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Authors = Sangram Dhumal

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15 pages, 1119 KiB  
Review
Jamun (Syzygium cumini (L.) Skeels) Seed: A Review on Nutritional Profile, Functional Food Properties, Health-Promoting Applications, and Safety Aspects
by Manoj Kumar, Baohong Zhang, Jyoti Nishad, Aman Verma, Vijay Sheri, Sangram Dhumal, Radha, Niharika Sharma, Deepak Chandran, Marisennayya Senapathy, Abhijit Dey, Sureshkumar Rajalingam, Muthamiselvan Muthukumar, Pran Mohankumar, Ryszard Amarowicz, Mirian Pateiro and José M. Lorenzo
Processes 2022, 10(11), 2169; https://doi.org/10.3390/pr10112169 - 23 Oct 2022
Cited by 28 | Viewed by 14455
Abstract
Jamun (Syzygium cumini L. Skeels) is highly perishable with a very short shelf life, hence, jamun fruit is either consumed fresh as soon as it is harvested or converted to value-added products such as jam, wine, juice, and jellies. The processing of [...] Read more.
Jamun (Syzygium cumini L. Skeels) is highly perishable with a very short shelf life, hence, jamun fruit is either consumed fresh as soon as it is harvested or converted to value-added products such as jam, wine, juice, and jellies. The processing of jamun fruit generates a large quantity of seeds as the primary waste. Jamun seeds are a rich source of macronutrients such as carbohydrates, proteins, lipids, minerals, and vitamins, thus making them an important ingredient in the food industry. The valorization of underutilized, nutritionally rich byproducts of the food processing industry has been providing new ways for unlocking their potential in the functional food industry or therapeutic food formulations. This review presents a detailed nutritional profile of jamun seeds and its potent application in the food industry as a possible functional ingredient. Along with its beneficial nutritional profile, the review also throws light upon the safety aspects associated with jamun seed consumption along with its acceptable daily intake. Safety and toxicity studies have motivated researchers and industrialists to search for possible applications in the food industry. Jamun seeds with array of nutritional benefits can be an important functional ingredient; however, further extensive research is necessary to find suitable levels of application of jamun seed in food products for harnessing its nutritional potential without affecting the products’ sensory palatability. Full article
(This article belongs to the Special Issue Bioactive Compounds from Food Waste and By-Products)
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20 pages, 1117 KiB  
Review
Seed Waste from Custard Apple (Annona squamosa L.): A Comprehensive Insight on Bioactive Compounds, Health Promoting Activity and Safety Profile
by Neeraj Kumari, Suraj Prakash, Manoj Kumar, Radha, Baohong Zhang, Vijay Sheri, Nadeem Rais, Deepak Chandran, Abhijit Dey, Tanmay Sarkar, Sangram Dhumal, Sunil Kumar, Dipendra Kumar Mahato, Marthandan Vishvanathan, Pran Mohankumar, Mirian Pateiro and José M. Lorenzo
Processes 2022, 10(10), 2119; https://doi.org/10.3390/pr10102119 - 18 Oct 2022
Cited by 19 | Viewed by 14626
Abstract
Annona squamosa L. (custard apple or sugar apple), belonging to the Annonaceae family, is a small tree or shrub that grows natively in subtropical and tropical regions. Seeds of the custard apple have been employed in folk medicines because of the presence of [...] Read more.
