METHODS
Included were a total of 154 female breast cancer patients with bone metastases (n=53; Group 2) and without
bone metastases (n=51; Group 1), as well as 50 healthy control subjects (Group 3). Serum IL-18 levels were
compared among the groups.
RESULTS
Mean serum IL-18 levels were significantly different between Groups 1 and 3 (p<0.001), Groups 2 and
3 (p<0.001), and Groups 2 and 1 (p=0.020). In receiver operating characteristic (ROC) curve analysis
performed between Groups 1 and 2, sensitivity of serum IL-18 levels in patients with bone metastases
was nearly 26 percent.
CONCLUSION
Lower rates of IL-18 sensitivity were detected in breast cancer patients with bone metastasis.
Keywords: IL-18; bone metastasis; breast cancer
Tumor biology should be better understood, and mechanisms of the metastatic process should be more comprehensively investigated in an effort to decrease development of bone metastasis in breast cancer, emergence of related complications, and mortality rates.
The aim of the present study was to compare serum IL-8 levels in breast cancer patients with and without bone metastases and healthy individuals. In consideration of potentially emergent outcomes, degree of sensitivity of serum IL-18 levels in the detection of bone metastases in breast cancer patients and optimal treatment strategies are discussed.
From the volunteers, 5-mL fresh blood samples were drawn into flat-bottom test tubes, and centrifuged at 4000 rpm for 10 minutes at ambient temperature to separate sera. Serum samples were conserved in Eppendorf tubes at -25oC until analysis. The samples to be analyzed were pipetted out from Eppendorf tubes at -25oC and left to thaw at room temperature before analyses were performed. Human IL-18 was analyzed with a DSX Automated Microelisa Processing System (Dynex Technologies Inc., Chantilly, VA, USA), using human IL-18 enzyme-linked immunosorbent assay (ELISA) kit (MBL Ltd. code no: 7620) and sandwich ELISA method. Reference range was 36.1—257.8 pg/mL.
Statistical analysis
Categorical variables were expressed as numbers and
percentages, while continuous variables were expressed
as mean±SD. One-way analysis of variance was used for
intergroup comparison of IL-18 levels and patient ages.
If intergroup differences were found, post-hoc analysis
with Bonferroni correction was performed. Receiver
operating characteristic (ROC) curve analysis was used
to obtain cutoff values for IL-18. Level of significance of
statistical analyses was accepted as p<0.05.
Distribution of cancer stages of Group 1 patients were: stage I, 24%; stage II, 49%; stage III, 27%. All patients had metastatic disease, and were included in stage IV. Regarding histopathological diagnosis, invasive ductal carcinoma was the most common diagnosis in Groups 1 and 2 (83%). Invasive lobular carcinoma (10%), invasive papillary carcinoma (6%), and medullary carcinoma (1%) were also observed.
Mean serum IL-18 level of Group 2 (1528.38±1081.28
pg/mL) was higher than that of Group 1 (1146.16±495.09
pg/mL). Mean serum IL-18 levels of Groups 1 and 2
were higher than that of Group 3 (480.33±234.62 pg/
mL; Table
A statistically significant difference was found among serum IL-18 levels (p<0.001). Mean serum IL- 18 levels of Groups 3 and 2 were statistically significantly different (p<0.001). Mean serum IL-18 levels of Groups 3 and 1 were statistically significantly different (p<0.001), as were those of Groups 1 and 2 (p=0.020).
As a result of ROC curve analysis, cutoff value of IL-
18 in breast cancer patients with and without bone metastasis
was 1773.63 pg/mL. Diagnostic value of IL-18
level in the detection of bone metastasis when used as a
marker is shown in Table
Area under the curve (AUC) value for serum IL-18 levels in Groups 1 and 2 was 0.576 (p=0.1782). An AUC value of less than 0.60 signifies that this test will not be statistically useful when discriminating between breast cancer patients with and without bone metastases.
Increased levels of serum IL-8 in some cancer patients
has been reported, and it has been determined that
disease progression in patients with increased serum IL-
18 levels is more fatal. Takubo et al. demonstrated that
non-Hodgkin's lymphoma patients with serum IL-18 levels over 2000 pg/mL were at higher risks.[
In light of these results, the usefulness of serum IL-
18 as a marker of the potential development of bone
metastases in breast cancer patients was presently investigated.
Serum IL-18 levels were compared among breast
cancer patients with and without bone metastases and
healthy women. Breast cancer patients with other organ
metastases were not included. In a similar study
conducted by Soheir et al. in 2005, no significant difference
in serum IL-18 levels was found between breast
cancer patients with bone or other organ metastases.
[
IL-18 exerts its effects on osteoblasts, not via production
of INF-y, but rather via production of granulocyte
macrophage colony-stimulating factor (GM-CSF).[
As evidenced by theoretical experiments, IL-18 can
inhibit development of osteolytic metastases of human
lung cancer or human breast cancer cells.[
As mean serum IL-18 values of patients with bone
metastases were significantly higher than those without
metastases (p=0.020) in the present study, it can be said
that IL-18 may be useful in the detection of bone metastases.
The cutoff value of serum IL-18 for the groups
with and without bone metastases was 1773.63 pg/mL,
and keeping in mind that patients with serum IL-18 levels
above this cutoff value had bone metastases, nearly
27% of this group of patients exceeded the cutoff value.
However, other patients with serum IL-18 values below
the cutoff had conclusively confirmed bone metastases.
Therefore, serum IL-18 may not be a sensitive marker in
the monitorization of breast cancer patients with bone
metastases. At the same time, the lower sensitivity of
IL-18 in the present study may be related to bisphosphonates
used by breast cancer patients with bone metastases.
Bisphosphonates, which effect bony structures via
pathways similar to those involved in the mechanism of
IL-18, also exert an impact on the secretion of RANKL, an osteoclast differentiation factor.[
Considering these results, it can be concluded that
serum IL-18 levels will decrease in response to decreased
tumor burden in the bone, and that bone metastases
will regress in patients using bisphosphonates.
This phenomenon, which narrows the gap between IL-8
levels in groups with and without bone metastases, may
explain the decreased sensitivity of this test. The authors
believe that further studies will yield more accurate outcomes
and conclude the debate surrounding this issue.
Disclosure Statement
The authors declare no conflicts of interest.