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  <journal-id journal-id-type="publisher-id">58</journal-id>
  <journal-id journal-id-type="short-title">gdddr</journal-id>
  <journal-id journal-id-type="doi">10.31703/gdddr</journal-id>
  <journal-title-group>
    <journal-title>Global Drug Design &amp; Development Review</journal-title>
    <abbrev-journal-title abbrev-type="publisher">gdddr</abbrev-journal-title>
  </journal-title-group>
  <issn publication-format="print">2788-497X</issn>
  <issn publication-format="electronic">2788-4120</issn>
  <self-uri xlink:href="https://gdddrjournal.com"/>
  <publisher>
    <publisher-name>Humanity Publications</publisher-name>
    <publisher-loc>Pakistan</publisher-loc>
  </publisher>
</journal-meta>
<article-meta>
  <article-id pub-id-type="publisher-id">394051</article-id>
  <article-id pub-id-type="doi">10.31703/gdddr.2022(VII-III).04</article-id>
  <article-id pub-id-type="other" specific-use="submission-id">4520</article-id>
  <article-version article-version-type="publisher">1.0</article-version>
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    <subj-group subj-group-type="heading">
      <subject>article</subject>
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  </article-categories>
  <title-group>
    <article-title xml:lang="en">The Pharmacological Effects of Curcuma Longa Linn in Wound Healing and Relieving Inflammation</article-title>
  </title-group>
<contrib-group>
  <contrib contrib-type="author" seq="1" corresp="yes">
    <name>
      <surname>Chandio</surname>
      <given-names>Khushboo</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Conceptualization" vocab-term-identifier="https://credit.niso.org/contributor-roles/conceptualization/">Conceptualization</role>
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    <xref ref-type="aff" rid="aff1"/>
    <xref ref-type="corresp" rid="cor1"/>
  </contrib>
  <contrib contrib-type="author" seq="2">
    <name>
      <surname>Khan</surname>
      <given-names>Bashir</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff2"/>
  </contrib>
  <contrib contrib-type="author" seq="3">
    <name>
      <surname>Farooq</surname>
      <given-names>Omer</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff3"/>
  </contrib>
  <contrib contrib-type="author" seq="4">
    <name>
      <surname>Ali</surname>
      <given-names>Mubarik</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff4"/>
  </contrib>
  <contrib contrib-type="author" seq="5">
    <name>
      <surname>Mukhtar</surname>
      <given-names>Ayesha</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff5"/>
  </contrib>
  <contrib contrib-type="author" seq="6">
    <name>
      <surname>Munaam Ijaz</surname>
      <given-names>Muhammad</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff6"/>
  </contrib>
  <aff id="aff1">
    <label>1</label>
    <institution-wrap>
      <institution>Peoples Nursing School LUMHS, Jamshoro</institution>
    </institution-wrap>
    <named-content content-type="author-role">Lecturer</named-content>
    <addr-line>Sindh</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff2">
    <label>2</label>
    <institution-wrap>
      <institution>Department of Biochemistry, Pak International Medical College, Hayatabad, Peshawar</institution>
    </institution-wrap>
    <named-content content-type="author-role">Assistant Professor</named-content>
    <addr-line>KP</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff3">
    <label>3</label>
    <institution-wrap>
      <institution>MBBS, FCPS General Surgery, District Headquarter Hospital, Attock</institution>
    </institution-wrap>
    <addr-line>Punjab</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff4">
    <label>4</label>
    <institution-wrap>
      <institution>Animal Science Institute, National Agricultural Research Center</institution>
    </institution-wrap>
    <addr-line>Islamabad</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff5">
    <label>5</label>
    <institution-wrap>
      <institution>Department of Pharmacy, Hajvery University, Lahore</institution>
    </institution-wrap>
    <named-content content-type="author-role">Lecturer</named-content>
    <addr-line>Punjab</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff6">
    <label>6</label>
    <institution-wrap>
      <institution>Department of Pharmacology, Quaid-e-Azam College of Pharmacy, Pattoki</institution>
    </institution-wrap>
    <named-content content-type="author-role">Lecturer</named-content>
    <addr-line>Punjab</addr-line>
    <country>Pakistan</country>
  </aff>
</contrib-group>
<author-notes>
  <corresp id="cor1">Corresponding Author: Khushboo Chandio, Lecturer, Peoples Nursing School LUMHS, Jamshoro, Sindh, Pakistan.</corresp>
<fn fn-type="COI-statement" id="fn-coi">
