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V. Ramesh et al.
Fig. 4 Role of nutraceuticals for the management of cancer
3.5.2 Minerals andVitamins
Minerals such as selenoprotein, zinc, germanium, magne­sium, and vanadium potentially act against cancer. Selenoprotein, represses p53, acts as thioredoxin reductase by reducing NADPH of thioredoxin, decreasing the nucleo­tides in DNA synthesis, regenerating the antioxidant system, and regulating gene expression. Zinc exerts prophylactic anticancer activity by lower HDL and inhibiting free radical­induced DNA damage in cancer cells [43].
Organogermanium compounds like germanium sesqui­oxide and spirogermanium are effective in treating cancer. Germanium acts as a powerful antioxidant and anticancer agent by inhibiting the tumors’ growth, metastasis, and immunomodulating interferon-α and natural killer cell. Magnesium decreases the risk of colorectal cancer. Vanadium shows antitumor effect by stimulating tyrosine phosphorylases and/or blocking the cellular tyrosine phos­phatases which trigger the signal transduction pathways leading to activation of tumor suppressor gene and apoptosis.
Lipoperoxidation, DNA fragmentation, and cleavage lead to cell arrest and also regulate cellular adhesive molecules by exhibiting antimetastatic action and revert chemotherapeu­tic drug resistance. Vitamin E, L-glutamine, and omega-3 may help to prevent chemotherapy-induced peripheral neuropathy [44].
3.5.3 Herbs andPhytoconstituents
Herbs such as turmeric, black cumin, ginger, garlic, saffron, red chili pepper, rosemary, clove, galangal, black pepper, cinnamon, and oregano exhibit anticancer activity. Turmeric (curcumin) targets the androgen receptor with minimizes cytotoxicity on normal cell and induces apoptosis, inhibits growth and proliferation, cell invasion, and angiogenesis in breast and liver cancer cells. It also inhibits G1/S phase tran­sition, by suppressing the action of cyclin-D1 and p21­activated kinase. Black cumin (thymoquinone) induces apoptosis, suppresses growth and proliferation, migration, and cancer cell invasion. Ginger (6-shogaol) decreases
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tumorigenesis, proliferation, metastasis, and cell viability by stimulating apoptosis. Garlic (S-allyl mercaptocysteine, dial­lyl disulde, triacremonone, diallyl sulde, diallyl trisulde) inhibits tumor growth, metastasis, proliferation, DNA dam­age, and estrogen receptor-α activity by causing G2/M arrest, induces immunomodulation, promotes apoptosis, and sup­presses xenograft tumors [45].
Saffron (Crocetin and crocin) induces cell death and apoptosis, inhibits cell invasion and migration, and exhibits antioxidant and antiproliferative activity. Red chili pepper (Capsaicin), a radio-sensitizing agent, induces apoptosis, oxidative DNA damage, and cell death, inhibits prolifera­tion, migration, invasion, angiogenesis, and metastasis. Rosemary (carnosic acid) modulates apoptosis and is autophagic by degradation of human epidermal growth fac­tor receptor 2 and estrogen receptor-α, and also downregu­lates androgen receptor, suppresses cell migration and tumor growth size. Eugenol in clove suppresses cell growth and proliferation, enhances cell cycle arrest, anti-inamma­tory, apoptosis, cytochrome P450 drug metabolism enzymes activity, and improves synergistic activity with gemcitabine. Galangal (Galangin) blocks the cancer cells proliferation and stimulates cell death. Black pepper (Piperine) sup­presses cell growth, proliferation, and motility, produces apoptosis, enhances the efcacy of tumor necrosis factor­related apoptosis- inducing ligand TRAIL, and reduces androgen- dependent and independent tumor growth. Cinnamon (Cinnamaldehyde) regulates drug-metabolizing genes, thus decreasing chemotherapeutic toxicity. Carvacrol in oregano induces apoptosis and prevents proliferation in cancer cell. Boswellia serrata (boswellic acid) exhibits
anticancer by enhancing G1 phase cell cycle arrest in colon cancer cells [45].
