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The lipid lowering effect of an anti-diabetic plant extract.

An antidiabetic plant extract, in common use by Kuwaiti diabetics, was investigated for its hypolipidemic effect using both streptozotocin-induced diabetic and normal rats. The extract significantly decreased blood triglycerides under diabetic conditions only (p less than 0.01), while it decreased cholesterol in both normal (p less than 0.01) and diabetic rats (p less than 0.05). The hypolipidemia was accompanied by significant lowering of ketone bodies both in fasted normal and diabetic animals, in addition to decreasing free fatty acids in treated diabetic rats (p less than 0.005). Moreover, the extract prevented reduction in body weight observed in diabetic animals. In contrast to some other antidiabetic plant extracts, the present preparation seems to offer the additional benefit of lipid-lowering property.

3-Hydroxybutyric Acid

Oxidation products of caffeic acid as model substances for the antigonadotropic activity of plant extracts.

Phenolic plant constituents exert antigonadotropic activity following an oxidation. The resulting complex mixture of mostly instable products impedes the elucidation of the various oxidation steps as well as the mode of antigonadotropic action. Thus caffeic acid was chosen as a single model phenolic to facilitate the interpretation. The oxidation of caffeic acid with KMnO4 as well as with polyphenoloxidase leads to the instable caffeic acid o-quinone as the first oxidation product. Following the initial oxidation, a number of products was indicated via HPLC. Two of them were isolated and characterized as oligomers of caffeic acid, one of them with phenolic, acid and, quinoic structural components and a relative molecular mass similar to caffeic acid tetramer. It was shown that caffeic acid quinone cannot be the antigonadotropically active principle. Correspondingly, the isolated oxidation products exhibit pronounced antigonadotropic activity. It could be proved that oxidation products of caffeic acid bind to PMSG, forming PMSG-inhibitor-complexes. In such complexes the gonadotropic activity of PMSG is completely abolished.

Animals

Nonradioactive, photobiotin-labelled DNA probes for routine diagnosis of viroids in plant extracts.

Avocado sunblotch viroid (ASBV), coconut cadang cadang viroid (CCCV), chrysanthemum stunt viroid (CSV) and potato spindle tuber viroid (PSTV) were detected in plant extracts by dot-blot hybridization using nonradioactive photobiotin-labelled nucleic acid probes. Recombinant DNA probes, containing full-length monomer viroid inserts in the plasmid vectors pSP64 or pUC9, were biotinylated with photobiotin and used as sonicated double-stranded DNA fragments. Using fresh leaf material, a general method (suitably modified for avocado tissue) was developed for the rapid preparation of purified nucleic acid extracts. Plant extracts from a range of field samples were spotted onto nitrocellulose, subjected to hybridization and the biotin-labelled DNA bound to the target nucleic acid was detected with an avidin-alkaline phosphatase conjugate. Under the stated hybridization and washing conditions, each individual viroid probe was specific. Each viroid was readily detected with a sensitivity similar to that obtained with the same (or a like) probe labelled with 32P. Healthy plant extracts gave colourless spots.

Affinity Labels

Studies on the use of plant extracts in assessing the effects of plant metabolism on the mutagenicity and toxicity of pesticides.

We have carried out studies on the effects of plant metabolism on the mutagenicity of agricultural chemicals. Our approach is to use a cell-free plant extract, as a source of metabolic enzymes, in a standard Ames test. Using a number of test compounds, we observe that plant metabolism can alter the mutagenicity of several pesticides, and can in some instances give rise to metabolites apparently unique from those which are formed in animal cells. A number of parameters of the assay have been examined, and we find that the assay temperature and preincubation of the pesticide with the extract can significantly alter the outcome of the test. We also have devised a method of controlling for the effects that natural extracts can have on the spontaneous reversion rate of the Salmonella tester strains, in an effort to distinguish slight mutagenic responses from the effects of nutrients (e.g. histidine for his- bacteria) in the assay.

Animals

Preparation of plant extracts for antitumor screening.

Random collections of plants have been screened by the National Cancer Institute's screening program for almost two decades. The WARF Institute, Inc. (Madison, Wis) has been preparing most of the crude plant extracts for antitumor screening for the past 14 years. This paper describes our present method of extraction for preparation of crude plant extracts for screening and presents a history of past procedures used for the extraction of plant materials. Wherever possible, screening statistics have been included for plants which have been extracted by the various procedures.

Animals

The mutagenic potencies of plant extracts containing quercetin in Salmonella typhimurium TA98 and TA100.

