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Original Article
Association of PTTG1 expression with invasiveness of non-functioning pituitary adenomas
Su Jung Kum, Hye Won Lee, Soon Gu Kim, Hyungsik Park, Ilseon Hwang, Sang Pyo Kim
J Pathol Transl Med. 2022;56(1):22-31.   Published online October 15, 2021
DOI: https://doi.org/10.4132/jptm.2021.08.31
  • 3,210 View
  • 192 Download
  • 3 Web of Science
  • 3 Crossref
AbstractAbstract PDF
Background
Pituitary tumor transforming gene 1 (PTTG1), paired-like homeodomain 2 (PITX2), and galectin-3 have been widely studied as predictive biomarkers for various tumors and are involved in tumorigenesis and tumor progression. We evaluated the usefulness of PTTG1, PITX2, and galectin-3 as predictive biomarkers for invasive non-functioning pituitary adenomas (NFPAs) by determining the relationship between the expressions of these three proteins and the invasiveness of the NFPAs. We also investigated whether PTTG1, E-cadherin, and Ki-67, which are known to be related to each other, show a correlation with NFPA features.
Methods
A retrospective study was conducted on 87 patients with NPFAs who underwent surgical removal. The NFPAs were classified into three groups based on magnetic resonance imaging findings of suprasellar extension and cavernous sinus invasion. Immunohistochemical staining for PTTG1, PITX2, galectin-3, E-cadherin, and Ki-67 was performed on tissue microarrays.
Results
PTTG1 expression showed a statistically significant correlation with the invasiveness of NFPAs, whereas PITX2 and galectin-3 did not have a relationship with the invasiveness of NFPAs. Moreover, there was no association among PTTG1, E-cadherin, and Ki-67 expression.
Conclusions
PTTG1 has the potential to serve as a predictive biomarker for invasive NFPA. Furthermore, this study may serve as a reference for the development of PTTG1-targeted therapeutic agents.

Citations

Citations to this article as recorded by  
  • Neoplasms and tumor-like lesions of the sellar region: imaging findings with correlation to pathology and 2021 WHO classification
    Lorenzo Ugga, Raduan Ahmed Franca, Alessandra Scaravilli, Domenico Solari, Sirio Cocozza, Fabio Tortora, Luigi Maria Cavallo, Marialaura Del Basso De Caro, Andrea Elefante
    Neuroradiology.2023; 65(4): 675.     CrossRef
  • A comprehensive characterisation of phaeochromocytoma and paraganglioma tumours through histone protein profiling, DNA methylation and transcriptomic analysis genome wide
    Prodromos Chatzikyriakou, Dimitria Brempou, Mark Quinn, Lauren Fishbein, Roberta Noberini, Ioannis N. Anastopoulos, Nicola Tufton, Eugenie S. Lim, Rupert Obholzer, Johnathan G. Hubbard, Mufaddal Moonim, Tiziana Bonaldi, Katherine L. Nathanson, Louise Izat
    Clinical Epigenetics.2023;[Epub]     CrossRef
  • Expression and clinical significance of Cathepsin K and MMPs in invasive non-functioning pituitary adenomas
    Hongyan Liu, Saichun Zhang, Ting Wu, Zhaohui Lv, Jianming Ba, Weijun Gu, Yiming Mu
    Frontiers in Oncology.2022;[Epub]     CrossRef
Case Study
Amoebic Encephalitis Caused by Balamuthia mandrillaris
Su Jung Kum, Hye Won Lee, Hye Ra Jung, Misun Choe, Sang Pyo Kim
J Pathol Transl Med. 2019;53(5):327-331.   Published online May 24, 2019
DOI: https://doi.org/10.4132/jptm.2019.05.14
  • 17,303 View
  • 156 Download
  • 12 Web of Science
  • 12 Crossref
AbstractAbstract PDF
We present the case of a 71-year-old man who was diagnosed with amoebic encephalitis caused by Balamuthia mandrillaris. He had rheumatic arthritis for 30 years and had undergone continuous treatment with immunosuppressants. First, he complained of partial spasm from the left thigh to the left upper limb. Magnetic resonance imaging revealed multifocal enhancing nodules in the cortical and subcortical area of both cerebral hemispheres, which were suggestive of brain metastases. However, the patient developed fever with stuporous mentality and an open biopsy was performed immediately. Microscopically, numerous amoebic trophozoites, measuring 20 to 25 µm in size, with nuclei containing one to four nucleoli and some scattered cysts having a double-layered wall were noted in the background of hemorrhagic necrosis. Based on the microscopic findings, amoebic encephalitis caused by Balamuthia mandrillaris was diagnosed. The patient died on the 10th day after being admitted at the hospital. The diagnosis of amoebic encephalitis in the early stage is difficult for clinicians. Moreover, most cases undergo rapid deterioration, resulting in fatal consequences. In this report, we present the first case of B. mandrillaris amoebic encephalitis with fatal progression in a Korean patient.