Phytochemicals like alkaloids, polyphenols (avonols, avones, isoavones, stilbenes, ellagic acid, and anthocya­nins), and terpenoids play an essential role as nutraceuticals in the alleviation of cancer. Resveratrol, phytoalexin, and polyphenol stimulate proapoptotic effect and reduce NF-κB activation in breast and pancreatic cancer cells. Caffeic acid phenethyl ester acts as chemotherapeutic adjuvant and upregulates sodium channels, inhibits cell proliferation, invasiveness, viability, and metastasis in colorectal cancer. Moreover, it blocks binding between DNA and p65–p50 complex, which suppresses the transcription of target genes that are regulated by NF-B.Limonene exhibits synergistic anticancer activity with docetaxel in prostate cancer. Carotenoids have oxygen quenching, antioxidant, and immu­nomodulatory activity and prevent like the onset of several types of cancer [46].
3.6 Role ofNutraceuticals inOsteoporosis
Osteoporosis is a bone disorder, characterized by increase in bone loss causing bone fragility and increase in fractures risk. The etiological factors include age, race, height, gen­der, genetics, hormonal status, alcohol consumption, diet, smoking, and insufcient physical activity. Nutraceuticals such as prebiotics, probiotics, vitamins, minerals, dairy products, herbs, and phytoconstituents are benecial for general bone health and the treatment of osteoporosis [47] (Table2).
Table 2 Role of nutraceuticals for the management of osteoporosis [4749]
Sl. no Nutraceuticals Mechanism of action 1 Prebiotics (nondigestible oligosaccharides,
galacto-oligosaccharides)
2 Probiotics (Lactobacillus, Bidobacteria) Formation of a vitamins C, D, K, and folate, which become crucial for bone
3 Calcium Reduce bone loss
4 Magnesium Improves ATP production and acts as enzyme cofactor 5 Boron Enhance half-life of estrogen and vitamin D 6 Copper Increase cross-linking of lysine in elastin and collagen by activating lysyl oxidase 7 PUFA Increase calcium absorption
8 Herbaepimedii (icariin)
Improves mineral absorption to promote bone mineralization Enhances magnesium and calcium assimilation in long bone
development and related to calcium metabolism SCFAs reduce PTH which increases mineral absorption Antioxidant activity thus decreasing osteoclast differentiation Increase calcium absorption
Modulate turnover rate in bones Mobilized by PTH-mediated bone breakdown if loss of calcium from the
extracellular uid exceeds its intake via the gut
Decrease inammatory cytokines Activates PPAR-δ Blocks COX-2, IL-6, TNF-α, and PGE2 Suppress inammatory bone loss
(continued)
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(continued)
Table 2
Sl. no Nutraceuticals Mechanism of action 9 Horse tail Equisetum arvense (silica) Collagen formation promotes bone mineralization 10 Quercetin, rutin, organosulfur avonoids,
11 Alfalfa (Ipriavone) Enhancement of type 1 collagen and alkaline phosphatase by enhancing
12 Red clover (Genistein, daidzein) Inhibits topoisomerase II and tyrosine kinase
13
14 Resveratrol Reduce oxidative stress
15 Berries, plums, black cohosh (polyphenols,
16 Kaempferol and quercetin Suppress inammatory pathway
17 Basic milk protein Increases osteoblast differentiation and proliferation
18 Cystatin C Suppress cysteine protease
19 Lactoferrin (glycoprotein) Prevent osteoblast apoptosis
20 Melatonin Antioxidant activity
and limonoids
Green tea (epigallocatechin-3- gallate) Enhances osteoblast synthesis and alkaline phosphatase
25-acetylcimigenol xylopyranoside)
Antioxidant activity Decreases osteoclast activity
osteoblastogenesis Modulates secretion of β-glucuronidase and cathepsin K and L Inhibits osteoclastogenesis
Suppress osteoclast activity
Inhibit TNF-α Activates caspase-3 Suppress matrix metalloproteinase-9 Suppress IL-6 activity and RANKL expression Block osteoclast synthesis and differentiation
