Skip to content

Chemoprevention Trial - Anastrozole in Ductal Carcinoma In Situ (DCIS) in Postmenopausal Women

Phase II Chemoprevention Trial - Anastrozole in the DCIS and Early Invasive Breast Cancer in Postmenopausal Women

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00256217
Enrollment
42
Registered
2005-11-21
Start date
2004-09-21
Completion date
2018-12-12
Last updated
2021-05-11

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

DCIS

Brief summary

Breast cancer is one of the most common cancers seriously afflicting women in the United States. Of the one million incident cases that are reported annually there are approximately 193,000 new cases of breast cancer (Greenlee, 2001). Although significant advances have been made both in early detection and treatment of breast cancer, the impact of these on reduction in mortality has been modest (Peta, 2000). Furthermore, despite data implicating diet and other environmental risk factors, no lifestyle changes have yet been shown to significantly reduce the risk of breast cancer. Therefore, chemoprevention of breast cancer is a worthwhile approach to reduce the incidence of breast cancer. There is every reason to believe that a detailed understanding of the initiation, promotion and growth of breast cancer will ultimately provide a rational strategy upon which to base prevention strategies. While the pathways of breast cancer development are not yet fully understood, a role for estrogens in breast cancer etiology has been well established. While many pathways are involved in breast cancer etiology, including loss of tumor suppressor function by p53 or BRCA1 and gain of HER2 oncogene expression, their exact role in an individual patient's cancer development may vary. Therefore, it may be advantageous to focus on a chemoprevention strategy that may have a more uniform impact on breast cancer development, such as estrogen exposure. Estrogen and its metabolites, both in the circulation and locally synthesized in the breast, are important in the pathogenesis of breast cancer. High levels of circulating estrogen in postmenopausal women have been associated with an increased risk of breast cancer (Clemons, 2001). Furthermore, local estrogen synthesis, i.e. aromatase activity, in the breast may also be important in the development of breast cancer.

Detailed description

Specific Aim 1: We hypothesize that a proliferative marker Ki-67 is reduced in patients with preinvasive Ductal Carcinoma In Situ (DCIS) and very early breast cancer treated with anastrozole. To establish reduction in Ki-67 as a primary surrogate endpoint to breast cancer risk reduction in patients treated with anastrozole we will measure Ki-67 before and after treatment with anastrozole. Consistent with this, it has been demonstrated by Geisler et al that patients with advanced breast cancer show a decrease in Ki-67 on lumpectomy/mastectomy samples when anastrozole is administered for few weeks prior to definitive surgery. In addition, there is a trend for a more profound suppression in those achieving an objective response. Ki-67 will be measured by routine immunohistochemistry. Specific Aim 2: We hypothesize that histopathological tumor response will be demonstrated in 30-40 percent of patients with preinvasive (DCIS) and early invasive (less than 2 cm) breast cancer treated with anastrozole. The percent ability to reverse early breast cancer lesions in patients treated with anastrozole will be qualified as a secondary surrogate endpoint to breast cancer risk reduction. Consistent with this, it has been demonstrated that 30-40 percent of patients with advanced breast cancer show an infiltration of foamy macrophages and fibrosis on lumpectomy/mastectomy samples when chemotherapy is administered for few months prior to definitive surgery. Further, there is a trend for a more profound change in those achieving a complete clinical response. Importantly, a complete pathological response in these advanced breast cancer has been shown to correlate with improved disease free survival and overall survival in breast cancer patients. A corollary is that if reversibility of early carcinogenic lesions is reliably demonstrated in our present proposal, it would translate into chemoprevention of breast cancer. Specific Aim 3: To compare the pretreatment MRI with post treatment MRI (as a secondary surrogate endpoint to breast cancer risk reduction). We hypothesize that tumor response can be measured by contrast washout characteristic in patients with preinvasive and very early breast cancer treated with aromatase inhibitor. Consistent with this, we have previously demonstrated that patients with advanced breast cancer show a reduction in vascularity in response to chemotherapy. Further, there is a trend for a more profound suppression in those achieving a pathological response on lumpectomy/mastectomy specimen. Specific Aim 4: To compare the pretreatment markers of angiogenesis with post treatment markers of angiogenesis (as a secondary surrogate endpoint to breast cancer risk reduction). We hypothesize that tumor response can be measured by reduction in CD31 (microvessel count), CD105 (endoglin) and VEGF in response to hormonal therapy. There may be upregulation of TSP-1, an angiogenesis inhibitor in response to anastrozole. Angiogenic activity has been reported for ligands of the nuclear hormone receptor superfamily such as estrogens. Inhibition of the proangiogenic effects of estrogens could underlie the chemopreventive action of hormone modulators on mammary carcinogenesis. A group of investigators have indeed coined the word angioprevention as a mechanism of chemoprevention that reverses the angiogenic switch from preinvasive to invasive cancer. Additionally, it has been demonstrated that patients with various cancers whose tumor vascularity is targeted with VEGF inhibitor show higher response than patients who are treated with chemotherapy alone. Our present proposal capitalizes on the data obtained in advanced breast cancer as to the efficacy of antiangiogenesis mechanism as an option in treatment and prevention .

