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Original Articles

SIMULTANEOUS DETERMINATION OF CATHARANTHUS ALKALOIDS USING REVERSED PHASE HIGH PERFORMANCE LIQUID CHROMATOGRAPHY

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Pages 601-607 | Received 03 Mar 1999, Accepted 03 Apr 1999, Published online: 06 Feb 2007

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Gabriela Cimpan & Simion Gocan. (2002) ANALYSIS OF MEDICINAL PLANTS BY HPLC: RECENT APPROACHES. Journal of Liquid Chromatography & Related Technologies 25:13-15, pages 2225-2292.
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Shaifali Srivastava, Ram K. Verma, Madan M. Gupta, Subhash C. Singh & Sushil Kumar. (2001) HPLC DETERMINATION OF VASICINE AND VASICINONE IN ADHATODA VASICA WITH PHOTO DIODE ARRAY DETECTION. Journal of Liquid Chromatography & Related Technologies 24:2, pages 153-159.
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Articles from other publishers (26)

Anamika Paul, Krishnendu Acharya & Nilanjan Chakraborty. (2023) Biosynthesis, extraction, detection and pharmacological attributes of vinblastine and vincristine, two important chemotherapeutic alkaloids of Catharanthus roseus (L.) G. Don: A review. South African Journal of Botany 161, pages 365-376.
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Günay Önal. (2023) Investigation of the electrochemical properties of vinblastine on boron-doped diamond electrode treated with anodic pre-treatment in anionic surfactant medium. Diamond and Related Materials 133, pages 109699.
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M. Ahmadzadeh, A.H. Keshtkar, K. Moslemkhany & M. Ahmadzadeh. (2022) Effect of the plant probiotic bacteria on terpenoid indole alkaloid biosynthesis pathway gene expression profiling, vinblastine and vincristine content in the root of Catharanthus roseus. Molecular Biology Reports 49:11, pages 10357-10365.
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Narges Soltani, Farhad Nazarian Firouzabadi, Alireza Shafeinia, Masoud Shirali & Ayeh Sadat Sadr. (2022) De Novo transcriptome assembly and differential expression analysis of catharanthus roseus in response to salicylic acid. Scientific Reports 12:1.
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M. J. Nishanth & Bindu Simon. (2022) Understanding the possible influence of Pumilio RNA binding proteins on terpenoid indole alkaloid biosynthesis in Catharanthus roseus. Physiology and Molecular Biology of Plants 28:5, pages 963-969.
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Sunil Kumar, Bikarma Singh & Ramesh Singh. (2022) Catharanthus roseus (L.) G. Don: A review of its ethnobotany, phytochemistry, ethnopharmacology and toxicities. Journal of Ethnopharmacology 284, pages 114647.
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Sucheta Singh, Shiv S. Pandey, Rashmi Tiwari, Alok Pandey, Karuna Shanker & Alok Kalra. (2021) Endophytic consortium with growth-promoting and alkaloid enhancing capabilities enhance key terpenoid indole alkaloids of Catharanthus roseus in the winter and summer seasons. Industrial Crops and Products 166, pages 113437.
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Maha Mohammed Galal & Ahmed Sayed Saad. (2020) Portable solid-state sensor for therapeutic monitoring of an antineoplastic drug; vinblastine in human plasma. RSC Advances 10:70, pages 42699-42705.
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Haidar Saify Nabiabad & Massoumeh Amini. (2020) Fabrication of an Impedimetric Immunosensor for Screening and Determination of Vincristine in Biological Samples. Journal of Analytical Chemistry 75:8, pages 1094-1101.
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S. Singh, S.S. Pandey, K. Shanker & A. Kalra. (2020) Endophytes enhance the production of root alkaloids ajmalicine and serpentine by modulating the terpenoid indole alkaloid pathway in Catharanthus roseus roots . Journal of Applied Microbiology 128:4, pages 1128-1142.
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M. J. Nishanth, S. A. Sheshadri, Sudarshan Singh Rathore, S. Srinidhi & Bindu Simon. (2018) Expression analysis of Cell wall invertase under abiotic stress conditions influencing specialized metabolism in Catharanthus roseus. Scientific Reports 8:1.
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Rohanizah Abdul Rahim, Nor Hazwani Ahmad, Khaldun Mohammad Al Azzam & Ishak Mat. (2018) Determination and Quantification of the Vinblastine Content in Purple, Red, and White Catharanthus Roseus Leaves Using RP-HPLC Method. Advanced Pharmaceutical Bulletin 8:1, pages 157-161.
