METHODS
A total of 158 patients who were diagnosed with TNBC between 1996 and 2017 were retrospectively
reviewed. Patients" age, family history, stage, grade, type of surgery, clinical follow-up, adjuvant, and
neoadjuvant treatments of the tumor according to TNM system, and their effects on general and disease-
free survival were analyzed.
RESULTS
The median age was 46 years (range 24?82). The mean follow-up period was 72 months (range 10?224).
A total of 64 (41%) patients had family risk for cancers (other than breast and ovarian). A total of 57
(36%) patients had breast cancer history in their family, 11 (7%) had ovarian cancer history in their family,
and 4 (3%) had history of both cancers in their family. There was no significant difference between
tumor characteristics and family history. In addition, there was no difference between patients with and
without family history (breast and ovarian cancer) in terms of local control, disease-free, and overall
survival (respectively p=0.13, p=0.11, p=0.59). The only statistically significant outcome was that diagnosis
of a second primary cancer in the opposite breast for no family history group was 2% compared to
14% for those with family histories (p=0.03).
CONCLUSION
The family history of breast cancer did not affect the prognosis of the patient independently of the degree of
consanguinity. These patients should be carefully monitored for the second primary of the opposite breast.
Keywords: Breast cancer; family story; triple negative
The BRCA gene mutations are frequently detected
in "basal like" type breast cancer.[
The prognostic location of these gene mutations
predicting familial transmission is under investigation.
[
In our study, the patients who were treated with the
diagnosis of TNBC were investigated for a family history
of cancer and breast/ovarian cancer and the relation
between relative degree (first-, second-, and thirddegree)
and survival rate were analyzed.
Family history was questioned as to whether there was a history of general cancer (excluding breast and ovarian cancers) in the first-, second-, and third-degree relatives as well as history of breast/ovarian cancer. Relative degree has been defined as follows: first-degree relative: mother, father, and children; second-degree relative: sibling, grandmother, grandfather, and grandchildren; third-degree relative: aunt, uncle, and their children.
Biopsy date was accepted as the date of diagnosis. The time to progression was calculated using the date of the first local recurrence or metastasis, whichever came first.
Statistical Evaluation
The Number Cruncher Statistical System 2007 (Kaysville,
Utah, USA) program was used for statistical analysis.
Descriptive statistical methods (mean, standard deviation, median, frequency, ratio, minimum, maximum)
were used to evaluate the study data. One-way ANOVA
test was used to compare three and more groups with
normal distribution in the evaluation of the quantitative
data, while the Kruskal-Wallis test was used to compare
three and more groups that did not show normal
distribution. Pearson"s chi-square test and Fisher-Freeman-
Halton test were used to compare qualitative data.
Significance was at least p < 0.05. Kaplan-Meier and log
rank test were used for survival analysis.
When tumor characteristics were analyzed, 71
(45%) patients had T1 stage and 76 (48%) patients had
T2 stage. The histological grade of 126 (80%) patients
was third. Lymphovascular invasion was not detected
in 99 (63%) patients. There were 100 (63%) patients
with axillary N0. The clinical and pathological features
of the patients are summarized in Table
A total of 129 (82%) patients underwent breastconserving surgery. Pathological evaluation of axillary lymph was left at the stage of sentinel lymph node biopsy in 82 (52%) patients. A total of 148 (94%) patients received chemotherapy. Of these, 29 (18%) were made as neoadjuvant and 119 (82%) as adjuvant. A total of 139 (88%) patients underwent adjuvant radiotherapy. A total of 19 (12%) patients did not receive radiotherapy indication, and 10 (6%) patients were not indicated for chemotherapy. Five (3%) patients did not receiveany adjuvant therapy. Local recurrence was found in 4 (7%) patients in the group with a family history of breast cancer and in 8 (8%) patients in the group with no family history (p=0.33). Detection of distant metastasis for the same groups was found in 7 (12%) patients and 17 (17%) patients, respectively (p=0.29). As in the family history of breast cancer case, ovarian cancer history in the family did not have any effect on the patient"s local recurrence (p=0.66) or distant metastasis (p=0.56). Cox"s regression analysis of the family history with relative degree came out as statistically not significant. The incidence of second primary breast cancer in the opposite breast during follow-up was 8 (13%) and 8 (5%) in patients with and without breast cancer. This difference was statistically significant (p=0.03).
Occurrence of the disease at a young age and the high histological grade of the tumor are common clinical and pathological features of TNBC. In our study, the parameters that determine the aggressive course of the tumor were found parallel to the literature.
The diameter of the primary tumor and the presence
of axillary lymph node metastasis determine the stage
of the tumor pathologically. Both are prognostic factors
for local recurrence and distant metastasis of the disease,
regardless of other parameters.[
Axillary lymph node metastasis occurrence is the
highest in luminal B group patients, and it is seen in
Her-2 positives more than other subtypes.[
The incidence of family breast cancer in TNBC
varies between 5% and 25%.[
A few studies evaluate whether family history is an
independent prognostic factor or not for overall survival.
One of them is the nomogram study that is performed
to determine predictive features in TNBC. In
this study, family history, histological grade, plasma tumor
markers, and tumor localization were found to be
independent prognostic factors.[
In our study, there was no difference in terms of
known prognostic factors (age, Tstage, Nstage, histological
grade, etc.) in patient groups with and without
family history. Therefore, statistically, it was appropriate
to evaluate the family history as a prognostic factor.
However, the absence of first- or second-degree relatives
of some patients reduces the reliability of the data.
In addition, genetic panel studies for biological subtypes
were not available in our study. In patients with
no known genetic mutations, the independent prognostic
value of family history may be more accurate.
All these were the limitations of our work.
Peer-review: Externally peer-reviewed.
Conflict of Interest: The authors declared no conflicts of
interest.
Ethics Committee Approval: This study was conducted in
accordance with local ethical rules.
Financial Support:
The authors declared no financial support.
Authorship contributions: Concept - M.M.; Design -
A.A.; Supervision - M.M.; Materials - M.M.; Data collection
&/or processing - A.A.; Analysis and/or interpretation
- A.A.; Literature search - A.A.; Writing - A.A.; Critical review
- M.M.