Reduce inammatory cytokines Modulates osteoblast and enhances osteoblastogenesis Change the expression of osteoclast genes to inhibit osteoclastogenesis Reduce osteoclastogenesis by inhibiting RANKL and TNF-α
Osteoclast-mediated bone loss
Suppress osteoclast genesis leading to bone loss
Inhibits prostaglandin E2, interleukin-1, and thrombin- dependent release of calcium from bones
Decreases osteoclast genesis Enhance bone formation Stimulates MAPK to confer rapid cell mitogenesis
Increase osteoclast metabolism Increase serum corticosteroid levels Suppress osteoclast differentiation by enhancing osteoprotegerin
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Probiotics such as Lactobacillus and Bidobacteria pro­mote the production of vitamins C, D, K, and folic acid, which boost calcium metabolism, lower PTH by increasing mineral and calcium absorption in the bone, and decrease in osteoclast differentiation. Prebiotics such as indigestible oli­gosaccharides and galactooligosaccharides improve magne­sium absorption and promote bone mineralization. Omega-3 fatty acids affect bone remodeling via calcium uptake, inammatory cytokines, and PPAR-γ. Melatonin increases serum corticosteroid levels and procollagen type I c-peptide. Minerals such as calcium, magnesium, boron, and copper protect the neuromuscular system, stabilize the half-life of estrogen and vitamin D by triggering lysyl oxidase, which causes the cross-linking of lysine into elastin. Dairy products
such as milk protein, cystatin C, and lactoferrin promote osteoblast proliferation and differentiation, prevent osteo­clast formation and bone resorption, and stimulate MAPK to cause rapid cell mitogenesis. Flavonoids such as ipriavone, genistein, daidzein, quercetin, kaempferol, luteolin, rutin, epigallocatechin-3-gallate, icariin, anthocyanidin, polyphe­nols, 25-acetylcimigenol, xylopyranoside, resveratrol, and limonoids exhibit antiosteoporotic activity. They increase alkaline phosphatase, inhibit tyrosine kinase, topoisomerase II, β-glucuronidase, and cathepsin (K and L), suppress oxi­dative stress, inammation, caspase-3, bone marrow mono­nuclear cell differentiation, and downregulate receptor activator of nuclear factor kappa beta ligand (RANKL) and TNF-α [48, 49].
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4 Conclusion
In conclusion, nutraceutical is an effective way to prevent lifestyle diseases and improve overall health prole of an individual. Nutraceuticals are the fastest growing industry which have a bright future as therapeutic agents. Many of the nutraceuticals discussed in this chapter have been shown to be not only preventive but also therapeutic for numerous life­style diseases. Nutraceuticals frequently have an advantage over synthetic medications in that they have the potential to alleviate and prevent lifestyle disorders. Phytochemicals like avonoids, alkaloids, glycosides, saponins and tannins exhibit plethora of pharmacological activities such as hepa­toprotective, neuroprotective, hypotensive, antidiabetic, anti­inammatory, antioxidant, and antiosteoporosis. They exhibit synergistic action with clinical drug therapy and act at multiple targets and bring about a holistic approach rather than targeted treatment thus minimizing dosage and adverse effects contemporary drug. However, in current scenario the role of nutraceuticals is undermined due to insufcient data on various pharmaceutical aspects. There is a need to estab­lish a nutraceutical research community to transform natural nutraceuticals into authenticated ones by addressing their enormous benets to humans as their prominence in the nutraceutical industry grows. Extensive and elaborate research on most of the nutraceuticals has mandatory to establish its effectiveness as novel treatment and prophylac­tic strategies to alleviate various lifestyle disorders.
