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Morphoanatomical studies of Uncaria tomentosa and Uncaria guianensis bark and leaves.

The genus Uncaria Schreber (Rubiaceae) includes species that are widely distributed in tropical areas. The inner bark of the stems and leaves of two native species of South America, Uncaria tomentosa (Willd. ex Roemer & Schultes) DC., and Uncaria guianensis (Aublet) J. F. Gmelin, "cat's claw" are used in either folk medicine or in procuring phytotherapeutic drugs. These species contain about sixty active substances which are being tested widely for possible medicinal value. The following applications are considered: peptic ulcer, rheumatism, tumours, antiinflammatory effect, inflammation, diabetes and as general tonic. Currently, Uncaria tomentosa is in demand as tea, tablets or capsules in more than 30 countries outside Perú, as well as inside the country. Pharmacognosy studies are required to determine the comparative morphoanatomical and micrographic features for identification and quality control purposes. Several microscopic parameters, including phloem fibers, calcium oxalate crystals, starch granules, trichomes, and foliar architecture should be considered. The aim of our work is to analyse comparative morphoanatomical and micrographic features which might provide assistance in the identification, analysis and standardization of Uncaria tomentosa (Willd. ex Roemer & Schultes) DC. and Uncaria guianensis (Aublet) J. F. Gmelin stem bark and leaves in order to obtain phytotherapeutic drugs, and of the crude drug as well.

Cat's Claw↗

Suggested guidelines for articles about botanical dietary supplements.

Recently, The American Journal of Clinical Nutrition (AJCN) began reviewing articles about dietary supplements. The purpose of this commentary is to provide guidelines to authors and reviewers for articles on one category of supplement ingredients, botanicals. The botanicals in the studies published by the AJCN tend to fall into 1 of 2 groups: 1) plants as foods containing nonessential bioactive constituents that may provide health benefits beyond basic nutrition, and 2) plants as herbs, specifically those used as phytomedicines. Research in these areas is relevant to clinical nutrition, but both topics represent relatively new territory to many AJCN reviewers, readers, and contributors. Although studies of botanicals are unique in many respects, the research should be evaluated with the same basic criteria applied to other types of investigations. For example, a study cannot be evaluated or replicated unless the test materials are properly identified and characterized. Investigators must provide an accurate and complete description of the botanical test material regardless of whether it is a finished product, commercial ingredient, extract, or single chemical constituent. For herbal preparations, investigators are advised to follow the criteria used by researchers in the field of pharmacognosy. Finally, the quality of research related to botanical dietary supplements would be improved and cross-study comparisons facilitated if standard reference materials and certified methods of analysis were more broadly available.

Adult↗

Potential anti-fertility plants from Chinese medicine.

A brief review of the history of development of Chinese pharmacognosy and its application to gynecology and obstetrics is presented. An evaluation system is introduced for short-listing some potentially useful and anti-fertility plants. Twenty such plants are listed in order of priority according to our evaluation system. Brief descriptions of the botany, phytochemistry and reputed biological effects are provided. It is hoped that this article may provide an impetus for the development of new antifertility agents.

Abortifacient Agents↗

Natural products and the athlete: facts and folklore.

OBJECTIVE: To contrast scientific facts with suggested manufacturers' claims regarding food supplements (natural products) marketed for enhanced athletic prowess. DATA SOURCES: A MEDLINE search was performed to obtain documentation supporting the claims of natural-product manufacturers. In addition, several references pertaining to pharmacognosy, natural products, herbs, pharmacy practice, and sports medicine were reviewed. Claims were obtained from promotional advertisements in bodybuilding magazines, product labels, and fact sheets for sales representatives in nutrition and health-food stores. DATA EXTRACTION: We reviewed all of the clinical trials, published between 1966 and 1992, relative to the manufacturers' claims regarding these products. DATA SYNTHESIS: Pertinent human and/or animal studies supporting each natural product were compared with the manufacturers' claims. CONCLUSIONS: We found that there was no published scientific evidence to support the promotional claims for a large proportion of the products (8/19, 42 percent). Only 4 of 19 products (21 percent) were associated with any documented human clinical trials supporting their promotional claims. Six of 19 agents (32 percent) had some scientific documentation to support their promotional claims; however, these products were judged to be marketed in a misleading manner.

Diet Fads↗

Assessment of the quality of reference books on botanical dietary supplements.

