Original articles
Published: 2023-04-05
download
PDF

Preoperative endoscopy and pathology report of the specimen to be recommended in sleeve gastrectomy?

Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
https://orcid.org/0000-0001-5643-0104
Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
Surgical Pathology Unit, University Hospital of Padua, Padua, Italy
Department of Medicine (DIMED), Surgical Pathology & Cytopathology Unit, University of Padua, Padua, Italy; Veneto Institute of Oncology (IOVIRCCS), Padua, Italy
Department of Medicine (DIMED), Surgical Pathology & Cytopathology Unit, University of Padua, Padua, Italy
Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
https://orcid.org/0000-0001-6594-4852
bariatric surgery gastrectomy gastric neoplasm pathology

Abstract

Objective. Preoperative upper gastrointestinal endoscopy (UGIE) and postoperative histopathological examination (HPE) of resected specimens are still controversial issues in bariatric surgery.
Methods. A retrospective review of prospectively collected laparoscopic sleeve gastrectomies (SG) performed at our institution for morbid obesity was carried out. All patients underwent pre-operative UGIE with biopsy, post-operative HPE and conventional postoperative follow-up.
Results. From January 2019 through January 2021 we performed a total of 501 laparoscopic SG. A total of 12 (2.4%) neoplasms were found, 2 evident at preoperative UGIE, 4 detected during operation, and 6 at HPE. Eight of these 12 cases had some malignant potential and 5 would not have been detected without HPE of the specimen. The most significant unexpected case was a fundic gland type adenocarcinoma in a 64-year-old female with severe obesity.
Conclusion. On the basis of our clinical experience, we recommend both preoperative endoscopic assessment and postoperative HPE of the specimen to provide the best available treatment to these patients.

Introduction

Obesity is currently one of the major concerns of public health and healthcare systems due to its increasing prevalence, not only in Western countries but also in lower income countries, and its negative economic impacts in terms of related comorbidities such as type II diabetes mellitus, cardiovascular diseases, cancer and reduced life expectancy 1.

According to the World Health Organization (WHO), the worldwide prevalence of overweight in adults was more than 39% in 2016, nearly three times more than in 1975. Among these, over 650 million were obese 2. Currently, bariatric surgery represents the best available treatment for obesity in terms of weight loss, comorbidity resolution and improvement in life-expectancy 3.

Laparoscopic sleeve gastrectomy (SG) is one of the most performed bariatric procedures worldwide 4,5. Moreover, laparoscopic SG represents the only surgical procedure that provides a specimen for histopathological examination (HPE).

It is still controversial whether upper gastrointestinal endoscopy (UGIE) should be always taken into consideration for the routine diagnostic work-up prior to bariatric surgery. Nevertheless, according to published international guidelines, UGIE should be reserved for patients with symptoms. Obesity is associated with an increased risk of gastroesophageal reflux disease (GERD), erosive esophagitis, esophageal adenocarcinoma, and gastric cancer 6,7. Moreover, the stomach is one of the main targets of bariatric surgery. Any pathological findings at preoperative work-up or at HPE of the specimen after laparoscopic SG may prompt us to change the entire postoperative therapeutic strategy 8. For these reasons, routine UGIE and HPE of the resected specimens are reasonably warranted.

We here report on incidental findings discovered in HPE of the specimens harvested from laparoscopic SG performed in the last two year at our academic center. In particular, we moved from the last case, an incidental adenocarcinoma of fundic gland type that was found at HPE of the excised stomach.

Materials and methods

A retrospective review of prospectively collected laparoscopic SG specimens performed at our institution from January 2019 until January 2021 for morbid obesity. All specimens were examined grossly and microscopically per clinical standard of care.

All preoperative UGIEs were assessed in terms of gross description and histopathological findings. Conventional post-operative follow-up (1, 3, 6, 12 months) was scheduled and recorded for all the cases, with a particular attention to evaluate whether additional clinical actions were required.

