hormone therapy
Overview
Hormone therapy is a broad class of medical treatment that alters endocrine signaling to slow, suppress, or modulate disease processes. In oncology, it is most commonly used to treat hormone-sensitive Cancers by reducing the activity of endogenous hormones or by blocking their receptors. This includes endocrine therapy for breast cancer, such as tamoxifen and aromatase inhibitors like letrozole, anastrozole, and exemestane, as well as androgen deprivation approaches used in prostate cancer. Because many tumors depend on hormonal signaling for growth and survival, hormone therapy can be an important component of adjuvant, neoadjuvant, or metastatic treatment strategies.
Its biological significance lies in the fact that hormone-driven pathways can influence tumor proliferation, recurrence risk, metastatic escape, and treatment response heterogeneity. Recent research contexts also show that hormone therapy is often studied in combination with other modalities, including Cyclin-dependent kinase 4/6 inhibitors, radiotherapy, and immunotherapy-related approaches, reflecting its central role in multimodal cancer care.
Recent Publications Summary
Recent publications on hormone therapy have focused largely on breast cancer adherence, treatment uptake, and its role within combined regimens. In women with breast cancer, a cross-sectional study applying temporal self-regulation theory found that about one in seven had low endocrine therapy adherence, and that connectedness beliefs-barriers, intention, self-regulatory capacity, and behavioral prepotency were directly associated with adherence; self-regulatory capacity and behavioral prepotency also partially mediated the intention–adherence relationship 42443659Jul. In ductal carcinoma in situ, a surgeon-led program was evaluated for its impact on endocrine therapy uptake, reflecting ongoing efforts to improve use of this treatment after surgery 41572119Jan.
Several studies examined hormone therapy in the context of treatment delivery and completion in older patients with early-stage hormone receptor-positive breast cancer. One cohort study of women aged 65 years and older assessed factors associated with not starting or discontinuing hormone therapy among patients who would have been eligible for radiation omission, emphasizing that completion of 5 years of hormone therapy is often assumed when considering de-escalation of radiation but is not always achieved in practice 41690555Feb. Another analysis of practice patterns in women aged 65 and older highlighted uncertainty in the optimal balance between endocrine therapy and radiation therapy, given challenges in delivering both treatments 42159636May.
Hormone therapy was also studied alongside other systemic or local therapies. A rapid communication on early breast cancer described perceptions and initial experiences with abemaciclib plus endocrine therapy as adjuvant targeted therapy, noting that early-onset diarrhea is common and may affect adherence 42169666May. In older patients with HR+/HER2- advanced breast cancer, a PALMARES-2 sub-analysis evaluated real-world effectiveness of CDK4/6 inhibitors added to endocrine therapy, reflecting the standard first-line use of this combination regardless of age 42048902Apr.
Beyond breast cancer, hormone therapy was investigated in prostate cancer and in relation to broader treatment resistance mechanisms. A mechanistic and translational study reported that targeting FOSL2 altered PD-L1 expression and modulated hormone therapy response heterogeneity; in vivo, FOSL2 targeting enhanced antitumor effects when combined with hormone therapy and anti-PD-L1 treatment 41615411Jan. Another commentary on selective translation in cancer described how inhibition of eIF4E cap binding rewired the prostate cancer translatome and promoted renewed sensitivity to hormone therapy, underscoring translational control as a potential route to overcome resistance 42294890Jun. A nationwide register-based matched cohort study also examined endocrine therapy and COVID-19 outcomes in women with breast cancer, reflecting concern about the safety of ongoing hormone therapy during the pandemic 42121073May.
What Changes, What Holds
1. Adherence is a major limiting factor for endocrine therapy benefit -- NEW DIRECTION -- Recent work shifts attention from drug choice to real-world use: a meaningful minority of patients do not take endocrine therapy as intended, and beliefs, intention, and self-regulatory capacity appear to shape adherence 42443659Jul. The surgeon-led uptake program in ductal carcinoma in situ points in the same direction, suggesting that improving outcomes may depend as much on implementation and patient behavior as on the endocrine strategy itself 41572119Jan.
