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Breast Cancer

Everything in the library about breast cancer — built automatically from the recorded discussions that name it
episodes total cited expert statements Updated Oct 5, 2026
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Endoscopic nipple-sparing mastectomy: minimally invasive breast cancer surgery
Paula Escobar, MD, a Breast Surgical Oncologist at Cleveland Clinic, joins the Cancer Advances podcast to provide an inside look into endoscopic nipple-sparing mastectomy.
podcast14:11 · Jul 2026
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BOB Ped Surg 2023 - Bernadette Jeremiasse, IPSO - Presentation
Watch Bernadette Jeremiasse, MD, present her presentation on "Multiplex Organoid-Based 3D Live Imaging Platform to Screen Probes for Fluorescence Guided Surgery."
video5:35 · Feb 2023
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Existing and Emerging Options for Pediatric Oncofertility Patients: Pediatric...
During the Pediatric Oncofertility: A Comprehensive Review Course in 2017, course faculty discuss the strategies in preserving fertility in pediatric oncology patients and other at-risk children. In this session, Dr. Teresa Woodruff discuss
video49:53 · Sep 2018
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Existing and Emerging Options for Pediatric Oncofertility Patients: Pediatric...
In the United States, approximately 85% of pediatric cancer patients now survive their initial disease, up from much lower rates in the 1970s, due to earlier diagnostics, improved chemotherapy, biologics, and changes in radiation.
epidemiologicalTeresa Woodruff1:45 ↗
Approximately 1.4–1.5 million people are newly diagnosed with cancer annually in the US; globally there are ~10 million new cases per year. About 10% of US cases occur in patients aged ≤45, and 11% of breast cancers are diagnosed before age 40, totaling roughly 200,000 young patients annually.
epidemiologicalTeresa Woodruff3:00 ↗
Chemotherapy and/or hormone therapy for breast cancer significantly lower the age of menopause compared to untreated controls (median ~51.5 years); combination therapy produces the earliest menopause.
Host summaryTeresa Woodruff summarizing a resource — not the host's own clinical position4:00 ↗
Pediatric cancer survivors are significantly more likely to be infertile than their siblings.
epidemiologicalTeresa Woodruff5:40 ↗
Fertility concerns extend beyond cancer to rheumatologic diseases (often female, treated with cytotoxic drugs), beta-thalassemia patients receiving stem-cell transplant with sterilizing whole-body radiation, Turner syndrome (mosaic cases with early ovarian failure), BRCA or other cancer-predisposition mutations, and disorders of sex development or gender transition where the biological gamete may be at risk.
clinicalTeresa Woodruff6:00 ↗
Sperm banking has been available for pubertal boys and men for many years at relatively low cost, but navigation to these services was historically poor.
clinicalTeresa Woodruff8:20 ↗
Young women historically had fewer fertility-preservation options than men due to three gaps: information (providers unaware of long-term infertility risk), data (inability to predict individual outcomes), and options (lack of techniques for prepubertal or young patients).
clinicalTeresa Woodruff9:00 ↗
It remains difficult to predict on an individual basis which patients will recover gonadal function after gonadotoxic treatment and which will be permanently sterile.
clinicalTeresa Woodruff10:20 ↗
The Oncofertility Consortium adopted an interdisciplinary framework requiring investment in basic follicle biology, creation of 'silo spanners' (patient navigators bridging oncology, reproductive endocrinology, surgery, genetics, and radiation oncology), training of new scholars in interdisciplinary thinking, and 360° patient support (legal, ethical, insurance, religious counseling).
clinicalTeresa Woodruff11:00 ↗
Since 2010, ASCO, ASRM, and the Pediatric Hematology/Oncology Nursing Society have published practice guidelines mandating that providers discuss fertility impairment at the earliest possible moment, refer to a qualified oncofertility specialist, and promote ongoing research.
Host summaryTeresa Woodruff summarizing a resource — not the host's own clinical position15:20 ↗
The American Academy of Pediatrics has provided guidance that parents may act to preserve the fertility of pediatric cancer patients, an important ethical advance because fertility is not impaired at the time of diagnosis.
