RASA SHASTRA IN ANCIENT AYURVEDA: THE EARLIEST FORM OF MODERN NANOTECHNOLOGY — A COMPARATIVE STUDY
Rasa Shastra, a specialized branch of Ayurveda that gained prominence between the 8th and 14th centuries CE, pioneered the therapeutic use of metals, minerals, and gems through intricate multi-step processing methodologies. Central to this discipline is the synthesis of Bhasmas (calcined metallic preparations) and Kajjali (herbomineral complexes). Recent advances in material characterization confirm that these ancient formulations consist predominantly of stable, biologically active nanoparticles ranging between 10 and 100 nanometers. This comparative study examines the conceptual and technical convergence between classical Rasa Shastra and contemporary nanotechnology. By mapping traditional steps—such as Shodhana (purification/detoxification), Bhavana (trituration with herbal juices), and Marana (incineration in closed crucibles)—onto modern top-down and bottom-up synthesis pathways, this paper demonstrates how ancient alchemists altered atomic coordination, reduced particle sizes, and functionalized mineral surfaces with bio-organic coatings. Classical test parameters (Rekhapurnatva, Varitara) correlate directly with modern physical properties verified via Transmission Electron Microscopy (TEM), X-ray Diffraction (XRD), and Dynamic Light Scattering (DLS). The resulting organometallic nanostructures exhibit enhanced cellular uptake, superior bioavailability, targeted delivery, and diminished toxicity compared to raw inorganic metals. Recognizing Rasa Shastra as a precursor to modern green nanotechnology offers critical insights for modern targeted nanomedicine, bio-capping, and the development of safe, highly bioavailable metallo-therapeutics.
Authors
- 2*Dr. Suman Sarkar 1Dr. Mukesh Kumar
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-06
- DOI
- https://doi.org/10.5281/zenodo.22548045
- Primary Topic
- Phytochemicals and Medicinal Plants
- Type
- article
- Field-Weighted Citation Impact
- 0.00