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A new integrated program for natural product development and the value of an ethnomedical approach.

There is a need for less expensive alternative therapies, especially in the treatment of chronic illnesses. This presentation addresses the issues inherent in the use of natural products in a drug-discovery or development program and reviews a model program developed by the U.S. National Institutes of Health (NIH) and administered by the Fogarty International Center at the NIH. Eighty percent (80%) of the world's population relies on medicinal plants for their primary health care. The World Health Organization has been promoting traditional medicine as a source of less expensive, comprehensive medical care, especially in developing countries. Natural products have also been successful in drug development. Over 50% of the best-selling pharmaceuticals in use today are derived from natural products. In a natural-product drug development program, it is the diversity of the natural products that is especially interesting. Thanks to technologic advances, now is a good time to be looking for new drugs in the natural-product arena. But there are major hurdles to overcome in a natural-products development program, namely, time-to-lead, supply, and ownership. Time-to-lead is complex because most natural products are mixtures or crude extracts. It can be very difficult to isolate the active principles and elucidate their structures. The difficulty of obtaining sufficient supply is often given as a reason for not becoming involved in natural-product drug development or discovery. This presentation details some ways these seeming hurdles can be overcome. The concept of ownership has changed dramatically in recent years. Until recently, genetic resources were considered to belong to no one and to therefore be the heritage of everyone. The United Nations Convention on Biodiversity and the meetings in Rio de Janeiro in 1992, redefined biodiversity ownership. Genetic biodiversity has a potential value and belongs to the country of origin. The International Conservation of Biodiversity Groups (ICBGs) was founded in 1992 to address such issues. This presentation discusses the importance of integrating efforts in conservation, economic development, and drug development into one program. The presentation details a collaboration that includes an ICBG based at the Walter Reed Army Institute of Research and its four partner organizations and discusses the associated programs the collaboration has underway.

Bioethics↗

Pharmacognostic standardization of Turnera aphrodisiaca Ward.

Turnera aphrodisiaca Ward (Turneraceae) has been used traditionally as an aphrodisiac, stimulant, nerve tonic, and laxative and in kidney, menstrual, and pregnancy disorders. Despite a long tradition of use in the treatment of various ailments, no systematic phytochemical and pharmacological work has ever been carried out on T. aphrodisiaca. The authors suggest that the major stumbling block in systematic exploration of the plant is non-availability of authentic plant material. In the present investigation, various pharmacognostic standards for the plant have been generated so that authentic T. aphrodisiaca could be explored for its traditional claims. Microscopically, T. aphrodisiaca leaf showed the presence of abundant unicellular, warty, non-glandular trichomes, anomocytic stomata, and a large number of calcium oxalate crystals along the veins. Powdered stem of the plant showed lignified spiral and pitted tracheidal vessels, and pericyclic fibers were observed in powder microscopy of stem. Total ash of the aerial parts of T. aphrodisiaca was approximately eight and four times more than acid-insoluble and water-soluble ash, respectively. The water-soluble extractive value of the plant was slightly higher than its ethanol-soluble extractive value. Volatile oil content of T. aphrodisiaca was found to be 0.44% (wt/vol), the thin-layer chromatography of which exhibited seven spots using toluene:ethyl acetate (93:7 vol/vol) as mobile phase. Thin-layer chromatography of the petroleum ether extract showed nine spots using hexane:dichloromethane (1:1 vol/vol), while the chloroform extract showed 11 spots using toluene:ethyl acetate:glacial acetic acid (35:4:1 by volume). Phytochemically, the plant was found to contain alkaloids, cyanogenic glycosides, steroids, saponins, flavonoids, tannins, carbohydrates, and proteins.

Alkaloids↗

Microbial content of nonsterile therapeutic agents containing natural of seminatural active ingredients.

The relationship was investigated between various chemical or pharmaceutical production processes and the extent of microbial contamination, of natural origin, of the resulting products. The products contained active ingredients of vegetable, enzymatic, or animal origin. It was concluded that (i) vegetable products practically free from microbes can be produced if the proper manufacturing steps are taken; (ii) sterilization of the media used to manufacture antibiotics, etc., produces products with little contamination; and (iii) products containing extracts of animal organs require careful refrigeration and addition of preservatives to produce acceptable levels of microbial contamination.

Bacteria↗

Mexican medicinal plants used for treatment of cardiovascular diseases.

This article reviews the state of research for a number of plants traditionally related to treatment of cardiovascular diseases. It stresses the importance of both anthropological surveys and historical studies for the proper understanding of this ancient and still very popular medicine.

Cardiovascular Diseases↗