Javascript must be enabled to continue!
Genetic Diversity of Polymorphic Marker Merozoite Surface Protein 1 (Msp-1) and 2 (Msp-2) Genes of Plasmodium falciparum Isolates From Malaria Endemic Region of Pakistan
View through CrossRef
Background: Understanding the genetic diversity of Plasmodium species through polymorphic studies can assist in designing more effective control strategies of malaria like new drug formulation and development of a vaccine. Pakistan is moderate endemic for Plasmodium falciparum, but little is known about the genetic diversity of this parasite. This study aimed to investigate the molecular diversity of P. falciparum based on msp-1 and msp-2 genes in the malaria-endemic regions of Khyber Pakhtunkhwa, Pakistan.Methods: A total of 199/723 blood samples, tested positive by microscopy for falciparum malaria, were collected from four districts (Dera Ismail Khan, Karak, Mardan, and Peshawar) of Khyber Pakhtunkhwa. Nested PCR amplification technique was employed to target block 2 of msp-1 and the central domain of msp-2 genes, including their respective allelic families K1, MAD20, RO33, FC27, and 3D7/IC, and to detect the extent of genetic diversity of P. falciparum clinical isolates.Results: Among the 199 microscopy-positive P. falciparum samples, a total of 192 were confirmed using PCR. Ninety-seven amplicons were observed for msp-1 and 95 for msp-2. A total of 33 genotypes, 17 for msp-1 (eight K1, six MAD20, and three RO33) and 16 for msp-2 (nine FC27 and seven 3D7/IC), were identified. The specific allelic frequency of the K1 family was higher (44.3%) than that of MAD20 (33.0%) and RO33 (23.0%) for msp-1, while the FC27 allelic family was dominant (60.0%) compared with 3D7/IC (40.0%) for msp-2. No polyclonal infection was observed in msp-1 and msp-2. The expected heterozygosity was 0.98 and 0.97 for msp-1 and msp-2, respectively.Conclusion: It was concluded that the P. falciparum populations are highly polymorphic, and diverse allelic variants of msp-1 and msp-2 are present in Khyber Pakhtunkhwa, Pakistan.
Title: Genetic Diversity of Polymorphic Marker Merozoite Surface Protein 1 (Msp-1) and 2 (Msp-2) Genes of Plasmodium falciparum Isolates From Malaria Endemic Region of Pakistan
Description:
Background: Understanding the genetic diversity of Plasmodium species through polymorphic studies can assist in designing more effective control strategies of malaria like new drug formulation and development of a vaccine.
Pakistan is moderate endemic for Plasmodium falciparum, but little is known about the genetic diversity of this parasite.
This study aimed to investigate the molecular diversity of P.
falciparum based on msp-1 and msp-2 genes in the malaria-endemic regions of Khyber Pakhtunkhwa, Pakistan.
Methods: A total of 199/723 blood samples, tested positive by microscopy for falciparum malaria, were collected from four districts (Dera Ismail Khan, Karak, Mardan, and Peshawar) of Khyber Pakhtunkhwa.
Nested PCR amplification technique was employed to target block 2 of msp-1 and the central domain of msp-2 genes, including their respective allelic families K1, MAD20, RO33, FC27, and 3D7/IC, and to detect the extent of genetic diversity of P.
falciparum clinical isolates.
Results: Among the 199 microscopy-positive P.
falciparum samples, a total of 192 were confirmed using PCR.
Ninety-seven amplicons were observed for msp-1 and 95 for msp-2.
A total of 33 genotypes, 17 for msp-1 (eight K1, six MAD20, and three RO33) and 16 for msp-2 (nine FC27 and seven 3D7/IC), were identified.
The specific allelic frequency of the K1 family was higher (44.
3%) than that of MAD20 (33.
0%) and RO33 (23.
0%) for msp-1, while the FC27 allelic family was dominant (60.
0%) compared with 3D7/IC (40.
0%) for msp-2.
No polyclonal infection was observed in msp-1 and msp-2.
The expected heterozygosity was 0.
98 and 0.
97 for msp-1 and msp-2, respectively.
Conclusion: It was concluded that the P.
falciparum populations are highly polymorphic, and diverse allelic variants of msp-1 and msp-2 are present in Khyber Pakhtunkhwa, Pakistan.
Related Results
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract
Introduction
Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
Plasmodium falciparum genetic diversity in malaria endemic areas of Pakistan using merozoite surface protein 2 (msp-2)
Plasmodium falciparum genetic diversity in malaria endemic areas of Pakistan using merozoite surface protein 2 (msp-2)
Abstract
The detailed description of parasites living in the areas of malaria endemic is essential to assess the achievement of current strategies of controlling malarial d...
Impact And Acceptability of Seasonal Malaria Chemoprevention (SMC) And Pharmacovigilance Campaign Among Under-Five Children In Nigeria: An Explanatory Study
Impact And Acceptability of Seasonal Malaria Chemoprevention (SMC) And Pharmacovigilance Campaign Among Under-Five Children In Nigeria: An Explanatory Study
Globally, an estimated 249 million malaria cases occurred in 2022, leading to 608,000 malaria deaths in a single year. Malaria is one of the most severe public health problems, wit...
Development of a Novel Cytochrome b Real-Time PCR Assay for Identification of Plasmodium malariae
Development of a Novel Cytochrome b Real-Time PCR Assay for Identification of Plasmodium malariae
This article aims to establish a novel cytochrome b real-time PCR assay using Taqman probe for identification of P. malariae and its discrimination from other Plasmodium human infe...
Malariology (A Continuing Education Activity)
Malariology (A Continuing Education Activity)
Malariology is the scientific study of Malaria. Malaria is a life-threatening disease caused by parasites that are transmitted to people through the bites of infected female Anophe...
Non-falciparum malaria infections in Uganda, does it matter? A review of the published literature
Non-falciparum malaria infections in Uganda, does it matter? A review of the published literature
Abstract
Background
Plasmodium falciparum is the dominant malaria species in the sub-Saharan Africa and the main cause of severe disease and death. ...
Prevalence of Plasmodium Species among Humans and Monkeys at Mole National Park in Northern Ghana
Prevalence of Plasmodium Species among Humans and Monkeys at Mole National Park in Northern Ghana
Malaria is one of the most severe public health problems in Ghana. In developing countries such as Ghana, with high of prevalence of malaria, the procedures for diagnoses and detec...
Shifts in Indonesia’s malaria landscape: an analysis of 2010-2019 routine surveillance data
Shifts in Indonesia’s malaria landscape: an analysis of 2010-2019 routine surveillance data
Abstract
Background
Indonesia faces challenges in achieving its goal of eliminating malaria by 2030, with cases stagnating betw...

