.

Adenocarcinoma↗

In vitro chemosensitivity testing of flavone acetic acid (LM975; NSC 347512) and its diethylaminoethyl ester derivative (LM985; NSC 293015).

The antitumor effect of flavone acetic acid, LM975, and its diethylaminoethyl ester derivative, LM985, was studied in four human malignant cell lines [WiDr, a colon carcinoma; LICR (LON) HN-3, a tongue carcinoma; MCF7, a breast carcinoma; K-562, a leukemia] using a colorimetric assay based on the reduction of dimethylthiazol-2-yl-diphenyltetrazolium. The cell lines were exposed continuously for 4-6 days to drug concentrations ranging between 0.1 and 500 micrograms/ml. For LM975, the concentrations inhibiting the growth of the various cell lines by 50% were 200 +/- 10, 97 +/- 7, 171 +/- 16 and greater than 500 micrograms/ml for LICR (LON) HN-3, WiDr, MCF-7, and K-562, respectively. The corresponding concentrations for LM985 were 151 +/- 3, 36 +/- 4, 86 +/- 3 and 140 +/- 18 micrograms/ml, respectively. The difference between LM985 and LM975 was statistically significant for the WiDr and LICR (LON) HN-3 lines. We also evaluated the cytotoxic activity of the two agents on normal human marrow myeloid progenitor cells in a colony-forming assay. Continuous exposure to the drugs gave a dose-dependent inhibition. The concentrations inhibiting the growth by 50% were 76 +/- 31 micrograms/ml for LM975 and 134 +/- 41 micrograms/ml for LM985. One hour incubation with either compound had no toxic effect on the myeloid progenitor cells. In conclusion, LM975 and LM985 do not appear to have a specific cytotoxicity for tumor cells. Our results indicate that, in vitro, toxicity on bone marrow myeloid progenitor cells is concentration dependent. Considering the low plasma concentration found in man after i.v. administration of LM985, our observations correlate well with the absence of drug-induced myelosuppression in patients.

Antineoplastic Agents↗

Induction of natural killer cell activity by the antitumour compound flavone acetic acid (NSC 347 512).

Flavone acetic acid (FAA), an antitumour drug at present undergoing clinical trial for cancer treatment, has been found to activate natural killer cell activity in spleen cells of mice following in vivo treatment at doses of 45-330 mg/kg. The activity of FAA was measured using a 51Cr-release assay, employing the YAC-1 lymphoma line as a target cell population, and was found to be comparable to that of the interferon inducer polyinosinic acid-polycytidylic acid. The induction of activity was blocked by anti-asialo GM1 antibody. The time course of induction of activity by FAA was similar to that of the induction of haemorrhagic necrosis of the colon 38 tumour in mice, suggesting that natural killer cells or other components of the immune system may be involved in the action of FAA.

Animals↗

Enhancement of in vitro cytotoxicity of mouse peritoneal exudate cells by flavone acetic acid (NSC 347512).

Flavone acetic acid (FAA), an antitumour agent currently undergoing clinical trials, was found to augment the tumoricidal activity of peritoneal exudate (PE) cells in vitro. Lysis of tumour targets was measured using a standard 18 h 51Cr release assay for activated macrophages. Lytic activity increased with increasing concentrations of FAA up to 100 micrograms/ml before reaching a plateau. At 80 micrograms/ml FAA, 3-fold fewer PE cells were necessary to obtain the same level of activity as in control cultures without FAA. The lytic activity was mediated by Thy-1 negative and glass-adherent cells in the PE population, and was inhibited by dexamethasone. The activity of PE cells against several different tumour targets (P815 mastocytoma, YAC-1 lymphoma, P388 lymphoma, and a Lewis lung carcinoma cell line) were all enhanced by FAA. The results show that FAA can enhance the lytic potential of peritoneal macrophages in vitro to kill a range of tumour cells.

Animals↗

Vascular collapse after flavone acetic acid: a possible mechanism of its anti-tumour action.

