scholarly journals Pattern of Cytogenetic Abnormality by Fluorescence in Situ Hybridization (FISH) in Multiple Myeloma Patients in a Tertiary Hospital

2022 ◽  
Vol 8 (1) ◽  
pp. 212-224
Author(s):  
Alamgir Ahmed

Background: Multiple myeloma is a plasma cell neoplasm with acquired genetic abnormalities of clinical and prognostic importance, with survival duration ranging from a few months to more than 10 years. Cytogenetic abnormalities (CA) detected by fluorescence in situ hybridization (FISH) are of major prognostic significance since e.g. patients with del(17p), t(4;14) or gain 1q21 show dismal outcome. Objective: To evaluate the cytogenetic patterns by fluorescence in situ hybridization (FISH) of clinically diagnosed cases of multiple myeloma.Methods:This cross-sectional study was conducted in Department of Haematology, Dhaka Medical College Hospital, Dhaka, from January 2018 to December 2018. A total number of 30 patients with multiple myeloma were analyzed cytogenetically by interphase fluorescence in situ hybridization (iFISH). The collected data were analyzed by using the Statistical Package for Social Science (SPSS-24) for windows version 10.0.Results:Out of 30 diagnosed Multiple Myeloma cases the mean age was 56.37±10.38 years and male to female ratio was almost 3:1. Sixteen (56.7%) of 30 patients. Among 30 cases of 8 cases were thyrogenicity positive of 7(23.3%) patients was detected del 13q positive. Isolated del 13q was found in 4 cases. 2 cases were found coexistence of del 13q and del 17p positive ;1 case was found coexistence of del 13q and t(4;14) positive and rest of 1 case had del 17 p positive. There was no detectable t (11; 14) and t(14;16) in any of 30 cases.Conclusion:FISH panel for Multiple Myeloma including del (13q); t(11;14); t(4;14), del(17p), t(14;16) is very important molecular test for the prognosis , risk stratification, treatment modality of the patient. On the basis of cytogenetic abnormality Multiple Myeloma risk stratification is modified now a day. This Revised International Staging system R-ISS is a simple and powerful prognostic staging system.

Blood ◽  
2011 ◽  
Vol 117 (18) ◽  
pp. 4696-4700 ◽  
Author(s):  
Nikhil C. Munshi ◽  
Kenneth C. Anderson ◽  
P. Leif Bergsagel ◽  
John Shaughnessy ◽  
Antonio Palumbo ◽  
...  

Abstract A panel of members of the 2009 International Myeloma Workshop developed guidelines for risk stratification in multiple myeloma. The purpose of risk stratification is not to decide time of therapy but to prognosticate. There is general consensus that risk stratification is applicable to newly diagnosed patients; however, some genetic abnormalities characteristic of poor outcome at diagnosis may suggest poor outcome if only detected at the time of relapse. Thus, in good-risk patients, it is necessary to evaluate for high-risk features at relapse. Although detection of any cytogenetic abnormality is considered to suggest higher-risk disease, the specific abnormalities considered as poor risk are cytogenetically detected chromosomal 13 or 13q deletion, t(4;14) and del17p, and detection by fluorescence in situ hybridization of t(4;14), t(14;16), and del17p. Detection of 13q deletion by fluorescence in situ hybridization only, in absence of other abnormalities, is not considered a high-risk feature. High serum β2-microglobulin level and International Staging System stages II and III, incorporating high β2-microglobulin and low albumin, are considered to predict higher risk disease. There was a consensus that the high-risk features will change in the future, with introduction of other new agents or possibly new combinations.


2019 ◽  
Vol 9 (12) ◽  
Author(s):  
James Smadbeck ◽  
Jess F. Peterson ◽  
Kathryn E. Pearce ◽  
Beth A. Pitel ◽  
Andrea Lebron Figueroa ◽  
...  

AbstractFluorescence in situ hybridization (FISH) is currently the gold-standard assay to detect recurrent genomic abnormalities of prognostic significance in multiple myeloma (MM). Since most translocations in MM involve a position effect with heterogeneous breakpoints, we hypothesize that FISH has the potential to miss translocations involving these regions. We evaluated 70 bone marrow samples from patients with plasma cell dyscrasia by FISH and whole-genome mate-pair sequencing (MPseq). Thirty cases (42.9%) displayed at least one instance of discordance between FISH and MPseq for each primary and secondary abnormality evaluated. Nine cases had abnormalities detected by FISH that went undetected by MPseq including 6 tetraploid clones and three cases with missed copy number abnormalities. In contrast, 19 cases had abnormalities detected by MPseq that went undetected by FISH. Seventeen were MYC rearrangements and two were 17p deletions. MPseq identified 36 MYC abnormalities and 17 (50.0% of MYC abnormal group with FISH results) displayed a false negative FISH result. MPseq identified 10 cases (14.3%) with IgL rearrangements, a recent marker of poor outcome, and 10% with abnormalities in genes associated with lenalidomide response or resistance. In summary, MPseq was superior in the characterization of rearrangement complexity and identification of secondary abnormalities demonstrating increased clinical value compared to FISH.


2010 ◽  
Vol 85 (6) ◽  
pp. 532-537 ◽  
Author(s):  
Prashant Kapoor ◽  
Rafael Fonseca ◽  
S. Vincent Rajkumar ◽  
Shirshendu Sinha ◽  
Morie A. Gertz ◽  
...  

2004 ◽  
Vol 148 (1) ◽  
pp. 71-76 ◽  
Author(s):  
Elisabet Lloveras ◽  
Isabel Granada ◽  
Lurdes Zamora ◽  
Blanca Espinet ◽  
Lourdes Florensa ◽  
...  

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