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J Educ Health Promot
J Educ Health Promot
JEHP
J Edu Health Promot
Journal of Education and Health Promotion
2277-9531
2319-6440
Wolters Kluwer - Medknow India

JEHP-13-208
10.4103/jehp.jehp_1326_23
Original Article
Risk factors and outcome of hepatitis C infection among patients in a secondary care hospital: A 5-year retrospective study
Sannathimmappa Mohan B. 1
Zehri Latifa 1
Al Zadjali Ayat A. M. 1
Albalushi Halima M. A. 1
Al Saadi Buthaina A. A. H. 1
Aravindakshan Rajeev 2
Al-Risi Elham S. 3
Al-Maqbali Saleema 3
Nambiar Vinod 1
1 Department of Microbiology and Immunology, College of Medicine and Health Sciences, National University of Science and Technology, Sohar Campus, Sultanate of Oman
2 Department of Community Medicine, All India Institute of Medical Sciences, Mangalagiri, Andhra Pradesh, India
3 Department of Pathology and Blood Bank, Sohar Hospital, Oman
Address for correspondence: Dr. Mohan B. Sannathimmappa, Associate Professor, Department of Microbiology, College of Medicine and Health Sciences, PO BOX: 391, PC: 321, Al Tareef, Sohar, Sultanate of Oman. E-mail: drmohan123@gmail.com
2024
11 7 2024
13 20823 8 2023
06 11 2023
Copyright: © 2024 Journal of Education and Health Promotion
2024
https://creativecommons.org/licenses/by-nc-sa/4.0/ This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
BACKGROUND:

Hepatitis C virus (HCV) infection, predominantly transmitted by exposure to infected blood, remains one of the major public health problems worldwide. This study aims to identify the risk factors of HCV transmission and its chronic complications among the study group.

MATERIALS AND METHODS:

This retrospective study was approved by the Research and Ethical Review and Approve Committee (RERAC) of Oman and conducted at a secondary-care hospital situated in the North Batinah region of Oman. The study population included all HCV cases confirmed by positive serology and reverse-transcription polymerase chain reaction tests during their presence at the hospital between January 2017 and December 2022. The relevant data of the study population were retrieved from the hospital electronic health record system. The data were analyzed using the Statistical Package for the Social Sciences (SPSS), Version 26.0.

RESULTS:

A total of 177 HCV confirmed cases were included in the study. HCV infection was predominant among males (74%) and individuals of the age group of 21–60 years (74.6%). Genotyping was possible only in 107 cases. Among HCV genotypes, genotype 3 (58.9%) was the most frequently identified, followed by genotype 1 (34.6%). Hemodialysis (21.5%), history of blood transfusion (16.4%), and injection drug use (11.9%) were the major risk factors for HCV infection, while cirrhosis (7.3%) and fatty liver disease (4%) were the most frequently observed chronic HCV complications. HCV infection in the spouse/partner (21.5%), alcohol use (7.3%), and co-infection with hepatitis B virus (2.3%) and human immunodeficiency virus (1.7%) were the other significant factors detected in our study population.

CONCLUSIONS:

HCV is a multi-factorial disease leading to severe chronic complications, thus representing a public health threat. This clearly emphasizes the cruciality of HCV community awareness campaigns and enhancement of Omani national guidelines for early screening of high-risk groups as well as effective management of HCV-infected cases to reduce the substantial burden of the disease on patients as well as the healthcare system.

Alpha-interferon
blood transfusion
cirrhosis
genotype
reverse-transcriptase polymerase chain reaction
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pmcIntroduction

