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Hirekodathakallu V Thulasiram

Explore the profile of Hirekodathakallu V Thulasiram including associated specialties, affiliations and a list of published articles. Areas
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Articles 58
Citations 663
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Recent Articles
1.
Patil H, Dinore J, Alrabie A, Thulasiram H
Nat Prod Res . 2024 Jan; 39(6):1735-1740. PMID: 38189300
A phytochemical investigation of involved the isolation of flavones and steroids, along with triterpenoids. The identified chemical constituents were characterized as baicalein, baicalein-7-O-β-D-glucuronide, lup-20(29)-ene-3α,23-diol, β-sitosterol, and stigmasterol. Notably, baicalein (4)...
2.
Doddaraju P, Dharmappa P, Thiagarayaselvam A, Vijayaraghavareddy P, Bheemanahalli R, Basavaraddi P, et al.
Physiol Plant . 2023 Apr; 175(3):e13917. PMID: 37087573
Mild stresses induce "acquired tolerance traits" (ATTs) that provide tolerance when stress becomes severe. Here, we identified the genetic variability in ATTs among a panel of rice germplasm accessions and...
3.
Vennapusa A, Agarwal S, Rao Hm H, Aarthy T, Babitha K, Thulasiram H, et al.
Plant Physiol Biochem . 2022 Sep; 189:126-138. PMID: 36084528
Glyphosate residues retained in the growing meristematic tissues or in grains of glyphosate-resistant crops affect the plants physiological functions and crop yield. Removing glyphosate residues in the plants is desirable...
4.
Mulani F, Nandikol S, Kajjihundi J, Pathappa N, Puttappa S, Thulasiram H
Anal Bioanal Chem . 2022 Jun; 414(20):6093-6106. PMID: 35727329
Meliaceae plants have been extensively used in agriculture, folklore, and traditional medicine. They are the major storehouses for structurally diverse limonoids (meliacins) possessing various bioactivities like antifeedant, insecticidal, antimicrobial, etc....
5.
Mulani F, Nandikol S, Haldar S, Thulasiram H
ACS Omega . 2021 Oct; 6(40):26454-26476. PMID: 34661002
Limonoids are bioactive plant specialized metabolites found in the Meliaceae family. The basic limonoids, i.e., azadiradione, epoxyazadiradione, and gedunin have been exploited for various bioactivities and therefore are the potential...
6.
Gorantla N, Das R, Mulani F, Thulasiram H, Chinnathambi S
J Alzheimers Dis Rep . 2021 May; 5(1):227. PMID: 33981959
[This corrects the article DOI: 10.3233/ADR-190118.].
7.
Pandreka A, Chaya P, Kumar A, Aarthy T, Mulani F, Bhagyashree D, et al.
Phytochemistry . 2021 Apr; 187:112751. PMID: 33839517
No abstract available.
8.
Jain P, Shanthamurthy C, Leviatan Ben-Arye S, Yehuda S, Nandikol S, Thulasiram H, et al.
Chem Commun (Camb) . 2021 Mar; 57(28):3516-3519. PMID: 33704312
We report the discovery of a potential heparan sulfate (HS) ligand to target several growth factors using 13 unique HS tetrasaccharide ligands. By employing an HS microarray and SPR, we...
9.
Pandreka A, Chaya P, Kumar A, Aarthy T, Mulani F, Bhagyashree D, et al.
Phytochemistry . 2021 Feb; 184:112669. PMID: 33524856
Neem (Azadirachta indica L.) is well known for its medicinal, agricultural, and pesticidal applications since ages. The secondary metabolites, limonoids, confer these biological properties, wherein over 150 different limonoids have...
10.
Singh S, Thulasiram H, Sengupta D, Kulkarni K
Biochem Biophys Res Commun . 2021 Jan; 536:107-114. PMID: 33387748
Sesquiterpene synthases catalyse cyclisation of farnesyl pyrophosphate to produce diverse sesquiterpenes. Despite utilising the same substrate and exhibiting significant sequence and structural homology, these enzymes form different products. Previous efforts...