  <p>The authors declare that they have no conflicts of interest.</p>
</fn>
<fn fn-type="ethics-statement" id="fn-ethics">
  <p>This study did not require formal ethics approval.</p>
</fn>
<fn fn-type="data-availability-statement" id="fn-data">
  <p>Data sharing is not applicable to this article.</p>
</fn>
</author-notes>
<pub-date pub-type="epub" date-type="pub" publication-format="electronic">
  <day>30</day>
  <month>09</month>
  <year>2022</year>
</pub-date>
<pub-date pub-type="collection">
  <month>09</month>
  <year>2022</year>
</pub-date>
<pub-date date-type="pub" publication-format="print">
  <day>06</day>
  <month>02</month>
  <year>2023</year>
</pub-date>
  <volume>7</volume>
  <issue>3</issue>
  <season>Summer</season>
  <fpage>20</fpage>
  <lpage>29</lpage>
  <history>
    <date date-type="accepted">
      <day>06</day>
      <month>02</month>
      <year>2023</year>
    </date>
  </history>
<funding-group>
  <funding-statement>
<p>The authors received no specific funding for this work.</p>
  </funding-statement>
</funding-group>
<permissions>
  <copyright-year>2022</copyright-year>
  <copyright-holder>Humanity Publications</copyright-holder>
  <license license-type="open-access" xml:lang="en" xlink:href="https://creativecommons.org/licenses/by/4.0/">
    <license-p>This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License.</license-p>
  </license>
</permissions>
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  <abstract>
    <p>Curcuma Longa is the scientific name of turmeric, a member of the Zingiberaceae family of plants. It has been used in Ayurvedic medicine in different countries since long ago. But now, it is more popularly known for its wound-healing and inflammation-relieving properties. Curcumin is the biologically active ingredient responsible for these actions of Curcuma Longa. It acts at different stages of wound healing and makes it heal more quickly. It prevents inflammation and helps the immune system of the body. It also exhibits more pharmacological properties like anti-cancerous, anti-microbial, anti-diabetic, etc. This review will explain how curcumin heals wounds and acts as an antioxidant and anti-inflammatory. Moreover, this will also shed light on the latest formulations of curcumin, treatingwounds and inflammation. Topical formulations are often used for immediate response and effect because they are very strong and provide relief quickly.</p>
  </abstract>
<kwd-group kwd-group-type="author-keywords">
  <kwd>Anti-diabetic</kwd>
  <kwd>Antioxidant</kwd>
  <kwd>Anti-microbial</kwd>
  <kwd>Anti-inflammatory</kwd>
  <kwd>Curcumin</kwd>
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</front>
<body>
<sec id="sec-1">
  <title>Introduction</title>
<p>The history of Curcuma is more than 400 years old when it was mostly used in different areas of the India-subcontinent as a famous spice and flavoring agent. It is an amorphous shape herb, with outgrowth. It was yellow from the inside as shown in Figure 1. After 200 years Vogel and Pelletier did a lot of work on it and they published what they found during their research. In their publication, they said that they had isolated a powder that seemed to be yellow-colored, and it was extracted from the rhizome of the turmeric plant. This yellow matter was properly named in the 18th century “Curcumin”. In India, it was named “Haldi” as its local name. Curcuma longa is an ancient medical plant also known as “Turmeric “in English. It has been used for more than 1000 years all over the world for various medical issues such as illness, organ disorders, internal infections, and wound injuries (Ahsan et al., 2020; Bagad, Joseph, Bhaskaran, &amp; Agarwal, 2013). It is also used after medical procedures for the healing of wounds and preventing the chance of infections as a remedy in traditional Indian and folk Tales.</p><p>This herb became the most popular folk medicine of the 19th century, being very effective in treating injuries, wounds, sprains, inflammations, swellings, and other medical issues. It became popular in India, China, the south, and the Southeast due to the properties it contributes being antiseptic, antioxidant, anti-inflammatory, and anti-microbial (Omosa, Midiwo, &amp; Kuete, 2017). The turmeric plant was used by Indians as a medicine in the past which they considered as ayurvedic tea and they used to make it by boiling rhizome of turmeric in the water or sometimes they added it to their foods directly. These rhizomes were then gathered and grounded into a smooth refined powdery structure, this haldi was used for coloring food, dying clothes, and flavoring food.</p>
</sec>
<sec id="sec-2">
  <title>Figure 1</title>
