Sequential Extraction as Novel Approach to Compare 12 Medicinal Plants From Kenya Regarding Their Potential to Release Chromium, Manganese, Copper, and Zinc

[1]  Z. Getenga,et al.  First comprehensive study on total contents and hot water extractable fraction of selected elements in 19 medicinal plants from various locations in Nyamira County, Kenya. , 2017, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.

[2]  Richard Mogwasi,et al.  Specification of Trace Elements in Selected Medicinal Plants From Nyamira County (Kenya) , 2016 .

[3]  P. Tlustoš,et al.  Bioaccessibility versus bioavailability of essential (Cu, Fe, Mn, and Zn) and toxic (Pb) elements from phyto hyperaccumulator Pistia stratiotes: potential risk of dietary intake. , 2015, Journal of agricultural and food chemistry.

[4]  S. Asgary,et al.  Chromium level in prediction of diabetes in pre-diabetic patients , 2014, Advanced biomedical research.

[5]  Vartika Rai,et al.  Effect of Chromium on Antioxidant Potential of Catharanthus roseus Varieties and Production of Their Anticancer Alkaloids: Vincristine and Vinblastine , 2014, BioMed research international.

[6]  Yang V. Li,et al.  Zinc and insulin in pancreatic beta-cells , 2014, Endocrine.

[7]  M. Wełna,et al.  Multi-element analysis, bioavailability and fractionation of herbal tea products , 2013 .

[8]  V. Kuteyi Concentration and Bioavailability of Iron in Some Selected Blood-Building Medicinal Plants in Southwest Nigeria , 2013 .

[9]  P. Sarita,et al.  Correlation of trace elemental content in selected anticancer medicinal plants with their curative ability using particle induced x-ray emission (PIXE) , 2013 .

[10]  Upadhyay Mohit Investigation of Zinc Concentration in Some Medicinal Plant Leaves , 2013 .

[11]  W. Maret Zinc biochemistry: from a single zinc enzyme to a key element of life. , 2013, Advances in nutrition.

[12]  Fábio Pinto da Silva,et al.  Qualitative evaluation of physical effort in bass drum pedal drive by thermography , 2012 .

[13]  N. M. Piero,et al.  Hypoglycemic Activity of Some Kenyan Plants Traditionally used to Manage Diabetes Mellitus in Eastern Province , 2011 .

[14]  S. Piperakis,et al.  Copper and Its Complexes in Medicine: A Biochemical Approach , 2011, Molecular biology international.

[15]  A. Afolayan,et al.  Comparison of the nutritive value and biological activities of the acetone, methanol and water extracts of the leaves of Bidens pilosa and Chenopodium album. , 2011, Acta poloniae pharmaceutica.

[16]  J. Kwapuliński,et al.  Influence of a Transboundary Emission on Bioavailability of Metals of Stinging Nettle from Soil , 2011 .

[17]  J. Brender,et al.  Role of zinc in human islet amyloid polypeptide aggregation. , 2010, Journal of the American Chemical Society.

[18]  M. Rutter,et al.  Dialysis Treatment Is an Independent Risk Factor for Foot Ulceration in Patients With Diabetes and Stage 4 or 5 Chronic Kidney Disease , 2010, Diabetes Care.

[19]  K. Annan,et al.  Profile of heavy metals in some medicinal plants from Ghana commonly used as components of herbal formulations , 2010, Pharmacognosy research.

[20]  D. Rehder Is Vanadium a More Versatile Target in the Activity of Primordial Life Forms than Hitherto Anticipated , 2008 .

[21]  A. N. Garg,et al.  Availability of essential trace elements in medicinal herbs used for diabetes mellitus and their possible correlations , 2008 .

[22]  J. Dean,et al.  Use of the physiologically-based extraction test to assess the oral bioaccessibility of metals in vegetable plants grown in contaminated soil. , 2008, Environmental pollution.

[23]  T. Kazi,et al.  Copper, Chromium, Manganese, Iron, Nickel, and Zinc Levels in Biological Samples of Diabetes Mellitus Patients , 2008, Biological Trace Element Research.

[24]  K. Pyrzyńska Chemical speciation and fractionation of metals in wine , 2007 .

[25]  A. N. Garg,et al.  Variation in essential, trace and toxic elemental contents in Murraya koenigii – A spice and medicinal herb from different Indian states , 2007 .

[26]  M. Wesołowski,et al.  Determination of zinc, iron, nitrogen and phosphorus in several botanical species of medicinal plants , 2007 .

[27]  Y. Seyama,et al.  Antiinflammatory and Antiallergic Activity of Bidens pilosa L. var. radiata SCHERFF , 2006 .

[28]  Xiaoping Yang,et al.  Insulin-sensitizing and cholesterol-lowering effects of chromium (D-Phenylalanine)3. , 2006, Journal of inorganic biochemistry.

[29]  S. Erdemoǧlu,et al.  Determination of mineral and trace elements in some medicinal herbs and their infusions consumed in Turkey. , 2006, The Science of the total environment.

[30]  M. Carvalho,et al.  Quantitative determination of essential and trace element content of medicinal plants and their infusions by XRF and ICP techniques , 2005 .

[31]  A. Srivastava Anti-diabetic and toxic effects of vanadium compounds , 2000, Molecular and Cellular Biochemistry.

[32]  M. Najam-ul-Haq,et al.  Essential trace metal (zinc, manganese, copper and iron) levels in plants of medicinal importance , 2004 .

[33]  P. Trumbo,et al.  Dietary reference intakes: vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc. , 1998, Journal of the American Dietetic Association.

[34]  E. García,et al.  Chromium levels in spices and aromatic herbs. , 2000, The Science of the total environment.

[35]  M. Devereux,et al.  Synthesis and Biological Activity of Manganese (II) Complexes of Phthalic and Isophthalic Acid: X-Ray Crystal Structures of [Mn(ph)(Phen)2(H2O)]· 4H2O, [Mn(Phen)2(H2O)2]2(Isoph)2(Phen)· 12H2O and {[Mn(Isoph)(bipy)]4· 2.75biby}n(phH2 = Phthalic Acid; isoph = Isophthalic Acid; phen = 1,10-Phenanthroli , 2000, Metal-based drugs.

[36]  J. Raju,et al.  Modulation of some gluconeogenic enzyme activities in diabetic rat liver and kidney: effect of antidiabetic compounds. , 1999, Indian journal of experimental biology.

[37]  V. R. Osório e Castro Chromium in a series of Portuguese plants used in the herbal treatment of diabetes , 1998 .

[38]  J. Kokwaro Medicinal plants of East Africa. Kenya, Literature Bureau Nairobi , 1990 .