Evaluation of CD4 Count, Haemoglobin, and Intestinal Parasites Status of Cancer Patients Receiving Oncology Therapy in Calabar, Nigeria

https://dx.doi.org/10.4314/njpar.v44i1.10

Authors

  • I. B. Otu-Bassey Department of Medical Parasitology & Entomology, Faculty of Medical Laboratory Science, University of Calabar, Nigeria.
  • O. I. Inah Department of Microbiology, Faculty of Biological Sciences, Cross River University of Technology, Calabar, Nigeria.
  • P. A. Omang Department of Microbiology, Faculty of Biological Science, University of Calabar, Nigeria.

Keywords:

Therapy, Haemoglobin, CD4, Cancer, Intestinal parasites

Abstract

Cancer is a human cellular error with a high mortality rate, especially in developing regions. Resolving this error with therapy may render patients immunologically depressed and susceptible to opportunistic infections including parasitic. The gut parasites, Cluster of Differentiation four (CD4) cells and haemoglobin (Hb) levels of cancer patients on oncology therapy in Calabar, Nigeria were studied. Stool and blood samples were collected from 317 (186 cancer and 131 apparently healthy) subjects. Parasites were identified using direct smear and formol ether concentration techniques while CD4 and Hb estimation were done using BD-fascount and fluorescent flow cytometric techniques, respectively. Data were analysed using chi-square and independent sample t-test. Overall parasitosis prevalence in this study was (27.44%) with cancer showing an association with intestinal parasitosis (P=0.001) and CD4 level (P=0.002), respectively but none with Hb level. Parasiteinfected cancer subjects had significantly lower mean haemoglobin concentration than their non-infected counterpart (t = - 4.869, P<0.001). Generally, cancer subjects on cancer treatment had an insignificantly lower parasite and significantly lower CD4 levels compared to their non-treated counterpart (P = 0.829) and (P<0.001), respectively but their mean haemoglobin levels were similar (P=0.701). Cancer subjects on chemotherapy alone had significantly higher parasite prevalence, 50.00% compared to 28.95% for those on combined (surgery and chemotherapy) treatment (P=0.014), whereas the type of treatment
showed no significant effect on CD4 and Hb levels. Parasite occurrence was only pronounced (71.43%) among subjects with >12 months of treatment duration (P=0.1038). There was a correlation between duration of treatment and CD4 levels (r = -0.231, P<0.05) but none with haemoglobin levels (r = 0.024, P>0.05) of cancer subjects. In conclusion, although this study has shown that cancer as a condition increases parasite prevalence and reduces mean CD4 counts in subjects, their haemoglobin levels were not significantly affected, except for subjects with intestinal parasite infections. Treatment with cancer therapy did not also affect the haemoglobin concentration, but significantly reduced the CD4 cell number of subjects. Subjects who had majorly, chemotherapy were mostly infected with the parasite but with no noticeable effect on their CD4 and haemoglobin levels. A prolonged duration of treatment increased parasitosis and reduced the CD4 level of subjects but did not affect haemoglobin levels. Apart from the oncological treatments given to cancer subjects, management of cancer subjects should include parasitological examination and treatment, periodic monitoring of their hematologic profile and regular immune revitalization procedures, especially for those placed on prolonged therapy. 

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References

Jama Oncology (2022). Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability and Disability-Adjusted Life

Years for 29 Cancer Groups From 2010 to 2019 A Systematic Analysis for the Global Burden of Disease Study 2019. https://jamanetwork.com/doi:10.1001/jamaoncol.2021.6987. (Assessed on 20/10/2022.)

Ferlay, J., Ervik, M., Lam, F., Colombet, M., Mery, L. and Piñeros, M. (2021). Global Cancer Observatory: Cancer Today. Lyon: International Agency for Research on Cancer; 2020. (https://gco.iarc.fr/today, accessed February 2021).

Saibu, M. G., James, A. B., Adu, O.B., Faduyile, F. A, Fadaka, O. A., Iyapo, O., Soyemi, S. S. and Adekunle, B. (2017). Epidemiology and Incidence of Common Cancers in Nigeria. Journal of Cancer Biology and Research, 5(3): 1105.

Masrour-Roudsari, J., and Ebrahimpour, S. (2017). Causal role of infectious agents in cancer: An overview. Caspian Journal of Internal Medicine. 8(3):153–158. doi: 10.22088/cjim.8.3.153

Kuper, H., Adami, H. O., and Trichopoulos, D. (2000). Infections as a major preventable cause of human cancer. Journal of Internal Medicine ,

(3):171–183.

Ottong, J. G., Ering, S. O., and Akpan, F. U. (2010). The population situation in Cross River State, Nigeria, and its implications for socio-economic development: Observations from the 1991 and 2006 censuses. Journal of Emerging Trends in Educational Research and Policy Studies, 1(1): 36-42.

Arora, D. R. and Arora, B. B. (2010). Textbook of medical parasitology. 3rd edition, New Delhi: CBS Publisher. pp 156- 170.

Florian, V., Rafael, V., Andrea, B., Buhlebenkosi, M., Liberty, H., Mathieu, B., Laurence, F., Fabian, T., Eliphas, M. and Sekesai, M. (2015). Using BD Vacutainer CD4 Stabilization Tubes for Absolute Cluster of Differentiation Type 4 Cell Count Measurement on BD FasCount and Partec Cyflow Cytometers: A Method Comparison Study from Zimbabwe. PLoS One Journal. https://doi.org/10.1371/journal.pone.01365

Bertrand, S., Fabrice, M. G., Ana, G., Samuelm S., Rachel, K., Aubin, J. N., Nadesh, N., Georgia, A., Abel, L.,Thibaut, F. T., Loveline, N. N., Irenée, D., Godwin, N. andAlexis, N. (2020). Performance of the BD FACSPresto near to patient analyser in comparison with representativeconventional CD4 instruments in Cameroon. Journal of Aids Research therapy. 17 (53): 1- 8. https://doi.org/10.1186/s12981-020-

-9.