<p>Curcuma Longa Linn Physical Appearance.</p><p>It is regarded as traditional Indian edicine with anti-aging and wound-healing abilities. The powdered turmeric obtained from the rhizome was dissolved in milk and then this solution was taken by the people to treat muscular pain and cramps. It was regarded as a magical solution for reducing pain, enhancing blood circulation, increasing immunity, and promoting general wound healing process (Abbas et al., 2019; Sandur et al., 2007).  In the 19th century, Milobedzka researched Curcuma longa Linn and then in 1910, he identified the organic structure for curcumin, later it was synthesized by Lampe in 1913. Curcuma Herb is an organic compound that is bioactive in nature, also known as “diferuloylmethane”. Its chemical formula is C12H20O6 and its structural formula is given by Figure 2. It has low molecular weight and is soluble in organic solvents but soluble in aqueous solvents. It contains a definite proportion of carbohydrates, proteins fats.</p>
</sec>
<sec id="sec-3">
  <title>Figure 2</title>
<p>The Structural Formula of Curcuma longa Linn.</p><p>Curcuma longa Linn” is the botanic name of the turmeric herb, which is a perennial plant belonging to the angiosperms plant division. It is rhizomatous and belongs to the family of ginger Zingiberaceae. It has highly branched rhizomes which are yellow or orange, with alternative leaves in both rows (Barchitta et al., 2019). It is cultivated in adverse environmental conditions such as high temperatures ranging from 20-40°C. It grows in well-drained soil within a shady sun with an annual rainfall of 1500mm. It is mostly cultivated in countries like India, China, Africa, and other tropical and sub-tropical regions where the climate is wet. Turmeric herb is used worldwide. For advantages, turmeric herb is used worldwide for various purposes in kitchens, cosmetic factories, homes, and hospitals traditional spice for flavoring food, and ginger tea for taste and digestive purposes. It is used in cosmetics for skin whitening and other skin-related considerations due to its antioxidant property, it is used in various cosmetic products  (Omosa et al., 2017). It is beneficial in treating various wounds, infections, and inflammations due to its anti-inflammatory and anti-microbial qualities. It also increases blood circulation and improves the immunity system. Curcuminoids are biologically active constituents and belong to phenolic compounds composed of more than 100 individual curcuminoids which were isolated and identified from the genus Curcuma, approximately 50 of these compounds are present in C. longa (turmeric). Curcuminoids are chemically broken down in aqueous-organic solutions, particularly at alkaline pH, or in dilute solutions of curcuminoids.</p><p>Turmeric is an ancient herb that is employed for the treatment of rheumatoid arthritis, diabetic ulcers, gastrointestinal ulcers, anorexia, corneal infections, cough, and sinusitis (Fadus, Lau, Bikhchandani, &amp; Lynch, 2017). It is very useful in increasing musculature, enhancing immunity, and promoting blood circulation. Curcumin longa Linn is used in chemotherapeutic treatments for curing diabetes and malaria for the past 60 years (Barchitta et al., 2019). Curcumin plays a vital role in a variety of areas being used as a dying agent and therapeutic agent to minimize renal hypertrophy and matrix expansion. Additionally, it drastically lowers the levels of mature interleukin-1, cleaved caspase-1, and NLRP3 protein in the renal cortices of db/db mice as well as in HK-2 cells. It also inhibits the increased protein and mRNA expressions of collagen IV and fibronectin in the renal cortices.</p><p>Curcumin was used in chemotherapeutic dosage for safe and painless treatment of various types of cancers such as skin, oral, Brest, renal ovarian, and prostate cancer (Chusri et al., 2012). A synthesized form of curcumin is used to treat cancerous cells as it enhances bioavailability, due, due, due to its long half-life and cytotoxicity. It efficiently degrades tumor cells and prevents them to proliferate in other surrounding areas. Curcumin has anti-microbial properties, for a variety of bacterial and viral species. It was beneficial in increasing the spread of infection or illness by the spread of microorganisms. Curcuma longa Linn was used as a folk medicine because it helps in boosting the immune system by increasing the metabolism and regulating the optimal flow of blood between the heart and surrounding body parts (Kohli, Ali, Ansari, &amp; Raheman, 2005). So, it is very much beneficial in treating HIV, as immunity is reduced in it. Curcuma longa Linn has antioxidant properties, due to which it is frequently used to treat endothelial dysfunctions that are caused by diabetes. It happens because the chemical constituents of curcumin reduce the production of superoxides and protein kinase C. It is used in preventing diabetes and treating diabetic-induced illnesses and other health issues. It is a neurodegenerative disorder of the brain which is chronic and progressive in nature. A sudden decline in cognitive and behavioral activities is the most common symptom of Alzheimer’s. Curcumin acts as an anti-Alzheimer agent because it reduces the accumulation of amyloid ?-peptide. Common respiratory disorders such as rhinitis, sinusitis (Figure 3), bronchitis, and sore throats are effectively treated by the administration of fresh juices of rhizomes of the Curcuma plant. The special chemical constituents of curcumin also possess anti-asthmatic characteristics (Krup, Prakash, &amp; Harini, 2013).</p>
