2014, 19, 19610-19632; doi: 10. 3390/molecules191219610 molecules



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200847, 35–45. 

80.  Cantarelli, M.A.; Caminia, J.M.; Pettenati, E.M.; Marchevsky, E.J.; Pellerano, R.G. Trace mineral 

content of Argentinean raw propolis by neutron activation analysis (NAA): Assessment of 

geographical provenance by chemometrics. LWT Food Sci. Technol. 201144, 256–260. 

81.  Razmovski-Naumovski, V.; Tongkao-on, W.; Kimble, B.; Qiao, V.L.; Beilun, L.; Li, K.M.; 

Roufogalis, B.; Depo, Y.; Meicun, Y.; Li, G.Q. Multiple chromatographic and chemometric 

methods for quality standardisation of Chinese herbal medicines. World Sci. Technol. 201012

99–106. 


82.  Arias, M.C.; Sheppard, W.S. Phylogenetic relationships of honey bees (Hymenoptera: Apinae: 

Apini) inferred from nuclear and mitochondrial DNA sequence data. Mol. Phylogenet. Evol.  



200537, 25–35. 

83.  Arias, M.C.; Sheppard, W.S. Molecular phylogenetics of honey bee subspecies (Apis mellifera L.) 

inferred from mitochondrial DNA sequence. Mol. Phylogenet. Evol. 19965, 557–566. 

84.  Da Cunha, M.G.; Franchin, M.; de Carvalho Galvão, L.C.; de Ruiz, A.L.; de Carvalho, J.E.; 

Ikegaki, M.; de Alencar, S.M.; Koo, H.; Rosalen, P.L. Antimicrobial and antiproliferative 

activities of stingless bee Melipona scutellaris geopropolis. BMC Complement. Altern. Med.  



201313, 23. 

85.  Dutra, R.P.; Abreu, B.V.; Cunha, M.S.; Batista, M.C.; Torres, L.M.; Nascimento, F.R.; Ribeiro, M.N.; 

Guerra, R.N. Phenolic Acids, Hydrolyzable Tannins, and Antioxidant Activity of Geopropolis 

from the Stingless Bee Melipona fasciculata Smith. J. Agric. Food Chem. 201462, 2549–2557. 

86.  Daugsch, A.; Moraes, C.S.; Fort, P.; Park, Y.K. Brazilian red propolis—Chemical composition 

and botanical origin. Evid. Based Complement. Alternat. Med. 20085, 435–441. 

87.  Massaro, F.C.; Brooks, P.R.; Wallace, H.M.; Russell, F.D. Cerumen of Australian stingless bees 

(Tetragonula carbonaria): Gas chromatography-mass spectrometry fingerprints and potential 

anti-inflammatory properties. Naturwissenschaften 201198, 329–337. 

88.  Massaro, C.; Katouli, M.; Grkovic, T.; Vu, H.; Quinn, R.; Heard, T.; Carvalho, C.; Manley-Harris, M.; 

Wallace, H.; Brooks, P. Anti-staphylococcal activity of C-methyl flavanones from propolis of 

Australian stingless bees (Tetragonula carbonaria) and fruit resins of Corymbia torelliana 

(Myrtaceae). Fitoterapia 201495, 247–257. 


Molecules 201419 19632 

 

 

89.  Leonhardt, S.; Zeilhofer, S.; Blüthgen, N.; Schmitt, T. Stingless bees use terpenes as olfactory cues 



to find resin sources. Chem. Sens. 201035, 603–611. 

90.  Leonhardt, S.D.; Blüthgen, N. A sticky affair: Resin collection by Bornean stingless bees. 



Biotropica 200941, 730–736. 

91.  Leonhardt, S.; Blüthgen, N.; Schmitt, T. Smelling like resin: Terpenoids account for species-specific 

cuticular profiles in Southeast-Asian stingless bees. Insectes Sociaux 200956, 157–170. 

92.  Ahn, M.R.; Kumazawa, S.; Usui, Y.; Nakamura, J.; Matsuka, M.; Zhu, F.; Nakayama, T. 

Antioxidant activity and constituents of propolis collected in various areas of China. Food Chem. 

2007101, 1383–1392. 

93.  Kosalec, I.; Bakmaz, M.; Pepeljnjak, S. Analysis of propolis from the continental and Adriatic 

regions of Croatia. Acta Pharm. 200353, 275–285. 

94.  Chen, C.N.; Weng, M.S.; Wu, C.L.; Lin, J.K. Comparison of Radical Scavenging Activity

Cytotoxic Effects and Apoptosis Induction in Human Melanoma Cells by Taiwanese Propolis 

from Different Sources. Evid. Based Complement. Alternat. Med. 20041, 175–185. 

95.  Huang, W.J.; Huang, C.H.; Wu, C.L.; Lin, J.K.; Chen, Y.W.; Lin, C.L.; Chuang, S.E.; Huang, C.Y.; 

Chen, C.N. Propolin G, a prenylflavanone, isolated from Taiwanese propolis, induces 

caspase-dependent apoptosis in brain cancer cells. J. Agric. Food Chem. 200755, 7366–7376. 

96.  Markham, K.R.; Mitchell, K.A.; Wilkins, A.L.; Daldy, J.A.; Yinrong, L. HPLC and GC-MS 

identification of the major organic constituents in New Zealand propolis. Phytochemistry 199642

205–211. 

97.  Trusheva, B.; Popova, M.; Bankova, V.; Simova, S.; Marcucci, M.C.; Miorin, P.L.; Pasin, F.R.; 

Tsvetkova, I. Bioactive constituents of Brazilian red propolis. Evid. Based Complement.  



Altern. Med. 20063, 249–254. 

98.  Mohammadzadeh, S.; Shariatpanahi, M.; Hamedi, M.; Ahmadkhaniha, R.; Samadi, N.; Ostad, S.N. 

Chemical composition, oral toxicity and antimicrobial activity of Iranian propolis. Food Chem. 

2007103, 1097–1103. 

99.  Kumazawa, S.; Yoneda, M.; Shibata, I.; Kanaeda, J.; Hamasaka, T.; Nakayama, T. Direct evidence 

for the plant origin of Brazilian propolis by the observation of honeybee behavior and 

phytochemical analysis. Chem. Pharm. Bull. 200351, 740–742. 

100.  Trusheva, B.; Popova, M.; Naydenski, H.; Tsvetkova, I.; Gregorio Rodriguez, J.; Bankova, V.  

New polyisoprenylated benzophenones from Venezuelan propolis. Fitoterapia 200475, 683–689. 

101.  Kumazawa, S.; Nakamura, J.; Murase, M.; Miyagawa, M.; Ahn, M.-R.; Fukumoto, S.  

Plant origin of Okinawan propolis: Honeybee behavior observation and phytochemical analysis. 



Naturwissenschaften 200895, 781–786. 

102.  Silici, S.; Ünlü, M.; Vardar-Ünlü, G. Antibacterial activity and phytochemical evidence for the 

plant origin of Turkish propolis from different regions. World J. Microbiol. Biotechnol. 200723

1797–1803. 

© 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article 

distributed under the terms and conditions of the Creative Commons Attribution license 



(http://creativecommons.org/licenses/by/4.0/). 

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