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Eating andHealing: Traditional Food
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asMedicine
SparshaSureshBandekar andAjayGajananNamdeo
Abstract
Food being the basic building block of biology, consists of vital micronutrients that furnish energy for different life processes. In addition, foods also contain phytochem­icals responsible for their medicinal use. The integrative nature of foods as medicine has been explored and uti­lized in their indigenous habitats. Food when consumed adequately and essentially can serve as powerful medi­cine promoting health and preventing diseases through good nutrition. But the consumption of medicinal plants or traditional foods cannot be generalized because a plant showing benecial effects can also contain toxic phyto­chemicals and the amount of food should be considered for optimal effects. Also, this should not affect the sus­tainability of wild plants by overextraction. Contributions of Ayurveda and traditional systems of medicine to Food & Nutrition can help in exploring traditional foods with medicinal benets. The food resources providing nutri­ents as well as phytochemicals namely Spices, Condiments, Grains, Pulses, Vegetables, Herbs, Fruits, Berries, Teas, and Extracts can be explored with a literature- based approach to bring out the facts about the traditional foods with medicinal benets. This chapter presents a narrative about such facts supporting the theory of eating and healing with traditional foods.
Keywords
Traditional food · Phytochemicals · Health benets
S. S. Bandekar Satara College of Pharmacy, Satara, Maharashtra, India
A. G. Namdeo (*) Department of Pharmaceutical Sciences, Hemvati Nandan Bahuguna Garhwal University (A Central University), Srinagar, Uttarakhand, India
1 Introduction
Eating could be considered one of the most signicant actions of one’s everyday routine. Apart from the two other basic needs of life, food can be unarguably regarded as the top need for survival. As it is evident that deprival of food or starvation has led to health conditions, food is the rst con­tributor to health. With the advent of science, many medi­cines have been discovered that aided in health and cure for sickness. Over the past years of research in the eld of sci­ence and medicine, we have a pool of chemicals used in the mitigation or cure of various diseases and ailments.
As said earlier that food is the rst contributor to health, and ensuring the consumption of food that provides suf­cient nutritional value has proved to prevent illness in the rst place. Healthy eating is an alternative, but there are foods that provide medicinal value and have been consumed during health conditions to get rid of the disease. Such tradi­tional foods are a treasure for the health care sector as it leads to healing from eating.
What is food? Food can be considered the basic building block of biology consisting of vital micronutrients in the form of carbohydrates, proteins, fats, minerals, and vitamins that furnish energy for different life processes. It can be added now that food also consists of phytochemicals (Phyto—meaning from plant origin, chemical—here means medicinal component from the plant) that contribute to mechanisms that are responsible for the cure of diseases [1,2].
Integrative tools based on scientic evidence such as food pyramids have been suggestive of the relative consumption patterns for various foods based on the bodily requirements of humans. As this approach expands to healing foods, such tools can be suggestive of the foods essential for the human body and their serving sizes [3]. But a question that arises here is whether a single pyramid tool is suggestive of foods for all people across the globe. The Answer could be “NO” since the food availability varies across the geographical regions as well as the seasons. And especially while consid-
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023 A. K. Dhara, S. C. Mandal (eds.), Role of Herbal Medicines, https://doi.org/10.1007/978-981-99-7703-1_24
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ering healing foods, should be more integrative to incorpo­rate other considerable factors like the time of consumption and the incompatibility concerns.
The indigenous people around the world do not discrimi­nate between food & medicine. There is a continuum in the use of certain foods as medicine, especially the wild and semi-domestic ones. The integrative nature of food as medi­cine is evident in the plant as well as the animal kingdom. Though the availability of dietary supplements and nutraceu­ticals, the wholesome approach of utilizing the miraculous foods gifted to us by nature is extremely benecial [4].
Food can serve as a powerful medicine if consumed ade­quately and essentially, thus promoting health and prevent­ing diseases through good nutrition. Proper nutrition is of utmost necessity especially when a patient is sick or recovering from a disease, thus food plays its role here by contributing its bit in treating a disease. The lacuna over here is the lack of inclusion of nutrition as a prime topic in the training and practice of doctors and nurses. A sound health­care system can support the impact of food as medicine on proper healthcare management [5].