</sec>
<sec id="sec-4">
  <title>Figure 3</title>
<p>Internal Inflammation of Sinusitis, which is Treatable by Curcumin Cava.</p>
</sec>
<sec id="sec-5">
  <title>Pharmacological Role of the Herb in Healing Wounds and Inflammation</title>
<p>Curcumin is a combination of three components
including diferuloylmethane, desmethoxycurcumin, and bisdemethoxycurcumin. It contains a definite
proportion of carbohydrates, proteins fats. It has various pharmacological
effects including antioxidant, antibacterial, anti-inflammatory, protective,
anti-tumor, and anti-viral activities. It has been proved that curcumin is a
potential agent for the prevention and treatment of different cancers including
gastrointestinal, breast, lung, melanoma, head, and neck, neurological, and
sarcoma cancers. Curcumin is offered in a variety of forms, including tablets,
ointments, and capsules. 15. The US Food and Drug Administration has approved
curcumin aids, “Generally Recognized as Safe&quot; by the Food and Drug
Administration (GRAS). A wound is a type of injury
in which tissues of the body are cut, torn, or torn either due to any external
or internal cause including; road accidents, sports injuries, stair falls,
ulcers, infections, and many more. Whereas wound healing is a process of healing
and repair of injured tissues (Kulac et al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Kulac">2013</ext-link>). Various factors and agents play a crucial role in promoting the
healing of wounds. Turmeric is an ancient plant frequently used for the
treatment of wounds (Omosa et al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Omosa">2017</ext-link>). The polyphenolic constituents of Curcuma longa Linn proved
beneficial in promoting healing by accelerating the metabolic activities in the
victim. The application of Turmeric powder on the site of the wound degrades
all surrounding microorganisms and enhances platelet formation in the area
which in turn promotes phases of wound healing. Deep wound injuries cause sufficient
protein loss which may have negative effects on immunity. Adequate intake of
specific nutrients such as iron, zinc, and vitamins are necessary for the
inflammatory process to begin and to promote the synthesis of collagen fibers
in the injured area. Curcumin has anti-inflammatory and antioxidant
characteristics (Mosovska,
Petakova, Kalinak, &amp; Mikulajova, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Mosovska">2016</ext-link>), which in turn diminishes the tumor necrosis factor-alpha (TNF-)
and interleukin-1 (IL-1) expression, which may also help to balance reactive
oxygen species (ROS) (Araújo &amp; Leon, 2001). It
initially produces inflammatory cells than as the healing phase of the wound
healing is started, these inflammatory cells are undergoing the process of
apoptosis. This reduces the length of this phase, latterly accelerating the
process of wound healing (Barchitta et
al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Barchitta">2019</ext-link>).</p> <p>Recently, biomedical
applications have evidently proved that curcumin plays an important role in
wound healing. Curcumin is a natural polyphenolic antioxidant ingredient that
has recently been extensively studied for its potential use as a wound-healing
agent (Osawa,
Sugiyama, Inayoshi, &amp; Kawakishi, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Osawa">1995</ext-link>). The primary goal of wound healing is since it upholds the
integrity of tissues and homeostasis. It is proved that curcumin improves the
wound area by up to 20% (Cheppudira et
al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Cheppudira">2013</ext-link>). The anti-oxidant property of Curcumin is due to its ability to
shift electrons instantly to form two methoxy phenol groups while giving two
hydrogen atoms as well. This property is mainly due to the presence of the
b-diketone and many p electrons that have a prominent electron transfer ability
in its structure (Asakawa, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Asakawa">2012</ext-link>; Tanvir et al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Tanvir">2017</ext-link>).  Oxidants cause damage to