Annona squamosa L. (custard apple or sugar apple), belonging to the Annonaceae family, is a small tree or shrub that grows natively in subtropical and tropical regions. Seeds of the custard apple have been employed in folk medicines because of the presence of bioactive chemicals/compounds such as alkaloids, flavonoids and phenolic compounds and acetogenins and cyclopeptides that are responsible for various biological activities. The seeds also show the presence of tannins, vitamin C, vitamin E and a higher content of amino acids. From investigations, it has been shown that the seeds of A. squamosa have considerable potential to be used as an antibacterial, hepatoprotective, antioxidant and antitumor/anticancer agent. Cyclosquamosin B, extracted from the custard apple seed, possesses vasorelaxant properties. Tocopherols and fatty acids, notably oleic acid and linoleic acid, are also found in the seed oil. A. squamosa seeds contain a high amount of annonaceous acetogenins compounds, which are potent mitochondrial complex I inhibitors and have high cytotoxicity. A survey primarily based on the nutritional, phytochemical and biological properties showed that A. squamosa seeds can be used for the discovery of novel products, including pharmaceutical drugs. Although there are sufficient in vitro and in vivo experimental investigations supporting the benefits of seeds, clinical investigations/trials are still needed to determine the health contributing benefits of A. squamosa seeds. Full article
(This article belongs to the Special Issue Bioactive Compounds from Food Waste and By-Products)
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18 pages, 912 KiB  
Review
Aegle marmelos (L.) Correa: An Underutilized Fruit with High Nutraceutical Values: A Review
by Niharika Sharma, Radha, Manoj Kumar, Baohong Zhang, Neeraj Kumari, Daljeet Singh, Deepak Chandran, Tanmay Sarkar, Sangram Dhumal, Vijay Sheri, Abhijit Dey, Sureshkumar Rajalingam, Sabareeshwari Viswanathan, Pran Mohankumar, Marthandan Vishvanathan, Sangeetha Kizhakkumkara Sathyaseelan and Jose M. Lorenzo
Int. J. Mol. Sci. 2022, 23(18), 10889; https://doi.org/10.3390/ijms231810889 - 17 Sep 2022
Cited by 43 | Viewed by 10245
Abstract
Aegle marmelos (L.) Correa (Bael) fruit, a member of the Rutaceae family, is a major cultivated fruit plant in tropical and subtropical regions in countries of southeast Asia. Bael fruit has been a major topic for studies in recent years mainly due to [...] Read more.
Aegle marmelos (L.) Correa (Bael) fruit, a member of the Rutaceae family, is a major cultivated fruit plant in tropical and subtropical regions in countries of southeast Asia. Bael fruit has been a major topic for studies in recent years mainly due to its high nutritional (carbohydrates, proteins, minerals, and vitamins) value and presence of various phytochemicals, which attributed to its high medicinal value. These phytochemicals include various compounds, e.g., alkaloids, flavonoids, and phenolic acids (protocatechuic acid, gallic, and ellagic acid). The fruit extract of bael has been also an important study area for its pharmacological activities, including antidiarrheal, antioxidant, antidiabetic, hepatoprotective, radioprotective, anticancer, antiulcer properties. The current review mainly highlighted the nutritional and pharmacological activities of bael fruit. The nutritional profile and phytochemical profile were discussed in the review, along with their concentration in the fruit. Moreover, the experiments carried out in vivo and in vitro of bael fruit extracts with respect to their pharmacological activities were also discussed in the article. The recent literature based on nutritional and pharmacological values of bael fruit showed its high potential as a food and pharmaceutical product. Despite having high nutritional and pharmacological value, research related to molecular mechanisms of bael fruit is still limited, and clinical trials are needed to ensure its safety as a product in the food and pharma industries. Full article
(This article belongs to the Special Issue Bioactives in Fruit and Vegetables)
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32 pages, 1347 KiB  
Review
Botanicals and Oral Stem Cell Mediated Regeneration: A Paradigm Shift from Artificial to Biological Replacement
by Anami Ahuja, Pankaj Kumar Tyagi, Manoj Kumar, Naveen Sharma, Suraj Prakash, Radha, Deepak Chandran, Sangram Dhumal, Nadeem Rais, Surinder Singh, Abhijit Dey, Marisennayya Senapathy, Lejaniya Abdul Kalam Saleena, Arjun Shanavas, Pran Mohankumar, Sureshkumar Rajalingam, Yasodha Murugesan, Marthandan Vishvanathan, Sangeetha Kizhakkumkara Sathyaseelan, Sabareeshwari Viswanathan, Keerthana Krishna Kumar, Suman Natta and Mohamed Mekhemaradd Show full author list remove Hide full author list
Cells 2022, 11(18), 2792; https://doi.org/10.3390/cells11182792 - 7 Sep 2022
Cited by 3 | Viewed by 4547
Abstract
Stem cells are a well-known autologous pluripotent cell source, having excellent potential to develop into specialized cells, such as brain, skin, and bone marrow cells. The oral cavity is reported to be a rich source of multiple types of oral stem cells, including [...] Read more.