Hepatitis C virus (HCV) infection remains a major global health problem despite recent development of safe and highly effective direct-acting antiviral agents. HCV is an enveloped positive-sense single-stranded RNA virus that belongs to Flaviviridae family within the genus Hepacivirus.[1] HCV is most often transmitted parenterally through exposure to infected blood from unsafe injection practices, unscreened blood transfusions, injection drug use (IDU), and unsafe medical procedures such as hemodialysis, surgery, and organ transplantation. Vertical transmission from mother to child and sexual contact are other well-known modes of transmission.[1] Moreover, HCV readily transmits, is up to 4 times more infectious than human immunodeficiency virus (HIV), and requires less exposure to cause infection.[2] Based on genome sequencing and phylogenetic analysis, HCV is classified into seven genotypes (1 to 7), each comprising multiple sub-types (1a, 1b, 1c, etc.). The influence of antiviral therapy and prognosis of hepatitis C depend on the genotype.[3] HCV is a hepatotropic virus, which primarily targets the liver. It is also notoriously known for undergoing high antigenic variation, resulting in the emergence of genetic variants within individual isolates termed as quasi-species. Thus, treating and developing a vaccine for HCV infection have proven difficult.[45] As per the World Health Organization (WHO) report, globally, around 58 million people have chronic HCV infection with about 1.5 million new infections occurring every year. The highest prevalence of chronic HCV was in the Eastern Mediterranean region (2.3%) including the Middle East, followed by the European region (1.5%) and African region (1%).[3] Furthermore, WHO estimated that in 2019, approximately 290,000 HCV-infected people died mostly from complications such as cirrhosis, liver failure, and liver cancer.[6] However, actual prevalence may be higher than what has been reported since many cases remain undiagnosed and risk factors go unrecognized.

HCV can cause both acute and chronic hepatitis, ranging in severity from mild to serious illness. Acute HCV infection becomes chronic in more than 50% of cases. Chronic HCV is often asymptomatic in many individuals for a prolonged period. Symptoms appear often in advanced stages of liver disease.[7] Chronic hepatitis C can lead to serious, even life-threatening liver problems such as cirrhosis, liver failure, and hepatocellular carcinoma (HCC). According to the Centers for Disease Control and Prevention (CDC) updates, 60–70% of people infected with HCV develop chronic liver disease. Of those with chronic HCV, 15–20% are at risk of developing cirrhosis within 20–30 years and about 1% of them will die from consequences of cirrhosis or HCC.[689] HCV infection can also result in extra-hepatic complications such as immune-mediated and metabolic disturbances, fatigue, and psychological disorders such as dementia and depression.[1011] Although alcohol consumption, tobacco use, insulin resistance, and co-infection with hepatitis B virus (HBV) or HIV do not cause HCV infection, they enhance the risk of chronic inflammatory liver damage in chronic HCV patients.[12]

Public awareness about HCV is inadequate. As per the WHO report, the majority of HCV-infected people (>90%) are unaware of their infection, only 21% of people are diagnosed with HCV infection, and 62% of them receive antiviral therapy.[1314] As such, prompt detection and treatment of infected patients will help to achieve a more meaningful impact on the morbidity and mortality of this disease. Acknowledging the serious impact on global health, WHO has proposed a strategy to eliminate hepatitis C by 2030.[13] Currently, only nine countries are right on track to achieve this target.[15]

To further stimulate the elimination of HCV in Oman, especially in the absence of an effective vaccine, a combination of tailored public awareness campaigns, screening and early treatment in hospital and community settings, and adhering to standard infection prevention strategies represent the cornerstone to reach this goal. Studies from Oman related to HCV prevalence, risk factors, and outcome of infection are scarce. So, more studies are necessary to generate reliable data on the clinical significance of HCV and its outcome among the Omani population to health planners and policy makers. In this context, our study aims to determine the frequency of HCV infection as well as risk factors and chronic complications among HCV patients presented during January 2017 to December 2022 at a secondary care hospital in the North Batinah region of Oman.

Materials and Methods

Study design and setting

This single-center retrospective study was conducted at a secondary-care hospital, situated in the northern region of Oman. The study was conducted for a period of 6 months.

Study participants and sampling

All HCV patients presented to Sohar hospital between January 2017 and December 2022 were included in the study. HCV infection was confirmed by positive anti-HCV antibody and HCV reverse-transcriptase polymerase chain reaction (RT-PCR) tests. Patients with incomplete data were excluded from the study. The relevant information such as demographic and clinical characteristics of the studied population, risk factors for HCV transmission, HCV genotypes, and chronic complications of HCV infection was retrieved from the hospital electronic health records.

Ethical consideration

This study was approved by the Research and Ethical Review and Approve Committee (RERAC), Ministry of Health, Oman [Approval no. MH/DGHS/NBG/18/2022].