the body in terms of aging and several other diseases. Curcumin not only
attacks the oxidants but also stops the production of ROS in the body. Curcumin
inhibited the inflammatory response and accelerated wound healing by regulating
the enzymatic response and release of specific chemicals which promotes the
synthesis of collagen fibers. It basically decreases/suppresses the gene
expression for inflammatory cytokines which are responsible for producing
inflammation (Menon &amp;
Sudheer, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Menon">2007</ext-link>). Curcumin promotes healing in different manners either by
accelerating the remolding phase or reducing the inflammatory phase (Abdel-Lateef et
al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Abdel">2016</ext-link>). In both cases process of re-epithelialization is increased,
vascularization is improved and different cells are migrated at the wound site.
These cells are fibroblasts and myofibroblasts, which are then
phagocytosed/eaten up by the wound bed. So, we can
say that it basically provides strength to our body and helps the immune system
perform its function in defending the body against foreign attackers and
recovering from the damage caused. Here are the stages of wound healing where
curcumin plays its role in relieving inflammation as well (Table 1).</p> <p><break/></p>  <table-wrap id="table1"><label>Table 1</label><caption><title>Wound Healing Stages by Curcumin.</title></caption><table><tbody><tr><td valign="top"> <p><bold>Stages of Wound Healing</bold></p> </td><td valign="top"> <p><bold>Pharmacological Action of
  Curcumin</bold></p> </td></tr><tr><td valign="top"> <p>1.       
  Inflammation</p> </td><td valign="top"> <p>§ Play the role of antioxidant by attacking and
  neutralizing the reactive oxygen species/oxidants.</p> <p>§ Prevents the damage caused to the lipids and
  DNA by these oxidants and in this way, it leads to the healing of the wound
  in the tissues where an injury occurs.</p> <p>§ Increases inflammatory activities by acting
  on cytokines which play a crucial role in inflammation recovery.</p> </td></tr><tr><td valign="top"> <p>2.       
  Proliferation</p> </td><td valign="top"> <p>§ Curcumin provides quick tissue recovery with
  the early formation of cells and collagen at the site of injury.</p> <p>§ This also initiates apoptosis earlier to
  remove the debris so wounded tissues may heal soon.</p> </td></tr><tr><td valign="top"> <p>3.       
  Remodeling</p> </td><td valign="top"> <p>§ Initiates the formulation of interstitial
  fluid and other growth factors like TGF at the wound site so that they wound
  may contract and heal soon.</p> </td></tr></tbody></table></table-wrap>  <p><break/>
Inflammations were also treated by Curcuma in
old times as it was traditionally used by some people. Inflammation is a
painful physical condition in which there is redness and swelling in a
specified area in response to any infection or injury (Orkun, Sefa, Osman, &amp; Murat, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Orkun">2020</ext-link>). Curcumin is directly applied to the inflamed area, which results in
reducing pain and swelling. Curcumin is beneficial medicine for treating
muscular pain, ankle or wrist sprains, strains, and ligamentous injuries
besides inflammation only. Figure 4 shows the different stages of wound healing
where the action of curcumin is evident (Mohanty &amp; Sahoo, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Mohanty">2017</ext-link>).Rheumatoid Arthritis is an inflammatory disease of joints, most
commonly.</p>
</sec>
<sec id="sec-6">
  <title>Figure 4</title>
<p>The Process of Wound Healing in the Wounded Cell.</p><p>Affecting the knee joints. In this inflammatory joint disease, there is hyperplasia of fibroblastic cells of the synovial membrane (Barchitta et al., 2019). Curcumin possesses anti-inflammatory properties which are useful in treating arthritis. Insertion of curcumin within the synovial area reduces the growth process and activates the process of apoptosis to treat inflammation in the joint (Ramsewak, DeWitt, &amp; Nair, 2000). Curcumin is also used to diminish the production of various chemicals which cause inflammation such as phospholipase, thromboxane, leukotrienes, nitric-oxide, prostaglandins, collagenase, and elastase.</p>
</sec>
<sec id="sec-7">
  <title>Figure 5</title>
<p>The Healing Process of Rheumatoid Arthritis by Injecting Curcumin.</p> <p>In 2018,
Ali Alsamydai and Nisrein Jaber elaborated the pharmacological aspects of
curcumin. They have summarized their findings on the biological importance of
curcumin with respect to pharmaceuticals (Alsamydai &amp; Jaber, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Alsamydai">2018</ext-link>).
