Sarkar, P.K., Chaudhuri, A.K.: Ayurvedic Bhasma: the most ancient application of nanomedicine. J. Sci. Ind. Res. 69(12), 901–905 (2010)
Bhargava, S.C., Reddy, K.R.C., Sastry, G.V.S.: Characterization of Lauha Bhasma. Int. J. Ayurvedic Med. 4(3), 194–202 (2013)
Singh, S.K., Chaudhary, A.K., Rai, D.K., Rai, S.B.: Preparation and characterization of a mercury based Indian traditional drug Ras-Sindoor. Indian J. Tradit. Knowl. 8(3), 346–351 (2009)
Aparna, C., Chowdari, P., Ghosh, S., Pawar, P., Patkar, M., Dakave, S., Gota, V., Chaudhari, P., Chiplunkar, S.V., Kane, S., Suresh, A.K., Bellare, J.: Bioactivity and safety studies of Jasad Bhasma and its in-process intermediate in Swiss Mice. J. Ethnopharmacol. 117, 73–86 (2017)
Pandit, S., Biswas, T.K., Debnath, P.K., Saha, A.V., Chowdhury, U., Shaw, B.P., Sen, S., Mukherjee, B.: Chemical and pharmacological evaluation of different Ayurvedic preparations of iron. J. Ethnopharmacol. 65, 149–156 (1999)
Singh, R.K., Kumar, S., Aman, A.K., Karim, S.M., Kumar, S., Kar, M.: Study on physical properties of Ayurvedic nanocrystalline Tamra Bhasma by employing modern scientific tools. J. Ayurveda Integr. Med. 10, 88–93 (2019)
Sarkar, P.K., Das, S., Prajapati, P.K.: Ancient concept of metal pharmacology based on Ayurvedic literature. Anc. Sci. Life 29(4), 1–6 (2010)
Sahu, A.K.: Nanotechnology in herbal medicines and cosmetics. Int. J. Res. Ayurveda Pharm. 4(3), 472–474 (2013)
Winker, M.A., Flanagin, A., Chi-Lum, B., White, J., Andrews, K., Kennett, R.L., DeAngelis, C.D., Musacchio, R.A.: Guidelines for medical and health information sites on the internet: Principles governing AMA web sites. JAMA 283, 1600–1606 (2000)
Wootton, J.: Directory of databases. The Vienna International Academy for Integrated medicine. The Rosenthal Center for Complementary and Alternative Medicine, Vienna (2004)
Kumar, A., Nair, A.G.C., Reddy, A.V.R., Garg, A.N.: Unique Ayurvedic metallic-herbal preparations- chemical characterization. Biol. Trace Elem. Res. 109, 231–254 (2007)
Beaudet, D., Badiles, S., Kuruvinashetti, K., Kashani, A.S., Jaunky, D., Ouellette, S., Piekny, A., Packirisamy, M.: Comparative study on cellular entry of incinerated ancient gold particles (Swarna Bhasma) and chemically synthesized gold particles. Sci. Rep. 7, 1–12 (2017)
Netam, A.K., Bhargava, V.K., Singh, R., Sharma, P.: Physico-chemical characterization of Ayurvedic Swarna Bhasma by using SEM, EDX, XRD and PSA. J. Complemint. Med. Res. 12(2), 204–209 (2021). https://doi.org/10.5455/jcmr.2021.12.02.23
Mukkavallia, S., Chalivendrab, V., Singh, B.R.: Physico-chemical analysis of herbally prepared silver nanoparticles and its potential as a drug bioenhancer. OpenNano 2, 19–27 (2017)
Vrinda, Hiremath, S.G., Medikeri, S.S.: Characterization of Bhasmas of cast and wrought iron. Int. J. Ayurveda Pharm. Chem. 7(2), 359–370 (2017)
Singh, S.K., Rai, S.B.: Detection of carbonaceous materials in Naga Bhasma. Indian J. Pharm. Sci. 74(2), 178–183 (2012)
Chaudhary, P., Lamba, N., Balian, S.K.: Analytical study of Vanga Bhasma. Int. J. Ayurvedic Med. 5(1), 82–90 (2014)
Kale, B., Rajurkar, N.: Synthesis and characterization of Vanga Bhasma. J. Ayurveda Integr. Med. 10, 111–118 (2019)
Chandran, S., Patgiri, B.J., Bedarkar, P., Gokarna, R.A., Shukla, V.J.: Particle size estimation and elemental analysis of Yasada Bhasma. Int. J. Green Pharm. 11(4), 765–773 (2017)
Kantak, S., Rajurkar, N., Adhyapak, P.: Synthesis and characterization of Abhraka (mica) Bhasma by two different methods. J. Ayurveda Integr. Med. 11(3), 236–242 (2020). https://doi.org/10.1016/j.jaim.2018.11.003
Wele, A., De, S., Dalvi, M., Devi, N., Pandit, V.: Nanoparticles of biotite mica as Krishna Vajra Abhraka Bhasma: synthesis and characterization. J. Ayurveda Integr. Med. 12, 269–282 (2021)
Tripathi, A., Joshi, B., Singh, H.S., Rathore, J.S., Sharma, G.: Chemical phases of some of the Ayurvedic heamatinic medicines. Int. J. Eng. Sci. Technol. 8(2), 25–32 (2010)