Interventions

DRUGAnastrozole

1 mg. oral every day for 2 - 4 weeks

Sponsors

AstraZeneca
CollaboratorINDUSTRY
Rita Sanghvi, Mehta
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
FEMALE
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Patients must have suspicion of DCIS or early invasive breast cancer on mammography. * Patients must have histologically confirmed diagnosis of DCIS or early invasive breast cancer on core biopsy for final registration. * Patients must be over 18 years of age * Patients must be postmenopausal as defined by one of the following criteria: 1. Prior bilateral oophorectomy OR 2. \> 12 months since LMP with no prior hysterectomy OR 3. a & b not applicable AND age \>=50 * Patients must be positive for either ER or PR or both * Patients must be informed of the investigational nature of this study and must sign and give written informed consent in accordance with institutional and federal guidelines.

Exclusion criteria

* Patients must not have diagnosis of osteoporosis (T-score -2.5 according to the WHO)

Design outcomes

Primary

MeasureTime frame
Number of Participants With a Change in Ki-67 LevelBaseline and up to 4 weeks

Secondary

MeasureTime frameDescription
Histopathological ResponseBaseline and up to 4 weeksAssessed by changes in Nottingham grade
To Compare Pretreatment Vascular Density With Post Treatment Vascular Density Using MRIBaseline and 4 weeks after anastrozole
To Compare Pretreatment Markers of Angiogenesis With Post Treatment Marker of AngiogenesisBaseline and up to 4 weeks

Countries

United States

Participant flow

Participants by arm

ArmCount
Anastrozole
Anastrozole: 1 mg. oral every day for 2 - 4 weeks
34
Total34

Baseline characteristics

CharacteristicAnastrozole
Age, Customized63.2 years
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants
Race (NIH/OMB)
Asian
4 Participants
Race (NIH/OMB)
Black or African American
3 Participants
Race (NIH/OMB)
More than one race
0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants
Race (NIH/OMB)
White
27 Participants
Sex: Female, Male
Female
34 Participants
Sex: Female, Male
Male
0 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
2 / 42
other
Total, other adverse events
1 / 42
serious
Total, serious adverse events
0 / 42

Outcome results

Primary

Number of Participants With a Change in Ki-67 Level

Time frame: Baseline and up to 4 weeks

Population: 23 patients had both baseline data and off-treatment data available

ArmMeasureCategoryValue (COUNT_OF_PARTICIPANTS)
AnastrozoleNumber of Participants With a Change in Ki-67 LevelDecreased Ki-67 level15 Participants
AnastrozoleNumber of Participants With a Change in Ki-67 LevelNo Change in Ki-675 Participants
AnastrozoleNumber of Participants With a Change in Ki-67 LevelIncreased Ki-67 level3 Participants
p-value: 0.00495% CI: [1.8, 8]Wilcoxon (Mann-Whitney)
Secondary

Histopathological Response

Assessed by changes in Nottingham grade

Time frame: Baseline and up to 4 weeks

Population: 24 patients had baseline data and post-treatment available.

ArmMeasureCategoryValue (COUNT_OF_PARTICIPANTS)
AnastrozoleHistopathological ResponseDecreased7 Participants
AnastrozoleHistopathological ResponseNo Change17 Participants
p-value: 0.01695% CI: [0.1, 0.49]Wilcoxon (Mann-Whitney)
Secondary

To Compare Pretreatment Markers of Angiogenesis With Post Treatment Marker of Angiogenesis

Time frame: Baseline and up to 4 weeks

Population: Data was not collected and analysis of this outcome measure was not done.

Secondary

To Compare Pretreatment Vascular Density With Post Treatment Vascular Density Using MRI

Time frame: Baseline and 4 weeks after anastrozole

ArmMeasureCategoryValue (COUNT_OF_PARTICIPANTS)
AnastrozoleTo Compare Pretreatment Vascular Density With Post Treatment Vascular Density Using MRIDecreased7 Participants
AnastrozoleTo Compare Pretreatment Vascular Density With Post Treatment Vascular Density Using MRINo Change9 Participants
AnastrozoleTo Compare Pretreatment Vascular Density With Post Treatment Vascular Density Using MRIIncreased1 Participants

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026