Four commercial ethanolic plant extracts, Tinctura Alchemillae, Extractum Crataegi, Extractum Myrtilli and Tinctura Hyperici, were tested for their mutagenicity in Salmonella typhimurium TA98 and TA100 with and without S9 mix obtained from rats pretreated with phenobarbital. The extracts studied differed greatly in their mutagenic potencies but exhibited a very similar mutation pattern in which the strongest effect was always seen in tester strain TA98 with S9 mix. Simultaneously we investigated the extracts for the presence of quercetin and kaempferol. Only quercetin was detected in small amounts by thin-layer chromatography (TLC). The fractions containing quercetin were separated and collected using a Sephadex LH-20 column. Two different methods were employed to estimate the amount of quercetin in the extracts: a colorimetric assay developed by Christ and Müller, and a complexometric method by Belikov. The quercetin concentrations ranged between 2 mg (Tinctura Alchemilla) and 89 mg (Tinctura Hyperici) per 100 g of extract. We suggest that the mutagenicity of the 4 plant extracts is mainly due to the presence of quercetin for the following reasons: (1) all the plant extracts exhibit a mutation pattern which is very similar to that of quercetin, (2) the mutagenic potential of the extracts correlates well with their quercetin content, considering the fact that plant extracts are very complex mixtures often containing toxic or antimutagenic compounds.

Animals

[Natural substances regulating fertility. Effect of plant extracts in the Ivory Coast pharmacopoeia on the release of LH by hypophyseal cells in culture].

The in vitro action of hydro-alcoholic extracts of plants from Ivory Coast pharmacopoeia was analyzed on cultured rat pituitary cells. Cells were treated for 24 hours with various doses of extracts and then stimulated for 4 hours with 10(-8) M LHRH. Extracts from Afrormosia laxiflora, Cola nitida, Pterocarpus erinaceus and Tetrapleura tetraptera inhibit the LHRH-induced release of LH. On the contrary, extract from Combretodendron africanum stimulates the basal release of LH and this increase is added to the LHRH-induced release. Therefore, the natural substances contained in these plants may in vitro exert a regulation of the gonadotropin release.

Animals

On the mechanism of the hypoglycaemic effect of a plant extract.

The efficacy of a hypoglycaemic plant extract, in common use by Kuwaiti diabetic individuals, was evaluated using both streptozotocin-induced diabetic and normal rats. A significant decrease in blood glucose concentration was demonstrated on glucose tolerance tests, as compared to untreated animals. The sum of the fasting, 1 and 2 h blood glucose values, decreased from 18.5 +/- 0.72 to 13.6 +/- 0.62 mmol/l (p less than 0.001) and from 58.6 +/- 2.83 to 44.5 +/- 3.12 mmol/l (p less than 0.005) in normal and diabetic animals treated for 1 week, respectively. Treatment with the extract was not found to significantly alter insulin levels or intestinal glucose absorption. The mode of action of the hypoglycaemic preparation remains to be elucidated.

Animals

Detection of antituberculous activity in plant extracts.

Ten of 408 ethanolic extracts of plants inhibited growth of Mycobacterium tuberculosis H37Rv at dilutions of 1 in 160 to 1280 and a high proportion of the other extracts inhibited growth at lower dilutions. Some of the plants, after purification, may be therapeutically useful. In view of the environmental threat to many plant species, screening of such plants for potential therapeutic properties, including antituberculous and other antimicrobial activities, are urgently required before they are lost forever.

Antitubercular Agents

Studies of the antibacterial activity of plant extracts and their constituents against periodontopathic bacteria.

Plant extracts and their constituents were tested for antibacterial activity against periodontopathic bacteria, including Actinobacillus, Capnocytophaga, Fusobacterium, Eikenella and Bacteroides species. The essential oils of two labiatae plants, Mosla chinensis Maxim. and Pogostemon cablin Benth., and five terpenoids, hinokitiol, thymol, carvacrol, patchoulialcohol and pogostone, showed antibacterial activity. The terpenoids were especially effective against Bacteroides species.

Bacteria

Effects of plant extract Centella asiatica (Linn.) on cold restraint stress ulcer in rats.

Extract of C. asiatica (Linn.) inhibited significantly gastric ulceration induced by cold and restraint stress (CRS) in Charles-Foster rats, Antiulcer activity of plant extract was compared with famotidine (H2-antagonist) and sodium valproate (anti-epileptic). Plant extract, formotidine and sodium valproate showed a dose dependent reduction of gastric ulceration. Plant extract increased brain GABA level which was also dose dependent. Pretreatment with bicuculline methiodide (specific GABAA-antagonist) at the dose level of 0.5 mg/kg im, reversed the antiulcerogenic activity of both plant extract and sodium valproate. Bicuculline as such did not induce gastric ulceration in normal rat.

Animals

[Thromboplastic activity of higher plant extracts].

Hemostatic properties of extracts isolated from the birch floscules and willow blossoms have been revealed. An agent of thromboplastic nature which is identical to thromboplasin of the rat brain according to its biochemical composition and procoagulative action has been found in these extracts. In contrast to brain thromboplastin thromboplastic activity of plant extracts does not possess the species specificity. After intravenous injection of the plant extracts a reaction similar to defence reaction of the anticoagulation system in response to thromboplastin infusion of the rat brain develops in rats.

