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Ryu, S. Y., Lee, C. O., & Choi, S. U., (1997). In vitro cytotoxicity of tanshinones from Salvia
miltiorrhiza. Planta Medica., 63(4), 339–342.
Schippmann, U., Leaman, D. J., & Cunningham, A. B., (2002). Impact of cultivation and
gathering of medicinal plants on biodiversity: Global trends and issues. In: Biodiversity
and the Ecosystem Approach in Agriculture, Forestry, and Fisheries (pp. 142–167). FAO. Sheela, C. G., & Augusti, K. T., (1992). Antidiabetic effects of S-allyl cysteine sulphoxide
isolated from garlic Allium sativum Linn. Indian J. Exp. Biol., 30, 523–526. Shibib, B. A., Khan, L. A., & Rahman, R., (1993). Hypoglycemic activity of Coccinia
indica and Momordica charantia in diabetic rats: Depression of the hepatic gluconeogenic
enzymes glucose-6-phosphatase and fructose-1,6-biphosphatase and elevation of liver and
red-cell shunt enzyme glucose-6-phosphate dehydrogenase. Biochem. J., 292, 267–270. Singh, R. P., & Agarwal, R., (2005). Mechanisms and preclinical efficacy of silibinin in
preventing skin cancer. European Journal of Cancer, 41(13), 1969–1979. Singh, R. P., & Agarwal, R., (2006). Prostate cancer chemoprevention by silibinin: Bench to
bedside. Molecular Carcinogenesis, 45(6), 436–442. Stervbo, U., Vang, O., & Bonnesen, (2006). C Time-and concentration-dependent effects of
resveratrol in HL-60 and HepG2 cells. Cell Proliferation, 39(6), 479–493. Tang, Z., Tang, Y., & Fu, L., (2003). Growth inhibition and apoptosis induction in human
hepatoma cells by tanshinone II A. Journal of Huazhong University of Science and
Technology Medical Science, 23, 166–8, 172. Varghese, L., Agarwal, C., Tyagi, A., Singh, R. P., & Agarwal, R., (2005). Silibinin efficacy
against human hepatocellular carcinoma. Clinical Cancer Research, 11(23), 8441–8448. Vats, V., Grover, J. K., & Rathi, S. S., (2002). Evaluation of antihyperglycemic and
hypoglycemic effect of Trigonellafoenum-graecum Linn, Ocimum sanctum Linn and
Pterocarpus marsupium Linn in normal and alloxanized diabetic rats. J. Ethnopharmacol.,
79, 95–100.
Vishal, V., Sharma, G. N., Mukesh, G., & Ranjan, B., (2014). A review on some plants having
anti-inflammatory activity. J. Phytopharmacol., 3(3), 214–221. Wadood, A., Wadood, N., & Shah, S. A., (1989). Effects of Acacia arabica and Caralluma
edulis on blood glucose levels on normal and alloxan diabetic rabbits. J. Pakistan Med.
Assoc., 39, 208–212.
Wang, X., Yuan, S., & Wang, C., (1996). A preliminary study of the anti-cancer effect of
tanshinone on hepatic carcinoma and its mechanism of action in mice. Zhonghua Zhong
Liu Za Zhi, 18(6), 412–414. Wang, X., Yuan, S., Huang, R., & Song, Y., (1996). An observation of the effect of tanshinone
on cancer cell proliferation by Brdu and PCNA labeling. Hua Xi Yi Ke Da XueXue Bao.,27,
388–391. Wellington, K., & Jarvis, B., (2001). Silymarin: A review of its clinical properties in the
management of hepatic disorders. Bio Drugs, 15, 465–489. Wu, W. L., Chang, W. L., & Chen, C. F., (1991). Cytotoxic activities of tanshinones against
human carcinoma cell lines. American Journal of Chinese Medicine, 19(3/4), 207–216. Yan, F., Tian, X. M., & Ma, X. D., (2006). Effects of resveratrol on growth inhibition and
gap-junctional intercellular communication of HepG2 cells. Nan Fang Yi Ke Da XueXue
Bao, 26(7), 963–966. Yoysungnoen, P., Wirachwong, P., Bhattarakosol, P., Niimi, H., & Patumraj, S., (2006). Effects
of curcumin on tumor angiogenesis and biomarkers, COX-2 and VEGF, in hepatocellular
Biomarkers as Targeted Herbal Drug Discovery
carcinoma cell-implanted nude mice. Clinical Hemorheology and Microcirculation,
https://t.me/medicina_free
34(1/2), 109–115. Yoysungnoen, P., Wirachwong, P., Bhattarakosol, P., Niimi, H., & Patumraj, S., (2005).