Stem cells are a well-known autologous pluripotent cell source, having excellent potential to develop into specialized cells, such as brain, skin, and bone marrow cells. The oral cavity is reported to be a rich source of multiple types of oral stem cells, including the dental pulp, mucosal soft tissues, periodontal ligament, and apical papilla. Oral stem cells were useful for both the regeneration of soft tissue components in the dental pulp and mineralized structure regeneration, such as bone or dentin, and can be a viable substitute for traditionally used bone marrow stem cells. In recent years, several studies have reported that plant extracts or compounds promoted the proliferation, differentiation, and survival of different oral stem cells. This review is carried out by following the PRISMA guidelines and focusing mainly on the effects of bioactive compounds on oral stem cell-mediated dental, bone, and neural regeneration. It is observed that in recent years studies were mainly focused on the utilization of oral stem cell-mediated regeneration of bone or dental mesenchymal cells, however, the utility of bioactive compounds on oral stem cell-mediated regeneration requires additional assessment beyond in vitro and in vivo studies, and requires more randomized clinical trials and case studies. Full article
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23 pages, 1540 KiB  
Review
Apitherapy and Periodontal Disease: Insights into In Vitro, In Vivo, and Clinical Studies
by Manoj Kumar, Suraj Prakash, Radha, José M. Lorenzo, Deepak Chandran, Sangram Dhumal, Abhijit Dey, Marisennayya Senapathy, Nadeem Rais, Surinder Singh, Phillip Kalkreuter, Rahul D. Damale, Suman Natta, Marthandan Vishvanathan, Sangeetha Kizhakkumkara Sathyaseelan, Sureshkumar Rajalingam, Sabareeshwari Viswanathan, Yasodha Murugesan, Muthamilselvan Muthukumar, Aravind Jayaraman, Murugasridevi Kalirajan, Samy Selim, Ryszard Amarowicz and Mohamed Mekhemaradd Show full author list remove Hide full author list
Antioxidants 2022, 11(5), 823; https://doi.org/10.3390/antiox11050823 - 22 Apr 2022
Cited by 15 | Viewed by 7742
Abstract
Periodontal diseases are caused mainly by inflammation of the gums and bones surrounding the teeth or by dysbiosis of the oral microbiome, and the Global Burden of Disease study (2019) reported that periodontal disease affects 20–50% of the global population. In recent years, [...] Read more.
Periodontal diseases are caused mainly by inflammation of the gums and bones surrounding the teeth or by dysbiosis of the oral microbiome, and the Global Burden of Disease study (2019) reported that periodontal disease affects 20–50% of the global population. In recent years, more preference has been given to natural therapies compared to synthetic drugs in the treatment of periodontal disease, and several oral care products, such as toothpaste, mouthwash, and dentifrices, have been developed comprising honeybee products, such as propolis, honey, royal jelly, and purified bee venom. In this study, we systematically reviewed the literature on the treatment of periodontitis using honeybee products. A literature search was performed using various databases, including PubMed, Web of Science, ScienceDirect, Scopus, clinicaltrials.gov, and Google Scholar. A total of 31 studies were reviewed using eligibility criteria published between January 2016 and December 2021. In vitro, in vivo, and clinical studies (randomized clinical trials) were included. Based on the results of these studies, honeybee products, such as propolis and purified bee venom, were concluded to be effective and safe for use in the treatment of periodontitis mainly due to their antimicrobial and anti-inflammatory activities. However, to obtain reliable results from randomized clinical trials assessing the effectiveness of honeybee products in periodontal treatment with long-term follow-up, a broader sample size and assessment of various clinical parameters are needed. Full article
(This article belongs to the Special Issue Natural Antioxidants and Oral Health)
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20 pages, 2198 KiB  
Review
Valorization Potential of Tomato (Solanum lycopersicum L.) Seed: Nutraceutical Quality, Food Properties, Safety Aspects, and Application as a Health-Promoting Ingredient in Foods
by Manoj Kumar, Deepak Chandran, Maharishi Tomar, Deep Jyoti Bhuyan, Simona Grasso, Amanda Gomes Almeida Sá, Bruno Augusto Mattar Carciofi, Radha, Sangram Dhumal, Surinder Singh, Marisennayya Senapathy, Sushil Changan, Abhijit Dey, Ravi Pandiselvam, Dipendra Kumar Mahato, Ryszard Amarowicz, Sureshkumar Rajalingam, Marthandan Vishvanathan, Lejaniya Abdul Kalam Saleena and Mohamed Mekhemar
Horticulturae 2022, 8(3), 265; https://doi.org/10.3390/horticulturae8030265 - 19 Mar 2022
Cited by 51 | Viewed by 9796
Abstract
The tomato is a member of the Solanaceae family and is a crop that is widely cultivated around the world due to its sweet, sour, salty, juicy, and nutritious berries. The processing of tomatoes generates a significant amount of waste in the form [...] Read more.