Curcumin is an herbaceous plant with clinical significance due to its chemical
constituents and their affective roles being anti-inflammatory, antioxidant,
anti-diabetic, wound healing, and anti-angiogenic. Curcumin is found to be
effective in treating deadly conditions such as cancer (Boroumand, Samarghandian, &amp; Hashemy, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Boroumand">2018</ext-link>). This
paper has focused on the biological activities of curcumin and its
effectiveness in medical sciences. Aminul Islam and Leroy Rebello have worked
with their colleagues on the nano-formulation of curcumin. In their research,
they have introduced the derived compounds of Curcuma rhizome. The study was
focused on developing a variety of nanotechnology delivery systems for the
utilization of curcuminoids (Islam, Rebello, &amp; Chepyala, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Islam">2019</ext-link>). The
original natural compound of <italic>Curcuma longa Linn</italic> was found to be
insoluble in water so due to its least absorption; it cannot be utilized to
meet the needs in various fields for specific purposes. They found that due to
the unavailability of the drug in the drug after administration,
nano-formulation of Curcumin was not effective enough but as they enhanced the
bioavailability, the availability of formulation at the target site also
increased and that’s how it became more effective (Krup et al., <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Krup">2013</ext-link>). To
meet the needs and overcome the research gaps, Aminul and Leroy described
various techniques by which drugs can be extracted from the <italic>Curcuma longa</italic>
plant in their research. Apart from the nano-formulation, many topical
formulations have been prepared and tested like films, emulsions, and
gels/hydrogels. These formulations have been useful in the case of targeted
drug delivery. These formulations are beneficial in this aspect because they
provide spontaneous effects and an alternate route of administration in order
to avoid any allergic reactions (Table 2). This review paper has thoroughly
addressed the biological effects of the chemical constituents of curcumin in
promoting human health.</p> <p><bold><break/> </bold></p>  <p><bold>Table 2. </bold>Some Topical Formulations
Prepared to Treat Wound Healing and Inflammation (Mohanty &amp;
Sahoo, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Mohanty">2017</ext-link>; Yallapu,
Nagesh, Jaggi, &amp; Chauhan, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Yallapu">2015</ext-link>).</p> <table-wrap id="table2"><label>Table 2</label><caption><title>Table 2</title></caption><table><tbody><tr><td valign="top"> <p><bold>Type of Formulation</bold></p> </td><td valign="top"> <p><bold>Route of Preparation</bold></p> </td><td valign="top"> <p><bold>Composition </bold></p> </td></tr><tr><td valign="top"> <p>1.  Film (collagen film)</p> </td><td valign="top"> <p>Cross-linking</p> </td><td valign="top"> <p>Collagen: bovine Achilles
  tendon &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>2.  Bandage</p> </td><td valign="top"> <p>Cross-linking &amp;Ions
  involving Interaction</p> </td><td valign="top"> <p>Oleic Acid, Chitosan, Salt
  of alginic acid &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>3.  Hydrogel</p> </td><td valign="top"> <p>Thin film (evaporation
  method)</p> </td><td valign="top"> <p>Oxidized salt of alginic
  acid, Chitosan, Methoxy poly (ethylene glycol)-poly(?-caprolactone) copolymer
  &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>4.  Emulsion</p> </td><td valign="top"> <p>Emulsion techniques</p> </td><td valign="top"> <p>Tween 80, Lipoid S100,
  Hydraulic acid &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>5.  Nanovesicles</p> </td><td valign="top"> <p>Sonication technique</p> </td><td valign="top"> <p>Lipoid S75, Polyethylene