Statistical analysis

Data were analyzed using the Statistical Package for the Social Sciences (SPSS), Version 26.0 (IBM Corp., Armonk, New York, USA). Results of categorical variables were expressed as numbers and percentages, and continuous variable results were expressed as means and standard deviations.

Results

In total, 177 patients diagnosed with HCV infection were included in the study. Table 1 depicts the demographic characteristics of the study population. HCV infection was predominant among males (74.0%) compared to females (36.0%). The majority of patients were Omanis (93.8%). Most of the patients (132, 74.6%) were adults of age between 20 and 60 years. Among HCV genotypes, genotype 3 (58.9%) was most frequent, followed by genotype 1 (34.6%), genotype 4 (7.5%), and genotype 2 (0.9%). Co-infection with other common blood-borne virus infections such as HBV (2.3%) and HIV (1.7%) was noticed among a few participants. Concerning the risk factors for HCV transmission, hemodialysis (21.5%), blood transfusion (16.4%), and injection drug use (11.9%) were most commonly noticed among the study population. Other risk factors such as cosmetic surgery (2.8%), tattooing (1.7%), and multiple sexual partners (2.3%) were less commonly noticed. Figure 1 reveals the frequency of HCV-associated complications among the study population. Cirrhosis (7.3%) and fatty liver disease (4%) were the most observed complications. Hepatic failure (1.1%), psychological disorders (1.7%) such as depression and dementia, and others (1.7%) such as end stage liver disease, hepatic encephalopathy, and ischemic liver disease were observed less frequently. History of alcohol consumption was noted in relatively less number (7.3%) of participants. Another interesting finding was the presence of HCV infection in 21.5% of spouses.

Table 1 Demographic characteristics of the studied population

Characteristic	Number (n) and percentage	
Gender		
   Male	131 (74.0)	
   Female	46 (36.0)	
Nationality		
   Omani	166 (93.8)	
   Non-Omani	11 (6.2)	
Age distribution (years)		
   0-20	2 (1.1)	
   21-40	76 (43.0)	
   41-60	56 (31.6)	
   >60	43 (24.3)	
HCV genotypes*		
   Genotype 1	14 (13.1)	
   Genotype 1a	16 (15.0)	
   Genotype 1b	7 (6.5)	
   Genotype 2	1 (0.9)	
   Genotype 3	63 (58.9)	
   Genotype 4	8 (7.5)	
Coinfection		
   HIV	3 (1.7)	
   Hepatitis B	4 (2.3)	
Risk factors		
   Injection drug use	21 (11.9)	
   Blood transfusion	29 (16.4)	
   Hemodialysis	38 (21.5)	
   Tattooing	3 (1.7)	
   Cosmetic surgery	5 (2.8)	
   Multiple sexual partner	4 (2.3)	
   Spouse with HCV	38 (21.5)	
   Alcohol consumption	13 (7.3)	
*Genotype was determined in 107 cases and >1 genotype (mixed type) was identified in two patients

Figure 1 Frequency of HCV-associated complications among the studied population. *Others include hepatic encephalopathy, ischemic liver disease, and end stage liver disease

Discussion

HCV is a common blood-borne viral pathogen prevalent worldwide.[16] However, its incidence and genotype distribution vary considerably from one region to another. Due to non-availability of an effective vaccine, prevention of infection through public sensitization complemented by community-based screening programs targeting high-risk individuals and early initiation of antiviral therapy would play a pivotal role in reducing the burden of HCV. To the best of our knowledge, in Oman, there is a dearth in HCV screening and public awareness.

In the current study, HCV infection was more common among males of the age group of 20 to 60 years. This finding is consistent with the previous reports.[1718] There are seven distinct HCV genotypes with many sub-types designated as a, b, c, and so on. The distribution of HCV genotypes differs worldwide according to epidemiological factors including differences in modes of transmission and ethnic and temporal factors. A previous report by Al-Busafi et al. revealed genotype 1 as the most prevalent (44.0%), followed by genotype 3 (35.1%), 4 (15.0%), 2 (3.7%), and mixed (2.2%) among the Omani population.[16] The prevalence of genotype 1 over other genotypes has been reported from other Middle-Eastern countries such as the United Arab Emirates (UAE), Turkey, and Bahrain.[192021] However, reports from Saudi Arabia and Yemen showed predominance of genotype 4.[2223] Contrastingly, in our study, genotype 3 was the most common compared to all other genotypes.

