Bioactive Compounds from Medicinal Plants in Myanmar
245
414. Ngo KS, Brown GD (1998) Stilbenes, monoterpenes, diarylheptanoids, labdanes and
chalcones from Alpinia katsumadai. Phytochemistry 47:1117
415. Zhang J, Kong LY (2004) Chemical constituents from Alpinia tonkinensis. J Asian Nat Prod
Res 6:199
416. Nuntawong N, Susksamrarn A (2008) Chemical constituents of the rhizomes of Alpinia
malaccensis. Biochem Syst Ecol 36:661
417. Li QM, Luo JG, Yang MH, Kong LY (2015) Terpenoids from rhizomes of Alpinia japonica
inhibiting nitric oxide production. Chem Biodivers 12:388
418. Singh S, Gray AI, Waterman PG (1993) 14,15,16-Trinorlabda-8(17),11-(E)-dien-13-al: A
trinorlabdane diterpene from the rhizome of Hedychium coronarium. Nat Prod Lett 3:163
419. Itokawa H, Morita H, Katou I, Takeya K, Cavalheiro AJ, Oliveira RC, Ishige M, Motidome
M (1988) Cytotoxic diterpenes from the rhizomes of Hedychium coronarium. Planta Med
54:311
420. Xiao P, Sun C, Zahid M, Ishrud O, Pan Y (2001) New diterpene from Hedychium villosum.
Fitoterapia 72:837
421. Chimnoi N, Pisutjaroenpong S, Ngiwsara L, Dechtrirut D, Chokchaichamnankit D, Khunnawutmanotham N, Mahidol C, Techasakul S (2008) Labdane diterpenes from the rhizomes
of Hedychium coronarium. Nat Prod Res 22:1249
422. Chen JJ, Ting CW, Wu YC, Hwang TL, Cheng MJ, Sung PJ, Wang TC, Chen JF (2013) New
labdane-type diterpenoids and anti-inflammatory constituents from Hedychium coronarium.
Int J Mol Sci 14:13063
423. Akiyama K, Kikuzaki H, Aoki T, Okuda A, Lajis NH, Nakatani N (2006) Terpenoids and a
diarylheptanoid from Zingiber ottensii. J Nat Prod 69:1637
424. Kimbu SF, Ngadjui B, Sondengam LB, Njimi TK, Connolly JD, Fakunle CO (1987) A new
labdane diterpenoid from the seeds of Aframomum daniellii. J Nat Prod 50:230
425. Duker-Eshun G, Jaroszewski JW, Asomaning WA, Oppong-Boachie F, Olsen CE, Christensen
SB (2002) Antiplasmodial activity of labdanes from Aframomum latifolium and Aframomum
sceptrum. Planta Med 68:642
426. Nissankara Rao LS, Kilari EK, Kola PK (2019) Protective effect of Curcuma amada acetone
extract against high-fat and high-sugar diet-induced obesity and memory impairment. Nutr
Neurosci May 31:1
427. Policegoudra RS, Rehna K, Rao LJ, Aradhya SM (2010). Antimicrobial, antioxidant, cytotoxicity and platelet aggregation inhibitory activity of a novel molecule isolated and characterized
from mango ginger (Curcuma amada Roxb.) rhizome. J Biosci 35:231
428. Policegoudra RS, Aradhya SM, Singh L (2011) Mango ginger (Curcuma amada Roxb.) a
promising spice for phytochemicals and biological activities. J Biosci 36:739
429. Win NN, Ito T, Ngwe H, Win YY, Prema Okamoto Y, Tanaka M, Asakawa Y, Abe I, Morita
H (2017) Labdane diterpenoids from Curcuma amada rhizomes collected in Myanmar and
their antiproliferative activities. Fitoterapia 122:34
430. Singh S, Kumar JK, Saikia D, Shanker K, Thakur JP, Negi AS, Banerjee S (2010) A bioactive
labdane diterpenoid from Curcuma amada and its semisynthetic analogues as antitubercular
agents. Eur J Med Chem 45:4379
431. Singh S, Gray AI, Skelton BW, Waterman PG, White AH (1991) (+)-14-Hydroxylabda8(17),12-dieno-16,15-lactone ((+)-isocoronarin-D): a new diterpene from Hedychium coronarium (Zingiberaceae). Aust J Chem 44:1789
432. Dibwe DF, Awale S, Morita H, Tezuka Y (2015) Anti-austeritic constituents of the Congolese
medicinal plant Aframomum melegueta. Nat Prod Commun 10:997
433. Department of Traditional Medicine (1999) Ministry of Health. Yangon, Government of Union
of Myanmar, p 117
434. Mohanbabu AV, Kishore MK, Chandrashekar BR, Pradeepa HD, Christopher R, Nandit PB
(2015) Evaluation of potential antiamnesic activities of aqueous extract of Vitex trifolia leaves
against scopolamine induced amnesia and in normal rats. J Basic Clin Physiol Pharmacol
26:201
245
414. Ngo KS, Brown GD (1998) Stilbenes, monoterpenes, diarylheptanoids, labdanes and
chalcones from Alpinia katsumadai. Phytochemistry 47:1117
415. Zhang J, Kong LY (2004) Chemical constituents from Alpinia tonkinensis. J Asian Nat Prod
Res 6:199
416. Nuntawong N, Susksamrarn A (2008) Chemical constituents of the rhizomes of Alpinia
malaccensis. Biochem Syst Ecol 36:661
417. Li QM, Luo JG, Yang MH, Kong LY (2015) Terpenoids from rhizomes of Alpinia japonica
inhibiting nitric oxide production. Chem Biodivers 12:388
418. Singh S, Gray AI, Waterman PG (1993) 14,15,16-Trinorlabda-8(17),11-(E)-dien-13-al: A
trinorlabdane diterpene from the rhizome of Hedychium coronarium. Nat Prod Lett 3:163
419. Itokawa H, Morita H, Katou I, Takeya K, Cavalheiro AJ, Oliveira RC, Ishige M, Motidome
M (1988) Cytotoxic diterpenes from the rhizomes of Hedychium coronarium. Planta Med
