Pakistan Science Abstracts
Article details & metrics
No Detail Found!!
A Comprehensive Study on One Health Strategy and Public Health Effects of Salmonella
Author(s):
1. Muhammad Aqeel: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
2. Amjad Hussain Mirani: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
3. Parvez Ahmed Khoso: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
4. Jam Kashif Sahito: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
5. Riaz Ahmed Leghari: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
6. Abdul Latif Bhutto: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
7. Muhammad Mohsen Rahimoon: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
8. Abdul Azeem Khoso: Department of Chemistry, Faculty of Natural Science, University of Sindh, Jamshoro, Pakistan
9. Rasool Bux: Department of Pharmacology, Sindh Agriculture University Tandojam Pakistan
10. OM PARKASH: Department of Veterinary Medicine, Sindh Agriculture University Tandojam Pakistan
11. AZMAT ALIAS ARSALAN ALI: Faculty of Animal Husbandry and Veterinary Sciences, Sindh Agriculture University Tandojam Pakistan
Abstract:
Salmonella poses a significant public health challenge due to its antibiotic resistance, zoonotic transmission, and diverse clinical manifestations. Over 60 % of human diseases are zoonotic, influenced by ecological dynamics and human activities such as land use changes, population growth, and international travel. Foodborne diseases, particularly those caused by Salmonella spp., have a substantial global impact, especially in low-income countries. Salmonella is divided into two species, Salmonella enterica and Salmonella bongori, with more than 2000 serotypes and six subspecies within S. enterica. This bacterium is highly adaptable, surviving extreme conditions such as drying, high salt concentrations, and acidic environments. Detection methods typically involve pre-enrichment, followed by specific enrichment, plating, and identification through serological and molecular techniques like PCR. Severe cases, especially in vulnerable populations, often require antimicrobial treatment. Salmonella’s pathogenicity is driven by its ability to invade, persist, and replicate within host cells, facilitated by Salmonella pathogenicity islands (SPIs) and type III secretion systems. Epidemiological data reveal a global distribution of enteric fever, with high incidence and mortality rates in Africa, Asia, and South America, while lower rates are reported in developed regions, often linked to international travel. This study adopts a One Health approach, examining Salmonella's resistance, zoonotic transmission, and public health impact, while suggesting innovative strategies for detection and control to mitigate its global effects.
Page(s): 195-210
DOI: DOI not available
Published: Journal: Journal of Bioresource Management, Volume: 11, Issue: 3, Year: 2024
Keywords:
public health , Antibiotic resistance , Salmonella , One Health , zoonosis
References:
[1] Antilles N .2014 .Epidemiology and antimicrobial resistance of Salmonella spp. and Campylobacter spp. from wild birds and poultry reared outdoors. PhD thesis, : .
[2] Bakowski MA,Braun V,Brumell JH .2008 .Salmonella-containing vacuoles: directing traffic and nesting to grow. Traffic, 9 : 2022-2031.
[3] Barnett R .2016 .Typhoid fever. Lancet, 388(10045) : 2467.
[4] Bäumler AJ,Tsolis RM,Ficht TA,Adams LG .1998 .Evolution of host adaptation in Salmonella enterica. Infect Immun, 66(10) : 4579-458.
[5] Bell C,Kyriakides A .2002 .Salmonella: A practical approach to the organism and its control in foods. Blackwell Science Ltd, : .
[6] Brenner FW,Villar RG,Angulo FJ,Tauxe R,Swaminathan B .2000 .Salmonella nomenclature. J Clin Microbiol, 38(7) : 2465-2467.
[7] Brenner F,McWhorter-Murlin A .1998 .Identification and Serotyping of Salmonella. Centers for Disease Control Prevention, Atlanta. , : .
[8] Bronowski C,James CE,Winstanley C .2014 .Role of environmental survival in transmission of Campylobacter jejuni. FEMS Microbiol Lett, 356 : 8-19.
[9] Buch NA,Hassan MU,Kakroo DK .1994 .Enteric fever - a changing sensitivity pattern, clinical profile, and outcome. Indian Pediatrics, 31(8) : 981-985.
[10] Carattoli A,Tosini F,Giles WP,Rupp ME,Hinrichs SH,Angulo FJ .2002 .Characterization of plasmids carrying CMY-2 from expanded-spectrum cephalosporin-resistant Salmonella strains isolated in the United States between 1996 and 1998. Antimicrob Agents Chemother, 46(5) : 1269-1272.
