Ratio of Zinc to Bromine, Iron, Rubidium, and Strontium Concentration in the Prostatic Fluid of Patients with Chronic Prostatitis

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Ratio of Zinc to Bromine, Iron, Rubidium, and Strontium Concentration in the Prostatic Fluid of Patients with Chronic Prostatitis

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References

34 Cites in Article
  1. 1. John Krieger,Shaun Lee,Jeonseong Jeon,Phaik Cheah,Men Liong,Donald Riley (2008). Epidemiology of prostatitis. International Journal of Antimicrobial Agents, 31(1), 85-90.
  2. 2. Michele Pavone-Macaluso (2007). Chronic Prostatitis Syndrome: A Common, but Poorly Understood Condition. Part I. EAU-EBU Update Series, 5(1), 1-15.
  3. 3. J Nickel,Prostatitis (2011). Prostatitis. Canadian Urological Association Journal, 5(5), 306-315.
  4. 4. Michele Pavone-Macaluso (2007). Chronic Prostatitis Syndrome: A Common, but Poorly Understood Condition. Part I. EAU-EBU Update Series, 5(1), 1-15.
  5. 5. Y Chen,J Li,Y Hu (2017). Multi-factors including inflammatory/immune, hormones, tumor-related proteins and nutrition associated with chronic prostatitis NIH IIIa+b and IV based on FAMHES project. Scientific Reports, 7
  6. 6. Enzo Vicari,Michele Salemi,Giuseppe Sidoti,Mariano Malaguarnera,Roberto Castiglione (2017). Symptom Severity Following Rifaximin and the Probiotic VSL#3 in Patients with Chronic Pelvic Pain Syndrome (Due to Inflammatory Prostatitis) Plus Irritable Bowel Syndrome. Nutrients, 9(11), 1208.
  7. 7. Jon Rees,Mark Abrahams,Andrew Doble,Alison Cooper (2015). Diagnosis and treatment of chronic bacterial prostatitis and chronic prostatitis/chronic pelvic pain syndrome: a consensus guideline. BJU International, 116(4), 509-525.
  8. 8. Awais Ihsan,Farhan Khan,Puregmaa Khongorzul,Khalil Ahmad,Muhammad Naveed,Sufia Yasmeen,Yanfang Cao,Abdoh Taleb,Richinandan Maiti,Fahad Akhter,Xiaoqian Liao,Xue Li,Yijie Cheng,Hidayat Khan,Khurshid Alam,Xiaohui Zhou (2018). Role of oxidative stress in pathology of chronic prostatitis/chronic pelvic pain syndrome and male infertility and antioxidants function in ameliorating oxidative stress. Biomedicine & Pharmacotherapy, 106, 714-723.
  9. 9. V Zaichick (2006). Medical elementology as a new scientific discipline. Journal of Radioanalytical and Nuclear Chemistry, 269(2), 303-309.
  10. 10. C Ekmekcioglu (2001). The role of trace elements for the health of elderly individuals. Nahrung/Food, 45(5), 309.
  11. 11. J Bornhorst,Kipp Haase,H (2018). The crux of inept biomarkers for risks and benefits of trace elements. Trends in Analytical Chemistry, 104, 183-190.
  12. 12. V Zaichick (2004). INAA and EDXRF applications in the age dynamics assessment of Zn content and distribution in the normal human prostate. Journal of Radioanalytical and Nuclear Chemistry, 262(1), 229-234.
  13. 13. Vladimir Zaichick,Sofia Zaichick (2013). The effect of age on Br, Ca, Cl, K, Mg, Mn, and Na mass fraction in pediatric and young adult prostate glands investigated by neutron activation analysis. Applied Radiation and Isotopes, 82, 145-151.
  14. 14. Vladimir Zaichick,Sofia Zaichick (2013). INAA application in the assessment of Ag, Co, Cr, Fe, Hg, Rb, Sb, Sc, Se, and Zn mass fraction in pediatric and young adult prostate glands. Journal of Radioanalytical and Nuclear Chemistry, 298(3), 1559-1566.
  15. 15. Vladimir Zaichick,Sofia Zaichick (2013). NAA-SLR and ICP-AES Application in the Assessment of Mass Fraction of 19 Chemical Elements in Pediatric and Young Adult Prostate Glands. Biological Trace Element Research, 156(1-3), 357-366.
  16. 16. V Zaichick,S Zaichick (2013). Use of neutron activation analysis and inductively coupled plasma mass spectrometry for the determination of trace elements in pediatric and young adult prostate. American Journal of Analytical Chemistry, 4, 696-706.
  17. 17. Vladimir Zaichick,Sofia Zaichick (2014). Relations of Bromine, Iron, Rubidium, Strontium, and Zinc Content to Morphometric Parameters in Pediatric and Nonhyperplastic Young Adult Prostate Glands. Biological Trace Element Research, 157(3), 195-204.
