Comparative Study of Eleven Mechanical Pretreatment Protocols for Cryptosporidium parvum DNA Extraction from Stool Samples

被引:13
作者
Claudel, Laure [1 ]
Valeix, Nicolas [1 ]
Basmaciyan, Louise [1 ,2 ]
Pereira, Bruno [3 ]
Costa, Damien [4 ,5 ]
Vincent, Anne [1 ]
Valot, Stephane [1 ]
Favennec, Loic [3 ,4 ]
Dalle, Frederic [1 ,2 ]
机构
[1] Plateforme Biol Hosp Univ, Lab Parasitol Mycol, 2 Rue A Ducoudray,BP 37013, F-21070 Dijon, France
[2] Univ Bourgogne Franche Comte, AgroSup, UMR PAM, Dijon Equipe Vin,Aliment,Microbiol,Stress, F-21078 Dijon, France
[3] CHU Clermont Ferrand, Unite Biostat, Direct Rech Clin DRCI, F-63000 Clermont Ferrand, France
[4] CHU C Nicolle, Lab Parasitol Mycol, F-76000 Rouen, France
[5] CHU C Nicolle, Ctr Natl Reference, Lab Expert Cryptosporidioses, Inst Biol Clin, F-76000 Rouen, France
关键词
Cryptosporidium parvum; mechanical pretreatment; DNA extraction; stool samples; real-time PCR; molecular diagnosis; MOLECULAR-DETECTION; DIAGNOSIS; OPTIMIZATION; OOCYSTS; SPP;
D O I
10.3390/microorganisms9020297
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Nowadays, many commercial kits allow the polymerase chain reaction (PCR) detection of Cryptosporidium deoxyribonucleic acid (DNA) in stool samples, the efficiency of which relies on the extraction method used. Mechanical pretreatment of the stools using grinding beads has been reported to greatly improve this extraction step. However, optimization of this key step remains to be carried out. Indeed, many parameters could influence the pretreatment performances, among which the modulation of the speed and duration of the grinding step, in addition to the physicochemical features of the grinding beads, have never been evaluated to date. In this study, eleven commercial mechanical pretreatment matrixes (Lysis matrix tubes(R), MP Biomedical, Irvine, CA, USA) composed of beads with different sizes, shapes, and molecular compositions, were evaluated for their performances in improving Cryptosporidium parvum oocyst DNA extraction before amplification by using our routinely used real-time PCR method. As expected, the eleven commercial mechanical pretreatment matrixes showed varying performances depending on the composition, size, and shape. All in all, the best performances were obtained when using the Lysing matrix, including ceramic beads with a median size (diameter of 1.4 mm).
引用
收藏
页码:1 / 11
页数:11
相关论文
共 23 条
[1]   Basic principles of real-time quantitative PCR [J].
Arya, M ;
Shergill, IS ;
Williamson, M ;
Gommersall, L ;
Arya, N ;
Patel, HRH .
EXPERT REVIEW OF MOLECULAR DIAGNOSTICS, 2005, 5 (02) :209-219
[2]   Evaluation of the AllplexTM Gastrointestinal Panel-Parasite Assay for Protozoa Detection in Stool Samples: A Retrospective and Prospective Study [J].
Autier, Brice ;
Gangneux, Jean-Pierre ;
Robert-Gangneux, Florence .
MICROORGANISMS, 2020, 8 (04)
[3]   Comparison of three commercial multiplex PCR assays for the diagnosis of intestinal protozoa [J].
Autier, Brice ;
Belaz, Sorya ;
Razakandrainibe, Romy ;
Gangneux, Jean-Pierre ;
Robert-Gangneux, Florence .
PARASITE, 2018, 25
[4]   Ruling out nosocomial transmission of Cryptosporidium in a renal transplantation unit: case report [J].
Brunet, J. ;
Lemoine, J. P. ;
Pesson, B. ;
Valot, S. ;
Sautour, M. ;
Dalle, F. ;
Muller, C. ;
Borni-Duval, C. ;
Caillard, S. ;
Moulin, B. ;
Pfaff, A. W. ;
Razakandrainibe, R. ;
Abou-Bacar, A. ;
Favennec, L. ;
Candolfi, E. .
BMC INFECTIOUS DISEASES, 2016, 16
[5]  
Certad, 2020, REV BIOL MED
[6]   Effects of glass bead size, vortexing speed and duration on Eimeria acervulina oocyst excystation [J].
Cha, Jang-Ock ;
Talha, Abul Fatah Shah Muhammad ;
Lim, Chae Woong ;
Kim, Bumseok .
EXPERIMENTAL PARASITOLOGY, 2014, 138 :18-24
[7]   A review of the global burden, novel diagnostics, therapeutics, and vaccine targets for cryptosporidium [J].
Checkley, William ;
White, A. Clinton, Jr. ;
Jaganath, Devon ;
Arrowood, Michael J. ;
Chalmers, Rachel M. ;
Chen, Xian-Ming ;
Fayer, Ronald ;
Griffiths, Jeffrey K. ;
Guerrant, Richard L. ;
Hedstrom, Lizbeth ;
Huston, Christopher D. ;
Kotloff, Karen L. ;
Kang, Gagandeep ;
Mead, Jan R. ;
Miller, Mark ;
Petri, William A., Jr. ;
Priest, Jeffrey W. ;
Roos, David S. ;
Striepen, Boris ;
Thompson, R. C. Andrew ;
Ward, Honorine D. ;
Van Voorhis, Wesley A. ;
Xiao, Lihua ;
Zhu, Guan ;
Houpt, Eric R. .
LANCET INFECTIOUS DISEASES, 2015, 15 (01) :85-94
[8]   Epidemiology of Cryptosporidiosis in France from 2017 to 2019 [J].
Costa, Damien ;
Razakandrainibe, Romy ;
Valot, Stephane ;
Vannier, Margot ;
Sautour, Marc ;
Basmaciyan, Louise ;
Gargala, Gilles ;
Viller, Venceslas ;
Lemeteil, Denis ;
Ballet, Jean-Jacques ;
Dalle, Frederic ;
Favennec, Loic .
MICROORGANISMS, 2020, 8 (09) :1-17
[9]   Cryptosporidium Infection: Epidemiology, Pathogenesis, and Differential Diagnosis [J].
Gerace, Elisabetta ;
Lo Presti, Vincenzo Di Marco ;
Biondo, Carmelo .
EUROPEAN JOURNAL OF MICROBIOLOGY AND IMMUNOLOGY, 2019, 9 (04) :119-123
[10]   Universal extraction method for gastrointestinal pathogens [J].
Halstead, Fenella D. ;
Lee, Adele V. ;
Couto-Parada, Xose ;
Polley, Spencer D. ;
Ling, Clare ;
Jenkins, Claire ;
Chalmers, Rachel M. ;
Elwin, Kristin ;
Gray, Jim J. ;
Iturriza-Gomara, Miren ;
Wain, John ;
Clark, Duncan A. ;
Bolton, Frederick J. ;
Manuel, Rohini J. .
JOURNAL OF MEDICAL MICROBIOLOGY, 2013, 62 :1535-1539