2. Radiation de-escalation depends on endocrine therapy completion, which is not assured -- NEW DIRECTION -- Older women eligible for radiation omission may not actually complete the 5-year hormone therapy course that underpins that de-escalation logic 41690555Feb. That does not overturn the established role of hormone therapy in early hormone receptor-positive breast cancer, but it does expose a practical gap between trial-based assumptions and routine care. The balance between endocrine therapy and radiation therefore remains unsettled in older patients 42159636May.
3. Adding CDK4/6 inhibition makes endocrine therapy more effective but harder to tolerate -- REINFORCES -- abemaciclib plus endocrine therapy fits the baseline view that hormone therapy is central to multimodal cancer care, especially in breast cancer, and the new data mainly sharpen the implementation problem: early diarrhea may threaten adherence 42169666May. The older-patient PALMARES-2 analysis likewise supports the established first-line combination of CDK4/6 inhibition with endocrine therapy across age groups rather than changing the underlying role of hormone therapy 42048902Apr.
4. Resistance biology now extends to translational control and immune signaling -- NEW DIRECTION -- Mechanistic work broadens the baseline account by showing that hormone therapy response heterogeneity can be modified through FOSL2-linked PD-L1 regulation and through eIF4E cap-binding control in prostate cancer 41615411Jan42294890Jun. That leaves the established use of hormone therapy intact, but it adds a more specific resistance framework: endocrine sensitivity may be recoverable by targeting translation or immune-evasion pathways, a role not covered in the overview.
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Overview update candidates: ** adherence and uptake barriers; incomplete completion of planned endocrine therapy in older patients; resistance mechanisms involving FOSL2/PD-L1 and translational control.
hormone therapy
Background Contexts
In the literature, the biological baseline, pathological conditions, or disease models commonly surrounding hormone therapy are described as follows:
- early-stage breast cancer (Disease) — 2 papers: PMIDs 42169666, 41999978
- hormone receptor-positive metastatic breast cancer (Disease) — 2 papers: PMIDs 42413061, 41999978
- Age-related osteogenic failure (Disease) — 1 paper: PMIDs 42186688
- Cdk4 (Protein) — 1 paper: PMIDs 42406276
- CDK6 (Protein) — 1 paper: PMIDs 42406276
- COVID-19 (Disease) — 1 paper: PMIDs 42121073
- Cyclin-dependent kinase 4/6 inhibitors (Therapy) — 1 paper: PMIDs 42429895
- endogenous hormone secretion (Biological Process) — 1 paper: PMIDs 41604435
- ER-positive Breast Cancer (Disease) — 1 paper: PMIDs 42068747
- ER-positive/HER2-negative advanced breast cancer (Disease) — 1 paper: PMIDs 42429895
- estrogen (Chemical) — 1 paper: PMIDs 41638457
- Estrogen Receptor-positive (Biological Process) — 1 paper: PMIDs 42190242
Methodologies & Technologies Used
Researchers utilize the following experimental methods, imaging platforms, computational models, or biological reagents to study hormone therapy:
- 17β-estradiol (Chemical) — 1 paper: PMIDs 42068747
- ADAPT-HR+/HER2- trial (Other) — 1 paper: PMIDs 41999978
- ADAPTcycle trial (Other) — 1 paper: PMIDs 41999978