OBJECTIVE: To review books on botanical dietary supplements (BDS) targeted to pharmacists and physicians to assess their overall quality as primary and secondary reference books. DESIGN: We purchased 52 books for initial review based primarily on their titles. After eliminating books not written for health care professionals and books that contained very limited information on BDS, we selected 22 texts to review in depth. PARTICIPANTS: The review team consisted of four pharmacists--two with PhDs in pharmacognosy, one with a PhD in pharmaceutics, and one with a PharmD who is a senior medical student. RESULTS: The authors, reviewers, and editors of some books were highly qualified; others lacked the qualifications to summarize scientific information in a balanced, unbiased manner. Many books contain unsubstantiated statements. The books judged to be of the highest quality provide primary references to support all statements and advise the reader that insufficient information is available to assess potential drug interactions and safety during pregnancy and lactation. CONCLUSION: The quality of the information presented in the reviewed books varies dramatically. The most critical information gaps include the potential for drug interactions and the safe use of specific botanicals during pregnancy and lactation.

Dietary Supplements↗

Effects of natural health products on blood pressure.

OBJECTIVE: To review the scientific literature to identify reports of the effects of natural health products (NHPs) on blood pressure. DATA SOURCES: Electronic databases (MEDLINE [1965-May 2004] via PubMed, the Cochrane Library [1995-May 2004], International Pharmaceutical Abstracts [1970-May 2004], Iowa Drug Information Services [1965-May 2004]) were searched using the key words medicine, herbal plants, medicinal plant preparations, phytotherapy, angiosperms/therapeutic use, gymnosperms/therapeutic use, ethnopharmacology, pharmacognosy, blood pressure, hypertension, hypotension, and diuretic. Searches were not limited by date, language, or publication type. Review articles and texts, as well as reference lists of relevant articles, were used to identify additional reports. STUDY SELECTION AND DATA EXTRACTION: Articles (English-language after 1980) were assigned to the following categories: human study, case report, animal study, in vitro study, or theoretical prediction based on chemical constituents. Discussions of mechanisms of action were noted. DATA SYNTHESIS: A comprehensive search of the scientific literature identified NHPs capable of affecting blood pressure. Case reports and clearly defined mechanisms of action provided strong evidence for the ability of ephedra and licorice to increase blood pressure. Coenzyme Q(10) was reported to decrease systolic and diastolic blood pressure, although the mechanism is unclear. The clinical significance of the blood pressure effects of other NHPs is unclear due to lack of conclusive in vivo data, as well as substantial variability in the chemical content of preparations of NHPs. CONCLUSIONS: Among published information, there is little definitive evidence with regard to the impact of NHPs on blood pressure. Additionally, effects may vary in a given patient with the formulation and standardization of a particular product. Until research better characterizes the effect of NHPs on blood pressure, patients should be encouraged to talk with their healthcare provider before starting or stopping any herbal product.

Animals↗

Ergot and its alkaloids.

This manuscript reviews the history and pharmacognosy of ergot, and describes the isolation/preparation, chemistry, pharmacodynamics, and pharmacotherapeutics of the major ergot alkaloids and their derivatives. A brief discussion of the hallucinogenic properties of lysergic acid diethylamide is also featured. An abbreviated form of the material found in this paper is presented in a 4-hour didactic format to third-professional year PharmD students as part of their study of vascular migraine headaches, Parkinson's disease, and naturally occurring hallucinogens/hallucinogen derivatives in the modular course offering Neurology/Psychiatry.

Animals↗

[Development of the scientific basis of Czech pharmacy 1939-1945].

The German occupation of the Czechoslovak Republic in 1938-1945 and the worldwide war conflict which limited the import of drugs and medicines into the Czech Lands were a stimulus for the development of Czech pharmaceutical industry and research, which incorporated experts-lecturers and students from the closed Czech universities. Important roles in obtaining and disseminating scientific knowledge in pharmaceutical sciences were played by the Institute for Drug Research in Prague, Central Union of Pharmacists, and a number of pharmacies. In drug research, several new preparations were devised; the greatest achievement was the method of manufacture of "Czech" penicillin, which was used already during the war. The inland basis of raw materials was enlarged by cultivation and collection of medicinal plants. Scientific knowledge gained during the war in pharmaceutical chemistry, pharmacognosy and galenical pharmacy contributed after the liberation in 1945 to the establishment of pharmaceutical sciences, which had not had a sufficient basis before.

Chemistry, Pharmaceutical↗

[A model atlas of the crude drug Radix Ophiopogonis in tri-dimensional computer reconstraction from their serial transections].

In this paper, the tri-dimensional computer reconstruction and animated display from the serial transections of the crude drugs Radix Ophiopogonis and Radix Liriopes have been achieved. Accordingly, some tri-dimensional image techniques and information for the computer aided teaching and identification of pharmacognosy have been offered.

Imaging, Three-Dimensional↗

[A history of a hundred years of pharmaceutical education in Japan].

