Identification and characterization of bacteria isolated from patients with cancer at Enugu State Teaching Hospital Parklane, Enugu, Nigeria

Main Article Content

Okeke Onyekachi Philomena
Dibua Maria-Esther Uju
OcholiEphraim Aguda
Nwoko Victor
Mba Ifeanyi Elibe
Ukomadu Joseph Chukwukelu 

Abstract

Cancer affects millions of people worldwide and contributes to the highest percentage of global deaths compared to other ailments. Most cancer sites are vulnerable to infection by a vast number of opportunistic pathogens. Data from several surveillance reports have revealed several opportunistic pathogens responsible for infections in cancer patients. The present study investigated the spectrum of bacteria isolated from acute cancer patients. Samples were recovered from urine, vaginal swab, and breast swab . Identification and 
characterization of the isolates were performed using standard microbiological methods. A total of 130 bacteria comprising 78(60%) gram-positive and 52(40%) gram-negative were recovered. A statistically significant difference (P<0.05) was observed between the two groups. The most prevalent organism was Staphylococcus spp. (42.3%) followed by Escherichia coli (36.2%), Lactobacillus spp. (8.5%), Micrococcus spp. (6.2%), Streptococcus spp. (3.1%), Klebsiella spp. (1.5%), Proteus spp. (1.5%) and Pseudomonas spp.(0.8%). Our findings showed the predominance of gram-positive bacteria in infections among cancer patients. However, Enterobacteriaceae (E. coli) was the most frequently isolated among the gram-negative. This study indicates that cancer patients may be infected by several opportunistic pathogens, highlighting an ongoing trend toward gram-positive organisms causing infection in cancer patients. Therefore, it nderscores the importance of constant monitoring at regional levels as surveillance efforts are important to provide the clinicians with the appropriate information in choosing treatment regimens and implement a proper policy for infection control guidelines.

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How to Cite
Philomena, O. O., Uju, D. M.-E., Aguda, O., Victor, N., Elibe, M. I., & Chukwukelu , U. J. (2024). Identification and characterization of bacteria isolated from patients with cancer at Enugu State Teaching Hospital Parklane, Enugu, Nigeria. Journal of Biological Research and Biotechnology, 20(3), 1659-1666. https://doi.org/10.4314/br.v20i3.3
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Articles
Author Biography

Dibua Maria-Esther Uju, Department of Microbiology, University of Nigeria, Nsukka, Nigeria

Department of Science Laboratory Technology, University of Nigeria Nsukka, Nigeria

References

Arega, B., Wolde-Amanuel, Y., Adane, K., Belay, E., Abubeker, A. (2017). Rare bacterial isolates causing bloodstream infections in Ethiopian patients with cancer. Infectious Agents and Cancer, 12:40

Ashreen, S., Ahmed, A., Has an, N., Akhtar, W., Hossain, M.M. (2020). Isolation and identification of gram-negative bacteria from oral cancer site infections and study of their antibiotic resistance pattern. Bangladesh Journal of Microbiology, 36(2):85-90

Aymeric, L., Donnadieu, F., Mulet, C., du Merle, L., Nigro, G., Saffarian, A., Berard, M., Poyart C., Robine, S., Regnault, B., Trieu-Cuot, P., Sansonetti, P.J. & Dramsi, S. (2018). Colorectal cancerspecific conditions promote Streptococcus gallolyticus gut colonization. Proceediings of the National Academy of Sciences U.S.A.115, E283–E291.

Bernstein, C., Prasad, A. R.,Nfonsam, V., and Bernstein, H. (2013). DNA damage, DNA repair, and Cancer. Journal of Cancer67(4):243-249.

Bray F, Ferlay J, Soerjomataram I, Siegel RL, Torre LA, Jemal A. Global cancer statistics (2018). GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer Journal for Clinicians, 68:394‐424

Bullman, S., Pedamallu, C. S., Sicinska, E., Clancy, T. E., Zhang, X., Cai, D.,Neuberg, D., Huang, K., Guevara, F., Nelson, T., Chipashvili, O., Hagan, T.,

Walker, M., Ramachandran, A., Diosdado, B., Serna, G., Mulet, N., Landolfi, S., Ramon Y Cajal, S., Fasani, R., Meyerson, M. (2017). Analysis of

Fusobacterium persistence and antibiotic response in colorectal cancer. Science, 358:1443–1448.