Before 1992, blood transfusion and organ transplantation were the major risk factors for HCV transmission worldwide. Subsequently, because of strict WHO guidelines for screening of blood samples for HCV infection and adherence to standard infection control practices, the incidence of HCV following blood transfusion and other health-care procedures has reduced gradually. However, it still remains the major risk factor in developing countries because of inadequate health-care facilities. In our study, we found the history of previous blood transfusion among 16.4% of participants. This finding is in line with another study from Oman by Al-Busafi et al., who reported a history of blood transfusion in one out of five HCV-infected participants.[16] In recent years, extensive use of recombinant erythropoietin to correct renal anemia in hemodialysis patients has significantly reduced blood transfusions. However, the literature suggests HCV infection may still occur in hemodialysis patients. Moreover, previous studies revealed that the duration of hemodialysis is an independent risk factor for HCV transmission among chronic hemodialysis patients. This might further increase the possibility of healthcare-associated HCV transmission from contaminated hemodialysis units.[24] In the present study, we found history of hemodialysis in 21.5% of participants.

High-risk behavior among sexually active adults such as injection drug use, tattooing and piercing, and unsafe sexual practices with multiple partners are regarded as major risk factors for HCV transmission in the modern world. Illicit drug use is one of major concerns among adults in Oman. Previous reports from many upper middle-income countries have suggested injection drug use is a leading risk factor for HCV transmission.[2526] In our study, we found history of injection drug use and tattooing among 11.9% and 1.7% participants, respectively. However, the actual percentage of illicit drug use in Omani adults is likely inaccurate due to social stigma. High prevalence of HCV in illicit drug users mandates greater efforts to promote safe injection practices, provision for use of sterile instruments and equipment, and regular screening.

HCV can also spread through sex. The risk of transmission is even higher when a person has sexually transmitted diseases (STDs) such as HIV and who has indulged in unsafe sex or sex with multiple partners. In our study, there was a history of numerous sex partners (2.4%) and co-infection with HIV (1.7%) among a few participants. Therefore, awareness about safe sex practices is vitally important among the adult population. Vertical transmission from mother to child is another recognized mode of HCV transmission.[27] In our study, HCV infection was noted in 21.5% of spouses, thus being constantly at risk of conceiving. HCV infection in pregnant women is strongly associated with cholestasis and pre-term births. Furthermore, infection at an early age leads to a higher risk of subsequent development of chronic complications such as cirrhosis and hepatocellular carcinoma among the infected children. Hence, provision for antenatal screening of pregnant women, prenatal diagnosis of HCV infection, and early initiation of highly effective antiviral therapy has a dual benefit for mother and child.

Most HCV patients remain chronically infected, with an increased risk of fatty liver disease, cirrhosis, liver failure, and HCC. Less frequently, they may develop psychological problems.[811] In line with this, in our study population, cirrhosis (7.3%), fatty liver disease (4%), and psychological problems (1.7%) were noticed in a minority of the participants. The literature suggests alcohol consumption does not cause HCV transmission. However, excessive alcohol consumption is a well-known risk factor that leads to a more severe liver injury, promoting disease progression and increased risk of cirrhosis and HCC.[28] In our study participants, alcohol use was relatively uncommon. Out of 13 alcoholic patients, 4 developed cirrhosis and 2 developed end-stage renal disease.

Currently, interferon alfa and many antiviral drugs such as ribavirin and sofosbuvir remain mainstay in HCV treatment. These antiviral agents are associated with toxicities, but direct-acting antiviral therapies result in an initial cure rate of >95%.[29] Therefore, early diagnosis and early initiation therapy play a pivotal role in reducing the risk of HCV-related complications such as cirrhosis and HCC.[30] However, we could not analyze this fact because of lacunae in the antiviral therapy data.

