METHODS
We retrospectively reviewed archive records and found 2204 cancer cases between January 01, 2014 and
December 30, 2016 from the records of X University, Faculty of Medicine, Department of Pathology and
City Public Health Directorate Cancer Department.
RESULTS
The mean age of the patients was 65.5 years. The male to female ratio was 1.40, and 41.7% (n=919) of the
patients were females and 58.3% (n=1285) were males. The youngest patient was 18 years old and the oldest
was 96 years old. The top ten cancers were skin (n=374, 17.0%), lung (n=205, 9.3%), colorectal (n=204,
9.3%), breast (n=192, 8.7%), prostate (n=174, 7.9%), stomach (n=173, 7.3%), urinary bladder (n=159,
7.2%), thyroid (n=136, 6.2%), uncertain primary (n=85, 3.9%), and pancreatic (n=82, 3.7%) cancers.
CONCLUSION
Development of cancer registry centers, upgrading to an active registry system, and obtaining all cancer data from
health institutions and unifying it in a single organization are mandatory to achieve reliable data. Dissemination of
screening methods is also important. As a result, determination of local cancer risk factors with the development of
early diagnostic methods and the creation of cancer registration system will form the basis for future studies to be
developed to prevent cancer.
Keywords: Cancer; Çorum city; Epidemiology
Although cancer control efforts seem to be obscure
in the current global health agenda, in 2005, the World
Health Organization (WHO) passed the Resolution on
Cancer Control WHO 58.22, urging member states to
conduct cancer control and prevention activities. "Cancer
surveillance is the ongoing, timely, and systematic
collection and analysis of information on new cancer
cases, extent of disease, screening tests, treatment, survival, and cancer deaths." Surveillance systems, including
cancer registries, allow countries to obtain specific
data by geographic region from people diagnosed with
cancer and to use the data to develop preventive, diagnostic,
or therapeutic practices; to assess the efficacy of
these interventions and initiate research studies; and to
develop policies and allocate funding.[
Diagnosis, Screening, and Training Centers (Kanser
Erken Tanı, Tarama ve Eğitim Merkezi-KETEM) in the
last 10 years and aims to expand these centers both in
number and distribution within the country, to create
and initiate national screening programs, and to reestablish
and modernize the already existing cancer
diagnosis and treatment centers. The aim of this workshop,
which was organized by TCSB, was to determine
the incidence of cancer in Turkey.[
Histopathological reports and cancer registry informations were included in data analysis if there was no suspicion about the diagnosis. The archive records were examined between January 01, 2014 and December 30, 2016 using a software that uses a specific database. Thus, a total of 98456 recorded pathology reports were retrospectively reviewed in the pathology department. If there was more than one biopsy of the same patient, the one that best represented the diagnosis was taken into consideration. If there were different biopsies of the same patient, these different biopsies were included in the study. Patients who had a diagnosis of metastatic cancer with a known primary source were excluded. Data from patients aged <16 years were also excluded. A total of 2204 cases in whom the diagnosis of cancer were made in Çorum city were recorded by gender, age, and system/organ and classified into the ten most frequent types of cancer both in general and in terms of gender distribution.
Statistical analysis was performed using SPSS version
21.[
Distribution of all cancer cases in terms of organ,
system, and gender is shown in Table
Among the two gender groups, the top ten cancers
were skin (n=374, 17.0%), lung (n=205, 9.3%), colorectal
(n=204, 9.3%), breast (n=192, 8.7%), prostate
(n=174, 7.9%), stomach (n=173, 7.3%), urinary bladder
(n=159, 7.2%), thyroid (n=136, 6.2%), uncertain
primary (n=85, 3.9%), and pancreatic (n=82, 3.7%)
cancers (Table
Among females, the top 10 cancers were breast
(n=192, 20.9%), skin (n=164, 17.5%), thyroid (n=108,
11.8%), colorectal (n=80, 8.7%), stomach (n=54, 5.9%),
corpus uteri (n=51, 5.5%), lung (n=37, 4.0%), pancreatic
(n=33, 3.6%), primer uncertain (n=32, 3.5%), and
urinary bladder (n=23, 2.5%) cancers, whereas among
males, the top 10 cancers were skin (n=210 16.3%),
prostate (n=174, 13.5%), lung (n=168, 13.1%), urinary
bladder (n=136, 10.6%), colorectal (n=124, 9.6%),
stomach (n=119, 9.3%), primer uncertain (n=53, 4.1%), pancreatic (n=49, 3.8%), non-Hodkin lymphoma
(n=39, 3.0%), and hematopoietic (n=37, 2.6%)
cancers. Among 2204 cases with a diagnosis of cancer,
1285 (58.3%) were males and 919 (41.7%) were females.
The frequency peaks between 60 and 69 years of age in
males and females (n=593, 26.9%). Cancer most commonly
occurred in 60?69 years of age in males (n=390,
30.4%), followed by 70?79 years of age (n=364, 28.3%).
In females, cancer most commonly occurred in 70?79
years of age (n=215, 23.4%), followed by 60?69 years of
age (n=203, 16.0%; Fig.