Results

From January 2019 through January 2021, a total of 501 laparoscopic SG was performed. There were 12 (2.4%) incidental findings of neoplasms: 3 leiomyoma, 7 gastrointestinal stromal tumors (GIST), 1 schwannoma and 1 fundic gland type adenocarcinoma (GA-FG). Only 2 of 12 cases were evident at preoperative UGIE, while 4 more were detected during intervention. Most of the findings had some risk of malignancy (8 cases) and most would not have been suspected (5 cases) without HPE of the specimen (Tab. I).

MACROSCOPIC FINDINGS

The two lesions discovered at preoperative UGIE were a leiomyoma and a schwannoma, both described as a submucosal bulge covered by regular mucosa in the body of the stomach, along the greater curvature. No biopsy was performed on those lesions. At gross HPE the leiomyoma was described as a 1.3 cm submucosal nodular lesion with clear margins and fasciculate aspect; the schwannoma was described as a 2.2 cm dyschromic intramural neoplasm.

Intraoperative findings turned out to be 3 GISTs and 1 leiomyoma at HPE, and consisted in observation of a subserosal bulge with no irregularity of serosa in each case. At gross HPE all lesions were described as subserosal or submucosal whitish nodules.

The 6 neoplasms found only at HPE were 1 leiomyoma, 4 GIST and 1 GA-FG. At gross inspection of the specimens 3 GIST were described as well-circumcised parietal whitish nodules; in the other 3 cases no macroscopic lesions were found.

All lesions, with the exception for the two discovered at preoperative UGIE, were smaller than 1 cm. All lesions resulted completely excised with clear margins (R0). No irregularity in mucosa or serosa was observed.

MICROSCOPIC FINDINGS

The gastric schwannoma appeared as a biphasic spindle cell neoplasm with thickened and hyalinized blood vessels and absence of atypia or mitosis. Tumor cells were positive for S100 and CD56, but negative for muscular markers, CD117 and DOG1.

Leiomyomas had a bland spindle cell morphology with eosinophilic cytoplasm and minimal atypia. No mitotic figure was found. All the three leiomyomas originated from the muscularis propria. Tumor cells were positive for smooth muscle actin (SMA) and desmin, but negative for CD117, DOG1 and S100.

All the GISTs included in our case series had a spindle cell morphology. No epithelioid GIST was found. There was no or only isolated slight atypia. Mitotic rate was < 5 mitosis per 5 mm2 for each case. Tumor cells were positive for CD117 and DOG1, but negative for SMA and S100.

FUNDIC GLAND TYPE ADENOCARCINOMA (GA-FG)

The last unexpected case of a GA-FG is briefly described here.

A 64-year-old female was referred to our Bariatric Surgery Unit for severe obesity associated with impaired glucose tolerance (IGT) on oral hypoglycemic medications, dyslipidemia and severe osteo-arthritis. Her weight was 125 kg, her body mass index (BMI) 54.1 kg/m2, with a long history of obesity, previous multiple medical supervised weight-loss attempts with weight cycling. The patient did not report heartburn/pyrosis or nausea and physical examination was unremarkable. Bile reflux was evident at preoperative UGIE, non-atrophic gastritis of the antrum and oxyntic-antral transitional area were found at histological evaluation. Helicobacter pylori microorganisms were not detected. Laparoscopic SG was modeled on 40 Fr bougie with multiple firings of 60 mm endostapler reloads. Nothing remarkable was found at the inspection of the abdominal cavity during laparoscopy. The excised specimen was sent for pathological examination. Post-operative course was uneventful and the patient was discharged on POD-2 on a customary soft diet.

Pathology report of the specimen revealed a neoplasm of oxyntic cell origin (3 mm of diameter), located in the body-fundic area, characterized by cellular monomorphism, absent mitotic activity and with focal and minimal infiltration of the submucosa (Fig. 1). No lymphovascular invasion was observed. Tumor cells were positive for pepsinogen-I and MUC6 at immunohistochemistry, whereas negative for MUC1, MUC2 and MUC5AC. The lesion resulted completely excised with clear margins (R0). This finding had neither been detected on previous endoscopy nor at gross inspection of the surgical specimen.

Discussion

Bariatric surgery proven to be safe and effective in the treatment of obesity, eliciting durable weight loss 9-11, promoting comorbidities improvement/resolution 4,12,13 and significantly improving life-expectancy and quality of life 14-19.