Flavone acetic acid (FAA, LM 975) causes regression and growth retardation in several solid murine tumours. The mechanism of action is unknown, although various lines of evidence suggest an indirect cytotoxic effect. We have carried out preliminary studies on the effect of FAA on relative blood flow in six experimental murine tumours using 86RbCl extraction. We have also measured growth delay after treatment with the same dose of FAA (200 mg/kg). The data show that the drug induces a drop in tumour perfusion within 6 h of treatment in all of the tumours, and that this can be correlated with the growth delay measured. We conclude that vascular collapse may be an important component of the action of this drug, and that further investigation of this phenomenon is warranted.

Animals↗

Effect of flavone acetic acid (NSC 347,512) on splenic cytotoxic effector cells and their role in tumour necrosis.

Flavone acetic acid (FAA), an antitumour agent currently undergoing clinical trial, has immune-modulatory effects on various cytotoxic cells in mice. Natural killer (NK) cell activity in the spleen was augmented 4 h after FAA treatment, and when spleen cells were cultured with interleukin-2 to induce the production of lymphokine-activated-killer (LAK) cells, higher levels of LAK cell activity were generated by spleen cells from FAA-treated animals than by spleen cells from untreated, control mice. The response to FAA by spleen cells from mice bearing the Colon 38 tumour was compared to that of non-tumour bearers. Activity against NK-sensitive YAC-1 tumour targets was augmented to a similar degree, and no activity against NK-resistant P815 targets was detected. FAA was shown to induce haemorrhagic necrosis in the P815 tumour grown as a subcutaneous solid tumour. Furthermore, haemorrhagic necrosis was induced by FAA on Colon 38 tumours growing in mice which had been depleted of NK activity by treatment with anti-asialo GM-1 antibody. Thus, although NK activity could be involved in the long-term host response to the tumour, it does not appear to be a major determinant of FAA-induced haemorrhagic tumour necrosis.

Animals↗

Reduction of cytotoxic effector cell activity in colon 38 tumours following treatment with flavone acetic acid.

Host cells have been implicated as being involved in the antitumour effects of flavone acetic acid (FAA), an agent with selectivity towards solid tumours which is currently undergoing clinical trial. To determine whether tumour-associated host cells are affected by FAA treatment, tumour-infiltrating leukocytes (TIL) were isolated from subcutaneous Colon 38 tumours, which are known to be sensitive to FAA. 1-2 x 10(5) TIL were isolated per gram of tumour, comprising mainly small lymphocytes and macrophages. Spontaneous activity against YAC-1 and P815 tumour targets was tested in a 4 h 51Cr-release assay for lymphoid cytotoxic effector cells. High levels of activity were exhibited by TIL against both P815, which is resistant to natural killer (NK) cells, and to NK-sensitive YAC-1 cells. In contrast, splenic cell populations contained only NK cell activity. Within 1 h of intraperitoneal administration of FAA (330 mg/kg) the cytotoxic effector cell activity of the TIL population was dramatically depressed, remaining low during the time in which extensive tumour necrosis became evident. In contrast, splenic NK activity was unchanged at 1 h and elevated at 4 h. The decrease in lymphoid killer activity of the TIL population following treatment argues against the primary involvement of these effector cells in mediating the antitumour action of FAA.

Animals↗

Role of T cells and tumour necrosis factor in antitumour activity and toxicity of flavone acetic acid.

To investigate the importance of natural killer (NK) and T cells in the inhibition of tumour growth by flavone acetic acid (FAA), colon 26 murine carcinoma was grafted subcutaneously in euthymic and athymic mice. FAA was active in euthymic but not in athymic mice (ratio between tumour weight in treated vs. control animals [T/C %], 27% and 92%, respectively). NK cell activity was increased in both mouse strains, indicating a lack of major involvement of this lymphocyte population in FAA efficacy. In euthymic mice tumour-specific T cells were activated, and after in vivo depletion of lymphocyte subpopulations (L3T4 and Lyt2), tumour inhibition by FAA was abrogated (T/C %, 88%). Antitumour efficacy of FAA was also reduced when the treatment was followed by injection of antitumour necrosis factor alpha (TNF alpha) antibodies. FAA toxicity depended on tumour weight at the time of treatment: 200 mg/kg caused 0 and 100% mortality in mice bearing tumour nodules under 50 and over 300 mg, respectively. When anti-TNF alpha antibodies were given after FAA treatment, the toxicity was greatly reduced (3/14 mice died compared with 10/15).

Adenocarcinoma↗