[11] Chanamé Pinedo L,Mughini-Gras L,Franz E,Hald T,Pires SM .2015 .An analysis of outbreak data. Int J Food Microbiol, 379 : 109850.
[12] Chiu CH,Wu TL,Su LH,Chu C,Chia JH,Kuo AJ,Lin TY .2002 .The emergence in Taiwan of fluoroquinolone resistance in Salmonella enterica serotype choleraesuis. N Engl J Med, 346(6) : 413-419.
[13] Chuang CH,Su LH,Perera J,Carlos C,Tan BH,Kumarasinghe G,Hsueh PR .2009 .Surveillance of antimicrobial resistance of Salmonella enterica serotype Typhi in seven Asian countries. Epidemiol Infect, 137(02) : 266-269.
[14] Chuma T,Hashimoto S .2000 .Detection of thermophilic Campylobacter from sparrows by multiplex PCR: the role of sparrows as a source of contamination of broilers with Campylobacter. J Vet Med Sci, 62 : 1291-1295.
[15] Colin P .2018 .International symposium on Salmonella and salmonellosis. Food Microbiol, 71 : 1.
[16] Crump JA,Luby SP .2004 .The global burden of typhoid fever. Bull World Health Organ 82, (5) : 346-353.
[17] Crump JA,Medalla FM,Joyce KW,Krueger AL,Hoekstra RM,Whichard JM,Barzilay EJ .2011 .Antimicrobial resistance among invasive nontyphoidal Salmonella enterica isolates in the United States: national antimicrobial resistance monitoring system, 1996 to 2007. Antimicrob Agents Chemother, 55(3) : 1148-1154.
[18] Dominguez SA,Schaffner DW .2009 .Survival of Salmonella in processed chicken products during frozen storage. J Food Prot, 72 : 2088-2092.
[19] .2017 .The European Union summary report on trends and sources of zoonoses, zoonotic agents and food‐borne outbreaks in 2016. EFSA J 2017, 15 : 5077.
[20] Egevang C,Stenhouse IJ,Phillips RA,Petersen A,Fox JW,Silk JRD .2010 .Tracking of Arctic terns Sterna paradisaea reveals longest animal migration. Proc Natl Acad Sci, 107 : 2078-2081.
[21] Eng SK,Pusparajah P,Ab Mutalib NS,Ser HL,Chan KG,Lee LH .2015 .Salmonella: A review on pathogenesis, epidemiology and antibiotic resistance. Front Life Sci, 8 : 284-293.
[22] Feasey NA,Dougan G,Kingsley RA,Heyderman RS,Gordon MA .2012 .Invasive nontyphoidal salmonella disease: An emerging and neglected tropical disease in Africa. Lancet, 379 : 2489-2499.
[23] Gilbert DN,Eliopoulos GM,Chambers HF,Saag MS,Pavia AT,Sperryville AT .2017 .Sanford Guide to Antimicrobial Therapy 2017 47th ed. Antimicrobial Therapy, : .
[24] González-Escalona N,Brown EW .2012 .Development and evaluation of a multiplex real-time PCR (qPCR) assay targeting ttrRSBCA locus and invA gene for accurate detection of Salmonella spp. in fresh produce and eggs. Food Res Int, 48 : 202-208.
[25] Grassl GA,Finlay BB .2008 .Pathogenesis of enteric Salmonella infections. Curr Opin Gastroenterol, 24 : 22-26.
[26] Greig J,Rajić A,Young I,Mascarenhas M,Waddell L,Lejeune J .2015 .A scoping review of the role of wildlife in the transmission of bacterial pathogens and antimicrobial resistance to the food chain. Zoonoses Public Health, 62 : 269-284.
[27] Guerra B,Soto S,Helmuth R,Mendoza MC .2002 .Characterization of a self-transferable plasmid from Salmonella enterica serotype Typhimurium clinical isolates carrying two integron-borne gene cassettes together with virulence and drug resistance genes. Antimicrob Agents Chemother, 46(9) : 2977-2981.
[28] Hald B,Skov MN,Nielsen EM,Rahbek C,Madsen JJ,Wainø M .2016 .Campylobacter jejuni and Campylobacter coli in wild birds on Danish livestock farms. Acta Vet, 58 : 11.
[29] Hansen-Wester I,Stecher B,Hensel M .2002 .Type III secretion of Salmonella enterica serovar Typhimurium translocated effectors and SseFG. Infect Immun, 70(3) : 1403-1409.