The interventions of food as medicines can be integrated with the healthcare systems through the active participation of healthcare providers in considering the impact of food recommendations to the patients and concepts like medically tailored meals and medically tailored groceries. This would lead to increased awareness among society as doctors are most trusted by the community among healthcare providers [6].
Nutritionally adequate diet plans have supported the healthcare systems for better outcomes for their patients and this has resulted in the acceleration of the “Food and Medicine” movement across the world. But there came some limitations to these initiatives due to food insecurities which have also led to the consideration of food as the basic right of humans [7].
The consumption of medicinal plants or traditional foods cannot be generalized, as certain points are necessary to be considered before their public announcement:
affect the overall health of the human [8]. Overall if we con­sider, which food is eaten and what it is composed of has the most alarming implication on health.
This chapter presents a wholistic scientic literature­based approach to bring out the facts about the traditional foods with medicinal benets which can be consumed by humans in their routine diet or otherwise under certain man­ageable circumstances. Such foods will help a healthy soci­ety that would reduce the burden on the medical sector.
2 Contributions ofAyurveda toFood
andNutrition
As per the concept of Ayurvedic nutrition, all bodily con­stituents like dosha, dhatu, and mala are formed in balance with an appropriate and wholesome diet as widely said, “we are what we eat.” As per these theories, nutrition is consid­ered to be essential for the mind as well. Ayurveda considers the consumption of three types of foods for the mind func­tions and also prescribes different diets (ahara) for the dosha constitution like Vatta, Pitta, and Kapha. There is an empha- sis on the consideration of sleep (nidra) for human well­being and the concept of Dinacharya is important for understanding the best routine for health as per Ayurveda. Ayurveda evolved as an ancient art of healing and living a healthy life from Indian Vedic Literature and has been believed in, today over the world. Indian Traditional foods have been considered to contain the necessary functional components and healing phytochemicals that translate their health benets upon consumption. Foods are classied based on their nature as cereals, pulses, fruits, vegetables, milk, alcoholic beverages, and animal products. For effective con­sumption of food, the seasonal study also makes a difference [9].
3 Traditional Systems ofMedicines
andFood
1. A plant showing benecial effects can also contain toxic phytochemicals.
2. There are cultural prescriptions that need to be consid­ered for optimal effects.
3. Promoting wild foods can affect their sustainability by overextraction [4].
Traditional and modern eating is comprised of different facets based on which an eating habit can be regarded as tra­ditional or modern. Some of the important facets include the food itself, and food composition. The secondary facets include methods of preparation, the origin of food, etc. Other facets may be mealtime and coadministered foods which can
From the time of history, natural sources of medicine are prevalent in various systems of medicine. Plant- and animal­based products have been used to treat or prevent diseases. Systems such as Ayurveda, traditional Chinese medicine, Unani, traditional Japanese medicine, Homeopathy, etc., commonly used nature-based healing. Such other traditional systems are seen in countries like Korea, Australia, Africa, and Russia. Medicines from natural sources have been researched over time and it is evident that different medicinal plants such as turmeric also have a place in the kitchen and can be administered as food without the need fora prescrip­tion from a doctor. The phytochemicals from medicinal foods and herbs are responsible for the healing properties of
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medicinal foods since human history. There is a huge devel­opment in concepts to develop drug discovery from such medicinal foods in recent years and there is the success of the researchers. Although the fact medicinal food itself is an alternative, medicine method further supports the treatments by modern medicine with a complementary approach [10,
11].