Antiangiogenic activity of curcumin in hepatocellular carcinoma cells implanted nude
mice. Clinical Hemorheology and Microcirculation, 33(2), 127–135. Yuan, S. L., Wei, Y. Q., Wang, X. J., Xiao, F., Li, S. F., & Zhang, J., (2004). Growth inhibition
and apoptosis induction of tanshinone II-A on human hepatocellular carcinoma cells. World
Journal of Gastroenterology, 10, 2024–2028. Zacharias, N. T., Sebastian, K. L., Philip, B., & Augusti, K. T., (1980). Hypoglycemic and
hypolipidaemic effects of garlic in sucrose fed rabbits. Ind. J. Physiol. Pharmacol., 24,
151–154. Zhao, B. L., Jiang, W., Zhao, Y., Hou, J. W., & Xin, W. J., (1996). Scavenging effects of Salvia
miltiorrhiza on free radicals and its protection for myocardial mitochondrial membranes
from ischemia-reperfusion injury. Biochemistry and Molecular Biology International,
38(6), 1171–1182. Zhong, Z. H., Chen, W. G., Liu, Y. H., Li, Q. X., & Qiu, Y., (2007). Inhibition of cell growth
and induction of apoptosis in human hepatoma cell line HepG2 by tanshione IIA. Zhong
Nan Da XueXue Bao Yi Xue Ban, 32, 99–103.
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CHAPTER 2
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Herbal Anti-Arthritic Drug Discovery Tool Based on Inflammatory Biomarkers
MAHFOOZUR RAHMAN,1 ANKIT SAHOO,1 and SARWAR BEG
1

Shalom Institute of Health and Allied Sciences, Sam Higginbottom University of Agriculture, Technology, and Sciences (SHUATS), Allahabad – 211007, India
2
Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard (Hamdard University), New Delhi – 110062, India
ABSTRACT
According to the American College of Rheumatology, conventional medi­cines have limited effectiveness and are highly toxic. Therefore, 60%–90% concentrate on complementary and alternative medicine and people are dissatisfied with the available therapies. Herbs have enormous potential that are not often seen in synthetic drugs of large structural complexity. Different plant constituents, including terpenoids, flavonoids, fatty acids, steroids, have investigated the anti-rheumatic action. These all target different inflam­matory mediators such as nitric oxide (NO), cytokines, chemical substances,
conformity molecules, NF-kβ, LLOX, and arachidonic acid (AA). They
often target various inflammatory mediators. The text presented details on the phytoconstituents based on targeted action on inflammatory biomarkers.
2

Rheumatoid arthritis (RA) is an immune-based joint inflammatory disorder that starts when the immune system attacks its own body tissue or bone, which
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Biomarkers as Targeted Herbal Drug Discovery
affects almost 1% of the world population. The most evince pathogenesis is T-cell activation which associated with the increase of different inflamma­tory bio-marks and a bunch of variation (CD) in the T-cells. These involve
cytokines, NF-Kβ, arachidonic, nitric oxide (NO), chemokines, lipoxygenase
(LOX), adhesion molecules, and matrix metalloproteinase (MMP) (Anderson et al., 1985). Finally, these all damage bone and cartilage by degeneration and alteration. On the basis of this interaction of bioactive such as thymoquinone, curcumin, hesperidin, gambogic acid (GA), polyphenols, celastrol, and resve­ratrol display high anti-arthritic activity against RA which is dependent on the concentration of dose via targeting inflammatory bio-marks.
RA is afliated with synovial tissue polyarticular inammation, which
leads to damage the articular cartilage and bones (Anderson et al., 1985).
Factors that inuence the progression of RA are the change in the shape of
an immunological phenomenon, environmental, and genetic and can change the shape of the immunological phenomenon (Scrivo et al., 2007). RA may
appear due to abnormal immune response leads to synovial inammation
and joint destructions, but still, its etiology is not clear (Rahman et al., 2015). T cell activation causes CD and simultaneously enhances the secretion of cytokines including TNF-a, IL-1, IL-3, IL-6, inhibitory factors, and macro-
phage migration (Ismail et al., 2015). These inammatory biomarkers are
involving in the proliferation, secretion of PGs, chemokines, and adhesion molecules (Rahman et al., 2015; Ismail et al., 2015). Whereas adhesion molecule expression causes T-cells excessive binding to synovial type B cells, results to produce a large quantity of MMP (Araki et al., 2016). For angiogenesis in aggravation of RA, there are many factors involving such as cyclooxygenase, neutral proteases, NO synthase, and group of antibodies including IgG, IgM, and IgA respectively (Firestein, 2003; Araki et al., 2016).