Citations

Citations to this article as recorded by  
  • Molecular identification, phylogenetic analysis and histopathological study of pathogenic free-living amoebae isolated from discus fish (Symphysodon aequifasciatus) in Iran: 2020–2022
    Hooman Rahmati-Holasoo, Maryam Niyyati, Marziye Fatemi, Fatemeh Mahdavi Abhari, Sara Shokrpoor, Alireza Nassiri, Amin Marandi
    BMC Veterinary Research.2024;[Epub]     CrossRef
  • Encephalomyelomeningitis Caused by Balamuthia mandrillaris: A Case Report and Literature Review
    XueMei Fan, TianWen Chen, Hui Yang, Yue Gao, Yan Chen
    Infection and Drug Resistance.2023; Volume 16: 727.     CrossRef
  • Diagnosing Balamuthia mandrillaris amebic meningoencephalitis in a 64-year-old woman from the Southwest of China
    Suhua Yao, Xiaoting Chen, Lian Qian, Shizheng Sun, Chunjing Zhao, Zongkai Bai, Zhaofang Chen, Youcong Wu
    Parasites, Hosts and Diseases.2023; 61(2): 183.     CrossRef
  • Diagnosis of Balamuthia mandrillaris Encephalitis by Thymine–Adenine Cloning Using Universal Eukaryotic Primers
    Ju Yeong Kim, Myung-Hee Yi, Myungjun Kim, Joon-Sup Yeom, Hyun Dong Yoo, Seong Min Kim, Tai-Soon Yong
    Annals of Laboratory Medicine.2022; 42(2): 196.     CrossRef
  • Facial Balamuthia mandrillaris infection with neurological involvement in an immunocompetent child
    Zhen Zhang, Jianying Liang, Ruoqu Wei, Xiaobo Feng, Lei Wang, Liuhui Wang, Piaoping Zhao, Hong Yu, Yan Gu, Zhirong Yao
    The Lancet Infectious Diseases.2022; 22(3): e93.     CrossRef
  • Subacute Balamuthia mandrillaris encephalitis in an immunocompetent patient diagnosed by next-generation sequencing
    Changbo Xu, Xiaoyan Wu, Miaoqin Tan, Dongmei Wang, Shengnan Wang, Yongming Wu
    Journal of International Medical Research.2022; 50(5): 030006052210932.     CrossRef
  • Distribution and Current State of Molecular Genetic Characterization in Pathogenic Free-Living Amoebae
    Alejandro Otero-Ruiz, Leobardo Daniel Gonzalez-Zuñiga, Libia Zulema Rodriguez-Anaya, Luis Fernando Lares-Jiménez, Jose Reyes Gonzalez-Galaviz, Fernando Lares-Villa
    Pathogens.2022; 11(10): 1199.     CrossRef
  • Fulminant Disseminating Fatal Granulomatous Amebic Encephalitis: The First Case Report in an Immunocompetent Patient in South Korea
    Ju Yeon Lee, In Kyu Yu, Seong Min Kim, Joo Heon Kim, Ha Youn Kim
    Yonsei Medical Journal.2021; 62(6): 563.     CrossRef
  • A Japanese case of amoebic meningoencephalitis initially diagnosed by cerebrospinal fluid cytology
    Ryogo Aoki, Toshimasa Sakakima, Asuka Ohashi, Riyoko Niwa, Masashi Matsuyama, Fumimasa Etori, Naoki Watanabe, Kenji Yagita, Takuji Tanaka
    Clinical Case Reports.2020; 8(9): 1728.     CrossRef
  • Balamuthia mandrillaris infection in China: a retrospective report of 28 cases
    Lei Wang, Wenjing Cheng, Bing Li, Zhe Jian, Xianlong Qi, Dongjie Sun, Jian Gao, Xuetao Lu, Yi Yang, Kun Lin, Chuanlong Lu, Jiaxi Chen, Chunying Li, Gang Wang, Tianwen Gao
    Emerging Microbes & Infections.2020; 9(1): 2348.     CrossRef
  • Methotrexate/nonsteroidal anti-inflammatory drugs/steroids

    Reactions Weekly.2019; 1775(1): 307.     CrossRef
  • Identification of plicamycin, TG02, panobinostat, lestaurtinib, and GDC-0084 as promising compounds for the treatment of central nervous system infections caused by the free-living amebae Naegleria, Acanthamoeba and Balamuthia
    Monica M. Kangussu-Marcolino, Gretchen M. Ehrenkaufer, Emily Chen, Anjan Debnath, Upinder Singh
    International Journal for Parasitology: Drugs and Drug Resistance.2019; 11: 80.     CrossRef

J Pathol Transl Med : Journal of Pathology and Translational Medicine