Multi-tissue paraffin blocks provide high throughput analysis with increased efficiency, experimental uniformity, and reduced time and cost. Tissue microarrays make up the majority of multi-tissue paraffin blocks, but increasingly, researchers are using non-arrayed blocks containing larger tissues from multiple individuals which can provide many of the advantages of tissue microarrays without substantial investment in planning and equipment. A critical component of any multi-tissue analysis is the orientation method used to identify each individual tissue. Although methods exist to maintain proper orientation and identification of tissues in multi-tissue blocks, most are not well-suited to non-arrayed blocks, may consume valuable space within an array and/or are difficult to produce in the standard histology laboratory. The Specimen Orientation Tag (SpOT) is a simple, low cost orientation tool that is clearly visible in paraffin blocks and all tissue sections for reliable specimen identification in arrayed and non-arrayed layouts. The SpOT provides advantages over existing orientation methods for non-arrayed blocks as it does not require any direct modification to the tissue and allows for flexibility in the arrangement of tissue pieces.
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http://dx.doi.org/10.3791/52868 | DOI Listing |
Wiad Lek
January 2025
DEPARTMENT OF GENERAL PATHOLOGY AND FORENSIC MEDICINE, COLLEGE OF MEDICINE, UNIVERSITY OF KUFA, KUFA, IRAQ.
Objective: Aim: To evaluate the expression levels of SOX-10 in tissues of bladder tumor and to prove the correlation between SOX-10 expression and clinicopathological characteristics of bladder tumors, including patient age, sex, tumor grade, and muscle invasion.
Patients And Methods: Materials and Methods: Forty formalin fixed paraffin embedded FFPE tissue blocks gathered by transurethral resection of bladder tumor are collected from teaching hospitals at Al-Najaf governorate. Those blocks were stained by hematoxylin and eosin.
Wiad Lek
January 2025
DEPARTMENT OF GENERAL PATHOLOGY AND FORENSIC MEDICINE, COLLAGE OF MEDICINE, UNIVERSITY OF KUFA, KUFA, IRAQ.
Objective: Aim: To analyze expression levels of GATA-3 in bladder tumor tissues and to prove a relation between expression of GATA-3 and clinicopathological characteristics of bladder tumors, including patient age, sex, tumor grade, and muscle invasion.
Patients And Methods: Materials and Methods: Forty formalin fixed paraffin embedded (FFPE) tissue blocks obtained from bladder tumor by transurethral resection are collected from teaching hospitals at Al-Najaf governorate. Those blocks are stained by using hematoxylin and eosin stain.
Asian Pac J Cancer Prev
January 2025
Department of Anatomic Pathology, Faculty of Medicine, Universitas Airlangga, Surabaya, Indonesia.
Objective: Oxidative stress prompts breast cancer cells to adapt by raising the lethal threshold and enhancing the antioxidant mechanism, thereby enabling survival and continuous proliferation that facilitates tumor progression. Nrf2 and 8-OHdG are indicative of oxidative stress activity and impact the progression of breast cancer. We aimed to analyze the expression of Nrf2 and 8-OHdG in various T stages of breast cancer in our hospital.
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January 2025
Division of Hematology and Medical Oncology, Udayana University, Prof. I.G.N.G Ngoerah General, Badung, Bali, Indonesia.
Objectives: To explore the significance of diminished CD3/CD8 and CD3/CDR45RO immunoscores, as well as elevated FOXP3 expression, as potential risk factors for unfavorable responses to neoadjuvant chemotherapy among patients with triple-negative breast cancer (TNBC).
Methods: A case-control study was conducted across two hospitals (a public and a private facility) from August 1st, 2021, to August 31st, 2022. The study population comprised patients diagnosed with the TNBC subtype, with available paraffin blocks from biopsy procedures.
Biochemistry (Mosc)
December 2024
Digital Biodesign and Personalized Healthcare Research Center, Sechenov University, Moscow, 119991, Russia.
Integration of various types of omics data is an important trend in contemporary molecular oncology. In this regard, high-throughput analysis of trace and essential elements in cancer biosamples is an emerging field that has not yet been sufficiently addressed. For the first time, we simultaneously obtained gene expression profiles (RNA sequencing) and essential and trace element profiles (inductively coupled plasma mass spectrometry) for a set of human cancer samples.
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