The tomato is a member of the Solanaceae family and is a crop that is widely cultivated around the world due to its sweet, sour, salty, juicy, and nutritious berries. The processing of tomatoes generates a significant amount of waste in the form of tomato pomace, which includes seeds and skin. Tomato seeds are reservoirs of various nutrients, such as proteins, carbohydrates, lipids, minerals, and vitamins. These components make tomato seeds an important ingredient for application in food matrices. This review discusses the functional food properties of tomato seeds and their scope of utilization as major ingredients in the functional food industry. In addition, this review describes the development of tomato seeds as a potential nutritional and nutraceutical ingredient, along with recent updates on research conducted worldwide. This is the first review that demonstrates the nutritional profile of tomato seeds along with its diverse functional food properties and application as a functional food ingredient. Full article
(This article belongs to the Special Issue Agro-Industrial By-Products and Their Bioactive Compounds)
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34 pages, 2106 KiB  
Review
Garlic (Allium sativum L.) Bioactives and Its Role in Alleviating Oral Pathologies
by Minnu Sasi, Sandeep Kumar, Manoj Kumar, Sandhya Thapa, Uma Prajapati, Yamini Tak, Sushil Changan, Vivek Saurabh, Shweta Kumari, Ashok Kumar, Muzaffar Hasan, Deepak Chandran, Radha, Sneh Punia Bangar, Sangram Dhumal, Marisennayya Senapathy, Anitha Thiyagarajan, Ahmad Alhariri, Abhijit Dey, Surinder Singh, Suraj Prakash, Ravi Pandiselvam and Mohamed Mekhemaradd Show full author list remove Hide full author list
Antioxidants 2021, 10(11), 1847; https://doi.org/10.3390/antiox10111847 - 21 Nov 2021
Cited by 76 | Viewed by 15948
Abstract
Garlic (Allium sativa L.) is a bulbous flowering plant belongs to the family of Amaryllidaceae and is a predominant horticultural crop originating from central Asia. Garlic and its products are chiefly used for culinary and therapeutic purposes in many countries. Bulbs of [...] Read more.
Garlic (Allium sativa L.) is a bulbous flowering plant belongs to the family of Amaryllidaceae and is a predominant horticultural crop originating from central Asia. Garlic and its products are chiefly used for culinary and therapeutic purposes in many countries. Bulbs of raw garlic have been investigated for their role in oral health, which are ascribed to a myriad of biologically active compounds such as alliin, allicin, methiin, S-allylcysteine (SAC), diallyl sulfide (DAS), S-ally-mercapto cysteine (SAMC), diallyl disulphide (DADS), diallyl trisulfide (DATS) and methyl allyl disulphide. A systematic review was conducted following the PRISMA statement. Scopus, PubMed, Clinicaltrials.gov, and Science direct databases were searched between 12 April 2021 to 4 September 2021. A total of 148 studies were included and the qualitative synthesis phytochemical profile of GE, biological activities, therapeutic applications of garlic extract (GE) in oral health care system, and its mechanism of action in curing various oral pathologies have been discussed. Furthermore, the safety of incorporation of GE as food supplements is also critically discussed. To conclude, GE could conceivably make a treatment recourse for patients suffering from diverse oral diseases. Full article
(This article belongs to the Special Issue Natural Antioxidants and Oral Health)
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38 pages, 48202 KiB  
Article
Documentation of Commonly Used Ethnoveterinary Medicines from Wild Plants of the High Mountains in Shimla District, Himachal Pradesh, India
by Pramod Prakash, Radha, Manoj Kumar, Ashok Pundir, Sunil Puri, Suraj Prakash, Neeraj Kumari, Mamta Thakur, Sonia Rathour, Radhika Jamwal, Salena Janjua, Mansoor Ali, Sneh Punia Bangar, Chhatarpal Singh, Deepak Chandran, Sureshkumar Rajalingam, Marisennayya Senapathy, Sangram Dhumal, Surinder Singh, Mahesh Kumar Samota, Rahul D. Damale, Sushil Changan, Suman Natta, Mohamd Alblihed, Attalla F. El-kott and Mohamed M. Abdel-Daimadd Show full author list remove Hide full author list
Horticulturae 2021, 7(10), 351; https://doi.org/10.3390/horticulturae7100351 - 1 Oct 2021
Cited by 47 | Viewed by 6337
Abstract
The aim of current study is to provide a significant traditional knowledge on wild medicines used for ethnoveterinary purposes in the rural area of Maraog region in district Shimla. The medicinal plants have played a significant role in the treatment of human as [...] Read more.
