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Fetal adenocarcinoma

Rare subtype of pulmonary adenocarcinoma


Rare subtype of pulmonary adenocarcinoma

FieldValue
synonymsWell differentiated fetal adenocarcinoma, high-grade fetal adenocarcinoma, pulmonary adenocarcinoma
of fetal type, and pulmonary endodermal tumour resembling fetal lung.<ref name"who2004"/
imageFetal adenocarcinoma of the lung -- high mag.jpg
image_size350px
captionMicrograph showing fetal adenocarcinoma. H&E stain.
specialty

of fetal type, and pulmonary endodermal tumour resembling fetal lung.

Fetal adenocarcinoma (FA) of the lung is a rare subtype of pulmonary adenocarcinoma that exhibits tissue architecture and cell characteristics that resemble fetal lung tissue upon microscopic examination. It is currently considered a variant of solid adenocarcinoma with mucin production.

Symptoms and signs

FA can produce repeated hemoptysis, possibly related to cavitation of the tumor.

Other presenting symptoms described have included: flu-like syndrome with cough and fever,

Genetics

Due to its rarity, little is known of the genetics of FA.

One small series of 6 cases showed that MDM2 protein was expressed in 5 of them (83%), and p53 protein was overexpressed in 50%. However, a larger series of 12 cases revealed no p53 gene mutations.

Histogenesis

The details of the histogenesis of FA remain unknown and highly debated. Adenocarcinomas are most often highly heterogeneous peripheral tumors, and are thought to arise from malignant transformation of primitive cells that can exhibit differentiation characteristics of Club cells, Type II pneumocytes, bronchiolar surface cells, bronchial gland cells, or goblet cells.

Most FA's are well or moderately differentiated tumors, although high-grade, poorly differentiated variants have been described. Tissue resembling FA can also be found admixed with a component made up of primitive blastoma-like cells. In such cases, these biphasic tumors are classified as a form of pulmonary blastoma because the presence of the blastomatous cells dramatically worsens the prognosis.

FA can occur in combination with other forms of lung cancer, particularly other variants of adenocarcinoma. There also seems to be an association with clear cell lung cancer variants. A case of combined small cell lung carcinoma featuring components of FA and cells resembling those from carcinoid tumor has been reported, illustrating the unique complexity and heterogeneity of divergent histogenesis and cell differentiation in lung cancer.

Diagnosis

FA is an epithelial tumor whose cells and architecture resemble that of fetal lung tissues in the pseudoglandular stage of development (which occurs at about 10–16 weeks gestation in the human), with complex glandular structures and morules with cell nuclei that appear clear due to the accumulation of biotin.

While FA can be diagnosed via biopsy, bronchial brushings, and immunocytochemistry, examination of the whole tumor is required to rule out biphasic pulmonary blastoma, a mixed tumor of higher aggressiveness, wherein FA occurs admixed with primitive blastoma cells.

Although it is not normally considered a fast-growing malignant neoplasm, FA can exhibit high uptake on FDG-PET scanning.

Identification of aberrant nuclear localization of a mutated protein product of the beta-catenin gene has been proposed as a diagnostic tool for FA.

Although FA's usually occur as nodules or masses, they can sometimes present as a multifocal disease.

Treatment

Because of its extreme rarity, there have been no controlled clinical trials of treatment regimens for FA and, as a result, there are no evidence-based treatment guidelines. Complete surgical resection is the treatment of choice in FA, as it is in nearly all forms of lung cancer.

Anecdotal reports suggest that FA is rarely highly sensitive to cytotoxic drugs or radiation. Case reports suggest that chemotherapy with UFT may be useful in FA.

Prognosis

The prognosis of patients with FA as a whole is considered to be better than that of most other forms of non-small cell carcinoma, including biphasic pulmonary blastoma.

Incidence

FA is a rare tumor, with a relative incidence estimated to be no more than 0.5% of all lung cancers.