Limitation and recommendation

This study had several potential limitations. First, the data were collected retrospectively from health records. Therefore, there is a paucity in relevant data such as the impact of antiviral therapy on the disease outcome, time of initial diagnosis, chronicity, and so on. Second, social stigma hinders proper disclosure and leads to an under-estimation of high-risk activities such as injection drug use, high-risk sexual relationships, and others. Third, the study did not analyze the association between risk factors and the outcome of infection due to a small sample size. Additionally, the study population was from a single center, and hence, the results of our study cannot be generalized. It is recommended to confirm our study findings via a multi-centric study with a large sample size.

Conclusion

Our study demonstrates that HCV risk is multi-factorial. Major risk factors for HCV transmission included hemodialysis, blood transfusion, and injection drug use, with genotypes 3 and 1 being the most common. However, cirrhosis and fatty liver disease were the most observed chronic HCV complications. There are obvious shortcomings in dealing with hepatitis C in Oman, as evidenced by the lack of basic disease information and public sensitization. The data presented in this study, even if limited, point to the fact that HCV is a major health issue compelling a greater focus in Oman. Prioritizing public awareness campaigns, escalation of early screening of at-risk individuals, and precise management of HCV cases are necessary to address this challenge. Furthermore, an intensified response by the Omani government is required through national policies implementing strict regulations on illicit drug use. Synergy between all these efforts is necessary if the HCV elimination goal is to become a reality in Oman.

Financial support and sponsorship

Nil.

Conflicts of interest

There are no conflicts of interest.

Acknowledgement

Authors express their sincere gratitude to Mr. Jayadev Prasad (IT manager, Sohar hospital) and the Microbiology laboratory staff of Sohar hospital for their assistance in data collection.
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References