The aim of current study is to provide a significant traditional knowledge on wild medicines used for ethnoveterinary purposes in the rural area of Maraog region in district Shimla. The medicinal plants have played a significant role in the treatment of human as well as animal’s diseases. The rural people of the Maraog region were interviewed through a questionnaire and extensive field surveys were conducted from June 2020 to July 2021. The discussion, observations and interviews were conducted in study site and included 96 informants. The information gathered from the residents is presented in a table format and includes scientific and local names, different parts used, diseases treated and mode administration. The most commonly used taxa are calculated with used value. The study revealed 100 plants in which trees (7), shrubs (26), herbs (56), ferns (5), grasses (3) and climbers (3) were identified. The most commonly documented livestock diseases were found to be hoof infections, eyes infections, poisoning and skin infections. In the current study, the Rosaceae family was reported as being the highest number (11), followed by Asteraceae (10) and then Lamiaceae (6). It was found that leaves, roots, flowers and fruits are the commonly used parts for ethnoveterinary medications. The phytochemicals present in the plant, such as alkaloids, sterols, glycosides, flavonoids, lignin, coumarins and terpenoids, etc., may be responsible for their medicinal properties. In this documentation, it was observed that the younger generation does not have good knowledge of medicinal plants as compared to the older ones. Therefore, it is necessary to preserve the traditional knowledge of these medicinal plants before their permanent loss. The documentation and conservation of medicinal plants can be a good start for novel phytopharmacological research in the veterinary field. Full article
(This article belongs to the Collection Prospects of Using Wild Plant Species in Horticulture)
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24 pages, 1550 KiB  
Article
Therapeutic Uses of Wild Plants by Rural Inhabitants of Maraog Region in District Shimla, Himachal Pradesh, India
by Pramod Prakash, Radha, Manoj Kumar, Neeraj Kumari, Suraj Prakash, Sonia Rathour, Mamta Thakur, Radhika Jamwal, Salena Janjua, Mansoor Ali, Ashok Pundir, Sunil Puri, Sangram Dhumal, Surinder Singh, Marisennayya Senapathy, Sneh Punia Bangar, Vineet Kumar Maurya, Sushil Changan, Jagan Singh Gora, Mahesh Kumar Samota, Rahul D. Damale, Minnu Sasi, Suman Natta, Deepak Chandran, Sureshkumar Rajalingam, Nadeem Rais and Mohamed Mekhemaradd Show full author list remove Hide full author list
Horticulturae 2021, 7(10), 343; https://doi.org/10.3390/horticulturae7100343 - 24 Sep 2021
Cited by 34 | Viewed by 5844
Abstract
The main aim of this study is to document important ethnomedicinal plants from the Maraog region, located in the district of Shimla in Himachal Pradesh, India. A total of 110 medicinal plant species belonging to 102 genera and 57 families were reported from [...] Read more.
The main aim of this study is to document important ethnomedicinal plants from the Maraog region, located in the district of Shimla in Himachal Pradesh, India. A total of 110 medicinal plant species belonging to 102 genera and 57 families were reported from the study site. All of the species were collected from wild habitats. The rural people of the Maraog region were surveyed through interview methods, group discussions, and participatory observations. In the current study, data were collected from 88 informants through the snowball method. A total of 110 plant species were collected from the study area, including 64 herbs, 24 shrubs, 9 trees, 5 climbers, 3 grasses, and 5 ferns. Most of the plant species, reported from the study area, belong to the Rosaceae and Asteraceae families, each contributing 12 plant species, followed by the Lamiaceae family with 6 plant species. The most used part of the plant in the preparation of herbal medications is the leaves, which have been reported in 62 plants, followed by roots in 14 plants, and flowers and other aerial parts in 9 plants. The ethnomedicinal data were analyzed using “Use Value,” a statistical quantitative method, with Artemisia vestita having the highest use value (1.00), followed by Cannabis sativa (0.79), Rhododendron arboreum (0.79), and Datura stramonium (0.71). Older people were found to have a vast knowledge of wild medicinal plants, while the younger generation’s knowledge was lacking. As a result, traditional knowledge about the use of plants as a source of medicine has decreased day-by-day. Therefore, there is a need to document traditional ethnobotanical knowledge. The data could serve as a basis for research by pharmacological and nutraceutical industries for the development of novel drugs. Full article
(This article belongs to the Collection Prospects of Using Wild Plant Species in Horticulture)
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25 pages, 6105 KiB  
Article
Ethnomedicinal Plants Used in the Health Care System: Survey of the Mid Hills of Solan District, Himachal Pradesh, India
by Manoj Kumar, Radha, Himani Devi, Suraj Prakash, Sonia Rathore, Mamta Thakur, Sunil Puri, Ashok Pundir, Sneh Punia Bangar, Sushil Changan, Tamilselvan Ilakiya, Mahesh Kumar Samota, Rahul D. Damale, Surinder Singh, Mukesh K. Berwal, Sangram Dhumal, Anilkumar G. Bhoite, Anshu Sharma, Marisennayya Senapathy, Bharat Bhushan, Vineet Kumar Maurya, Asha, Suman Natta, Ryszard Amarowicz and Mohamed Mekhemaradd Show full author list remove Hide full author list
Plants 2021, 10(9), 1842; https://doi.org/10.3390/plants10091842 - 5 Sep 2021
Cited by 38 | Viewed by 16108
Abstract
The study was performed in the mid hills of the Dharampur region in Solan district of Himachal Pradesh, India. At the study site, a total of 115 medicinal plants were documented (38 trees, 37 herbs, 34 shrubs, 5 climbers, 1 fern, and 1 [...] Read more.