- adult female zebrafish (Organism) — 1 paper: PMIDs 42186688
- Basal Insulin (Therapy) — 1 paper: PMIDs 41604435
- Cdk4 (Protein) — 1 paper: PMIDs 42413061
- chemotherapy (Therapy) — 1 paper: PMIDs 42406276
- Cyclin-dependent kinase 4/6 inhibitors (Therapy) — 1 paper: PMIDs 42406276
- DCIS program (Other) — 1 paper: PMIDs 41572119
- drug-refractory patient derived xenograft model (Organism) — 1 paper: PMIDs 42115169
- exenatide (Therapy) — 1 paper: PMIDs 41604435
- In Vitro T-Cell Prostate Cancer Cell Coculture Systems (Technology) — 1 paper: PMIDs 41615411
Molecular Interventions & Targets
The primary molecular pathways, regulatory genes, enzymes, or therapeutic agents actively targeted and manipulated in relation to hormone therapy include:
- (chemo)radiotherapy (Biological Process) — 1 paper: PMIDs 42159636
- abemaciclib (Therapy) — 1 paper: PMIDs 42169666
- active compounds (Other) — 1 paper: PMIDs 41638457
- anastrozole (Therapy) — 1 paper: PMIDs 42190242
- androgen receptor (Protein) — 1 paper: PMIDs 42310300
- Anti-PD-L1 Treatment (Therapy) — 1 paper: PMIDs 41615411
- breast cancer patients (Organism) — 1 paper: PMIDs 42121073
- CPSG_05177-t26_1 (Protein) — 1 paper: PMIDs 42115169
- Cyclin-dependent kinase 4/6 inhibitors (Therapy) — 1 paper: PMIDs 42048902
- EIF4E (Protein) — 1 paper: PMIDs 42294890
- endoplasmic reticulum (Cellular Component) — 1 paper: PMIDs 42413061
- EP0062 (Therapy) — 1 paper: PMIDs 42310300
Observed Outcomes & Phenotypes
The phenotypic changes, physiological endpoints, or clinical metrics observed and measured in connection with hormone therapy include:
- Acceptance of HT (Clinical Metric) — 1 paper: PMIDs 42190242
- Adverse Effects (Clinical Metric) — 1 paper: PMIDs 42190242
- alveolar bone regeneration (Biological Process) — 1 paper: PMIDs 42186688
- attitudes toward older adults (Other) — 1 paper: PMIDs 42190242
- biomineralization (Biological Process) — 1 paper: PMIDs 42186688
- Ca:P ratio (Clinical Metric) — 1 paper: PMIDs 42186688
- diarrhea (Clinical Metric) — 1 paper: PMIDs 42169666
- Endocrine Therapy Uptake (Clinical Metric) — 1 paper: PMIDs 41572119
- endogenous GLP-1 secretion (Biological Process) — 1 paper: PMIDs 41604435
- ER+ breast cancer (Disease) — 1 paper: PMIDs 42115169
- ESR1 mutations (Gene) — 1 paper: PMIDs 42413061
- everolimus (Therapy) — 1 paper: PMIDs 42429895
General Takeaways & Clinical Potentials
The high-level concepts, clinical translations, and overarching conclusions proposed in the research surrounding hormone therapy are summarized below:
- biomarker-guided options (Clinical Metric) — 1 paper: PMIDs 42413061
- bone repair (Clinical Metric) — 1 paper: PMIDs 42186688
- cancer-specific proteomic programs (Other) — 1 paper: PMIDs 42294890
- drugable vulnerabilities (Other) — 1 paper: PMIDs 42294890
- Efficacy of Hormone Therapy (Clinical Metric) — 1 paper: PMIDs 41615411
- ENABLE Study (Other) — 1 paper: PMIDs 42190242
- endocrine and CDK4/6 inhibitor therapies (Therapy) — 1 paper: PMIDs 42413061
- ER-positive/HER2-negative advanced breast cancer (Disease) — 1 paper: PMIDs 42429895
- medical treatment (Other) — 1 paper: PMIDs 42190242
- optimal treatment (Other) — 1 paper: PMIDs 42159636
- P-Rex1/Rac1 axis (Pathway) — 1 paper: PMIDs 42115169
- Personalized Care (Other) — 1 paper: PMIDs 42413061