[1. Chokkalingam AP, Yeboah ED, Demarzo A, Netto G, Yu K, Biritwum RB, et al. Prevalence of BPH and lower urinary tract symptoms in West Africans. Prost Canc Prost Dis 2012; 15(2):170-176.10.1038/pcan.2011.43631402621912428]Search in Google Scholar
[2. Singh RP, Agarwal R. Mechanisms of action of novel agents for prostate cancer chemoprevention. Endocrine-Related Canc 2006; 13:751-778.10.1677/erc.1.0112616954429]Search in Google Scholar
[3. Chan SW. Pathology and medical therapy of benign prostatic hyperplasia. Hong Kong Med Diary 2011; 16(6):4-8.]Search in Google Scholar
[4. Ezugwu CH, Joshua PE, Chilaka FC, Nwodo OFC, Dasofunjo K, Ezugwu MU. Effect of ethanol extract of Zapoteca portoricensis stem on liver, kidney and prostatic biomarkers of testosterone-induced benign prostate hyperplasia (BPH) in male albino rats. Austr J Basic Appl Sci 2018; 12(10):19-27.]Search in Google Scholar
[5. Ramadwa TE, Elgorashi EE, McGawa LJ, Ahmed AS, Eloff JN. Antimicrobial, anti-inflammatory activity and cytotoxicity of Funtumia africana leaf extract fractions and the isolated methyl ursolate. South Afr J Bot 2017; 108:126-131.10.1016/j.sajb.2016.10.019]Search in Google Scholar
[6. Uroko RI, Egba SI, Uchenna ON, Orjiakor CA, Agbafor A, Alaribe CC. Therapeutic effects of methanolic extract of Funtumia africana leaves on antioxidants and haematological indices of carbon tetrachloride-induced oxidative stress in rats. Drug Invent Today 2019; 12(1):114-122.]Search in Google Scholar
[7. Soro D, Koné MW, Kamanzi-Attindehou K. Evaluation des activités antimicrobiennes et anti-radicaux libres de quelques taxons bioactifs de Côte d’Ivoire. Eur J Sci Res 2008; 40(2):307-317.]Search in Google Scholar
[8. Burkill HM. The useful plants of West Tropical Africa. 2nd ed., vol. 4. Families M-R. Royal Botanic Gardens, Kew, Richmond 1997.]Search in Google Scholar
[9. Banso A, Adeyemo S. Phytochemical screening and antimicrobial assessment of Abutilon mauritianum,Bacopa monnifera and Datura stramonium. Biokemistri 2006; 18(1):39-44.10.4314/biokem.v18i1.56390]Search in Google Scholar
[10. Akapa TC, Kehinde AO, Beatrice OO, Olajide OJ. Antipyretic activity of Abutilon mauritianum (Jacq.) roots in Wistar rats. Intern J Pharm Sci Res 2014; 5:42-46.]Search in Google Scholar
[11. Achigan-Dako EG. Abutilon mauritianum (Jacq.) Medik. In: Brink M, Achigan-Dako EG. (Editors), PROTA, Wageningen 2010:24-25.]Search in Google Scholar
[12. Reitman S, Frankel S. A colourimetric method for the determination of serum glutamic oxaloacetic and glutamic pyruvic transaminase. Am J Clin Path 1975; 28:56-63.10.1093/ajcp/28.1.5613458125]Search in Google Scholar
[13. Englehardt A. Measurement of alkaline phosphatase. Aerztl Labor 1970; 16:42-43.]Search in Google Scholar
[14. Jendrassik L. Grof P. Determination of total bilirubin. Biochemistry 1930; 279:81-89.]Search in Google Scholar
[15. Reinhold JG. Total protein, albumin and globulin. Standard Meth Clin Chem 1953; 1:88-97.10.1016/B978-0-12-609101-4.50019-8]Search in Google Scholar
[16. Disbrey BD, Rack JH. Histological Laboratory Methods. Livingstone 1970.]Search in Google Scholar
[17. Harvey PW, Everett DJ, Springall CJ. Adverse effects of prolactin in rodents and humans: breast and prostate cancer. J Psichopharmacol 2008; 2:2-7.10.1177/026988110708262418709700]Search in Google Scholar
[18. Meludu SC, Ezenwelu VI, Manafa PO, Onah CE, Ekuma-Okereke O. Biochemical characteristics of liver enzymes, prolactin, zinc and selenium in benign prostatic hyperplasia and cancer of the prostate patients attending urology clinic at Nnamdi Azikiwe University Teaching Hospital, Nnewi. Imper J Interdiscipl Res 2017; 3(7):223-232.]Search in Google Scholar
[19. Akubugwo IE, Agbafor KN. Hepatotoxical evaluation of water and salt from Okposi and Uburu salt lakes, Nigeria. Estudos de Biologia 2007; 29:99-104.10.7213/reb.v29i66.22752]Search in Google Scholar
[20. Mohamed DA, Rashed MM, Shallan M, Fouda K, Hanna LM. Amelioration of benign prostate hyperplasia in rats through plant foods. Interna J Pharmacogn Phytochem Res 2016; 8(12):2063-2070.]Search in Google Scholar
[21. Savory J, Hammond J. Measurement of proteins in biological fluids. In: Sonnenwirth AC, Jarett L (eds.). Gradwohl’s Clinical Laboratory Methods and Diagnosis, St Louis 1980.]Search in Google Scholar
[22. McPherson RA. Specific Proteins. In: Henry JB (ed.). Clinical Diagnosis and Management, Philadelphia 1984.]Search in Google Scholar
[23. Alavi-Shoushtari SM, Asri-Rezai S, Abshenas J. A study of the uterine protein variations during the oestrus cycle in the cow: a comparison with the serum proteins. Animal Reprod Sci 2006; 96(1-2):10-20.10.1016/j.anireprosci.2005.10.01216412593]Search in Google Scholar
[24. Shen H, Zeng C, Wu X, Liu S, Chen X. Prognostic value of total bilirubin in patients with acute myocardial infarction: A meta-analysis. Medicine (Baltimore) 2019; 98(3):e13920.10.1097/MD.0000000000013920637013130653097]Search in Google Scholar
[25. Tarantino G, Colao A, Capone D, Conca P, Tarantino M, Grimald E, et al. Circulating levels of cytochrome C, gamma-glutamyl transferase, triglycerides and unconjugated bilirubin in overweight/obese patients with non-alcoholic fatty liver disease. J Biol Reg Homeo Agents 2011; 25(1):47-56.]Search in Google Scholar
[26. Inoue M, Hirata E, Morino Y, Nagase S, Chowdhury JR, Chowdhury NR, Arias IM. The role of albumin in the hepatic transport of bilirubin: studies in mutant analbuminemic rats. J Biochem 1985; 97(3):737-74310.1093/oxfordjournals.jbchem.a1351134019432]Search in Google Scholar