FA is exceptionally rare in children, with only a handful of cases reported to date, However, several case reports have involved FA's in pregnant women or the early postnatal period.

References

References

  1. (2004). "Pathology and Genetics of Tumours of the Lung, Pleura, Thymus and Heart". IARC Press.
  2. (April 2008). "Fetal adenocarcinoma of the lung in a 25-year-old woman". J Thorac Oncol.
  3. (November 1996). "Mutations in the p53 gene in pulmonary blastomas: immunohistochemical and molecular studies". Hum. Pathol..
  4. (June 1996). "p53 and MDM2 immunostaining in pulmonary blastomas and bronchogenic carcinomas". Hum. Pathol..
  5. (June 1985). "Lung cancer heterogeneity: a blinded and randomized study of 100 consecutive cases". Hum. Pathol..
  6. (1982). "Morphogenesis of lung cancer". CRC Press.
  7. (2008). "Spectrum of pulmonary adenocarcinoma with ultrastructural correlation: an autopsy study from northern India". Indian J Pathol Microbiol.
  8. (October 2010). "Bronchial brushing cytology of a pulmonary fetal adenocarcinoma with a poorly differentiated component". Cytopathology.
  9. (April 1998). "Pulmonary adenocarcinomas of the fetal lung type: a clinicopathologic study indicating differences in histology, epidemiology, and natural history of low-grade and high-grade forms". Am. J. Surg. Pathol..
  10. (February 2006). "Pulmonary blastoma—a rare tumor with variable presentation". Eur J Cardiothorac Surg.
  11. (August 2006). "[Clear cell adenocarcinoma with acomponent of well-differentiated fetal adenocareinoma; report of a case]". Kyobu Geka.
  12. (March 1994). "Endobronchial adenocarcinoma with endometrioid features and prominent neuroendocrine differentiation. A variant of fetal adenocarcinoma". Cancer.
  13. (June 2002). "Aberrant nuclear localization and gene mutation of beta-catenin in low-grade adenocarcinoma of fetal lung type: up-regulation of the Wnt signaling pathway may be a common denominator for the development of tumors that form morules". Mod. Pathol..
  14. (April 2006). "Pulmonary well-differentiated fetal adenocarcinoma diagnosed by bronchial brush and immunocytochemistry". Diagn. Cytopathol..
  15. (April 2006). "Positron emission tomography in well differentiated fetal adenocarcinoma of the lung". Clin Nucl Med.
  16. (January 2007). "Well-differentiated fetal adenocarcinoma of the lung: cytomorphologic features on fine-needle aspiration with emphasis on use of beta-catenin as a useful diagnostic marker". Diagn. Cytopathol..
  17. (2008). "Well-differentiated fetal adenocarcinoma of the lung: early-phase sequential high-resolution computed tomographic findings". J Comput Assist Tomogr.
  18. (December 1995). "Well-differentiated fetal adenocarcinoma of lung". Lung Cancer.
  19. (December 2006). "Resected well-differentiated fetal pulmonary adenocarcinoma and summary of 25 cases reported in Japan". Jpn. J. Thorac. Cardiovasc. Surg..
  20. (2007). "Histotype in non-small cell lung cancer therapy and staging: The emerging role of an old and underrated factor". Curr Respir Med Rev.
  21. (2010). "Haemoptysis in pregnancy caused by a well-differentiated fetal adenocarcinoma: a case report". J Med Case Rep.
  22. (November 2008). "[Clinicopathologic study of pulmonary adenocarcinoma with features of bronchioloalveolar carcinoma]". Zhonghua Bing Li Xue Za Zhi.
  23. (November 2006). "A 36-year-old woman with hemoptysis and a lung mass 3 months after delivery". Chest.
  24. (February 1998). "Pulmonary blastoma: case report of a patient with a 7-year remission and review of chemotherapy experience in the world literature". Cancer.
  25. (2003). "Well-differentiated fetal adenocarcinoma: rare tumor in the pediatric population". Pediatr. Dev. Pathol..
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