[30] Hasan R,Zafar A,Abbas Z,Mahraj V,Malik F,Zaidi A .2001 .Antibiotic resistance among Salmonella enterica serovars Typhi and Paratyphi A in Pakistan (. J Infect Dev Countr, 2(04) : 289-294.
[31] Hatch JJ .1996 .Threats to public health from gulls (Laridae). Int. J. Environ. Health Res, 6 : 5-16.
[32] Helms M,Ethelberg S .2005 .Molbak K (. International Salmonella Typhimurium DT104 infections, 11(6) : 859-867.
[33] Hockey PAR,Dean WRJ,Ryan PG .2005 .Roberts - Birds of Southern Africa Cape Town: John Voelcker Bird Book Fund. , : .
[34] Hoelzer K,Switt AIM,Wiedmann M .2011 .Animal contact as a source of human nontyphoidal salmonellosis. Vet. Res, 42 : 34.
[35] Hohmann EL .2001 .Non-typhoidal salmonellosis. Clin. Infect. Dis, 32 : 263-269.
[36] Huang DB,DuPont HL DB .2005 .Problem pathogens: Extra-intestinal complications of Salmonella enterica serotype Typhi infection. Lancet Infect. Dis, 5 : 341-348.
[37] Hubálek Z .2003 .Emerging human infectious diseases: anthroponoses, zoonoses, and sapronoses. Emerging infectious diseases, 9(3) : 403.
[38] Hyeon JY,Chon JW,Hwang IG,Kwak HS,Kim MS,Kim SK .2011 .Prevalence, antibiotic resistance, and molecular characterization of Salmonella serovars in retail meat products. J Food Prot, 74(2) : 161-166.
[39] Issenhuth-Jeanjean S,Roggentin P,Mikoleit M,Guibourdenche M,De Pinna E,Nair S .2014 .Supplement 2008-2010 (no. 48) to the White-Kauffmann-Le Minor scheme. Res. Microbiol, 165 : 526-530.
[40] Jay-Russell MT .2013 .What is the risk from wild animals in food-borne pathogen contamination of plants? CAB Rev. , 8 : 1-16.
[41] Jones TF,Ingram LA,Cieslak PR,Vugia DJ,Angelo MT,Hurd S .2008 .Salmonellosis outcomes differ substantially by serotype. J. Infect. Dis, 198 : 109-114.
[42] Karesh WB,Dobson A,Lloyd-Smith JO,Lubroth J,Dixon MA,Bennett M .2012 .Ecology of zoonoses: Natural and unnatural histories. Lancet, 380 : 1936-1945.
[43] Karon AE,Archer JR,Sotir MJ,Monson TA,Kazmierczak JJ .2007 .Human multidrugresistant Salmonella newport infections. Wisconsin, 13(11) : 1777-1780.
[44] Kuvandik C,Karaoglan I,Namiduru M,Baydar I M .2009 .Predictive value of clinical and laboratory findings in the diagnosis of the enteric fever. New Microbiol, 32 : 25-30.
[45] Le Minor L,Veron M,Popoff M .1982 .A proposal for Salmonella nomenclature. Annales de Microbiologie, 133 : 245-254.
[46] Li H,Bhaskara A,Megalis C,Tortorello M Lou C .2012 .Transcriptomic Analysis of Salmonella Desiccation Resistance. Foodborne Pathog. Dis, 9 : 1143-1151.
[47] Littman RJ .2009 .The plague of Athens: Epidemiology and paleopathology. The Mount Sinai Journal of Medicine, 76 : 456-467.
[48] Malorny B,Hoorfar J,Bunge C,Helmuth R .2003 .Multicenter Validation of the Analytical Accuracy of Salmonella PCR : towards an International Standard. Appl. Environ. Microbiol, 69 : 290-296.
[49] Mattick KL,Jørgensen F,Wang P,Pound J,Ward LR,Legan JD .2001 .Effect of Challenge Temperature and Solute Type on Heat Tolerance of Salmonella Serovars at Low Water Activity. Appl. Environ. Microbiol, 67 : 4128-4136.
[50] Meakins S,Fisher IS,Berghold C,Gerner-Smidt P,Tschape H,Cormican M .2008 .Antimicrobial drug resistance in human nontyphoidal Salmonella isolates in Europe 2000-2004: a report from the Enter-net International Surveillance Network. Microbial Drug Resistance (Larchmont. , 14(1) : 31-35.