The stomach is one of the main target organs of bariatric surgery, as it is involved in most surgical interventions. Before any bariatric procedures patients usually undergo thorough preoperative medical assessment in order to reduce operative risks, but there is still conflicting evidence whether or not UGIE with biopsy is essential in the routine preoperative work-up, especially in patients not complaining significant gastrointestinal (GI) symptoms. Current guidelines suggest that selective endoscopy might be more appropriate in patients with symptoms 20 in order to rule out different conditions such as esophageal webs, ulcers, esophagitis, hiatal hernia, tumors, etc. 21,22. We routinely prefer to perform UGIE with biopsy prior to surgery because symptoms are not clearly associated with histological findings 23 and vice versa, although in most of our case nothing was apparently evident.

Laparoscopic SG is one of the most commonly performed bariatric procedures 24. It involves the removal of the vast majority of the greater curvature of the stomach, quite a large specimen for Pathologists. As for other elective surgery specimens, those obtained after sleeve gastrectomy are expected to be normal, except for unexpected incidental findings 25.

Although several studies 26,27 suggest HPE of laparoscopic SG specimens may not be routinely needed, more reports have shown several incidental findings, including benign and malignant lesions.

GISTs are the most common mesenchymal neoplasms in the GI tract. GI mesenchymal tumors also include leiomyomas, leiomyosarcomas and schwannomas 28. A recent meta-analysis 29 reported an incidence of incidental GISTs of 0.45% undergoing bariatric surgery. Single-center case series 30-32 reported an incidence ranging from 0.5% to 1.97%. Incidental leiomyomas and schwannomas in sleeve gastrectomies have been described in the literature as rare findings (< 0.2%) 32-34.

GI mesenchymal tumors are similar in clinical features, gross and histological appearance; but they differ in prognosis 28,35-37. 10-30% of GISTs are reported to be malignant 28,35,38. Malignant risk of GISTs can be determined based on mitotic count, tumor size and anatomic location of the lesion. According to clinical malignant risk, GISTs are stratified into no, very low, low, moderate, or high risk 39. Micro-GISTs (i.e., GISTs smaller than 1 cm) are not an uncommon finding in gastric specimens (in particular in the proximal part of the stomach) and often have spontaneous regression with hyalinization and calcification. In our case series, the GISTs had a low mitotic count (< 5 mitosis per 5 mm2) and a small size (< 1 cm). Thus, according to the Miettinen risk assessment system 39, the risk of progression to malignancy was virtually absent 40 (Tab. I). Leyomiomas and schwannomas do not have malignant potential and are associated with excellent prognosis 36,37,40.

As most of the diagnostic modalities cannot always provide enough information to differentiate between these tumor types, ultimately the definitive diagnosis of GIST, leiomyoma and gastric schwannomas are based on microscopic morphologic findings and immunohistochemical profile, which can only be performed on the formalin-fixed paraffin-embedded specimen. In fact, gastric GISTs, leiomyomas and schwannomas often share a bland spindle cell morphology and immunohistochemistry is crucial to differentiate between these tumor types 35,40,41.

In our experience, during the last 2 years 2.4% of specimens showed unexpected histopathological findings and two-thirds of them had some malignant potential. These cases, if recognized, could benefit from further observation or even treatment, suggesting that HPE of the specimens should be recommended. Luckily, all non-benign lesions we found had no risk of progression to malignancy. Furthermore, size of the lesions can explain why part of these were not previously detected at initial UGIE.

It is still questionable whether this low incidence and low risk of malignancy warrants both preoperative UGIE with biopsy and HPE of the specimen in all the patients. However, in our opinion this can be a valuable and affordable strategy not to overlook undetected malignancies.

Our last incidental finding was a GA-FG. This tumor was firstly reported in 2007 by Tsukumoto et al. 42 as a new subtype of gastric adenocarcinoma and in 2019 inserted in the WHO’s list of digestive system tumors 43. It is considered a rare neoplasm, the exact incidence still unknown. Only 111 cases were reported in the English language literature up to 2018 44. Most cases of GA-FG have been described in East Asia, with anecdotal reports from Europe and North America. The natural history of this neoplasm is still unclear and there is a lack of awareness of GA-FG even among experts.