These all play a role in xing complements, screen macrophages, cytokines,
lymphocytes by ligating the macrophages Fc-c receptors which abnormally
lead to inammation in RA (Smolen et al., 2016; Rahman et al., 2016).
Furthermore, the IgA immune complex also involving in the production of
higher intraarticular tissue growth factor-β secretion as well as bone erosion,
results to RA symptoms (Song et al., 2014). Overall, the pathogenesis of RA involves angiogenesis, synovial cell proliferation, cellular immune system activation by B and T-cells, macrophages, and pannus formation, all these results to produces cartilage deformation and bone erosion. Thus, all these factors are actively involving in the pathogenesis of RA (Song et al.,
2014). For the management of RA, there are several drug molecules such
as glucocorticoids (GCs), non-steroidal anti-inammatory drugs (NSAIDs),
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disease-modifying anti-rheumatic drugs (DMARDs), and biological agents including IL-1 receptor antagonist (IL-1Ra) and TNF-a blockers, reduce
inammation and pain in RA (Smolen et al., 2016). However, there is a
need to develop to improve the antirheumatic drugs with the safety and
efcacy in the management of RA with fewer side effects. In the current
treatment approaches, many of the drugs are withdrawn from the market due to cardiotoxicity associated with cyclooxygenase-2 inhibitors and DMARDs associated with fungal infections, tuberculosis, liver injury, lymphomas, and myelosuppression with long term use (Cannon et al., 2004). Biologic agents act by inhibiting IL-6, IL-1ß, and TNF-a immune mediators. Despite their availability and the high cost of injectables, patients are often unable to continue biological therapy or they discontinue their medication after short­term use (Cannon et al., 2004).

According to the American College of Rheumatology, conventional medica­tion has limited efficacy and high toxicity. Nowadays people are dissatis­fied with the available conventional therapies and 60–90% of people are dependent on complementary and alternative medicines (Tamhane et al.,
2014). But herbs have great potential and no side effects with wide structural diversity which is not commonly seen with synthetic drug molecules. The various phytoconstituents such as flavonoids, terpenoids, steroids, and fatty acids have anti-RA action which has been explored (Kumar et al., 2015). These all phytoconstituents act on inflammatory mediators such as cytokines,
chemokines, NO, NF-ҡB, adhesion molecules, LOX, and arachidonic acid
(AA) (Kumar et al., 2015). It is also illustrated in Figure 2.1.
Pomegranate extracts (PE) are obtained from the fruit of Punica granatum, which contains polyphenols, ellagitannins, quercetin, gallic, and ellagic acid. The oral administration of PE prevents cartilage destruction in the arthritic rat models (Rasheed et al., 2010).
Thymoquinone (TQ) is a major bioavonoid isolated from Nigella sativa
seeds. In Far and middle-Eastern Countries, it is extensively used as an alter­native medicine to treat several diseases. Various literature surveys indicate the benets of TQ in inammation such as osteoarthritis. RA and inam­matory bowel disease (Umar et al., 2015). In a study on adjuvant-induced arthritis (AIA) conducted by Tekeoglu and Colleagues explored when TQ is administered by injection into the intraperitoneal (I.P) cavity it exhibits
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Biomarkers as Targeted Herbal Drug Discovery
the same therapeutic value as MTX (Tekeoglu et al., 2007). Another study
conrmed that TQ on oral administration at 5 mg/Kg/day leads to inhibition of the serum TNF-a and IL-1β level in RA (Ahmed et al., 2013).
Resveratrol is a polyphenolic compound present in the epidermis of grapes (Vitis vinifera). In various literatures, the medicinal use of resveratrol has been reported (Elmali et al., 2007). In Japan and China grape epidermis along with polygonum, cuspidatum roots which are rich in resveratrol are used as indigenous medicine. In rat models, resveratrol on intra-articular injection is effective against RA by retarding the level of ROS, IL-1, PGE2, tumor protein (p53), induced apoptosis, MPPs, and LTB-4 (Baur and Sinclair, 2006).