Palbag, S., Mondal, S., Bardhan, T., Gautam, D.N.S.: Comparative physico-chemical validation between Arsenic-based Indian traditional drugs Haratal Bhasma and Rasamanikya. J. Ayurvedic Herb. Med. 2(2), 43–48 (2016)
Mishra, A., Mishra, A.K., Tiwari, O.P., Jha, S.: In-house preparation and characterization of an Ayurvedic Bhasma: Pravala Bhasma. J. Integr. Med. 12(1), 52–58 (2014)
Kumar, A., Nair, A.G.C., Reddy, A.V.R., Garg, A.N.: Availability of essential elements in Bhasmas: analysis of Ayurvedic metallic preparations by INAA. J. Radioanal. Nucl. Chem. 270, 173 (2006)
Kadam, S.S., Jawale, R.W., Wadekar, M.: Chemical study of the diamond based Ayurvedic drug Hiraka Bhasma. Indian Science Congress, Chennai (2007)
Benn, T.M., Westerhoff, P., Herckes, P.: Detection of fullerenes (C60 and C70) in commercial cosmetics. Environ. Pollut. 159(5), 1334–1342 (2011)
Paladhi, A., Rej, A., Sarkar, D., Singh, R., Bhattacharyya, S., Sarkar, P.K., Kar, P.K., Manna, P.P., Hira, S.K.: Nanoscale diamond-based formulation as an immunomodulator and potential therapeutic for Lymphoma. Front. Pharmacol. 13, 852065 (2022). https://doi.org/10.3389/fphar.2022.852065
Ruidas, B., Sur, T.K., Pal, K., SomChaudhury, S., Prasad, P., Sinha, K., Sarkar, P.K., Das, P., DasMukhopadhyay, C.: Herbometallic nano-drug inducing metastatic growth inhibition in breast cancer through intracellular energy depletion. Mol. Biol. Rep. 47(5), 3745–3763 (2020). https://doi.org/10.1007/s11033-020-05467-7
Kumar, N., Chamoli, P., Misra, M., Manoj, M.K., Sharma, A.: Advanced metal and carbon nanostructures for medical, drug delivery and bio-imaging applications. Nanoscale 14, 3987–4017 (2022)
Wild, C., Koidl, P.: Thermal gas effusion from hydrogenated amorphous carbon films. Appl. Phys. Lett. 51, 1506–1508 (1987)
Krusic, P.J., Wasserman, E., Keizer, P.N., Morton, J.R., Preston, K.F.: Radical reactions of C60. Science 254, 1183–1185 (1991)
Liu, Y., Jiao, F., Qiu, Y., Li, W., Qu, Y., Tian, C., Li, Y., Bai, R., Lao, F., Zhao, Y., Chai, Z., Chen, C.: Immunostimulatory properties and enhanced TNF-alpha mediated cellular immunity for tumor therapy by C60(OH)20 nanoparticles. Nanotechnology 20(41), 415102 (2009)
Petrovic, D., Seke, M., Srdjenovic, B., Djordjevic, A.: Applications of Anti/Prooxidant Fullerenes in Nanomedicine along with Fullerenes Influence on the Immune System. J. Nanomater. (2015). https://doi.org/10.1155/2015/565638
Bakry, R., Vallant, R.M., Najam-ul-Haq, M., Rainer, M., Szabo, Z., Huck, C.W., Bonn, G.K.: Medicinal applications of fullerenes. Int. J. Nanomed. 2(4), 640–649 (2007)
Diez-Paskal, A.M.: State of the art in the antibacterial and antiviral applications of carbon-based polymeric nanocomposites. Int. J. Mol. Sci. 22, 10511 (2021). https://doi.org/10.3390/ijms221910511
Prylutska, S.V., Burlaka, A.P., Klymenko, P.P., Grynyuk, I.I., Prylutskyy, Y.I., Schütze, C., Ritter, U.: Using water-soluble C60 fullerenes in anticancer therapy. Cancer Nanotechnol. 2(1–6), 105–110 (2011)
Foley, S., Crowley, C., Smaihi, M., Bonfils, C., Erlanger, B.F., Seta, P., Larroque, C.: Cellular localisation of a water-soluble fullerene derivative. Biochem. Biophys. Res. Commun. 294, 116–119 (2002)
Nielsen, G.D., Roursgaard, M., Jensen, K.A., Poulsen, S.S., Larsen, S.T.: In vivo biology and toxicology of fullerenes and their derivatives. Basic Clin. Pharmacol. Toxicol. 103, 197–208 (2008). https://doi.org/10.1111/j.1742-7843.2008.00266.x
Dwivedi, A.D., Ma, L.Q.: Biocatalytic synthesis pathways, transformation, and toxicity of nanoparticles in the environment. Crit. Rev. Environ. Sci. Technol. 44, 1679–1739 (2014)
Mahmood, M., Villagarcia, H., Dervishi, E., Mustafa, T., Alimohammadi, M., Casciano, D., Khodakovskaya, M., Biris, A.S.: Role of carbonaceous nanomaterials in stimulating osteogenesis in mammalian bone cells. J. Mater. Chem. B 1, 3220–3230 (2013)
Shah, Z.A., Vohora, S.B.: Antioxidant/restorative effects of calcined gold preparations used in Indian systems of medicine against global and focal models of ischaemia. Pharmacol. Toxicol. 90(5), 254–259 (2002). https://doi.org/10.1034/j.1600-0773.2002.900505.x
Comments (0)