# Medicinal Plants as an Alternative to Control Poultry Parasitic Diseases

**Authors:** Maria Jamil, Muhammad Tahir Aleem, Aftab Shaukat, Asad Khan, Muhammad Mohsin, Tauseef ur Rehman, Rao Zahid Abbas, Muhammad Kashif Saleemi, Aisha Khatoon, Waseem Babar, Ruofeng Yan, Kun Li

PMC · DOI: 10.3390/life12030449 · 2022-03-18

## TL;DR

This paper reviews how medicinal plants can be used as an alternative to treat parasitic infections in poultry, highlighting their potential and current research gaps.

## Contribution

The paper provides a comprehensive review of medicinal plants and their bioactive components for controlling poultry parasitic diseases.

## Key findings

- Medicinal plants offer an environment-friendly alternative to antibiotic growth promoters in poultry.
- There is a need for more research to validate the efficacy of traditional herbal medicines in treating parasitic infections.
- Herbal medicines are a promising source for developing new phytopharmaceuticals.

## Abstract

Parasitic infections are a major public health concern affecting millions of people universally. This review elaborates on the potential impacts of plants and their bioactive components that have been widely used in the cure of several parasitic infections of poultry. The medicinal importance of natural herbs depends upon their bioactive ingredients, which are originated from crude plants, consequently leading to the specific action on the body. Due to the limited availability of effective drugs and high cost, the development of drug resistance in several harmful parasites and microbes leads to huge economic losses in the poultry industry. This will impose the development of innovative sources for drugs to overwhelm the therapeutic failure. Moreover, the environment-friendly feed additives which can be applied as a substitute to antibiotic growth promoters (AGP) for broilers were proven. The application of natural products with therapeutic characteristics is an ancient practice that is appropriately gaining more acceptance. Globally, it is assessed that some 20,000 species of higher plants are used medicinally, although traditional medicine has a scarcity of knowledge on its efficiency and wellbeing. This review explores the usage of medicinal herbs for parasitic infections, emphasizing the recent knowledge available while detecting the research gaps which may be explored to find the usage of herbal medicines for parasitic infections in poultry. In conclusion, herbal medicines are the effective source of prime components for drug detection and the formation of phytopharmaceuticals in the control of devastating parasitic infections. There is a prerequisite to applying the traditional medicine information in clinical applications via value addition.

## Full-text entities

- **Genes:** ACHE (acetylcholinesterase (Cartwright blood group)) [NCBI Gene 396388]
- **Diseases:** Coccidial infection (MESH:D007239), gastrointestinal helminths (MESH:D005767), Helminthic Diseases (MESH:D004194), Avian coccidiosis (MESH:D003048), intestinal disorders (MESH:D007410), inflammatory (MESH:D007249), neglected tropical diseases (MESH:D058069), helminth species (MESH:C564159), diarrheal syndrome (MESH:D004403), gastrointestinal nematodes (MESH:D009349), tick (MESH:D013985), trichomoniasis (MESH:D014245), diabetics (MESH:D003920), Protozoal Diseases (MESH:D020808), Parasitic infections (MESH:D010272), helminthiasis (MESH:D006373), anemia (MESH:D000740), Poultry Parasitic Diseases (MESH:D011201), neurotoxic (MESH:D020258)
- **Chemicals:** oil (MESH:D009821), triterpenoids (MESH:D014315), BP (MESH:C038809), halofuginone (MESH:C010176), selenium (MESH:D012643), essential oils (MESH:D009822), amino acids (MESH:D000596), rutin (MESH:D012431), GABA (MESH:D005680), ellagic acid (MESH:D004610), Tannins (MESH:D013634), Eugenol (MESH:D005054), condensed tannins (MESH:D044945), gallic acid (MESH:D005707), Flavonoids (MESH:D005419), berberine (MESH:D001599), thymoquinone (MESH:C003466), iron (MESH:D007501), octopamine (MESH:D009655), terpenes (MESH:D013729), Neem oil (MESH:C002443), Proanthocyanidin (MESH:C013221), Saponins (MESH:D012503), nigellone (MESH:C080157), phenolic acids (MESH:C017616), allicin (MESH:C006452), febrifugine (MESH:C001207), coumarins (MESH:D003374), Acetone (MESH:D000096), anthraquinones (MESH:D000880), alkaloids (MESH:D000470), water (MESH:D014867), polyphenol (MESH:D059808), ammonia (MESH:D000641), sulfur (MESH:D013455), Maslinic acid (MESH:C412811), AGP (-)
- **Species:** Olea europaea (common olive, species) [taxon 4146], Escherichia coli (E. coli, species) [taxon 562], Malvaviscus arboreus (wax mallow, species) [taxon 93788], Eimeria acervulina (species) [taxon 5801], Sophora flavescens (species) [taxon 49840], Columbidae (pigeons, family) [taxon 8930], Haemoproteus columbae (species) [taxon 77522], Eimeria maxima (species) [taxon 5804], Ticanto crista (species) [taxon 509004], Cyamopsis tetragonoloba (cluster bean, species) [taxon 3832], Combretum indicum (Rangoon creeper, species) [taxon 3956], Nigella sativa (black-caraway, species) [taxon 555479], Staphylococcus aureus (species) [taxon 1280], Ascaridia galli (species) [taxon 46685], Nicotiana rustica (Aztec tobacco, species) [taxon 4093], Carica papaya (mamon, species) [taxon 3649], Allium cepa (onion, species) [taxon 4679], Artemisia vulgaris (common mugwort, species) [taxon 4220], Tribulus terrestris (species) [taxon 210369], Camellia sinensis (black tea, species) [taxon 4442], Dysphania ambrosioides (American wormseed, species) [taxon 330163], Berberis lycium (species) [taxon 659594], Morinda citrifolia (awl tree, species) [taxon 43522], Aloe secundiflora (species) [taxon 1593107], Allium sativum (garlic, species) [taxon 4682], Gallus gallus (bantam, species) [taxon 9031], Enterococcus casseliflavus (species) [taxon 37734], Terminalia chebula (black myrobalan, species) [taxon 155022], Arctium lappa (great burdock, species) [taxon 4217], Vitis vinifera (wine grape, species) [taxon 29760], Quercus infectoria (species) [taxon 39470], Aloe vera (acibar, species) [taxon 34199], Eimeria tenella (species) [taxon 5802], Ocimum gratissimum (species) [taxon 204144], Bidens pilosa (beggar-ticks, species) [taxon 42337], Acorus gramineus (shi chang pu, species) [taxon 55184], Coturnix coturnix (Common quail, species) [taxon 9091], Centella asiatica (Asiatic pennywort, species) [taxon 48106], Senna occidentalis (antbush, species) [taxon 126820], Piper betle (species) [taxon 13217], Thuja plicata (giant arborvitae, species) [taxon 3316], Homo sapiens (human, species) [taxon 9606], Madhuca longifolia (mahua, species) [taxon 317856], Anacardium occidentale (cashew, species) [taxon 171929], Nicotiana tabacum (American tobacco, species) [taxon 4097]

## Figures

2 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8953102/full.md

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Source: https://tomesphere.com/paper/PMC8953102