4 Medicinal Foods
Due to the use of certain foods with medicinal properties by communities for ages, it is considered safe and alongside has also led to growth in the use of functional foods and phyto­pharmaceuticals. Due to lifestyle changes and perspectives toward food processing and diet, it is necessary to collabora­tively understand the use of such medicinal foods in today’s era. Intake of food as medicine can also have the conse­quences like the interaction of the medicinal components of food and medicinal agents. Risks of food-drug and nutrient­drug interaction need to be anticipated and studied by experts before considering the generous use of such foods in patients [12].
5 Food, Nutrition, Energy, andHealth
The basic requirement of well-being is the fulllment of the bodily needs of energy through food. The secondary require­ment is to get our body ready to ght against bodily ailments through preventive medicine that ensures well-being. Tertiary to this is the cure of any disease or ailment contracted, with the use of appropriate medicine.
It is proven that the energy generated and spent in our body is associated with food intake and nutrition therein. The balance in energy in the human body is diet, nutrition, and other human factors. Foods are not just responsible for energy generation but also energy expenditure. The energy balance of foods can be in the form of different mechanisms. Foods like turmeric, ginger, green tea, cinnamon, and chili pepper are responsible for enhanced thermogenesis. Ginger, green tea, chili pepper, nuts, and cinnamon increase energy expenditure. Others like Green tea, bitter orange, and cocoa enhance oxidative metabolism. The human gut also plays an important role in the overall process of metabolism and energy generation [13].
The energy needs of the human body are incurred by the different types of foods that humans consume. Over a while, there is very little evolution or change in the foods which can sufce the needs of energy and nutrition for the human body. A study showed that of ancient diets showed that the maxi­mum energy needs of humans are obtained from Fats (35%), Carbohydrates (35%), and Proteins (30%). The maximum fat
intake and energy supply were from poly-unsaturated fatty acids, followed by saturated fats and negligible amounts of trans-fatty acids. Carbohydrate energy supply came more from uncultivated (naturally grown/organic) fruits and vege­tables (>50% carbs) and minimal amounts of grains and dairy consumption. Sugar intake was from honey or jaggery ranging to 2%. High-ber intake was there but was kept to a bare minimum of the total food. Vitamins, Minerals, and Phytochemicals intake was as high as eight times than today’s human consumption [14]. Today the scenario of the human diet has changed to a drastic level with the consump­tion of processed foods, junk, alcohol, imbalance in diet, and lifestyle changes. Minute things like freezing food items or articial methods of ripening or cultivational changes affect the overall nutrition that human receives through foods.
In addition to the physical health of humans, it is evident that food plays a vital role in the mental, emotional, and psy­chological well-being of the human. Nutrition has shown positive implications in the elevation of behavior and mood, thus in the mitigation and treatment of mental disorders. In a conference proceeding the topic of “Diet, nutrition, mental health, and well-being” was reviewed to unwind the associa­tion of food with the mental health of humans. The universal­ity of food has been considered as a modiable risk factor with which even a minute modication in the nutritional environment can be translated into larger gains in positive outcomes for the mental health and well-being of society [15]. It has been the truth of the past and from time immemo­rial, food was associated with the mental well-being of humans and thus there were etiquettes maintained in food regimes from traditional times to ensure healthy mental well-being.
6 The Food Nutrients
Major energy sources or nutrients are carbohydrates, pro­teins, and fats which are obtained from grains and pulses, meat, sh, eggs, etc. These are required for the major energy supply of the human body and to perform the vital life pro­cess within the human body.
Micronutrients like vitamins, amino acids, and minerals are obtained from various plant, animal, and mineral sources and are responsible to support the vital process of life as supplementary needs. They are required in smaller amounts and affect the overall functionality of the human body.
Apart from these, the foods provide phytochemicals that aid in the prevention and cure of diseases in humans and play a role in the maintenance of overall health. Certain classes of phytochemicals that are obtained from food resources and play a major role in the health of humans can be named Polyphenols, Phenolic acids, Flavonoids, Tannins, Aromatic Compounds, lower Terpenoids, certain Alkaloids, and
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Essential Fatty acids. Other medicinally important phyto­chemicals, like steroids, higher terpenoids, saponins, many alkaloids, glycosides, etc. are not obtained from food resources by the human body. They need to be administered in the form of medicines under the guidance of medical professionals.