54:311
420. Xiao P, Sun C, Zahid M, Ishrud O, Pan Y (2001) New diterpene from Hedychium villosum.
Fitoterapia 72:837
421. Chimnoi N, Pisutjaroenpong S, Ngiwsara L, Dechtrirut D, Chokchaichamnankit D, Khunnawutmanotham N, Mahidol C, Techasakul S (2008) Labdane diterpenes from the rhizomes
of Hedychium coronarium. Nat Prod Res 22:1249
422. Chen JJ, Ting CW, Wu YC, Hwang TL, Cheng MJ, Sung PJ, Wang TC, Chen JF (2013) New
labdane-type diterpenoids and anti-inflammatory constituents from Hedychium coronarium.
Int J Mol Sci 14:13063
423. Akiyama K, Kikuzaki H, Aoki T, Okuda A, Lajis NH, Nakatani N (2006) Terpenoids and a
diarylheptanoid from Zingiber ottensii. J Nat Prod 69:1637
424. Kimbu SF, Ngadjui B, Sondengam LB, Njimi TK, Connolly JD, Fakunle CO (1987) A new
labdane diterpenoid from the seeds of Aframomum daniellii. J Nat Prod 50:230
425. Duker-Eshun G, Jaroszewski JW, Asomaning WA, Oppong-Boachie F, Olsen CE, Christensen
SB (2002) Antiplasmodial activity of labdanes from Aframomum latifolium and Aframomum
sceptrum. Planta Med 68:642
426. Nissankara Rao LS, Kilari EK, Kola PK (2019) Protective effect of Curcuma amada acetone
extract against high-fat and high-sugar diet-induced obesity and memory impairment. Nutr
Neurosci May 31:1
427. Policegoudra RS, Rehna K, Rao LJ, Aradhya SM (2010). Antimicrobial, antioxidant, cytotoxicity and platelet aggregation inhibitory activity of a novel molecule isolated and characterized
from mango ginger (Curcuma amada Roxb.) rhizome. J Biosci 35:231
428. Policegoudra RS, Aradhya SM, Singh L (2011) Mango ginger (Curcuma amada Roxb.) a
promising spice for phytochemicals and biological activities. J Biosci 36:739
429. Win NN, Ito T, Ngwe H, Win YY, Prema Okamoto Y, Tanaka M, Asakawa Y, Abe I, Morita
H (2017) Labdane diterpenoids from Curcuma amada rhizomes collected in Myanmar and
their antiproliferative activities. Fitoterapia 122:34
430. Singh S, Kumar JK, Saikia D, Shanker K, Thakur JP, Negi AS, Banerjee S (2010) A bioactive
labdane diterpenoid from Curcuma amada and its semisynthetic analogues as antitubercular
agents. Eur J Med Chem 45:4379
431. Singh S, Gray AI, Skelton BW, Waterman PG, White AH (1991) (+)-14-Hydroxylabda8(17),12-dieno-16,15-lactone ((+)-isocoronarin-D): a new diterpene from Hedychium coronarium (Zingiberaceae). Aust J Chem 44:1789
432. Dibwe DF, Awale S, Morita H, Tezuka Y (2015) Anti-austeritic constituents of the Congolese
medicinal plant Aframomum melegueta. Nat Prod Commun 10:997
433. Department of Traditional Medicine (1999) Ministry of Health. Yangon, Government of Union
of Myanmar, p 117
434. Mohanbabu AV, Kishore MK, Chandrashekar BR, Pradeepa HD, Christopher R, Nandit PB
(2015) Evaluation of potential antiamnesic activities of aqueous extract of Vitex trifolia leaves
against scopolamine induced amnesia and in normal rats. J Basic Clin Physiol Pharmacol
26:201