Animals

[The antistaphylococcal properties of plant extracts in relation to their prospective use as therapeutic and prophylactic formulations for the skin].

Antistaphylococcal activities of plant extracts (12 water alcohol glycerol, WAG, 6 water alcohol, WA, 8 alcohol glycerol, AG, extracts) towards reference strains and those isolated from patients with pyoinflammatory diseases of the skin were examined by diluting the preparations in solid media. The strains under study were 69 S. aureus, 44 S. epidermidis, and 2 S. saprophyticus ones. Fifteen plant extracts have shown antistaphylococcal activities. The most active were oak bark, sage and St. John's wort grass WAG extracts, horse radish root and leaf AG extracts, celandine grass WA extract; bur marigold and yarrow grass WA extracts were active towards S. aureus. S. aureus strains isolated from patients were found less sensitive to oak bark, German camomile flower WAG and celandine, bur marigold, and brewing waste WA extracts that the reference strains. S. epidermidis strains isolated from patients with acne rash were less sensitive to sweet flag rhizome WAG, celandine and brewing waste WA extracts that the reference strains. These data may be useful when developing compositions including plant extracts for patients with skin diseases.

Anti-Bacterial Agents

The inhibitory effect of plant extracts on the collagenolytic activity and cytotoxicity of human gingival fibroblasts by Porphyromonas gingivalis crude enzyme.

It is well known that plant extracts inhibit some enzymatic activities. The present study examined the inhibitory effects of natural plant extracts against the collagenolytic activity of Porphyromonas gingivalis. The enzyme was isolated from a culture supernatant of P. gingivalis 381. The aqueous and 50% ethanolic extracts of Ginkgo biloba, Mosla chinensis, Salvia officinalis, Cinnamomum cassia, and a catechin extract of Camellia sinensis exhibited strong inhibitory effects on collagenolytic activity. The activities of these plant extracts were higher than that of tetracycline-HCl. They also inhibited the cytotoxicity of P. gingivalis crude enzyme against human gingival fibroblasts. C. sinensis catechin was the most effective agent in neutralizing the cytotoxicity of P. gingivalis. The aqueous and 50% ethanolic extracts of C. cassia had relatively strong anti-cytotoxic activity. Although the other samples strongly inhibited the collagenolytic activity of P. gingivalis, they were not effectively anti-cytotoxic. The present findings suggest that C. sinensis and C. cassia extracts are effective in reducing the pathogenicity of periodontopathic bacteria.

Catechin

The metabolic activation of 4-nitro-o-phenylenediamine by chlorophyll-containing plant extracts: the relationship between mutagenicity and antimutagenicity.

Chlorophyllin, the sodium and copper salt of chlorophyll, chlorophyll a, and chlorophyll b were tested for their ability to inhibit the mutagenic activity of the direct-acting mutagen 4-nitro-o-phenylenediamine (NOP) and its plant-activated mutagenic enhancement. All three forms of chlorophyll were antimutagenic against both NOP and its plant-activated product, with chlorophyllin proving most effective. Chlorophyll-containing plant extracts, however, proved very efficient at activating NOP into a mutagen of greater potency. When these extracts were assayed for total chlorophyll content it was found that they contained far less chlorophyll than was required for an antimutagenic effect to occur. Thus, the balance between chemical mutagen activation and/or enhancement by chlorophyll-containing plant extracts and the potential antimutagenicity of these plant extracts is a function of chlorophyll concentration. The data presented here indicate that this balance must be taken into consideration in future studies investigating the efficacy of complex natural plant extracts as antimutagenic substances.

Biotransformation

Laboratory assessment of indigenous plant extracts for anti-juvenile hormone activity in Culex quinquefasciatus.

Of 15 plants tested, five plant extracts showed anti-juvenile hormone-like activity against laboratory colonised late fourth instar larvae and adult female mosquitoes. Petroleum ether extract of Eichhornia crassipes and acetone extracts of Ageratum conyzoides, Cleome icosandra, Tagetes erectes and Tridax procumbens showed growth inhibitory (P less than 0.001) and juvenile hormone mimicing activity to the treated larvae of C. quinquefasciatus.. Larval pupal intermediates, demalanised pupae, defective egg rafts and adult with deformed flight muscles were few noticeable changes. Biting behaviour was observed to be affected only in Ageratum, Cleome and Tridax extracts (P less than 0.001). Loss of fecundity was observed in the treated mosquitoes but no sterilant effects could be seen. Adults, obtained from larvae exposed to the plant extracts produced significantly shorter egg-rafts (P less than 0.005) than in control.

Animals