Quantitative instrumental thin-layer chromatography method development of astragalin and its chemical diversity in different populations of Nyctanthes arbor-tristis L.

Agrawal J, Pal A (2013) Nyctanthes arbor-tristis Linn—A critical ethnopharmacological review. J Ethnopharmacol 146:645–658

Article  PubMed  CAS  Google Scholar 

Santosh J, Manojkumar P (2016) A review on: Nyctanthes arbortristis Linn. Rejuvinating herbs. Int J Res Pharm Sci 1:54–62

Google Scholar 

Jain PK, Pandey A (2016) The wonder of Ayurvedic medicine—Nyctanthes arbortristis. Int J Herb Med 4:9–17

Google Scholar 

Meshram MM, Rangari SB, Kshirsagar SB, Gajbhiye S, Trivedi MR, Sahane RS (2012) Nyctanthes arbor-tristis a herbal panacea. Int J Pharm Sci Res 3:2432

Google Scholar 

Godse CS, Tathed PS, Talwalkar SS, Vaidya RA, Amonkar AJ, Vaidya AB, Vaidya AD (2016) Antiparasitic and disease-modifying activity of Nyctanthes arbor-tristis Linn. in malaria: an exploratory clinical study. J Ayurveda Integr Med 7:238–248

Article  PubMed  PubMed Central  Google Scholar 

Kannan M, Singh AR, Kumar TA, Jegatheswari P, Subburayalu S (2007) Studies on immuno-bioactivities of Nyctanthes arbor-tristis (Oleaceae). Afr J Microbiol Res 1:88–91

Google Scholar 

Nirmal SA, Pal SC, Mandal SC, Patil AN (2012) Analgesic and anti-inflammatory activity of β-sitosterol isolated from Nyctanthes arbortristis leaves. Inflammopharmacol 20:219–224

Article  CAS  Google Scholar 

Priya K, Ganjewala D (2007) Antibacterial activities and phytochemical analysis of different plant parts of Nyctanthes arbor-tristis (Linn.). Res J Phytochem 1:61–67

Article  Google Scholar 

Sharma A, Goel A, Lin Z (2023) In vitro and in silico anti-rheumatic arthritis activity of Nyctanthes arbor-tristis. Molecules 28:6125

Article  PubMed  PubMed Central  CAS  Google Scholar 

Sasmal D, Das S, Basu SP (2007) Phcog rev.: Review Article Phytoconstituents and therapeutic potential of Nyctanthes arbor-tristis Linn. Phcog Rev 1:6

Sah AK, Verma VK (2012) Phytochemicals and pharmacological potential of Nyctanthes arbor-tristis: a comprehensive review. Int J Res Pharm Biomed Sci 3:420–427

CAS  Google Scholar 

Riaz A, Rasul A, Hussain G, Zahoor MK, Jabeen F, Subhani Z, Younis T, Ali M, Sarfraz I, Selamoglu Z (2018) Astragalin: a bioactive phytochemical with potential therapeutic activities. Adv Pharmacol Sci 2018:1–15

Google Scholar 

Chen J, Zhong K, Qin S, Jing Y, Liu S, Li D, Peng C (2023) Astragalin: a food-origin flavonoid with therapeutic effect for multiple diseases. Front Pharmacol 14:1265960

Article  PubMed  PubMed Central  CAS  Google Scholar 

Pandit S, Bhadra P (2020) Efficacy of some compounds isolated from Nyctanthes arbor-tristis Linn. on human and plant diseases as revealed from in silico analysis. Ind J Nat Sci 10:20833–20839

Google Scholar 

Fawzi F, Mahdi MF, Abaas IS (2019) Isolation of Astragalin from Cressa cretica cultivated in Iraq. J Pharm Sci 11:185–190

CAS  Google Scholar 

Mehdi A, Al-ani WM, Raoof A (2018) Isolation of astragalin from Iraqi Chenopodium album. Asian J Pharm Clin Res 11:530–535

Article  CAS  Google Scholar 

Ionescu E, Țebrencu CE, Vochița G, Gherghel D, Ciupercă OT (2018) Hptlc investigation of phenolic compounds from the extracts of Ulmus glabra Huds. bark (Elm). Analele Stiintifice ale Universitatii’Al I Cuza’din Iasi(Serie Noua) Sectiunea II a Biologie Vegetala 64:51–62