The food resources can be regarded as sources of nutri­ents as well as phytochemicals can be classied into the following:
1. Spices and Condiments
2. Grains and Pulses
3. Vegetables and Herbs
4. Fruits and Berries
5. Teas and Extracts
The major source of phytochemicals can be attributed to spices and condiments followed by vegetables, herbs, fruits, berries, teas, and extracts. Since spices, condiments, and cer­tain herbs are used in minor quantities in foods and are found to be an ingredient of different medicinal preparations, this has been discussed separately with detailed emphasis.
Furthermore, the phytochemical classes that have majorly been obtained from foods and are responsible for medicinal activities are avonoids and polyphenols. Flavonoid­containing foods come from all the abovementioned resources and this again has been discussed separately.
alleviate headaches and neuralgia. Cinnamon is often com­bined with ginger to stimulate circulation and digestion. It has been regarded as a folk remedy for indurations (of the spleen, breast, uterus, liver, and stomach) and tumors (espe­cially of the abdomen, liver, and sinews) [16].
Clove got its name from the term nail “clou” due to its shape. The spice is used in Ayurveda, Chinese medicine, and Western herbalism and dentistry, where the essential oil is used as an anodyne (painkiller) for dental emergencies. Cardamom mixed with neem and camphor, is used as a nasal preparation to treat colds. An infusion of cardamom can be used as a gargle to relieve sore throats, which has led to its use in cough sweets. Cardamom pods, fried and mixed with mastic and milk, are used for bladder problems. Coriander, Fenugreek, Ginger, Garlic, and Chili are some of the tradi­tional medicines that are used for their benecial effects on health. Mint and rosemary are among the herbs and kokum fruit has also shown use traditionally [16].
Many spices and condiments have shown to provide dif­ferent medicinal benets from the foods in which they are used. Some of the important ones along with their biological source, usability in foods, phytochemical composition, and medicinal use have been provided in Table1.
Apart from Spices and Condiments, which form a major source of distinct variety of phytochemicals, the other foods also contain bioactive phytochemicals which give benecial health effects in humans. These are
7 Spices, Condiments, andHerbs
withMedicinal Value
Spices are used in cuisines in small quantities for avor, color, or as preservatives. They have a place in traditional medicine and are historically proven to be used for their medicinal benets. Spices are native to various places of the globe and are now available worldwide due to better logistics and globalization [16].
The Spices have a major place in curing and medicinal benets incurred upon them. Traditions have shown the use of spices in controlled quantities in certain foods thus obtain­ing maximum medicinal benets from them. These are among those foods which contain phytochemicals other than the basic nutrients which are responsible for medical benets and not the best nutritional benets.
Turmeric is a yellow color spicy rhizome used tradition­ally in cookery and for the cure and mitigation of various ailments. It is also known as Indian saffron and is an alterna­tive to expensive saffron. Pepper is known as the king of spices, has originated in South India, and gets its name from the Sanskrit word pipalli (for long pepper). Pepper powders can be obtained from black pepper, white pepper, red pepper, and green pepper. Cinnamon powder in water is applied to
1. Grains and Pulses
2. Vegetables and Herbs
3. Fruits and Berries
4. Teas and Extracts
One of the phytochemical classes majorly responsible for biomedical effects is Polyphenolic compounds like Flavonoids. Different avonoids and its derivatives are pres­ent in each of these food categories.
8 Foods withFlavonoids Responsible
forHealth Benets
The one prominent activity that every researcher would carry out on a new plant drug or any natural or semisynthetic drug while researching is the antioxidant activity. The in vitro antioxidant activities are carried out to test every herbal drug sample or formulation since the antioxidant potential of a drug can be a guide that the sample might show other bene­cial biological activities.