[51] Meerburg BG,Kijlstra A .2007 .Role of rodents in transmission of Salmonella and Campylobacter. J. Sciece Food Agric, 87 : 274-2781.
[52] Meltzer E,Yossepowitch O,Sadik C,Dan M,Schwartz E M .2006 .Epidemiology and clinical aspects of enteric fever in Israel. The American Journal of Tropical Medicine and Hygiene, 74(3) : 540-545.
[53] Molbak K,Gerner-Smidt P,Wegener HC .2002 .Increasing quinolone resistance in Salmonella enterica serotype Enteritidis. Emerging Infectious Diseases, 8(5) : 514-515.
[54] Molina-Lopez RA,Valverdú N,Martin M,Mateu E,Obon E,Cerdà-Cuéllar M,Darwich L M .2011 .Wild raptors as carriers of antimicrobial-resistant Salmonella and Campylobacter strains. Vet, 168 : 565.
[55] Monack DM,Mueller A,Falkow S A .2004 .Persistent bacterial infections: the interface of the pathogen and the host immune system. Nat Rev Microbiol, 2 : 747-765.
[56] Monte DFM,Sellera FP .2020 .Salmonella. Emerging Infectious Diseases, 26 : 2955.
[57] Montville TJ,Matthews KR .2008 .Food microbiology: an introduction (2nd ed. , : .
[58] Muhammad MA,Adnan K,Shahid S,Salmaan S,Rana MS,Mehar A .2015 .Human bocavirus in Pakistani children with gastroenteritis. Journal of Medical Virology, 87(4) : 656-663.
[59] Murray CG,Hamilton AJ .2010 .Perspectives on wastewater treatment wetlands and waterbird conservation. J. Appl. Ecol, 47 : 976-985.
[60] English Mweu E,M Mweu E .2008 .Typhoid fever in children in Africa. Tropical Medicine & International Health, 13(4) : 532-540.
[61] Ochiai RL,Acosta CJ,Danovaro-Holliday MC,Baiqing D,Bhattacharya SK,Agtini MD .2008 .A study of typhoid fever in five Asian countries: disease burden and implications for controls. Bulletin of the World Health Organization 86, (4) : 260-268.
[62] Pilar AVC,Reid-Yu SA,Cooper CA,Mulder DT,Coombes BK .2012 .GogB is an antiinflammatory effector that limits tissue damage during Salmonella infection through interaction with human FBXO22 and Skp1. PLoS Pathog, 8 : e1002773.
[63] Popa GL,Papa MI .2021 .Salmonella spp. infection-A continuous threat worldwide. Germs, 11 : 88-96.
[64] Popoff MY .1997 .WHO Collaborating Center for Reference Research on Salmonella: Antigenic Formulas of the Salmonella Serovars. , : 56-87.
[65] Popoff MY,Bockemühl J,Gheesling LL .2004 .Supplement 2002 (no. 46) to the Kauffmann-White scheme. Research in Microbiology, 155 : 568-570.
[66] Qamar FN,Hussain W .2022 .Salmonellosis including enteric fever. Pediatric Clinics of North America, 69 : 65-77.
[67] Rahman MT,Sobur MA,Islam MS,Ievy S,Hossain MJ,El Zowalaty ME .2020 .Zoonotic Diseases: Etiology, Impact, and Control. Microorganisms, 8(9) : 1405.
[68] Ramos R,Cerdà-Cuéllar M,Ramírez F,Jover L,Ruiz X .2010 .Influence of refuse sites on the prevalence of Campylobacter spp. and Salmonella serovars in seagulls. Appl. Environ. Microbiol, 76 : 3052-3056.
[69] Raven SJ,Coulson JC .2001 .) Effects of cleaning a tidal river of sewage on gull numbers: A before-and-after study of the River Tyne, northeast England. Bird Study, 48 : 48-58.
[70] Reed KD,Meece JK,Henkel JS .2003 .Birds, Migration and Emerging Zoonoses: West Nile Virus, Lyme Disease, Influenza A and Enteropathogens. Clin. Med. Res, 1 : 5-12.
[71] Rowe B,Ward LR,Threlfall EJ .1997 .Multidrug-resistant Salmonella typhi: a worldwide epidemic. Clinical Infectious Diseases, 24(Supplement) : S106-S109.