Cheesbrough, M. District Laboratory Practice in Tropical Countries. 1st ed. Cambridge University Press; 2005

Cornejo-Juarez, P., Vilar-Compte, D., PérezJiménez, C, Ñamendys-Silva, S.A., Sandoval-Hernandez, S., and ´ VolkowFernandez, P. (2015). Impact of hospitalacquired infections with multidrugresistant bacteria in an oncology intensive care unit. International Journal of Infectious Diseases, 31:31–34

Eldomany, R., and Abdelaziz, N.A. (2011). Characterization and antimicrobial susceptibility of Gram-negative bacteria isolated from cancer patients on chemotherapy in Egypt. Archives of Clinical Microbiology, 2:6,2

Ezeonu, I., M., Okafor, J.I., and Ogbonna J.C (2011). Isolation of bacteria from theurinary tract. Laboratory exercises in microbiology (first edition) Ephrata printing publishing company. Nsukka pp76-80.

Fan, C.Y., Huang, W.Y., Lin, K.T., Lin, C. S., Chao, H. L., Yang, J. F., Lin, C. L., & Kao, C. H. (2017). Lower urinary tract infection and subsequent risk of prostate cancer: a nationwide population-based cohort study. PLoS One, 12(1):e0168254

Guerrero-Del-Cueto, F., Ibanes-Gutierrez, C., Velázquez-Acosta, C., Cornejo-Juarez, P. and Vilar-Compte, D. (2018). Microbiology and clinical characteristics of viridans group Streptococci in patients with cancer. The Brazilian Journal of Infectious Diseases, 22(4):323-327

Jemal, A., Bray, F., Center, M.M., Ferlay, J., Ward, E., and Forman, D. (2011). Global cancer statistics, CA: A Cancer Journal for Clinicians, 61(2):69–90

Karanwal, A.B., Parikh, B.J., Goswami, P., Panchal, H.P., Parekh, B.B., Patel, K.B.(2013) Review of clinical profile and bacterial spectrum and sensitivity patterns of pathogens in febrile neutropenic patients in hematological malignancies: A retrospective analysis from a single center. Indian Journal of Medical and Paediatric Oncology, 34:85-8

Khaparkuntikar, M., Siddiqui, N., Bhirud, P. (2017). Urinary tract infection in cancer patients at government cancer hospital Aurangabad, India. Interntional Journal of Current Microbiology and AppliedSciences 6(5):2259-2263

Khatri M., Sharma, A., Dharma, B.P., Gupta, A. (2019). Characterization of bacteria from blood cultures of cancer patients admitted to cancer institute at a tertiary care hospital. International Journal of Medical Research Professional, 5(5):80-83

Kramer, M.G., Masher, M., Ferreira, F.A., and Hoffman, R.M. (2018). Bacterial therapy of cancer: promises, limitations, and insights for future directions. Frontiers in Microbiology, 9:16

Kruger, W., Vielveicher, S., Kapitan, M., Jacobsen, I.D., Niemiec, M.J. (2019). Fungal and bacterial interactions in health and disease. Pathogens, 8(2):70

Lakshmaiah, K.C., Abhayakumar S.M., Shetty, R., Loknath, D., Jayashree, R.S., Govindabu, K (2014). Management of febile neutropenioa in solid organ malignancies following chemotherapy. Journal of Cancer Research and Therapeutics 10:540-3

Lubwama, M., Phipps, W., Najjuka, C.F., Kajumbula, H., Ddungu, H., Kambugu, J.B., Bwanga, F. (2019). Bacteremia in febrile cancer patients in Uganda. BMC Research Notes, 12(1):1-16

Lyadorai, T., Mariappan, V., Vellasamy, K.M., Wanyiri, J.W., Roslani, A.C., Lee, G.K., Sears, C., Vadivelu, J. (2020). Prevalence and association of Pks+

Escherichia coli with colorectal cancer in patients at the University Malaya Medical Centre, Malaysia. PLOS ONE, 15(1):e0228217

Magalhaes, J., P. (2013). How aging processes influence cancer. Nature Reviews Cancer 13(5):357-365.