Citrus avonoid hesperidin is known for its pharmacological activity
and for its therapeutic effect. It has been extensively investigated in arthritis rat models. Studies showed that hesperidin suppresses the proliferation of synoviocytes in the model of rat adjuvant arthritis (Umar et al., 2013). When hesperidin is given an intragastric dose of 80 mg and 160 mg/kg successfully reduced secondary paw-swelling and decreased the production of TNF-a, IL-6, and IL-1 in RA (Umar et al., 2013).
Curcumin is a tetraterpenoid isolated from rhizomes of Curcuma longa. It has a broad range of pharmacological activities such as anticancer, anti-
inammatory, and antioxidant effects (Funk et al., 2006). Due to its lipid
solubility, its bioavailability is low and clinically not administrated orally. Currently, curcumin is under study for its action against RA. it suppresses
the catabolic and inammatory mediators such as stimulated NO, MMP-3,
MMP-9, IL-b, IL-8, COX-2, PGE2, when given intra-peritoneal in a dose of 23 mg total curcuminoids per kg, per day. Furthermore, it also inhibits mediators like JAK/STAT pathways, NF-ҡB, and JNK in human chondro­cytes (Zheng et al., 2015).
Camellia (family Theaceae) is a species of evergreen shrub or small tree whose leaves and leaf buds are used to produce tea. Extract of green tea shows anti-arthritic potential when given orally at 200 mg/kg. Extract of green tea contains epigallocatechin-3-gallate (EGCG) as active constituents. Whereas its administration into the arthritic rats’ results to retards the release of IL-1 induced glycosaminoglycan via blocking the activity of NF-ҡB in chondrocytes. Further­more, it also inhibits NO synthase (iNOS) which stimulated by IL-1, JNK action,
and NO. These three inammatory biomarkers induce the destruction of cartilage (Ahmed, 2010; Datta et al., 2012). Whereas the RA synovial broblasts contain
TNF-a-induced ERK (extracellular signal-regulated kinase), MMP-3, MMP-1, JNK, p38, and AP-1 are promptly inhibited by EGCG and also TNF-a-induced ERK (extracellular signal-regulated kinase), MMP-3, MMP-1, JNK, p38, and
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AP-1 and inhibits the expression of oncostatin M stimulated CCL2 chemokines
in human osteoblasts and signicantly lowers the severity of arthritis induced by
collagen (CIA). Therefore, in vitro and in vivo evaluation concluded that EGCG reduces cartilage degradation, synovial hyperplasia, and bone resorption through different targets in the affected joints (Min et al., 2015).
Trypterigium wilfordii contains pentacyclic triterpene called celastrol. It
shows anti-inammatory and anti-tumor activity (Salminen et al., 2010). In
China, T. wilfordii has traditionally been used as a treatment of RA. Salminen
et al. reported the I.P administration of xed-dose of celastrol at every day to AIA rats, which exhibits an anti-inammatory potential via inhibition of NF-ҡB activation and downregulation of caspase 1 (Salminen et al., 2010; Astry et al., 2015). Furthermore, it also down-regulated the TNF and IL-1β
secretion in a rat model of AIA. Now, this study reached to clinical trial phase 1 (Astry et al., 2015).
Sinomenine is an alkaloid isolated from the Sinomenium acutum plant, which is traditionally used in herbal medicine in Japan and China for RA. Other compounds isolated from the plant include madecassoside, asiati­coside, Asiatic acid, and centelloside. Sinomenine I.P administration of sinomenine suppressing MMP-2, MMP-9, and IL-6 in the animal model of arthritis. A recent study reported that asiaticoside successfully exhibits anti­inammatory potential by CIA mice. After oral administration of madecas­soside at 10, 20, and 40 mg/kg body weight (BW) dose in CIA mice, the
histopathology revealed that inammatory cells inltration and synovial
hyperplasia helps in providing protection against joint destruction (Tong et al., 2015).
The seeds of Vitex negundo (Nirgundi) have been widely used as a traditional Ayurvedic and Chinese herbal medicine which is rich in lignans
metabolites and used in the treatment of rheumatism and joint inammation.
The entire lignans of Vitex negundo (Nirgundi) seeds (TOV) were offered to play an important role in the treatment of arthritis (Rui et al., 2019).