GA-FG is an epithelial neoplasm with oxyntic gland differentiation. Tumors can be classified according to their typical or atypical histologic and cellular features, mucosal or submucosal invasion or the presence of lymphovascular invasion. According to a recent paper by Ushiko et al. 45, the presence of an initial infiltration of the submucosa, a mild degree of atypia and the absence of angiolymphatic invasion places this lesion in group B oxyntic gland neoplasm of the stomach, defining the tumor as “adenocarcinoma of fundic gland type”.

These tumors appear to have a benign clinical course 46,47, but those with submucosal invasion, atypical cell differentiation and lymphovascular spread are closely associated with a more aggressive behavior.

As in current literature they are usually under-reported and available data are not sufficient to define predictors of their malignant potential, for this case we preferred to adopt a watch-and-see policy with contrast-enhanced CT scan for staging and yearly UGIE follow-up. Moreover, we decided to extend this strategy to the other unexpected findings on the specimen harvested, whenever a malignant potential was reported.

Laparoscopic SG has been increasingly performed worldwide in the last decade 24. In this view, the definition of a common line of action, prior to and after the operation is warranted, given the potential increasing number of unexpected malignancies retrieved and overlooked if the specimens are not processed for histopathology. Larger series and longer follow-up are needed to confirm our initial results.

Conclusions

Preoperative UGIE with biopsy in combination with HPE of the specimens may have an important role for the optimal management of patients who are candidates for laparoscopic SG. Based on our clinical experience, we recommend fully deploying this strategy as the best available treatment. The results of our study point out the important role of the pathologist in the differential diagnosis of incidental preoperative and intraoperative findings and in discovering previously small undetected lesions with accurate macroscopic examination.

ACKNOWLEDGEMENTS

All members met the authorship criteria.

CONFLICTS OF INTEREST

No existing or potential conflicts of interest of a financial, personal or any other nature related to the present work.

FUNDING

No source of funding to declare related to the present work.

AUTHORS’ CONTRIBUTIONS

The authors confirm contribution to the paper as follows: study conception and design: Remo Alessandris, Mirto Foletto, Matteo Fassan; data collection: Federico Moroso, Valentina Angerilli, Linda Callegari; analysis and interpretation of results: Remo Alessandris, Federico Moroso, Mauro Michelotto, Valentina Angerilli, Linda Callegari; draft manuscript preparation: Remo Alessandris, Federico Moroso, Valentina Angerilli; review for important intellectual content: Mirto Foletto, Matteo Fassan. All authors reviewed the results and approved the final version of the manuscript.

Figures and tables

Figure 1.Representative features of the presented case. (A) Microscopic appearance of the lesion, which occurred within the oxyntic mucosa. (B, C) The neoplasm, mainly intramucosal, focally invaded the submucosa (< 1 mm of invasion). (D) Relationship of the lesion (right) with the surrounding mucosa. (E) Microscopically, the lesion was characterized by a glandular proliferation of monotonous columnar cells. (F) Positive Pepsinogen-I immunohistochemical expression in neoplastic glands.

Tumor parameters Miettinen risk assessment system for GIST (2006)
Pre-op UGIE findings Intra-op findings Post-op HPE findings Size (cm) Mitotic count (per 5 mm2) Risk group Rates of metastases or tumor related death
1 Leiomyoma - - 1,3 0
2 - - GIST 0,6 0 1 0%, none
3 - - Leiomyoma 0,4 0
4 - - GIST 0,5 0 1 0%, none
5 - GIST - 0,8 1 1 0%, none
6 - Leiomyoma - 0,4 0
7 - - GIST 0,9 0 1 0%, none
8 - GIST - 1 0 1 0%, none
9 - - GIST 0,4 < 5 1 0%, none
10 - GIST - 0,7 < 5 1 0%, none
11 Schwannoma - - 2,2 0
12 - - FG-GA 0,3 0
Table I.Pathological findings in laparoscopic sleeve gastrectomy specimens.