Mahmoud, A.T., Salim, M.T., Ibrahem, R.A., Gabr, A., Halby, H.M. (2020). Multiple drugresistant patterns in various phylogenetic groups of hospital-acquired uropathogenic E. coli isolated from cancer patients. Antibiotics, 9(3):108

MergaDuffa, Y., TerfaKitila, K., MamuyeGebretsadik, D., and BBite, A. (2018). Prevalence and antimicrobial susceptibility of bacterial uropathogens

isolated from pediatric patients at Vekatit 12 hospital medical college, Addis Ababa, Ethiopia. International Journal of Microbiology, 2018:8492309.

Mofid, B., Novin, K., Roointan, E.S., and Forouzanfar, M.M. (2016). Epidemiology and death-related factors of oncology patients in the emergency department. Emergency (Tehran, Iran), 4(4):145–150

Obeng-Nkrumah, N., Twum-Danso, K., Krogfelt, K.A., Newman, M.J. (2013). High levels of extended-spectrum beta-lactamases in a major teaching hospital in Ghana: the need for regular monitoring and evaluation of antimicrobial resistance. The American Journal of Tropical Medicine and Hygiene 89(5):960-4

Pasquereau-Kotula, E., Martins, M., Aymeric, L., and Dramsi, S. (2018). Significance of Streptococcus gallolyticus Subsp. gallolyticus: Association with colorectal cancer. Frontiers in Microbiology 9:614

Raad, E.B. (2017). Prevalence and antibiotic susceptibility patterns of bacteria causing urinary tract infections in Youssef Hospital Center: first report from Akkar governorate, North Lebanon.International Arabic Journal of Antimicrobial Agents, 7:1

Raja, N.S., Gupta, S., O'Neill, B. (2017). Bacterial spectrum and antimicrobial-resistance pattern of bloodstream infections in neutropenic and non-neutropenic adult cancer patients. Journal of Patient Satisfaction and Infection Control 14(5):83-88

Rezaei-Tavirani, M., Ghafourian, S., Sayehmiri, F., Pakzad, R., Safiri, S., and Pakzad, I. (2018). Prevalence of cotrimoxazole resistance uropathogenic bacteria in Iran: a systematic review and metaanalysis. Archives of Clinical Infectious Diseases, 13:5

Russell, B., Garmo, H., Beckmann, K., Stattin, P., Adolfsson, J., Hermelrijck, M.V. (2018). A case-control study of lower urinary tract infections, associated antibiotics and the risk of developing prostate cancer using pcbase 3.0. Plos One, 13(4):e0195690

Sedighi, M., Bialvaei, A.Z., Hamblin, M.R., Ohadi, E., Asadi, A., Halajzadeh, M., Lohrasbi, V., Mohammadzadeh, N., Amiriani, T., Krutova, M., Amino, A., Kouhsari, E. (2019). Therapeutic bacteria to combat cancer; current advances, challenges, and opportunities. Cancer Medicine, 8:3167-3181

Seifu, W.D., and Gebissa, A.D. (2018). Prevalence and antibiotic susceptibility of uropathogens from cases of urinary tract infections (UTI) in Shashemene referral hospital, Ethiopia. BMC Infectious Diseases, 28(1):30

Singh, R., Jain, S., Chabbra, R., Naithani, R., Upadhyay, A., Walla, M. (2014). Characterization and antimicrobial susceptibility of bacteria isolate:

experience from a tertiary care cancer center in Delhi. Indian Journal of Cancer14(51): 477-80

Tigabu, A., Ferede, W., Belay, G., and Gelaw, B. (2020). Prevalence of asymptomatic bacteriuria and antibiotic susceptibility patterns of bacterial isolates among cancer patients and healthy blood donors at the University of Gondar specialized hospital. International Journal of Microbiology, 2020:3091564

van Elsland, D., & Neefjes, J. (2018). Bacterial infections and cancer. EMBO Reports, 19(11), e46632.

Yu, T., Guo, F., Yu, Y., Sun, T., Ma, D., Han, J.,Qian, Y., Kryczek, I., Sun, D., Nagarsheth, N., Chen, Y., Chen, H., Hong, J., Zou, W., & Fang, J. Y. (2017).

Fusobacterium nucleatum promotes chemoresistance to colorectal cancer by modulating autophagy. Cell 170, 548.e16–563.e16.

Zembower, T.R. (2014). Epidemiology of infections in cancer patients. Cancer Treatment and Research, 161:43-89