The study was performed in the mid hills of the Dharampur region in Solan district of Himachal Pradesh, India. At the study site, a total of 115 medicinal plants were documented (38 trees, 37 herbs, 34 shrubs, 5 climbers, 1 fern, and 1 grass). In the study region, extensive field surveys were performed between March 2020 and August 2021. Indigenous knowledge of wild medicinal plants was collected through questionnaires, discussions, and personal interviews during field trips. Plants with their correct nomenclature were arranged by botanical name, family, common name, habitat, parts used, routes used, and diseases treated. In the present study, the predominant family was Rosaceae, which represented the maximum number of plant species, 10, followed by Asteraceae and Lamiaceae, which represented 8 plant species. The rural inhabitants of the Dharampur region in the Solan district have been using local plants for primary health care and the treatment of various diseases for a longer time. However, information related to the traditional knowledge of medicinal plants was not documented. The rural inhabitants of the Dharampur region reported that the new generation is not so interested in traditional knowledge of medicinal plants due to modernization in society, so there is an urgent need to document ethnomedicinal plants before such knowledge becomes inaccessible and extinct. Full article
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27 pages, 3860 KiB  
Review
Plant-Based Antioxidant Extracts and Compounds in the Management of Oral Cancer
by Suraj Prakash, Radha, Manoj Kumar, Neeraj Kumari, Mamta Thakur, Sonia Rathour, Ashok Pundir, Abhishek Kumar Sharma, Sneh Punia Bangar, Sangram Dhumal, Surinder Singh, Anitha Thiyagarajan, Anshu Sharma, Munisha Sharma, Sushil Changan, Minnu Sasi, Marisennayya Senapathy, Prakash Chandra Pradhan, Nitin Kumar Garg, Tamilselvan Ilakiya, Mukesh Nitin, Mohamed M. Abdel-Daim, Sunil Puri, Suman Natta, Abhijit Dey, Ryszard Amarowicz and Mohamed Mekhemaradd Show full author list remove Hide full author list
Antioxidants 2021, 10(9), 1358; https://doi.org/10.3390/antiox10091358 - 26 Aug 2021
Cited by 43 | Viewed by 8164
Abstract
Oral cancer continues to be a leading cause of death worldwide, and its prevalence is particularly high in developing countries, where people chew tobacco and betel nut on a regular basis. Radiation-, chemo-, targeted-, immuno-, and hormone-based therapies along with surgery are commonly [...] Read more.
Oral cancer continues to be a leading cause of death worldwide, and its prevalence is particularly high in developing countries, where people chew tobacco and betel nut on a regular basis. Radiation-, chemo-, targeted-, immuno-, and hormone-based therapies along with surgery are commonly used as part of a treatment plan. However, these treatments frequently result in various unwanted short- to long-term side effects. As a result, there is an urgent need to develop treatment options for oral cancer that have little or no adverse effects. Numerous bioactive compounds derived from various plants have recently attracted attention as therapeutic options for cancer treatment. Antioxidants found in medicinal plants, such as vitamins E, C, and A, reduce damage to the mucosa by neutralizing free radicals found in various oral mucosal lesions. Phytochemicals found in medicinal plants have the potential to modulate cellular signalling pathways that alter the cellular defence mechanisms to protect normal cells from reactive oxygen species (ROS) and induce apoptosis in cancer cells. This review aims to provide a comprehensive overview of various medicinal plants and phytoconstituents that have shown the potential to be used as oral cancer therapeutics. Full article
(This article belongs to the Special Issue Natural Antioxidants and Oral Health)
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16 pages, 613 KiB  
Article
Evaluation of Nutritional, Phytochemical, and Mineral Composition of Selected Medicinal Plants for Therapeutic Uses from Cold Desert of Western Himalaya
by Radha, Manoj Kumar, Sunil Puri, Ashok Pundir, Sneh Punia Bangar, Sushil Changan, Poonam Choudhary, E. Parameswari, Ahmad Alhariri, Mahesh Kumar Samota, Rahul D. Damale, Surinder Singh, Mukesh K. Berwal, Sangram Dhumal, Anilkumar G. Bhoite, M. Senapathy, Anshu Sharma, Bharat Bhushan and Mohamed Mekhemar
Plants 2021, 10(7), 1429; https://doi.org/10.3390/plants10071429 - 13 Jul 2021
Cited by 86 | Viewed by 9086
Abstract
The aim of this study was to determine the elemental and nutritive values of leaf parts of 10 selected wild medicinal plants, Acer pictum, Acer caecium, Betula utilis, Oxalis corniculata, Euphorbia pilosa, Heracleum lanatum, Urtica dioica, Berberis lycium, Berberis asiaticaand, and [...] Read more.
