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Long Gu (Os Draconis): Textual research, modern scientific evaluation, and quality control challenges
Sun Xiujia1, Li Zhan Hua2, Gao Yuanze3
1School of Chinese Medicine, LKS Faculty of Medicine, The University of Hong Kong, 999077, Hong Kong, China; Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai, 200030, China.
Ethnopharmacological Relevance:
Long Gu (Os Draconis), a mineral medicine with over 2000 years of use in traditional Chinese medicine, is facing a critical juncture. Its identity has been clarified scientifically-from a mythologized "dragon bone" to a fossilized mammalian bioapatite-yet its sustainable clinical application is threatened by resource depletion, widespread domestic and international adulteration, and the lack of modern quality standards.
Aim Of The Study:
This review aims to systematically analyze the evolution of Long Gu through historical materia medica, define its authentic characteristics using modern science, diagnose the root causes of its current market and regulatory crisis, and propose a robust, multi-dimensional framework for quality evaluation and sustainable sourcing.
Materials And Methods:
A systematic review of Chinese materia medica literature from the Pre-Qin to Qing Dynasties was conducted. Historical textual research was integrated with evidence from modern mineralogy, paleontology, geochemistry, and pharmacology to validate traditional knowledge and establish scientific identification criteria.
Results:
The understanding of Long Gu evolved from mythological origins to a scientific conclusion in the Ming Dynasty, with Li Shizhen correctly identifying it as fossilized ancient mammalian bones. Modern research confirms authentic "Wuhua Long Gu" from the Shanxi-Shaanxi region is primarily carbonated hydroxyapatite, characterized by high porosity (>35%), significant hygroscopicity, and a unique trace element profile (Zn, Sr). These properties underpin its advertised therapeutic effects. However, the market is now saturated with dangerous adulterants, including fluoride-rich dinosaur fossils and processed modern bones, due to resource exhaustion and inadequate pharmacopoeial standards focused solely on calcium content.
Conclusion:
The future of Long Gu depends on transcending outdated quality controls. Ensuring its efficacy and safety necessitates a paradigm shift to a comprehensive standard system that combines paleontological and geochronological origin verification, quantitative microstructural analysis, chemical fingerprinting of key components, and strict safety monitoring. Complementary research into biomimetic synthesis and accelerated mineralization is urgently needed to develop sustainable alternatives for this invaluable yet endangered medicinal resource.
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