The history of a hundred years of pharmaceutical education in Japan is divided into six periods for the purposes of discussion. 1. Founding period of the pharmaceutical education in the Meiji era (1873-1879) The Department of Manufacturing Pharmacy, Faculty of Medicine, University of Tokyo was established in 1873 (now, Faculty of Pharmaceutical Sciences, the University of Tokyo). The purpose of this school was for professional training to accommodate growing imported Western drugs. 2. Building period of the pharmaceutical education in the Meiji era. (1880-1911) The Pharmaceutical society of Japan (academic) was established in 1880, and then 13 years later (1893) the Japan Pharmaceutical Association (professional) was established. The order of establishments, first academic and then professional, was opposite of the history in European countries. Twenty-nine schools of pharmacy were built in the Meiji era, however 20 schools of pharmacy have been closed. 3. Developing period the pharmaceutical education in the Taisho era and half of the Showa era (1912-1944) Seventeen pharmaceutical colleges were built in these periods. Pharmaceutical chemistry, pharmacognosy, hygenic chemistry, and manufacturing chemistry were mainly taught in these schools of pharmacy, however pharmacology, bacteriology, and biochemistry were not taught in these schools. 4. Reform of pharmaceutical education system after the World War II (1945-1960) In 1949, the Japanese education system was reformed, and then 46 colleges and universities of pharmacy were built. Then, the number of students doubled to 8,000. Graduates from pharmaceutical colleges and universities, pharmaceutical departments were eligible to take the national pharmacists licence examination which was conducted by the Ministry of Health and Welfare. The standard of the pharmaceutical education system was revised in 1656, recommending that the single pharmaceutical departments at the colleges of pharmacy by replaced by three departments, pharmacy, manufacturing pharmacy and biological pharmacy. 5. Improvement and developement of pharmaceutical education (1961-1985) Many universities and colleges were founded, and there are currently 46 universities and colleges. Every year, some 8,000 people who study pharmacy at 14 national, 3 public and 29 private universities enter the profession on graduation. About 60 percent found jobs in the pharmaceutical industry, and the remainder work as pharmacists in hospitals and pharmacies. 6. Recent movements toward reform in pharmaceutical education (1986-present) Two amendments to the Medical Services Law in 1986 and 1992 have specified clearly the role to be played by pharmacists and pharmacies within their local medical service and has sharpened the distinction between medicine and pharmacy. Thus, in 1994, the period required for graduation is proposed by a committee of the Ministry of Health and Welfare, supplementing of the current 4-year undergraduate pharmacy course with a 2-year postgraduate master's degree course or a 6-year new pharmaceutical education system including practical training in a medical institution for a period of at least 6 months.

Education, Pharmacy↗

[Remarks on Leon Popielski's manuscript of his review of January Zubrzycki's qualifying thesis for professorship dating from 1915].

A review written by professor Leon Popielski from Lvov of the qualifying thesis for professorship of January Zubrzycki from Cracow is presented. The manuscript has been kept by professor Popielski's family. Zubrzycki finished his medical studies in Cracow in 1909. While writing his qualifying thesis entitled Placental Albumin Derivatives and their Toxic Properties in 1915 he was an assistant of Aleksander Rosner in the department of maternity and gynaecology of Jagiellonian University. In 1931 as a professor he became the head of the clinic and following the Second World War he was a professor at several faculties of medicine in Poland. He was an outstanding gynaecological surgeon, an author of a five volume atlas of gynaecological surgery. Professor Leon Popielski studied in S. Petersburg. He specialized in physiology. Since 1904 he was the head of the Chair of Pharmacologoy and Pharmacognosy at the Universitiy of Lvov. Popielski's intrest in Zubrzycki's work ensued his research on albumin metabolite effect. His appreciation of the work is expressed by the phrase "I read it with satisfaction". The review was written in 1919, belated by the war.

Academic Dissertations as Topic↗

[Pierre-François Tingry (1743-1821), a Geneva pharmacist: his research in plant chemistry].

Tingry spent his entire professional and scientific career in Geneva, after completing his pharmacy studies in Paris. An important part of his writings, unpublished and conserved in Geneva, concerns plant chemistry. His work was principally devoted to the composition and varied parts of the flower Lilium album. Although he is classified as a minerologist and inorganic chemist, it is fitting to think of him also as a botanist and innovative talent in pharmacognosis.

Botany↗

[Pattern recognition of stereoscopic features of the leaves epidermis of medicinal Curcuma plants in China by image analysis].

OBJECTIVE: To provide new ways for classifying and identifying medicinal curcuma plants. METHOD: Based on classical taxonomy, the microscopic features of the epidermis of Curcuma plants in China were scored quantitatively by stereology and image analysis. RESULT: It showed that there were a lot of differences in density, size and shape of the epidermic cells among the medicinal Curcuma plants in China; that the average perimeter of the upper epidermic cells, average sectional area of the lower epidermis, stoma density and trichoma distribution of the upper and lower epidermis, etc. could be considered to be the main evidences for the microscopic identification of leaves of Curcuma. The 21 materials which belong to 11 species of Curcuma in China were systematized into 6 species, 1 species complex, 2 cultivated varieties. CONCLUSION: It can be concluded that stereology, and image analysis are advanced and feasible in pharmacognosy and taxonomy especially in the authentication of the relative and easily confused species.