Among males and females, the highest incidence
of cancer, 374 (17.0%), was in the skin (P<0.000), followed
by lungs (9.3%), colorectal (9.3%), stomach
(7.9%), urinary bladder (7.2%), and thyroid (Table
The least incidence of cancer was in the heart (0.3%). Calculation of the P value suggests the statistical significant association of cancer with gender and age group.
In females, breast cancer (n=192, 20.9%) was most
commonly found and peaked in 50?59 years of age
(Fig.
In males, prostate carcinoma (n=174, 13.5%) was
the second most common cancer after skin cancer, and
it peaked in 70?79 years of age (Fig.
Between January 01, 2014 and December 30, 2016,
1576 (71.5%) of these cancer patients were treated according
to the data of the public health institution (Fig.
The five most common cancers (lung, breast,
colorectal, prostate, and stomach) in both genders account
for nearly half of all cancer cases. Lung and breast
cancer are the most frequently diagnosed cancers and
are the leading causes of cancer death in males and females,
respectively, both overall and in less developed
countries.[
In developed countries, lung and prostate cancers
in males and breast and colorectal cancers in females
are more frequent. On the other hand, in developing
countries, lung, stomach, and liver cancer in males and breast and cervical cancers in females are more frequent.[
In a study by Farley et al., lung cancer remains the
most common cancer in the world, both in term of new
cases (1.8 million cases, 12.9% of total) and deaths (1.6
million deaths, 19.4%), because of the high mortality
rate.[
The first five most common cancer types in Turkey
are similar to those in the world and other developed
countries.[
In Turkey, the age-adjusted cancer rates for males
and females in 2012 were reported as 277.7/100,000
and 188.2/100,000, and there is a serious increase in the incidence and mortality rate of cancer.[
Lung cancer is the most common type of cancer
in males in our country, which is directly related to
tobacco use.[
In Asia, colorectal cancer has the sixth highest cancer
incidence and seventh highest cancer mortality
for both genders (IARC, 2008).[
One of the most common cancers is breast cancer,
and it has a high incidence rate in all countries. The
incidence rate of breast cancer ranges from 19.4 per
100,000 people in East Africa to 89.7 per 100,000 in
West Europe.[
Prostate cancer is the third most common cancer
in the world, and its geographical variability across
the world is well-known. It has been reported as a rare
disease in Asia and Africa (approximately four-seven
per 100,000), whereas it is frequently diagnosed as an
aging-related malignancy preferentially occurring in
certain ethnic groups especially in the West (70-100
cases per 100,000 in Nordic European countries and
North America).[
The incidence of thyroid malignancy has been increasing
in Turkey for the past two decades. The increase
in the frequency of thyroid cancer could be
attributable to several different reasons in the case of
Turkey: the Chernobyl nuclear accident, mandatory
iodization for endemic iodine deficiency, increased diagnostic
scrutiny, strict pathologic investigation, and
changing surgical techniques.[
More than 70% of stomach cancer cases (677,000
cases) occur in developing countries (456,000 in males
and 221,000 in females), and half the world total occurs
in Eastern Asia (mainly in China).[
Countries need to develop prevention and screening
programs based on the frequency of the most common
cancer. Cancer screening, early diagnosis, and effective
treatment requires collaboration of several specialties
in medicine. The aim of obtaining a successful result
can only be achieved by the cooperation of all related
medical divisions. Different clinics have to work together
for cancer screening, early diagnosis, and effective
treatment. A successful outcome can only be
achieved through the cooperation of all relevant medical
departments. The widespread deficiencies in population-
based screening and effective treatment lead to
an increase in delay in diagnosis and mortality.[
Overall average percentage of colorectal cancer
(p=0.458) and prostate cancer (p=0.574) in our study
(in 2014-2017) is higher than that reported in the
study by Baş et al.[
In conclusion, distribution of organ/system involvement
in cancer cases that were diagnosed in Çorum
city is not different from the data regarding Turkey
in general. Development of cancer registry centers,
upgrading to an active registry system, and obtaining
all cancer data from health institutions unified in a
single organization are mandatory to achieve reliable
data. Serious and extensive research on the etiology is
required. Dissemination of screening methods is also
important. As a result, the determination of local cancer
risk factors with the development of early diagnostic
methods and creation of cancer registration system
will form the basis for future studies to be developed
for preventing cancer. This study suggests that the frequency
of cancer increases with age and that early diagnosis
methods have reached a sufficient level.
Disclosures Statement
The authors declare no conflicts of interest.
Acknowledgments: The authors have no fundings or
conflicts of interest to disclose.
Ethics Committee Approval: This study was conducted inaccordance
with local ethical rules.
Peer-review: Externally peer-reviewed.
Conflict of Interest: None declared.
Authorship contributions: Concept - Y. B; Design - Y. B;
Supervision - B. H. E; Materials - G. G, İ. T; Data collection
&/or processing - H. H. K; Analysis and/or interpretation -
Y. B; Literature search - Ş. Ş; Writing - Y. B; Critical review
- B. H. E, G. G; Biostatistics - E. T.