TOV signicantly inhibited the paw edema and decreased the arthritis index, with no inuence on the BW and the indices of thymus and spleen of CIA rats. Meanwhile, TOV dose-dependently reduced the inltration of inammatory cells, synovial hyperplasia, and attenuated cartilage damage (Rui et al., 2019). Additionally, the serum levels of IL-1β, IL-6, IL-8, IL-17A, TNF-α, MMP-3, and MMP-9 were markedly decreased, while the level of serum IL-10 was increased in TOV-treated rats. The signicant reduction of the expression of COX-2, iNOS, and p-IκB and the notable increase of IκB in synovial tissues were also observed in TOV-treated animals (Rui et
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Biomarkers as Targeted Herbal Drug Discovery
al., 2019). TOV also signicantly inhibited acetic acid-induced writhing and
decreased xylene-induced ear edema in mice. Furthermore, due to its high
efcacy and safety, TOV can be regarded as a promising drug candidate for
RA treatment (Rui et al., 2019).
The whole dried M. pentaphylla plants were reux with 70% ethanol for its extracts. The anti-osteoarthritic effect of MPE was checked in a Sprague-
Dawley rat model of MIA-induced OA and anti-inammatory in in-vitro
lipopolysaccharide (LPS)-treated RAW264.7 cells (Lee et al., 2019). MPE
exhibited anti-inammatory activity via inhibition of the production of NO
(57.8%), PGE2 (97.1%), and IL-6 (93.2%) in LPS-treated RAW264.7 cells
at 200 μg/m L. In addition, MPE suppressed IL-1β (60.9%), TNF-α (37.9%),
and IL-6 (40.9%) production and suppressed the synthesis of MMP-2, MMP-9, and COX-2 in the MIA-induced OA rat model. Furthermore, the
results suggest that MPE has signicant anti-inammatory activity and
protects cartilage in an OA in the rat model (Lee et al., 2019).
Anoectochilus roxburghii, with rich in the polysaccharide, has been widely used as Chinese herbal medicine for the treatment of RA, liver
disease, and diabetes. Pharmacological results displayed that ARP signi­cantly ameliorated the inammatory cell inltration, decrease the arthritis
index, and the synovial tissue destruction in CIA rats (Guo et al., 2019). It also shows that ARP possessed antioxidant activity and inhibit NO produc-
tion. Further investigation showed that the anti-inammatory mechanism of ARP signicantly inhibited the activation of nuclear factor-Kβ (NF-Kβ) by
suppressing the phosphorylation of I_B and P65, which subsequently down-
regulate the mRNA expression of IL-1β and IL-6 in LPS stimulated RAW
264.7 cells. Result suggested that ARP has great potential for the treatment of type II collagen-induced arthritis (CIA) (Guo et al., 2019).
Apigenin (API) is a natural potent compound found in the avone which
is an aglycone part of the glycoside that was suggested as the suppressor of dendritic cell maturation and migration and protects against CIA. In a study found that CIA mice, API suppress arthritis development through the modu­lation of dendritic cell functions (Chang et al., 2015). Bone marrow-derived dendritic cells (BMDCs) were stimulated in vitro with LPS and treated with API for 24 hrs; DC functions, including phenotype expressions, cytokine secretion, phagocytosis, and chemotaxis, were then investigated (Chang et al., 2015). The effects of API on CIA were examined in vivo, and puried DCs from the lymph nodes (LNs) of API-treated CIA mice were analyzed for phenotypes and subsets. In in-vitro, API efciently restrained the phenotypic and functional maturation of LPS-stimulated BMDCs while maintaining
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phagocytotic capabilities. Moreover, API inhibited the chemotactic responses of LPS-stimulated BMDCs, which may be related to the depressive effect on chemokine receptor 4 (CXCR4). In in-vivo, API treatment delayed the onset and reduced the severity of arthritis in CIA mice, and diminished secretion of
pro-inammatory cytokines in the serum and supernatants from the LN cells
of the CIA mice (Chang et al., 2015). Similar to the in vitro ndings, the API- treated mice exhibited reduced expression of co-stimulatory molecules and major histocompatibility complex II on DCs. Furthermore, API treatment strongly down-regulated the number of Langerhans cells, but not plasmacy­toid DCs (pDCs) in LNs, which may be related to the depressive effect of API on the expression of CXCR4 on DCs of peripheral blood. These data provide new insight into the mechanism of action of API on arthritis and indicate that the inhibition of maturation and migration of DCs by API may contribute to its immunosuppressive effects (Chang et al., 2015). Therefore, all the above bioactive has also summarized in Table 2.1.
 Illustration of bioactive and their mechanisms involved in the management of rheumatoid arthritis.

In RA patient’s administration of high doses of vitamin E were effective in reducing pain symptoms. However, in the in-vitro studies show that foods rich in antioxidants have anti-inflammatory effects to be linked to the down-
regulation of NF-ҡB (Sukkar and Rossi, 2004).