1. Sepulveda-Crespo D Resino S Martinez I Hepatitis C virus vaccine design: Focus on the humoral immune response J Biomed Sci 2020 27 78 doi: 10.1186/s12929-020-00669-4 32631318
2. Karoney MJ Siika AM Hepatitis C virus (HCV) infection in Africa: A review Pan Afr Med J 2013 14 44 doi: 10.11604/pamj. 2013.14.44.2199 23560127
3. Rabaan AA Al-Ahmed SH Bazzi AM Alfouzan WA Alsuliman SA Aldrazi FA Overview of hepatitis C infection, molecular biology, and new treatment J Infect Public Health 2020 13 773 83 31870632
4. Ayoub N Hatab T Bizri AR Challenges facing viral hepatitis C elimination in Lebanon Pathogens 2023 12 432 doi: 10.3390/pathogens12030432 36986354
5. Domingo E Gomez J Quasispecies and its impact on viral hepatitis Virus Res 2007 127 131 50 17349710
6. World Health Organization Hepatitis C 2017 Available from: https://www.who.int/news-room/fact-sheets/detail/hepatitis-c. [Last accessed on 2023 Jul 18]
7. Abdo AA Hepatitis C and poor quality of life: Is it the virus or the patient? Saudi J Gastroenterol 2008 14 109 13 19568517
8. Centers for Disease Control and Prevention Hepatitis C questions and answers for health professionals 2020 Available from: https://www.cdc.gov/hepatitishcv/hcvfaq.htm. [Last accessed on 2023 Aug 15]
9. Petruzziello A Marigliano S Loquercio G Cozzolino A Cacciapuoti C Global epidemiology of hepatitis C virus infection: An up-date of the distribution and circulation of hepatitis C virus genotypes World J Gastroenterol 2016 22 7824 40 27678366
10. Petta S Hepatitis C virus and cardiovascular: A review J Adv Res 2017 8 161 8 28149651
11. Dirks M Haag K Pflugrad H Tryc AB Schuppner R Wedemeyer H Neuropsychiatric symptoms in hepatitis C patients resemble those of patients with autoimmune liver disease but are different from those in hepatitis B patients J Viral Hepat 2019 26 422 31 30120896
12. Alqahtani SA Colombo M Viral hepatitis as a risk factor for the development of hepatocellular carcinoma Hepatoma Res 2020 6 58 doi: 10.20517/2394-5079.2020.49
13. Global health sector strategies 2022-2030 Available from: https://www.who.int/teams/global-hiv-hepatitis-and-stis-programmes/strategies/global-health-sector-strategies. [Last accessed on 2023 Aug]
14. Abdel-Gawad M Nour M El-Raey F Nagdy H Almansoury Y El-Kassas M Gender differences in prevalence of hepatitis C virus infection in Egypt: A systematic review and meta-analysis Sci Rep 2023 13 2499 doi: 10.1038/s41598-023-29262-z 36781919
15. Polaris Observatory The authoritative resource for epidemiological data, modeling tools, training, and decision analytics to support global elimination of hepatitis B and C by 2030 Available from: http://www.hepbunited.org/assets/Webinar-Slides/8b54a78215/POLARIS-Brief-181217.pdf
16. Al-Busafi SA Al-Shuaili H Omar H Al-Zuhaibi H Jeyaseelan L Al-Naamani K Epidemiology of chronic hepatitis C infections at a tertiary care centre in Oman Sultan Qaboos Univ Med J 2017 17 e404 10 doi: 10.18295/squmj.2017.17.04.005 29372081
17. Yousaf A Ghafoor A Fatima N Danish M Gender-specific frequency distribution of hepatitis C virus genotypes in Punjab province, Pakistan: A clinically significant descriptive cross-sectional study Cureus 2021 13 e17480 doi: 10.7759/cureus. 17480 34589367
18. Soliman G Elzalabany MS Hassanein T Miller FD Mass screening for hepatitis B and C in southern upper Egypt BMC Public Health 2019 19 1326 doi: 10.1186/s12889-019-7640-1 31640639
19. Abro AH Al-Dabal L Younis NJ Distribution of hepatitis C virus genotypes in Dubai, United Arab Emirates J Pak Med Assoc 2010 60 987 90 21381547
20. Bozdayi AM Aslan N Bozdayi G Türkyilmaz AR Sengezer T Wend U Molecular epidemiology of hepatitis B, C and D viruses in Turkish patients Arch Virol 2004 149 2115 29 15503201
21. Ghaderi-Zefrehi H Gholami-Fesharaki M Sharafi H Sadeghi F Alavian SM The distribution of hepatitis C virus genotypes in Middle Eastern countries: A systematic review and meta-analysis Hepat Mon 2016 16 e40357 doi: 10.5812/hepatmon. 40357 27826320
22. Shobokshi OA Serebour FE Skakni L Al-Saffy YH Ahdal MN Hepatitis C genotypes and subtypes in Saudi Arabia J Med Virol 1999 58 44 8 10223544
23. Ohno T Mizokami M Saleh MG Orito E Ohba KI Wu RR Usefulness and limitation of phylogenetic analysis for hepatitis C virus core region: Application to isolates from Egyptian and Yemeni patients Arch Virol 1996 141 1101 13 8712927
24. Hinrichsen H Leimenstoll G Stegen G Schrader H Fölsch UR Schmidt WE Prevalence and risk factors of hepatitis C virus infection in haemodialysis patients: A multicentre study in 2796 patients Gut 2002 51 429 33 12171969
25. Grassi A Ballardini G Hepatitis C in injection drug users: It is time to treat World J Gastroenterol 2017 23 3569 71 28611509
26. Trickey A Fraser H Lim AG Peacock A Colledge S Walker JG The contribution of injection drug use to hepatitis C virus transmission globally, regionally, and at country level: A modelling study Lancet Gastroenterol Hepatol 2019 4 435 44 30981685
27. Ragusa R Corsaro LS Frazzetto E Bertino E Bellia MA Bertino G Hepatitis C virus infection in children and pregnant women: An updated review of the literature on screening and treatments AJP Rep 2020 10 e121 7 doi: 10.1055/s-0040-1709185 32257593
28. Schiff ER Ozden N Hepatitis C and alcohol Alcohol Res Health 2003 27 232 9 15535451
29. Fierer DS Wyles DL Re-treatment of hepatitis C infection after multiple failures of direct-acting antiviral therapy Open Forum Infect Dis 2020 7 ofaa095 doi: 10.1093/ofid/ofaa095 32296728
30. Feeney ER Chung RT Antiviral treatment of hepatitis C BMJ 2014 348 g3308 doi: 10.1136/bmj.g3308 25002352
