Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI
Abstract. Ratnasari J, Esyanti RR, Tan MI, Juliawaty LD, Shimma S. 2021. Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI. Biodiversitas 22: 1172-1178. Cryptobrachytone C is an active compound isolated from leaves of Cryptocarya pulchrinervia, an indigen...
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oai:doaj.org-article:bfc02064b5134b7caa4a722d324be8512021-11-22T00:56:37ZProfile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI1412-033X2085-472210.13057/biodiv/d220312https://doaj.org/article/bfc02064b5134b7caa4a722d324be8512021-02-01T00:00:00Zhttps://smujo.id/biodiv/article/view/7468https://doaj.org/toc/1412-033Xhttps://doaj.org/toc/2085-4722Abstract. Ratnasari J, Esyanti RR, Tan MI, Juliawaty LD, Shimma S. 2021. Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI. Biodiversitas 22: 1172-1178. Cryptobrachytone C is an active compound isolated from leaves of Cryptocarya pulchrinervia, an indigenous plant from Indonesia. Cryptobrachytone C is cytotoxic against P388 leukemia cancer cell lines. A profile of cryptobrachytone C accumulation in leaves based on physiological age is necessary to study cryptobrachytone C production in the plant since it has anticancer potential. In situ profiling of cryptobrachytone C accumulation in leaves was carried out by imaging techniques using matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI). The cryptobrachytone C ionization efficiency was carried out by derivatization using Girard-T reagent and coating with ?-cyano-4-hydroxycinnamic acid (?-CHCA) matrix. Scanned leaves show higher accumulation intensity in the second leaf. Quantitative accumulation profiling was conducted using GC-MS, where the highest amount of cryptobrachytone C was on the second leaf at 87.07 ± 47.21 mg. This showed that the most effective isolation of cryptobrachytone C would be obtained from young leaves of Cryptocarya pulchrinervia. This profile would play a role in cryptobrachytone C production in-situ or ex-situ using tissue culture.Jujun RatnasariRizkita Rachmi EsyantiMarselina Irasonia TanLia Dewi JuliawatyShuichi ShimmaMBI & UNS Soloarticlecryptocarya pulchrinervia, cryptobrachytone c, maldi-msi, mass spectrometry.Biology (General)QH301-705.5ENBiodiversitas, Vol 22, Iss 3 (2021) |
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cryptocarya pulchrinervia, cryptobrachytone c, maldi-msi, mass spectrometry. Biology (General) QH301-705.5 |
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cryptocarya pulchrinervia, cryptobrachytone c, maldi-msi, mass spectrometry. Biology (General) QH301-705.5 Jujun Ratnasari Rizkita Rachmi Esyanti Marselina Irasonia Tan Lia Dewi Juliawaty Shuichi Shimma Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
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Abstract. Ratnasari J, Esyanti RR, Tan MI, Juliawaty LD, Shimma S. 2021. Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI. Biodiversitas 22: 1172-1178. Cryptobrachytone C is an active compound isolated from leaves of Cryptocarya pulchrinervia, an indigenous plant from Indonesia. Cryptobrachytone C is cytotoxic against P388 leukemia cancer cell lines. A profile of cryptobrachytone C accumulation in leaves based on physiological age is necessary to study cryptobrachytone C production in the plant since it has anticancer potential. In situ profiling of cryptobrachytone C accumulation in leaves was carried out by imaging techniques using matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI). The cryptobrachytone C ionization efficiency was carried out by derivatization using Girard-T reagent and coating with ?-cyano-4-hydroxycinnamic acid (?-CHCA) matrix. Scanned leaves show higher accumulation intensity in the second leaf. Quantitative accumulation profiling was conducted using GC-MS, where the highest amount of cryptobrachytone C was on the second leaf at 87.07 ± 47.21 mg. This showed that the most effective isolation of cryptobrachytone C would be obtained from young leaves of Cryptocarya pulchrinervia. This profile would play a role in cryptobrachytone C production in-situ or ex-situ using tissue culture. |
format |
article |
author |
Jujun Ratnasari Rizkita Rachmi Esyanti Marselina Irasonia Tan Lia Dewi Juliawaty Shuichi Shimma |
author_facet |
Jujun Ratnasari Rizkita Rachmi Esyanti Marselina Irasonia Tan Lia Dewi Juliawaty Shuichi Shimma |
author_sort |
Jujun Ratnasari |
title |
Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
title_short |
Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
title_full |
Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
title_fullStr |
Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
title_full_unstemmed |
Profile of cryptobrachytone C accumulation in Cryptocarya pulchrinervia leaves using MALDI-MSI |
title_sort |
profile of cryptobrachytone c accumulation in cryptocarya pulchrinervia leaves using maldi-msi |
publisher |
MBI & UNS Solo |
publishDate |
2021 |
url |
https://doaj.org/article/bfc02064b5134b7caa4a722d324be851 |
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