Host summaryTeresa Woodruff summarizing a resource — not the host's own clinical position16:40 ↗
For women aged ≥18, embryo or egg banking is an established option; the Oncofertility Consortium lowered the recommended age threshold from 18 to 16 two years ago, but use below age 16 should occur only under IRB approval.
clinicalTeresa Woodruff17:40 ↗
Across Oncofertility Consortium sites, the average wait time for controlled ovarian stimulation and egg retrieval is 12 days.
clinicalTeresa Woodruff19:40 ↗
Tamoxifen holidays allow hormone-receptor-positive breast cancer survivors to become pregnant with good outcomes and may improve long-term compliance with adjuvant endocrine therapy.
clinicalTeresa Woodruff20:00 ↗
For prepubertal and adolescent patients up to age 16, ovarian tissue cryopreservation (removal of an entire ovary or cortical biopsy under IRB-approved consent) is the only available fertility-preservation option.
clinicalTeresa Woodruff20:40 ↗
Ovarian cortical tissue is dissected into small strips containing primordial through antral follicles and cryopreserved; tissue may need to remain frozen for 20–30 years if the patient is 5 or 6 years old at diagnosis.
clinicalTeresa Woodruff21:40 ↗
Oocytes that are released adventitiously during ovarian-tissue dissection are often allocated to research in pediatric cases (rather than cryopreserved for the patient) because oocyte quality and aneuploidy rates in patients under 18 are not well characterized; aneuploidy is known to rise both above age 35 and below age 18.
clinicalTeresa Woodruff22:40 ↗
Eighty-six live human births have been documented worldwide from autotransplantation of cryopreserved ovarian tissue, demonstrating that current cryopreservation methods maintain tissue function.
clinicalTeresa Woodruff25:00 ↗
The denominator for ovarian-tissue transplants (total number attempted) and cancer-recurrence rates are not known globally, limiting assessment of efficacy and safety.
clinicalTeresa Woodruff25:40 ↗
Pediatric ovarian cortex contains more primordial follicles than adult tissue (follicles are formed in utero between the second and third trimester), but may also harbor circulating cancer cells; transplanting such tissue risks reintroducing malignancy.
clinicalTeresa Woodruff27:00 ↗
Histologic staining of a 4-year-old patient's ovarian cortex revealed both abundant primordial follicles and circulating cancer cells, illustrating the contamination risk.
clinicalTeresa Woodruff28:20 ↗
Follicles cultured on flat plastic do not maintain three-dimensional architecture; mouse follicles form follicle-like structures but oocytes mature poorly, and human follicles simply flatten out.
clinicalTeresa Woodruff31:00 ↗
Encapsulating isolated follicles in alginate hydrogel maintains three-dimensional architecture, permits follicle expansion and granulosa-cell differentiation into theca cells, and supports estrogen production over time in both mouse and human follicles.
clinicalTeresa Woodruff32:00 ↗
Alginate-encapsulated mouse follicles undergo in-vitro ovulation (antrum formation, oocyte migration to one pole, rupture, and cumulus–oocyte-complex release) and yield live healthy mouse pups after fertilization.
clinicalTeresa Woodruff33:20 ↗
A microfluidic 'organ-on-chip' system (Evatar) linking mouse ovary with human fallopian tube, uterus, cervix, and liver has reproduced a full 28-day menstrual cycle in vitro, including follicular-phase estradiol rise, mid-cycle HCG-triggered ovulation, and luteal-phase progesterone, and can model early pregnancy by maintaining progesterone.
clinicalTeresa Woodruff34:20 ↗
Human ovarian follicles have been grown in alginate for 30–40 days; after 40 days, germinal-vesicle-intact oocytes can be recovered and matured in vitro.
clinicalTeresa Woodruff36:00 ↗
In 2015, Woodruff's group reported the first human metaphase-II eggs matured entirely in vitro from encapsulated follicles, a milestone for fertility preservation without tissue transplantation.
clinicalTeresa Woodruff36:40 ↗
Mature human and mouse oocytes release a 'zinc spark'—a burst of zinc fluorescence—at fertilization; immature oocytes do not. This assay may serve as a non-invasive marker of oocyte developmental competence.
clinicalTeresa Woodruff37:20 ↗
Decellularized ovarian scaffolds ('ovary paper') can be repopulated with follicles and sutured to soft tissue; when transplanted into ovariectomized prepubertal mice, 100% of recipients underwent puberty.
clinicalTeresa Woodruff38:20 ↗
Three-dimensional-printed gelatin scaffolds seeded with GFP-labeled prepubertal mouse follicles become vascularized after transplant and yield live GFP-positive pups, representing the first soft-organ transplant with fully 3D-printed bio-inspired tissue.
clinicalTeresa Woodruff39:20 ↗
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