The aim of this study was to determine the elemental and nutritive values of leaf parts of 10 selected wild medicinal plants, Acer pictum, Acer caecium, Betula utilis, Oxalis corniculata, Euphorbia pilosa, Heracleum lanatum, Urtica dioica, Berberis lycium, Berberis asiaticaand, and Quercus ilex, collected from the high hills of the Chitkul range in district Kinnaur, Western Himalaya. The nutritional characteristics of medicinal plant species were analyzed by using muffle furnace and micro-Kjeldahl methods, and the mineral content in plants was analyzed through atomic absorption spectrometry. The highest percentage of used value was reported in Betula utilis (0.42) and the lowest in Quercus ilex (0.17). In this study, it was found that new generations are not much interested in traditional knowledge of ethnomedicinal plants due to modernization in society. Therefore, there is an urgent need to document ethnomedicinal plants along with their phytochemical and minerals analysis in study sites. It was found that rural people in western Himalaya are dependent on wild medicinal plants, and certain steps must be taken to conserve these plants from extinction in the cold desert of Himalayan region. They are an alternative source of medicine because they contain saponin, alkaloid, and flavonoid etc. as well as minerals. The leaves used for analysis possesses good mineral content, such as Na, N, K, P, Zn, Fe, Cu, Mn, Ca, Mg, and S. Hence, in the current study it was observed that medicinal plants are not only used for therapeutic purposes, but they can also be used as nutritional supplements. Full article
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32 pages, 1566 KiB  
Review
Beneficial Role of Antioxidant Secondary Metabolites from Medicinal Plants in Maintaining Oral Health
by Manoj Kumar, Suraj Prakash, Radha, Neeraj Kumari, Ashok Pundir, Sneh Punia, Vivek Saurabh, Poonam Choudhary, Sushil Changan, Sangram Dhumal, Prakash Chandra Pradhan, Omar Alajil, Sudha Singh, Neha Sharma, Tamilselvan Ilakiya, Surinder Singh and Mohamed Mekhemar
Antioxidants 2021, 10(7), 1061; https://doi.org/10.3390/antiox10071061 - 30 Jun 2021
Cited by 84 | Viewed by 12399
Abstract
Plant-derived phytochemicals have been touted as viable substitutes in a variety of diseases. All over the world, dentists have turned to natural remedies for dental cure due to the negative possessions of certain antibacterial mediators used in dentistry. Antimicrobial and other drugs are [...] Read more.