  18. 18. Vladimir Zaichick,Sofia Zaichick (2014). Relations of Bromine, Iron, Rubidium, Strontium, and Zinc Content to Morphometric Parameters in Pediatric and Nonhyperplastic Young Adult Prostate Glands. Biological Trace Element Research, 157(3), 195-204.
  19. 19. Vladimir Zaichick,Sofia Zaichick (2014). Relations of the Al, B, Ba, Br, Ca, Cl, Cu, Fe, K, Li, Mg, Mn, Na, P, S, Si, Sr, and Zn mass fractions to morphometric parameters in pediatric and nonhyperplastic young adult prostate glands. BioMetals, 27(2), 333-348.
  20. 20. Vladimir Zaichick (2014). The Distribution of 54 Trace Elements Including Zinc in Pediatric and Nonhyperplastic Young Adult Prostate Gland Tissues. Journal of Clinical and Laboratory Investigation Updates, 2(1), 1-15.
  21. 21. V Zaichick,Sofia Zaichick (2014). Androgen-Dependent Chemical Elements of Prostate Gland. Andrology & Gynecology: Current Research, 02(02), 2.
  22. 22. V Zaichick,S Zaichick (2015). Differences and Relationships between Morphometric Parameters and Zinc Content in Nonhyperplastic and Hyperplastic Prostate Glands. British Journal of Medicine and Medical Research, 8(8), 692-706.
  23. 23. Vladimir Zaichick (2014). The prostatic urethra as a Venturi effect urine-jet pump to drain prostatic fluid. Medical Hypotheses, 83(1), 65-68.
  24. 24. R Mackenzie,T Hall,W F Whitmore,Jr (1962). Zinc content of expressed human prostate fluid. Nature, 193(4810), 72-73.
  25. 25. Joel Marmar,Sidney Katz,Donald Praiss,Thomas Debenedictis (1980). Values for zinc in whole semen, fractions of split ejaculate, and expressed prostatic fluid. Urology, 16(5), 478-480.
  26. 26. V Zaichick,A Tsyb,V Dunchik,T Sviridova (1981). Method for diagnostics of prostate diseases. Certificate of invention, 30-33.
  27. 27. V Zaichick,T Sviridova,S Zaichick (1996). Zinc concentration in human prostatic fluid: Normal, chronic prostatitis, adenoma and cancer. International Urology and Nephrology, 28(5), 687-694.
  28. 28. Vladimir Zaichick,Sofia Zaichick,German Davydov (2016). Method and portable facility for measurement of trace element concentration in prostate fluid samples using radionuclide-induced energy-dispersive X-ray fluorescent analysis. Nuclear Science and Techniques, 27(6), 1-8.
  29. 29. V Zaichick (1995). Application of synthetic reference materials in the medical radiological research centre. Fresenius' Journal of Analytical Chemistry, 352(1-2), 219-223.
  30. 30. Mario Burgos (1974). Biochemical and Functional Properties Related to Sperm Metabolism and Fertility. Male Accessory Sex Organs, 151-160.
  31. 31. Y Gómes,F Arocha,F Espinoza,D Fernandez,A Vásquez,V Granadillo (2007). Niveles de zinc en líquido prostático de pacientes con patologías de próstata. Invest Clin, 48(3), 287-294.
  32. 32. J Kavanagh,C Darby (1982). The interrelationships between acid phosphatase, aminopeptidase, diamine oxidase, citric acid, β -glucuronidase, pH and zinc in human prostate fluid. Int J Androl, 5(5), 503-512.
  33. 33. Charles Huggins,William Scott,J Heinen (1942). CHEMICAL COMPOSITION OF HUMAN SEMEN AND OF THE SECRETIONS OF THE PROSTATE AND SEMINAL VESICLES. American Journal of Physiology-Legacy Content, 136(3), 467-473.
  34. 34. V Zaichick Sampling, sample storage and preparation of biomaterials for INAA in clinical medicine, occupational and environmental health. Harmonization of Health-Related Environmental, 20

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Vladimir Zaichick, Sofia Zaichick. 2019. "Ratio of Zinc to Bromine, Iron, Rubidium, and Strontium Concentration in the Prostatic Fluid of Patients with Chronic Prostatitis". Global Journal of Medical Research - F: Diseases GJMR-F Volume 19 (GJMR Volume 19 Issue F4).

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Journal Specifications

Crossref Journal DOI 10.17406/gjmr

Print ISSN 0975-5888

e-ISSN 2249-4618

Keywords
Classification
GJMR-F Classification NLMC Code: WJ 752
Version of record

v1.2

Issue date
June 13, 2019

Language
English
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Ratio of Zinc to Bromine, Iron, Rubidium, and Strontium Concentration in the Prostatic Fluid of Patients with Chronic Prostatitis

Vladimir Zaichick
Vladimir Zaichick Medical Radiological Research Centre
Sofia Zaichick
Sofia Zaichick