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Sunil Kumar, Vikas Bajpai, Awantika Singh & Brijesh Kumar. (2018) Identification, characterization and distribution of terpene indole alkaloids in ethanolic extracts of Catharanthus roseus using high-performance liquid chromatography/electrospray ionization quadrupole time-of-flight tandem mass spectrometry and the stud. Rapid Communications in Mass Spectrometry 32:4, pages 319-332.
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Esmaeel Haghshenas, Tayyebeh Madrakian, Abbas Afkhami & Haidar Saify Nabiabad. (2017) A label-free electrochemical biosensor based on tubulin immobilized on gold nanoparticle/glassy carbon electrode for the determination of vinblastine. Analytical and Bioanalytical Chemistry 409:22, pages 5269-5278.
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Asfia Shabbir, Akbar Ali, Yawar Sadiq, Hassan Jaleel, Bilal Ahmad, M. Naeem, M. Masroor A. Khan & Moin Uddin. 2017. Catharanthus roseus. Catharanthus roseus 365 381 .
Shiv S. Pandey, Sucheta Singh, C. S. Vivek Babu, Karuna Shanker, N. K. Srivastava, Ashutosh K. Shukla & Alok Kalra. (2016) Fungal endophytes of Catharanthus roseus enhance vindoline content by modulating structural and regulatory genes related to terpenoid indole alkaloid biosynthesis. Scientific Reports 6:1.
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Debmalya BarhAshutosh Shukla & Suman Khanuja. 2013. OMICS Applications in Crop Science. OMICS Applications in Crop Science 325 384 .
Avanish Rai, Shachi S. Smita, Anup Kumar Singh, Karuna Shanker & Dinesh A. Nagegowda. (2013) Heteromeric and Homomeric Geranyl Diphosphate Synthases from Catharanthus roseus and Their Role in Monoterpene Indole Alkaloid Biosynthesis. Molecular Plant 6:5, pages 1531-1549.
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Qinhua Chen, Wenpeng Zhang, Yulin Zhang, Jing Chen & Zilin Chen. (2013) Identification and quantification of active alkaloids in Catharanthus roseus by liquid chromatography–ion trap mass spectrometry. Food Chemistry 139:1-4, pages 845-852.
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Susheel Kumar Raina, Dhammaprakash Pandhari Wankhede, Monika Jaggi, Pallavi Singh, Siddhi Kashinath Jalmi, Badmi Raghuram, Arsheed Hussain Sheikh & Alok Krishna Sinha. (2012) CrMPK3, a mitogen activated protein kinase from Catharanthus roseusand its possible role in stress induced biosynthesis of monoterpenoid indole alkaloids. BMC Plant Biology 12:1.
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Mohd Idrees, Mohd Naeem, Masidur Alam, Tariq Aftab, Nadeem Hashmi, Mohd Masroor Akhtar Khan, Moinuddin & Lalit Varshney. (2011) Utilizing the γ-Irradiated Sodium Alginate as a Plant Growth Promoter for Enhancing the Growth, Physiological Activities, and Alkaloids Production in Catharanthus roseus L.. Agricultural Sciences in China 10:8, pages 1213-1221.
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Monika Jaggi, Santosh Kumar & Alok Krishna Sinha. (2011) Overexpression of an apoplastic peroxidase gene CrPrx in transgenic hairy root lines of Catharanthus roseus. Applied Microbiology and Biotechnology 90:3, pages 1005-1016.
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Jyoti Taneja, Monika Jaggi, Dhammaprakash Pandhari Wankhede & Alok Krishna Sinha. (2010) Effect of loss of T-DNA genes on MIA biosynthetic pathway gene regulation and alkaloid accumulation in Catharanthus roseus hairy roots. Plant Cell Reports 29:10, pages 1119-1129.
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Steve Hisiger & Mario Jolicoeur. (2007) Analysis of Catharanthus roseus alkaloids by HPLC. Phytochemistry Reviews 6:2-3, pages 207-234.
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Ajaswrata Dutta, Jyoti Batra, Sashi Pandey-Rai, Digvijay Singh, Sushil Kumar & Jayanti Sen. (2004) Expression of terpenoid indole alkaloid biosynthetic pathway genes corresponds to accumulation of related alkaloids in Catharanthus roseus (L.) G. Don. Planta 220:3, pages 376-383.
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D.V. Singh, R.K. Verma, S.C. Singh & M.M. Gupta. (2002) RP-LC determination of oleane derivatives in Terminalia arjuna. Journal of Pharmaceutical and Biomedical Analysis 28:3-4, pages 447-452.
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