Plant-derived phytochemicals have been touted as viable substitutes in a variety of diseases. All over the world, dentists have turned to natural remedies for dental cure due to the negative possessions of certain antibacterial mediators used in dentistry. Antimicrobial and other drugs are currently in use, but they show some side effects. Since ancient times, antioxidant EOs have been used for different ailments and have grown in popularity over time. Several in vitro, in vivo, and clinical trials have shown the safety and effectiveness of antioxidant essential oils (EOs) in oral health obtained from medicinal plants. The current review of literature provides a summary of secondary metabolites, more specifically EOs from 20 most commonly used medicinal plants and their applications in maintaining oral health. Dental caries and periodontal diseases are the most common and preventable global infectious diseases, with diseases of the oral cavity being considered major diseases affecting a person’s health. Several clinical studies have shown a connection between oral diseases and oral microbiota. This review discusses the role of antioxidant secondary metabolites in inhibiting the growth of oral pathogens and reducing the formation of dental plaque, and as well as reducing the symptoms of oral diseases. This review article contributes a basic outline of essential oils and their healing actions. Full article
(This article belongs to the Special Issue Natural Antioxidants and Oral Health)
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22 pages, 2275 KiB  
Review
Custard Apple (Annona squamosa L.) Leaves: Nutritional Composition, Phytochemical Profile, and Health-Promoting Biological Activities
by Manoj Kumar, Sushil Changan, Maharishi Tomar, Uma Prajapati, Vivek Saurabh, Muzaffar Hasan, Minnu Sasi, Chirag Maheshwari, Surinder Singh, Sangram Dhumal, Radha, Mamta Thakur, Sneh Punia, Varsha Satankar, Ryszard Amarowicz and Mohamed Mekhemar
Biomolecules 2021, 11(5), 614; https://doi.org/10.3390/biom11050614 - 21 Apr 2021
Cited by 86 | Viewed by 24711
Abstract
Annona squamosa L. (custard apple) belongs to the family Annonaceae and is an important tropical fruit cultivated in the West Indies, South and Central America, Ecuador, Peru, Brazil, India, Mexico, the Bahamas, Bermuda, and Egypt. Leaves of custard apple plants have been studied [...] Read more.
Annona squamosa L. (custard apple) belongs to the family Annonaceae and is an important tropical fruit cultivated in the West Indies, South and Central America, Ecuador, Peru, Brazil, India, Mexico, the Bahamas, Bermuda, and Egypt. Leaves of custard apple plants have been studied for their health benefits, which are attributed to a considerable diversity of phytochemicals. These compounds include phenol-based compounds, e.g., proanthocyanidins, comprising 18 different phenolic compounds, mainly alkaloids and flavonoids. Extracts from Annona squamosa leaves (ASLs) have been studied for their biological activities, including anticancer, antidiabetic, antioxidant, antimicrobial, antiobesity, lipid-lowering, and hepatoprotective functions. In the current article, we discussed the nutritional and phytochemical diversity of ASLs. Additionally, ASL extracts were discussed with respect to their biological activities, which were established by in vivo and in vitro experiments. A survey of the literature based on the phytochemical profile and health-promoting effects of ASLs showed that they can be used as potential ingredients for the development of pharmaceutical drugs and functional foods. Although there are sufficient findings available from in vitro and in vivo investigations, clinical trials are still needed to determine the exact effects of ASL extracts on human health. Full article
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23 pages, 2710 KiB  
Review
Mango (Mangifera indica L.) Leaves: Nutritional Composition, Phytochemical Profile, and Health-Promoting Bioactivities
by Manoj Kumar, Vivek Saurabh, Maharishi Tomar, Muzaffar Hasan, Sushil Changan, Minnu Sasi, Chirag Maheshwari, Uma Prajapati, Surinder Singh, Rakesh Kumar Prajapat, Sangram Dhumal, Sneh Punia, Ryszard Amarowicz and Mohamed Mekhemar
Antioxidants 2021, 10(2), 299; https://doi.org/10.3390/antiox10020299 - 16 Feb 2021
Cited by 142 | Viewed by 32257
Abstract
Mangifera indica L. belongs to the family of Anacardiaceae and is an important fruit from South and Southeast Asia. India, China, Thailand, Indonesia, Pakistan, Mexico, Brazil, Bangladesh, Nigeria, and the Philippines are among the top mango producer countries. Leaves of the mango plant [...] Read more.
Mangifera indica L. belongs to the family of Anacardiaceae and is an important fruit from South and Southeast Asia. India, China, Thailand, Indonesia, Pakistan, Mexico, Brazil, Bangladesh, Nigeria, and the Philippines are among the top mango producer countries. Leaves of the mango plant have been studied for their health benefits, which are attributed to a plethora of phytochemicals such as mangiferin, followed by phenolic acids, benzophenones, and other antioxidants such as flavonoids, ascorbic acid, carotenoids, and tocopherols. The extracts from mango leaves (MLs) have been studied for their biological activities, including anti-cancer, anti-diabetic, anti-oxidant, anti-microbial, anti-obesity, lipid-lowering, hepato-protection, and anti-diarrheal. In the present review, we have elaborated on the nutritional and phytochemical profile of the MLs. Further, various bioactivities of the ML extracts are also critically discussed. Considering the phytochemical profile and beneficial effects of the MLs, they can be used as a potential ingredient for the development of functional foods and pharmaceutical drugs. However, more detailed clinical trials still needed to be conducted for establishing the actual efficacy of the ML extracts. Full article
(This article belongs to the Special Issue Antioxidant and Biological Properties of Plant Extracts)
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