[72] Sabbagh SC,Forest CG,Lepage C,Leclerc JM .2010 .So similar, yet so different: uncovering distinctive features in the genomes of Salmonella enterica serovars Typhimurium and Typhi. , 305 : 1-13.
[73] Sahin O,Morishita TY,and Zhang Q TY .2002 .Campylobacter colonization in poultry: sources of infection and modes of transmission. Anim. Heal. Res. Rev, 3 : 95-105.
[74] Salmon DE .1884 .The discovery of the germ of swine-plague. Science, 3 : 155-158.
[75] Sood S,Kapil A,Das B,Jain Y,Kabra SK .1999 .Re-emergence of chloramphenicolsensitive Salmonella typhi. Lancet, 353(9160) : 1241-1242.
[76] Spector MP,Kenyon WJ .2012 .Resistance and survival strategies of Salmonella enterica to environmental stresses. Food Res. Int, 45 : 455-481.
[77] Takaya A,Suzuki M,Matsui H,Tomoyasu T,Sashinami H,Nakane A,Yamamoto T .2003 .Lon, a stress-induced ATP-dependent protease, is critically important for systemic Salmonella enterica serovar typhimurium infection of mice. Infect Immun, 71(2) : 690-696.
[78] Taylor LH,Latham SM,Woolhouse MEJ .2001 .Risk factors for human disease emergence. Philos. Trans. R. Soc. B Biol. Sci, 356 : 983-989.
[79] Tindall BJ,Grimont PA D,Garrity GM,Euzeby JP .2005 .Nomenclature and taxonomy of the genus Salmonella. Int. J. Syst. Evol. Microbiol, 55(2) : 521-524.
[80] Travers K,Barza M .2002 .Morbidity of infections caused by antimicrobial-resistant bacteria. Clin. Infect. Dis, 34(Supplement) : S131-S134.
[81] Tsiodras S,Kelesidis T,Kelesidis I,Bauchinger U,Falagas ME .2008 .Human infections associated with wild birds. J. Infect, 56(2) : 83-98.
[82] Valentín-Bon IE,Brackett RE,Seo KH,Hammack TS,Andrews WH .2003 .Preenrichment versus direct selective agar plating for the detection of Salmonella Enteritidis in shell eggs. J. Food Prot, 66 : 1670-1674.
[83] Vigo GB,Leotta GA,Caffer MI,Salve A,Binsztein N,Pichel M .2011 .Isolation and characterization of Salmonella enterica from Antarctic wildlife. Polar Biol, 34 : 675-681.
[84] Wales AD,Carrique-Mas JJ,Rankin M,Bell B,Thind BB,Davies RH .2010 .Review of the carriage of zoonotic bacteria by arthropods, with special reference to salmonella in mites, flies and litter beetles. Zoonoses Public Health, 57 : 299-314.
[85] Whiley H,van den Akker B,Giglio S,Bentham R .2013 .The role of environmental reservoirs in human campylobacteriosis. Int. J. Environ. Res. Public Health, 10 : 5886-5907.
[86] .2008 .Typhoid vaccines: WHO position paper. Weekly epidemiological record, 83 : 49-60.
[87] .2017 .Fact sheet. World Health Organization (WHO), : .
[88] Winfield MD,Groisman EA .2003 .Role of Nonhost Environments in the Lifestyles of Salmonella and E. coli. Appl. Environ. Mcrobiology, 69 : 3687-3694.
[89] Woods CW,Murdoch DR,Zimmerman MD,Glover WA,Basnyat B,Wolf L .2006 .Emergence of Salmonella enterica serotype Paratyphi A as a major cause of enteric fever in Kathmandu, Nepal. Trans. R. Soc. Trop. Med, 100(11) : 1063-1067.
[90] Yoke-Kqueen C,Learn-Han L,Noorzaleha AS,Son R,Sabrina S,Jiun-Horng S .2008 .Characterization of multiple-antimicrobial-resistant Salmonella enterica Subsp. enterica isolated from indigenous vegetables and poultry in Malaysia. Lett. Appl. Microbiol, 46(3) : 318-324.
[91] Zinsstag J,Schelling E,Waltner-Toews D,Tanner M .2011 .From “one medicine” to “one health” and systemic approaches to health and well-being. Prev. Vet. Med, 101 : 148-156.
Citations
Citations are not available for this document.
0

Citations

0

Downloads

4

Views