References

  1. Bray GA. The Battle of the Bulge: A History of Obesity Research. Dorrance: Pittsburgh; 2007.
  2. World Health Organization. Fact sheet: Obesity and overweight.Publisher Full Text
  3. Wolfe BM, Kvach E, Eckel RH. Treatment of obesity. Circ Res. 2016; 118:1844-1855. DOI
  4. Buchwald H, Avidor Y, Braunwald E. Bariatric surgery. A systematic review and meta-analysis. JAMA. 2004; 292:1724-1737. DOI
  5. Angrisani L, Santonicola A, Iovino P. Bariatric Surgery Worldwide 2013. Obes Surg. 2015; 25:1822-1832. DOI
  6. Turati F, Tramacere I, La Vecchia C. A meta-analysis of body mass index and esophageal and gastric cardia adenocarcinoma. Ann Oncol. 2013; 24(3):609. DOI
  7. Lauby-Secretan B, Scoccianti C, Loomis D, Body Fatness and Cancer--Viewpoint of the IARC Working Group. International Agency for Research on Cancer Handbook Working Group. N Engl J Med. 2016; 375(8):794. DOI
  8. Bennett S, Gostimir M, Shorr R. The role of routine preoperative upper endoscopy in bariatric surgery: a systematic review and meta-analysis. Surg Obes Relat Dis..DOI
  9. Sjöström L, Lindroos AK, Peltonen M. Lifestyle, diabetes, and cardiovascular risk factors 10 years after bariatric surgery. N Engl J Med. 2004; 351:2683-93. DOI
  10. Schauer PR, Kashyap SR, Wolski K. Bariatric surgery versus intensive medical therapy in obese patients with diabetes. N Engl J Med. 2012; 366:1567-1576. DOI
  11. Sjöström L, Peltonen M, Jacobson P. Bariatric surgery and long-term cardiovascular events. JAMA. 2012; 307:56-65. DOI
  12. Dixon JB, Zimmet P, Alberti KG. International Diabetes Federation Taskforce on Epidemiology and Prevention. Bariatric surgery: an IDF statement for obese type 2 diabetes. Diabet Med. 2011; 28:628-462. DOI
  13. Sjöström L. Review of the key results from the Swedish Obese Subjects (SOS) trial: a prospective controlled intervention study of bariatric surgery. J Intern Med. 2013; 273:219-234. DOI
  14. Aguiar I, Freitas WR, Santos IR. Obstructive sleep apnea and pulmonary function in morbid obesity undergone bariatric surgery: Randomized clinical trial. Multidiscip Respir Med. 2014; 9:43. DOI
  15. Poirier P, Cornier MA, Mazzone T. Bariatric surgery and cardiovascular risk factors: a scientific statement from the American Heart Association. Circulation. 2011; 123:1683-1701. DOI
  16. Pontiroli AE, Morabito A. Long-term prevention of mortality in morbid obesity through bariatric surgery. A systematic review and meta-analysis of trials performed with gastric banding and gastric bypass. Ann Surg. 2011; 253:484-487. DOI
  17. Karlsson J, Taft C, Sjöström L. Psychosocial functioning in the obese before and after weight reduction: construct validity and responsiveness of the Obesity-related Problems scale. Int J Obes Relat Metab Disord. 2003; 27:617-630. DOI
  18. Pories WJ, Dohm LG, Mansfield CJ. Beyond the BMI: the search for better guidelines for bariatric surgery. Obesity. 2010; 18:865-871. DOI
  19. Busetto L, Dixon J, De Luca M. Bariatric Surgery in Class I Obesity: a position statement from the International Federation for the Surgery of Obesity and Metabolic Disorders (IFSO). Obes Surg. 2014; 24:487-519. DOI
  20. Di Lorenzo N, Antoniou SA, Batterham RL. Clinical practice guidelines of the European Association for Endoscopic Surgery (EAES) on bariatric surgery: update 2020 endorsed by IFSO-EC, EASO and ESPCOP. Surg Endosc. 2020; 34(6):2332-2358. DOI
  21. Raess PW, Baird-Howell M, Aggarwal R. Vertical sleeve gastrectomy specimens have a high prevalence of unexpected histopathologic findings requiring additional clinical management. Surg Obes Relat Dis: Off J Am Soc Bariatr Surg. 2015; 11:1020-1023. DOI
  22. Aljerian K. Histopathological findings in laparoscopic sleeve gastrectomy specimens from patients with obesity in Saudi Arabia. Gastroenterol Res Pract. 2018; 2018:1702705. DOI
  23. Neto SC, Herbella FA, Silva LC. Ratio between proximal/distal gastroesophageal reflux does not discriminate abnormal proximal reflux. World J Surg. 2014; 38(4):890-896. DOI