Otu-Bassey, I. B., Udofia, I. E. andAkpan, P. A. (2017). Intestinal Parasitosis, Haemoglobin and Eosinophil Levels of Patients Attending University of Calabar Teaching Hospital, Calabar, Nigeria. International Blood Research and Reviews, 7(2): 1-8. DOI:10.9734/IBRR/2017/31861

Behnam, M., Ali, P., Mohammad, H. K. and Ghodsie, E. (2017). Frequency of Intestinal Parasites in Patients with Malignancy in Ardabil Province, Northwest Iran. Journal of Human Environmental Health Promotion. 2(2):118- 124. DOI:10.29252/JHEHP.2.2.118

Jeske, S., Bianchia, T. F., Moura, M. Q., Baccega, B., Pintoa, N. B., Bernea, M. E. A. and Villella, M. M. (2018). Intestinal parasites in cancer patients in the South of Brazil. Brazilian Journal of Biology; 78 (3): 574-578. DOI:10.1590/1519-6984.175364.

Ishani, B., Vikramjeet, D., Wihiwot, V. L., Annie, B, Khyriem, E. D. and Anil, C. P. (2016). Study of intestinal parasites among the immunosuppressed patients attending a tertiary-care center in Northeast India. International Journal of Medical Science and Public Health; 5(5): 924-929.doi: 10.5455/ijmsph.2016.08012016327

Menon, B, S., Abdullah, M. S., Mahamud, F. and Singh, B. (1999). Intestinal parasites in Malaysian children with cancer. Journal of Tropical Pediatrics, 45: 241-242. doi: 10.1093/tropej/45.4.241.

Sahel, J., Bastid, C. and Choux, R. (1987). Biliary ascariasis combined with a villous tumor of the papilla. Diagnostic and therapeutic value of endoscopy. Journal of Endoscopy . 19 243 - 245. DOI:10.1055/S.2007-1018293

Kedar, R. P. and Malde, H. H. (1993). Biliary ascariasis associated with cholangiocarcinoma.AbdominalImaging;18 (1): 76-77. DOI: 10.1007/bf00201707

Gupta, R. P., Khanduri, A., Agarwal, D. K., Sawlani, V., Baijal, S. and Choudhuri, G. (1995). Biliary ascariasis associated with periampullary carcinoma. Indian Journal Gastroenterology,14(3):102-103.

Arulprakash, S., Sahu, M. K., Dutta, A. K., Joseph, A, and Chandy, G. M. (2015). Pancreatic ascariasis with periampullary carcinoma. Tropical Parasitology, 5(1): 55- 57. doi: 10.4103/2229-5070.145590.

Tanaka T, Hirata T, Parott G, Higashiarakawa M, Kinjo T, Kinjo T, Hokama A and Fujita J. (2016). Relationship among Strongyloidiasis

stercoralis infection, Human T-cell lymphotropic virus type-1 and cancer: A 24 years cohort inpatients study in Okinawa, Japan. American Journal of Tropical Medicine and Hygiene, 94(2): 365-370.doi: 10.4269/ajtmh.15-0556.

World Health Organization (2011). Haemoglobin concentrations for the diagnosis of anemia and assessment of severity. Vitamin and Mineral Nutrition Information System. Geneva.

Shubair, M. E.,Yassin, M. M.,Al-Hindi,A. I., Al-Wahaidi, A. A., Jadallah, S. Y. and Al-D, A. S. (2000). Intestinal parasites in relation to haemoglobin level and nutritional status of school children in Gaza. Journal of Egyptian Society of Parasitology, 30(2): 365-375.

Yentur, D.N., Yidiz, Z. F., Simsek., Z, and Zeyrek, D. (2014). The effects of intestinal parasites on anemia of children, Turkish Journal of Parasitology, 38(2): 85-90. Doi: 10.5152/tpd.2014.3149

Ehiaghe, A. F, Tatfeng, Y. M., Ehiaghe, J. I., and Osaretin, U. (2013). Haemoglobin concentration of intestinal parasites infested children in Okada, Edo State, Nigeria. Open Journal of Epidemiology, 3: 149-152.

O’brien, S. N., Blijlevens, N. M., Mahfouz, T. H. andAnaissie, E. J. (2003). Infection in patients with haematological cancer: recent developments. Haematology. American Society of Haematology. Educationdevelopments Programme . 438 - 472. https://doi.org/10.1182/asheducation- 2003.1.438

Maizels, R. M., Smits, H. H, and McSorley, H. J. (2018). Modulation of Host Immunity by Helminths: The Expanding Repertoire of Parasite Effector Molecules. Immunity, 49(5): 801 – 818. https://doi.org/10.1016/j.immuni.2018.10.016

Orji, N. M. (2015). Haematological profile of people infected with intestinal parasitosis in Uli, Ihiala local government area, Anambra State, Nigeria. Sky Journal of Medicine and Medical Sciences, 3(4): 042 – 046.

Published

2023-03-01

How to Cite

Otu-Bassey, I. B., Inah, O. I., & Omang, P. A. (2023). Evaluation of CD4 Count, Haemoglobin, and Intestinal Parasites Status of Cancer Patients Receiving Oncology Therapy in Calabar, Nigeria: https://dx.doi.org/10.4314/njpar.v44i1.10. Nigerian Journal of Parasitology, 44(1), 100–109. Retrieved from https://njpar.com.ng/index.php/home/article/view/107

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