What accounts for the antioxidant activity of any plant? The major credit for the antioxidant activity in plants can be due to the polyphenolics and the avonoids or some plant pigments. Flavonoids are among those polyphenolics which
Eating andHealing: Traditional Food asMedicine
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Table 1 Spices and condiments with medicinal benets
Sr. no. Name Biological source Usability as food Type of phytochemical Medicinal use Reference
1 Turmeric Rhizomes of
2 Pepper Dried fruits of Piper
3 Long
pepper
4 Clove Flower buds of
5 Cinnamon Bark of
6 Green
cardamom
7 Black
cardamom
8 Ginger Rhizomes of
9 Garlic Bulbs of Allium
10 Coriander Dried ripe fruits and
11 Cumin Dried ripe fruits of
Curcuma longa (Zingiberaceae)
nigrum (Piperaceae)
Dried fruits of Piper
longum (Piperaceae)
Eugenia caryophyllus
(Myrtaceae)
Cinnamomum verum, C cassia, C zeylanicum, C loureirii (Lauraceae)
It consists of dried pods of Elettaria cardamomum (Zingiberaceae)
It consists of dried pods of Amomum subulactum (Zingiberaceae)
Zingiber ofcinalis (Zingiberaceae)
sativum (Liliaceae)
leaves of Coriandrum sativum (Umbelliferae)
Syzygium cumuni (Umbelliferae)
In powdered form added to Indian cuisines as a condiment, and to sweet preparations as a coloring agent
In powdered form or as a whole added to Indian cuisines as a spice, and also used as a avor enhancer
In powdered form or as a whole added to Indian cuisines as a spice, and also used as a avor enhancer
In powdered form or as a whole added to Indian cuisines as a spice, and also used for avoring
In powdered form or as a whole added to Indian cuisines as a spice, and also used for avoring
It is used as a spice powder in south Indian foods
It is used in spice powders in Bengal foods
Used in paste form or crushed form for avoring foods and cuisines, and also used in avored teas and sweets
As a whole or in paste or the crushed form used in seasoning
Used as a condiment in Indian foods
Indian spice Ellagic acid, gallic acid,
Curcuminoids Antioxidant, anticancer,
Piperine Antiproliferative, antitumor,
Piperine, piperidine, caffeic acid, quercetin, kaempferol
Phenolic compounds like eugenol, eugenol acetate, β-caryophyllene, α-humulene, gallic acid
Cinnamaldehyde, cinnamate, cinnamyl acetate, b-caryophyllene, and even some amount of eugenol
Essential oils and monoterpenes
Essential oils and monoterpenes
Gingerol, zingiberene, geranial, ar-curcumene, and b-bisabolene starch, lipids, proteins, and inorganic compounds
Allicin, allyl-alcohols, phenolics
Linalool Antimicrobial [18]
cuminaldehyde Quercetin, Kaempferol
antibacterial, anti-inammatory, neuroprotective, hepatoprotective, cardioprotective
antioxidant, antidiabetic,
anti-obesity, cardioprotective, antipyretic and anti­inammatory, antimicrobial, antiaging, and immunomodulatory effects
Digestive, appetizing agent, stomachic, antidiarrheal, in the lung, and live problems
Antimicrobial, larvicidal,
antiviral, anesthetic,
insecticidal, antioxidant, and
anticancer
Antimicrobial, antioxidant,
anti-inammatory, blood
purifying, and blood thinning
properties
Carminative, diuretic,
stomachic and digestive, gastroprotective, anti­inammatory, antibacterial, aphrodisiac
Anti-inammatory, anti­asthmatic, digestive, aphrodisiac
Aphrodisiac, digestive, antibacterial, antifungal, in nausea and vomiting, metabolic syndrome, and pain
Antibacterial, antifungal,
anticancer, antioxidant
Antioxidant, antimicrobial [18, 20]
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[17, 18]
[18, 19]
[16, 20]
[18, 21]
[18, 22]
[16]
[16]
[18, 23]
[16, 18]
(continued)