Journal of
Medicinal Plants Research

  • Abbreviation: J. Med. Plants Res.
  • Language: English
  • ISSN: 1996-0875
  • DOI: 10.5897/JMPR
  • Start Year: 2007
  • Published Articles: 3843

Full Length Research Paper

Effect of Mansoa alliacea (Bignonaceae) leaf extract on embryonic and tumorigenic mouse cell lines

Camden M. Towne*
  • Camden M. Towne*
  • Biology Department, Grove City College, 100 Campus Drive, Grove City, PA 16127, USA.
  • Google Scholar
Jan F. Dudt
  • Jan F. Dudt
  • Biology Department, Grove City College, 100 Campus Drive, Grove City, PA 16127, USA.
  • Google Scholar
Durwood B. Ray
  • Durwood B. Ray
  • Biology Department, Grove City College, 100 Campus Drive, Grove City, PA 16127, USA.
  • Google Scholar


  •  Received: 27 April 2015
  •  Accepted: 27 July 2015
  •  Published: 03 August 2015

References

Davila J, Calero A, Roldén S, Benítez F (2008). Functional Ingredients of Ecuadorian Plants. Trans. Rev. Politec. 29:51-59.
 
Dorant E, van den Brandt PA, Goldbohm RA, Hermus RJ, Sturmans F (1993). Garlic and its significance for the prevention of cancer in humans: a critical view. Br. J. Cancer 67:424-429.
Crossref
 
Filomeni G, Rotilio G, Ciriolo MR (2008). Molecular Transduction Mechanisms of the Redox Network Underlying the Antiproliferative Effects of Allyl Compounds from Garlic. J. Nutr. 11:2053-2057.
 
Granados-Echegoyen C, Pérez-Pacheco R, Soto-Hernández M, Ruiz-Vega J, Lagunez-Rivera L, Alonso-Hernandez N, Gato-Armas R (2014). Inhibition of the growth and devleopment of mosquito larvae of Culex quinquefasciatus (Diptera: Culicidae) treated with extract from leaves of Pseudocalymma alliaceum (Bignonaceae). Asian Pac. J. Trop. Med. 7(8):594-601.
Crossref
 
Khurana SP, Bhargava KS (1969). Effect of Plant Extracts on the Activity of Three Papaya Viruses. J. Gen. Appl. Microbiol. 16:225-230.
Crossref
 
Knowles LM, Milner JA (2000). Allyl sulfides modify cell growth. Drug Metab. Drug Interact. 17:81-107.
Crossref
 
Pandya D, Patel V, Desai T, Chaniyara N, Sankhavara M, Koyani V (2012). Pharmacognostic and phytochemical evaluation of aerial parts of Bignonia alliaceae. Int. J. Pharm. Life Sci. 3:1339-1344.
 
Rana BK, Taneja V, Singh UP (1999). Antifungal Activity of an Aqueous Extract of Leaves of Garlic Creeper (Adenocalymma alliaceum Miers.). Pharm. Biol. 37:13-16.
Crossref
 
Ray DB, Merrill GA, Brenner FJ, Lytle LL, Lam T, McElhinney A, Anders J, Rock TT, Lyker JK, Barcus S, Leslie KH, Kramer JM, Rubenstein EM, Schanz KP, Parkhurst AJ, Peck M, Good K, Granath KL, Cifra N, Detweiler JW, Stevens L, Albertson R, Deir R, Stewart E, Wingard K, Richardson MR, Blizard SB, Gillespie LE, Rzewnicki DI, Jones DH (2015). T24 HRAS Transformed NIH/3T3 Mouse Cells (GhrasT-NIH/3T3) in Serial Tumorigenic Passages Give Rise to Increasingly Aggressive Tumorigenic Cell Lines T1-A and T2-A and Metastatic Cell Lines T3-HA and T4-PA. Accepted for publication in Exper. Cell Res. (In Press, 2015).
Crossref
 
Sakamoto K, Lawson LD, Milner JA (1997). Allyl sulfides from garlic suppress the in vitro proliferation of human a549 lung tumor cells. Nutr. Cancer 29:152-156.
Crossref
 
Seki T, Hosono T, Suda S, Kimura K, Ariga T (2012). Anticancer Property of Allyl Sulfides Derived from Garlic (Allium sativum L.). J. Food Drug Anal. 20:309-312.
 
Song K, Milner JA (2001). The Influence of Heating on the Anticancer Properties of Garlic. J. Nutr. 131:1054S-1057S.
Pubmed
 
Taylor L (1996). Ajos Sacha powder (Mansoa alliacea). Available at http://www.rain-tree.com/ajos-sacha-powder.htm#.VLmC1UfF82k.
 
Taylor L (2006). Technical Data Report for Ajos Sacha (Mansoa alliacea).
 
Thomson M, Ali M (2003). Garlic [Allium sativum]: a Review of its Potential Use as an Anti-Cancer agent. Curr. Cancer Drug Targets 3:67-81.
Crossref
 
Todaro GJ, Green H (1963). Quantitative studies of the growth of mouse embryo cells in culture and their development into established lines. J. Cell Biol. 17:299-313.
Crossref
 
Wallace DC, Fan W, Procaccio V (2010). Mitochondrial energetics and therapeutics. Ann. Rev. Pathol. Mech. Dis. 5:297-348.
Crossref
 
Wang H, Yang J, Hsieh S, Sheen L (2010). Allyl Sulfides Inhibit Cell Growth of Skin Cancer Cells through Induction of DNA Damage Mediated G2/M Arrest and Apoptosis. J. Agric. Food Chem. 58:7096-7103.
Crossref
 
Warburg O (1956). On respiratory impairment in cancer cells. Science 124:269-270.
Pubmed
 
Xiao D, Herman-Antosiewicz A, Antosiewicz J, Xiao H, Brisson M, Lazo JS, Singh SV (2005). Diallyl trisulfides-induced G¬2 – M phase cell cycle arrest in human prostate cancer cells is caused by reactive oxygen species-dependent destruction and hyperphosphorylation of Cdc25C. Oncogene 24:6256-68.
Crossref
 
Xiao D, Pinto JT, Soh J, Deguchi A, Gundersen GG, Palazzo AF, Yoon J, Shirin H, Weinstein IB (2003). Induction of Apoptosis by the Garlic-Derived Compound S-Allylmercaptocysteine (SAMC) Is Associated with Microtubule Depolymerization and c-Jun NH2-Terminal Kinase 1 Activation. Cancer Res. 63:6825-6837.
Pubmed
 
Yeh Y, Liu L (2001). Cholesterol-Lowering Effect of Garlic Extracts and Organosulfur Compounds: Human and Animal Studies. Am. Soc. Nutr. Sci. 131:989S-93S.
 
Zhou L, Mirvish S (2005). Inhibition by allyl sulfides and crushed garlic of O-6-methylguanine formation in liver DNA of dimethylnitrosamine-treated rats. Nutr. Cancer. 51:68-77.
Crossref
 
Zoghbi M, Oliveira J, Guilhon G (2009). The genus Mansoa (Bignoniaceae): A source of organosulfur compounds. Rev. Bras. Farmacogn. 19:795-804.
Crossref