Curcuma↗

[A study on quality standard of Sambucus chinensis Lindl].

OBJECTIVE: To offer evidences for exploiting the plant resources and drafting the quality standards. METHOD: Studies of pharmacognosy. RESULT: The medicinal properties and the microscopic characteristics of the stem, leaves, rhizome and powder were described, drawn and physicochemically identified. CONCLUSION: A convenient and effective method for identifying the herb has been established.

Plant Leaves↗

[Applied fundamental research of echinacea species].

Echinacea is a most famous "immune herb" in western countries, and continues to be the best selling herb for many years. For the last five years, our research group has cooperated with Institute of Medicinal Plants in Huairou District of Beijing, carrying out studies on Echinacea purpurea, which involved botany, cultivation, pharmacognosy, phytochemistry, quality control, pharmacology and toxicology of the species. Two other species introduced from Canada, Echinacea angustifolia and Echinacea pallida, were also included in the taxonomic, cultivated and pharmacognostic studies. The results acquired have opened up the path to introduce Echinacea species into Traditional Chinese Medicine, thus established the possibility of developing more promising drugs from them.

Animals↗

Systematic analysis of animals used in medieval Azerbaijan medicine.

In order to study the special composition of animals used in the medieval medicine of Azerbaijan, a wide range of medieval sources on medicine and pharmacognosy from the collection of the Institute of Manuscripts of the Azerbaijan Academy of Sciences in Baku has been studied. About 40 medieval sources from the 10-18th centuries including 17 manuscripts in Turkic, Persian and Arabic have been selected as the objects of this study. As a result, 150 species of animals described in medieval Azerbaijani books on medicine and pharmacy have been identified. Many of the identified animals are mammals, (47 species or 31% of total number of identified species). The medieval authors describe 12 species of reptiles and 4 species of Amphibians (frogs, toads, salamanders and tree-frogs (Hyla arborea). 15 species of fishes described in medieval manuscripts have been identified. The identified molluscs are cuttlefish (Sepia officinalis), mussel (Mytilus edulis), octopus (Octopus vulgaris) and snail (Helix pomatia). Most crustaceans used in medieval Azerbaijan medicine belong to Decopoda. Medieval manuscripts contain numerous names of various worms and insects (ants, flies, beetles, etc.), however their exact identification is rather difficult. As usual, medieval authors unite a number of species under one name and do not give sufficient information about their morphology. Results of the research create grounds for the idea that the recommendations of the medieval authors on the medicinal application of animals can be applied to modern medicine once they have been experimentally and clinically tested.

Animals↗

[Research schools in pharmacy. 5: Alexander Tschirch (1856-1939) and his students].

Alexander Tschirch was one of the most important teachers of pharmacy. In 1890 he was appointed Professor of Pharmacy and Pharmacognosy at Bern and he was a good director of his institute. The scientific programme is represented by 21 books, 388 papers and 158 dissertations. The main topics were investigations of plants (phytochemical) and researchs for pharmacopoeias. Tschirch had 2300 Students, 158 made their doctor-graduate and 11 are becoming professor. The research conditions in the pharmaceutical institute Bern were good and the research school of Tschirch has an important public and social recognition, also Tschirchs work provided the bases of the modern phytochemical research of plants.

History of Pharmacy↗

Ethnobotany and research on medicinal plants in India.

Vast ethnobotanical knowledge exists in India from ancient time. Since the 1950s the study of ethnobotany has intensified; 10 books and 300 papers have been published. Our work over four decades, both in the field and literary studies, has resulted in a dictionary of Indian folk-medicine and ethnobotany that includes 2532 plants. India has about 45,000 plant species; medicinal properties have been assigned to several thousand. About 2000 figure frequently in the literature; indigenous systems commonly employ 500. Despite early (4500-1500 BC) origins and a long history of usage, in the last two centuries Ayurveda has received little official support and hence less attention from good medical practitioners and researchers. Much work is now being done on the botany, pharmacognosy, chemistry, pharmacology and biotechnology of herbal drugs. The value of ethnomedicine has been realized; work is being done on psychoactive plants, household remedies and plants sold by street drug vendors. Statistical methods are being used to assess the credibility of claims. Some recent work in drug development relates to species of Commiphora (used as a hypolipidaemic agent), Picrorhiza (which is hepatoprotective), Bacopa (used as a brain tonic), Curcuma (antiinflammatory) and Asclepias (cardiotonic). A scrutiny of folk claims found 203 plants for evaluation. Less well known ethnomedicines have been identified that are used to treat intestinal, joint, liver and skin diseases.

India↗