  Glycol-400, Oramix &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>6.  Nanofibers</p> </td><td valign="top"> <p>Electrospinning technique</p> </td><td valign="top"> <p>Poly(?-caprolactone) Fibers
  &amp; Curcumin.</p> </td></tr><tr><td valign="top"> <p>7.  Nanocrystal (scaffolds containing
  curcumin-loaded microspheres)</p> </td><td valign="top"> <p>Solvent evaporation
  technique</p> </td><td valign="top"> <p>Collagen, Gelatin (bovine)
  &amp; Curcumin.</p> </td></tr></tbody></table></table-wrap>  <p><break/></p><p>Although <italic>Curcumin longa</italic>
(turmeric) has been used for many different things since antiquity, it has
become more of a medicinal medicine as researchers have learned about its
pharmacological qualities. Although it has a wide range of therapeutic
benefits, including anti-cancer, anti-diabetic, and anti-microbial qualities,
it’s clear and important function is in the healing of wounds and the reduction
of inflammation (Noorafshan
&amp; Ashkani-Esfahani, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Noorafshan">2013</ext-link>). When it was originally discovered that curcumin may help with
inflammation and wound healing, it wasn&apos;t immediately evident how to utilize it
or in what dosages. Eventually, a few researchers were able to create some
formulations, but these were useless because of their poor solubility qualities
(Ammon &amp;
Wahl, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Ammon">1991</ext-link>)<italic>. </italic>Researchers soon made it possible to use it for even
additional disorders after finding that bioavailability augmentation might
increase its effectiveness. It is now offered in a wide variety of topical
formulations for inflammation and wound healing.</p><p>Curcumin was found to have the potential to
influence different molecular pathways through a variety of mechanisms
including the activation of apoptosis, the regulation of survival signals, and
the prevention of reactive oxidant species (ROS). Curcumin was found to be
effective for stress management, obesity-related health issues, the effects of
aging, and the treatment of cardiovascular-related disorders (Ayman, Hassan,
Mohamed, &amp; Mohammed, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Ayman">2019</ext-link>). Curcuma Longa has been used in Ayurvedic medications for bone
healing and injuries from the old times. It was used as a Folk medicine in some
areas of India like U.P, Bihar and now in recent research, it has been found
that it possesses anti-cancerous properties as well. Curcumin is the active
ingredient of <italic>Curcuma Longa</italic> which is the cause of its potential
pharmacological activities and due to its potent pharmacophores (Liju, Jeena,
&amp; Kuttan, <ext-link ext-link-type="uri" xlink:href="file:///D:/Fulltext/GDDDR/2022/Summer/4%20The%20Pharmacological%20Effects%20of%20Curcuma%20longa%20-%20Khushboo%20Chandio.docx#Liju">2011</ext-link>).</p>
</sec>
<sec id="sec-8">
  <title>Conclusion and Future Prospects</title>
<p><break/></p>
</sec>
</body>
<back>
<fn-group content-type="conflict-of-interest">
  <title>Conflict of Interest</title>
  <fn fn-type="conflict">
<p>The authors declare that they have no conflicts of interest.</p>
  </fn>
</fn-group>
<fn-group content-type="ethics-statement">
  <title>Ethics Statement</title>
  <fn fn-type="ethics">
<p>This study did not require formal ethics approval.</p>
  </fn>
</fn-group>
<fn-group content-type="data-availability">
  <title>Data Availability</title>
  <fn fn-type="data-availability-statement">
<p>Data sharing is not applicable to this article.</p>
  </fn>
</fn-group>
<app-group>
  <app id="app-suppl">
    <title>Supplementary Materials</title>
<supplementary-material id="suppl-pdf" content-type="pdf" xlink:href="https://gdddrjournal.com/pdf/gdddr/Q5hgaO9Wz6.pdf">
  <label>PDF</label>
  <caption>
    <title>Full Text PDF</title>
  </caption>
</supplementary-material>
  </app>
</app-group>
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