Bioactive Peptides against Human Apicomplexan Parasites

被引:4
作者
Rivera-Fernandez, Norma [1 ]
Anacleto-Santos, Jhony [1 ]
Casarrubias-Tabarez, Brenda [2 ,3 ]
De Jesus Lopez-Perez, Teresa [1 ]
Rojas-Lemus, Marcela [2 ]
Lopez-Valdez, Nelly [2 ]
Fortoul, Teresa, I [2 ]
机构
[1] Univ Nacl Autonoma Mexico, Fac Med, Dept Microbiol & Parasitol, Ciudad Univ, Mexico City 04510, DF, Mexico
[2] Univ Nacl Autonoma Mexico, Fac Med, Dept Biol Celular & Tisular, Ciudad Univ, Mexico City 04510, DF, Mexico
[3] Univ Nacl Autonoma Mexico, Posgrad Ciencias Biol, Ciudad Univ, Mexico City 04510, DF, Mexico
来源
ANTIBIOTICS-BASEL | 2022年 / 11卷 / 11期
关键词
Apicomplexan; bioactive peptides; toxoplasmosis; cryptosporidiosis; malaria; SHORT-TERM EXPOSURE; IN-VITRO; CRYPTOSPORIDIUM-PARVUM; ANTIMICROBIAL PEPTIDES; ANTICRYPTOSPORIDIAL ACTIVITY; CATIONIC PEPTIDES; COMBINATION; INFECTION; AZITHROMYCIN; PREVALENCE;
D O I
10.3390/antibiotics11111658
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Apicomplexan parasites are the causal agents of different medically important diseases, such as toxoplasmosis, cryptosporidiosis, and malaria. Toxoplasmosis is considered a neglected parasitosis, even though it can cause severe cerebral complications and death in immunocompromised patients, including children and pregnant women. Drugs against Toxoplasma gondii, the etiological agent of toxoplasmosis, are highly toxic and lack efficacy in eradicating tissue cysts, promoting the establishment of latent infection and acute relapsing disease. Cryptosporidiosis has been recognized as the most frequent waterborne parasitosis in US outbreaks; anti-cryptosporidium drug discovery still faces a major obstacle: drugs that can act on the epicellular parasite. Severe malaria is most commonly caused by the progression of infection with Plasmodium falciparum. In recent years, great progress has been made in the field of antimalarial drugs and vaccines, although the resistance of P. falciparum to artemisinin has recently gained a foothold in Africa. As seen, the search for new drugs against these parasites remains a challenge. Peptide-based drugs seem to be attractive alternative therapeutic agents recently recognized by the pharmaceutical industry, as they can kill different infectious agents and modulate the immune response. A review of the experimental effects of bioactive peptides on these parasites follows, along with comments. In addition, some biological and metabolomic generalities of the parasites are reviewed to elucidate peptide mechanisms of action on Apicomplexan targets.
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页数:19
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共 107 条
[51]   Antimicrobial/anticancer peptides: bioactive molecules and therapeutic agents [J].
Kardani, Kimia ;
Bolhassani, Azam .
IMMUNOTHERAPY, 2021, 13 (08) :669-684
[52]   Volatile organic compounds in the strongly fragrant fern genus Melpomene (Polypodiaceae) [J].
Kessler, M. ;
Connor, E. ;
Lehnert, M. .
PLANT BIOLOGY, 2015, 17 (02) :430-436
[53]   In vitro therapeutic effect of Hemiscorpius lepturus venom on tachyzoites of Toxoplasma gondii [J].
Khaleghi Rostamkolaie L. ;
Hamidinejat H. ;
Razi Jalali M.H. ;
Jafari H. ;
Najafzadeh Varzi H. ;
Seifi Abadshapouri M.R. .
Journal of Parasitic Diseases, 2019, 43 (3) :472-478
[54]   Supply and demand-heme synthesis, salvage and utilization by Apicomplexa [J].
Kloehn, Joachim ;
Harding, Clare R. ;
Soldati-Favre, Dominique .
FEBS JOURNAL, 2021, 288 (02) :382-404
[55]   Epidemiology and Risk Factors for Cryptosporidiosis in Children From 8 Low-income Sites: Results From the MAL-ED Study [J].
Korpe, Poonum S. ;
Valencia, Cristian ;
Haque, Rashidul ;
Mahfuz, Mustafa ;
McGrath, Monica ;
Houpt, Eric ;
Kosek, Margaret ;
McConnick, Benjamin J. J. ;
Yori, Pablo Penataro ;
Babji, Sudhir ;
Kang, Gagandeep ;
Lang, Dennis ;
Gottlieb, Michael ;
Samie, Amidou ;
Bessong, Pascal ;
Faruque, A. S. G. ;
Mduma, Esto ;
Nshama, Rosemary ;
Havt, Alexandre ;
Lima, Ila F. N. ;
Lima, Aldo A. M. ;
Bodhidatta, Ladaporn ;
Shreshtha, Ashish ;
Petri Jr, William A. ;
Ahmed, Tahmeed ;
Duggal, Priya .
CLINICAL INFECTIOUS DISEASES, 2018, 67 (11) :1660-1669
[56]   Antimicrobial Peptides: Diversity, Mechanism of Action and Strategies to Improve the Activity and Biocompatibility In Vivo [J].
Kumar, Prashant ;
Kizhakkedathu, Jayachandran N. ;
Straus, Suzana K. .
BIOMOLECULES, 2018, 8 (01)
[57]   A Large-Scale Structural Classification of Antimicrobial Peptides [J].
Lee, Hao-Ting ;
Lee, Chen-Che ;
Yang, Je-Ruei ;
Lai, Jim Z. C. ;
Chang, Kuan Y. .
BIOMED RESEARCH INTERNATIONAL, 2015, 2015
[58]   The dorsoventral regulatory gene cassette spatzle/Toll/cactus controls the potent antifungal response in Drosophila adults [J].
Lemaitre, B ;
Nicolas, E ;
Michaut, L ;
Reichhart, JM ;
Hoffmann, JA .
CELL, 1996, 86 (06) :973-983
[59]   Plant antimicrobial peptides: An overview about classification, toxicity and clinical applications [J].
Lima, Adrianne M. ;
Azevedo, Mayara I. G. ;
Sousa, Lyndefania M. ;
Oliveira, Nayara S. ;
Andrade, Claudia R. ;
Freitas, Cleverson D. T. ;
Souza, Pedro F. N. .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 214 :10-21
[60]   Research on the effect and mechanism of antimicrobial peptides HPRP-A1/A2 work against Toxoplasma gondii infection [J].
Liu, Ran ;
Ni, Yangyue ;
Song, Jingwei ;
Xu, Zhipeng ;
Qiu, Jingfan ;
Wang, Lijuan ;
Zhu, Yuxiao ;
Huang, Yibing ;
Ji, Minjun ;
Chen, Yuxin .
PARASITE IMMUNOLOGY, 2019, 41 (05)