  24. American Society for Metabolic and Bariatric Surgery (ASMBS). Estimate of Bariatric Surgery Numbers.Publisher Full Text
  25. Pullen LC. Pathologists Should Review Bariatric Surgery Specimens. Medscape. 2014. Publisher Full Text
  26. Safaan T, Bashah M, El Ansari W. Histopathological Changes in Laparoscopic Sleeve Gastrectomy Specimens: Prevalence, Risk Factors, and Value of Routine Histopathologic Examination [published correction appears in Obes Surg 2017 Jul 27]. Obes Surg. 2017; 27(7):1741-1749. DOI
  27. Anand S, Kalayarasan R, Chandrasekar S. Is histopathological examination of sleeve gastrectomy specimens necessary in areas endemic for gastric cancer?. Natl Med J India. 2019; 32(2):83-85. DOI
  28. Nishida T, Hirota S. Biological and clinical review of stromal tumors in the gastrointestinal tract. Histol Histopathol. 2000; 15(4):1293-1301. DOI
  29. Wang S, Wang Q, Xu L. Beware Pathological Findings of the Stomach in Patients Undergoing Bariatric Surgery: a Systematic Review and Meta-analysis. Obes Surg. 2021; 31(1):337-342. DOI
  30. Hallak YO, Karajeh O, Rivas H. Incidental Gastrointestinal Stromal Tumors (GIST) During Laparoscopic Sleeve Gastrectomy Procedures: a Retrospective Study. Obes Surg. 2022; 32(1):3-7. DOI
  31. Viscido G, Signorini F, Navarro L. Incidental Finding of Gastrointestinal Stromal Tumors during Laparoscopic Sleeve Gastrectomy in Obese Patients. Obes Surg. 2017; 27(8):2022-2025. DOI
  32. Crouthamel MR, Kaufman JA, Billing JP. Incidental gastric mesenchymal tumors identified during laparoscopic sleeve gastrectomy. Surg Obes Relat Dis. 2015; 11(5):1025-1028. DOI
  33. Kopach P, Genega EM, Shah SN. The significance of histologic examination of gastrectomy specimens: a clinicopathologic study of 511 cases. Surg Obes Relat Dis. 2017; 13(3):463-467. DOI
  34. Miller GC, Reid AS, Brown IS. The pathological findings seen in laparoscopic sleeve gastrectomies for weight loss. Pathology. 2016; 48(3):228-232. DOI
  35. Miettinen M, Majidi M, Lasota J. Pathology and diagnostic criteria of gastrointestinal stromal tumors (GISTs): a review. Eur J Cancer. 2002; 38:S39-S51. DOI
  36. Lin CS, Hsu HS, Tsai CH. Gastric schwannoma. J Chin Med Assoc. 2004; 67(11):583-586.
  37. Yoon HY, Kim CB, Lee YH. Gastric schwannoma. Yonsei Med J. 2008; 49(6):1052-1054. DOI
  38. Perez EA, Livingstone AS, Franceschi D. Current incidence and outcomes of gastrointestinal mesenchymal tumors including gastrointestinal stromal tumors. J Am Coll Surg. 2006; 202(4):623-629. DOI
  39. Miettinen M, Lasota J. Gastrointestinal stromal tumors: pathology and prognosis at different sites. Semin Diagn Pathol. 2006; 23(2):70-83. DOI
  40. Sbaraglia M, Businello G, Bellan E. Mesenchymal tumours of the gastrointestinal tract. Pathologica. 2021; 113(3):230-251. DOI
  41. Miettinen M, Sobin LH, Lasota J. Gastrointestinal stromal tumors of the stomach: a clinicopathologic, immunohistochemical, and molecular genetic study of 1765 cases with long-term follow-up. Am J Surg Pathol. 2005; 29(1):52-68. DOI
  42. Tsukamoto T, Yokoi T, Maruta S. Gastric adenocarcinoma with chief cell differentiation. Pathol Int. 2007; 57:517-522. DOI
  43. WHO Classification of Tumours Editorial Board. Digestive System Tumours. WHO Classification of Tumours Series. 2019; 1Publisher Full Text
  44. Benedict MA, Lauwers GY, Jain D. Gastric Adenocarcinoma of the Fundic Gland Type: Update and Literature Review. Am J Clin Pathol. 2018; 149(6):461-473. DOI
  45. Ushiku T, Kunita A, Kuroda R. Oxyntic gland neoplasm of the stomach: expanding the spectrum and proposal of terminology. Mod Pathol. 2020; 33(2):206-216. DOI
  46. Ueyama H, Yao T, Nakashima Y. Gastric adenocarcinoma of fundic gland type (chief cell predominant type): proposal for a new entity of gastric adenocarcinoma. Am J Surg Pathol. 2010; 34:609-619. DOI
  47. Singhi AD, Lazenby AJ, Montgomery EA. Gastric adenocarcinoma with chief cell differentiation: a proposal for reclassification as oxyntic gland polyp/adenoma. Am J Surg Pathol. 2012; 36:1030-1035. DOI