Mukherjee PK, Kar A, Biswas S, Chaudhary SK, Banerjee S (2022) Hyphenated analytical techniques for validation of herbal medicine. Evidence-based validation of herbal medicine. Elsevier, Amsterdam, pp 811–827

Chapter  Google Scholar 

Mevada S, Shukla S, Patel H (2024) Simultaneous estimation of andrographolide, apigenin, apocynin, and gallic acid by high-performance thin layer chromatography method with Greenness quality by design approach. Sep Sci Plus 7:2300109

Article  CAS  Google Scholar 

Ghosh D, Chaudhary N, Shanker K, Kumar B, Kumar N (2023) Monoecious Cannabis sativa L. discloses the organ-specific variation in glandular trichomes, cannabinoids content and antioxidant potential. J Appl Res Med Aromat Plants 35:100476

CAS  Google Scholar 

International Council for Harmonisation (2005) Validation of analytical procedures: text and methodology. Q2(R1) 1:05, Geneva

Chaudhary SK, Kar A, Bhardwaj PK, Sharma N, Devi SI, Mukherjee PK (2023) A validated high-performance thin-layer chromatography method for the quantification of chlorogenic acid in the hydroalcoholic extract of Gynura cusimbua leaves. JPC J Planar Chromat 36:45–53

Article  CAS  Google Scholar 

Mevada S, Patel H, Shukla S (2024) Simultaneous equation method for the estimation of gallic acid and apigenin by UV–visible spectrophotometry. Accred Qual Assur 29:11–17

Article  CAS  Google Scholar 

Hammer O (2001) PAST: Paleontological statistics software package for education and data analysis. Palaeontol Electron 4:9

Google Scholar 

Ahmed A, Ahmad S, Ur-Rahman M, Tajuddin TE, Verma R, Afzal M, Mehra PS (2015) Quantitative analysis of bacoside A from Bacopa monnieri, collected from different geographic regions of India, by high-performance thin-layer chromatography–densitometry. JPC J Planar Chromat 28:287–293

Article  CAS  Google Scholar 

Saxena HO, Parihar S, Pawar G, Rao GR (2023) Simultaneous densitometric determination of β-sitosterol and lupeol through validated HPTLC method in different plant parts of Uraria picta (Jacq.) Desv. ex DC.–A dashmool species. Acta Chromatogr 35:99–105

Article  CAS  Google Scholar 

Khramova EP (2022) Influence of abiotic environmental factors on the accumulation of phenolic metabolites of Dasiphora fruticosa. Contemp Probl Ecol 15:508–520

Article  Google Scholar 

Vilkickyte G, Raudone L (2021) Phenological and geographical effects on phenolic and triterpenoid content in Vaccinium vitis-idaea L. leaves. Plants 10:1986

Article  PubMed  PubMed Central  CAS  Google Scholar 

Shukla PK, Shankar U, Srivastava S, Verma A (2024) Variability in plumbagin content and identification of elite chemotypes among the germplasms of Plumbago zeylanica Linn. collected from different locations of Central India. JPC J Planar Chromat 37:219–232

Article  CAS  Google Scholar 

Poongattil S, Thomas J, Cheruthazhakkat S (2024) High-performance thin-layer chromatography profiling of Crateva magna (Lour.) DC. from different parts of South India. JPC J Planar Chromat 37:151–159

Article  CAS  Google Scholar 

Tiwari S, Shukla PK, Chauhan D, Khatoon S (2024) Variability study of active metabolites and identification of elite chemotype of Withania somnifera L. Dunal collected from Central India. JPC J Planar Chromat 37:189–198

Article  CAS  Google Scholar 

Ribeiro SMR, Barbosa LCA, Queiroz JH, Knödler M, Schieber A (2008) Phenolic compounds and antioxidant capacity of Brazilian mango (Mangifera indica L.) varieties. Food Chem 110:620–626

Article  CAS  Google Scholar 

Pandotra P, Gupta AP, Husain MK, Gupta S (2013) Evaluation of genetic diversity and chemical profile of ginger cultivars in north-western Himalayas. Biochem Syst Ecol 48:281–287

Article  CAS  Google Scholar 

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