Affiliations

$authorString->getOrcid() => https://orcid.org/0000-0001-5643-0104

$authorString->getFullName() => Remo Alessandris

$authorString->getUrl() =>

Remo Alessandris

Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
esiste orcidID "https://orcid.org/0000-0001-5643-0104" https://orcid.org/0000-0001-5643-0104

$authorString->getOrcid() =>

$authorString->getFullName() => Federico Moroso

$authorString->getUrl() => https://orcid.org/0000-0003-4870-8043

Federico Moroso

Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
non esiste orcidID ""https://orcid.org/0000-0003-4870-8043

$authorString->getOrcid() =>

$authorString->getFullName() => Mauro Michelotto

$authorString->getUrl() =>

Mauro Michelotto

Surgical Pathology Unit, University Hospital of Padua, Padua, Italy
non esiste orcidID ""

$authorString->getOrcid() =>

$authorString->getFullName() => Matteo Fassan

$authorString->getUrl() => https://orcid.org/0000-0001-6515-5482

Matteo Fassan

Department of Medicine (DIMED), Surgical Pathology & Cytopathology Unit, University of Padua, Padua, Italy; Veneto Institute of Oncology (IOVIRCCS), Padua, Italy
non esiste orcidID ""https://orcid.org/0000-0001-6515-5482

$authorString->getOrcid() =>

$authorString->getFullName() => Valentina Angerilli

$authorString->getUrl() =>

Valentina Angerilli

Department of Medicine (DIMED), Surgical Pathology & Cytopathology Unit, University of Padua, Padua, Italy
non esiste orcidID ""

$authorString->getOrcid() =>

$authorString->getFullName() => Linda Callegari

$authorString->getUrl() =>

Linda Callegari

Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
non esiste orcidID ""

$authorString->getOrcid() => https://orcid.org/0000-0001-6594-4852

$authorString->getFullName() => Mirto Foletto

$authorString->getUrl() =>

Mirto Foletto

Department of Surgery, Oncology and Gastroenterology (DISCOG), Bariatric Unit, University of Padua, Padua, Italy
esiste orcidID "https://orcid.org/0000-0001-6594-4852" https://orcid.org/0000-0001-6594-4852

Copyright

© Società Italiana di Anatomia Patologica e Citopatologia Diagnostica, Divisione Italiana della International Academy of Pathology , 2023

How to Cite

[1]
Alessandris, R., Moroso, F., Michelotto, M., Fassan, M., Angerilli, V., Callegari, L. and Foletto, M. 2023. Preoperative endoscopy and pathology report of the specimen to be recommended in sleeve gastrectomy?. Pathologica - Journal of the Italian Society of Anatomic Pathology and Diagnostic Cytopathology. 115, 2 (Apr. 2023), 90-96. DOI:https://doi.org/10.32074/1591-951X-781.
  • Abstract viewed - 407 times
  • PDF downloaded - 187 times