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Sessions | Pharmaceutical Chemistry and Potency Conference

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margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif"><span style="font-size:12.0pt"><span style="font-family:&quot;Times New Roman&quot;,serif">Pharmacokinetics is the branch of <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">pharmacology</a> that studies how drugs move through the body over time. It encompasses four main processes: Absorption, Distribution, Metabolism, And Excretion (ADME). Absorption involves the entry of the drug into the bloodstream, while distribution refers to its transport to various tissues and organs. <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">Metabolism</a>, primarily occurring in the liver, transforms the drug into metabolites, which may be active or inactive. Finally, excretion removes the drug or its metabolites from the body, mainly via the kidneys. Understanding pharmacokinetics is essential for determining dosing, efficacy, and safety, ensuring drugs reach their <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">target site</a> at optimal concentrations.</span></span></span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading2"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse2" aria-expanded="false" aria-controls="collapse2"> Drug synthesis </a> </h4> </div> <div id="collapse2" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading2"> <div class="panel-body"> <p><b>Drug synthesis</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Drug synthesis is the process of creating chemical compounds that have potential therapeutic benefits. It involves designing and constructing molecules through various chemical reactions, often guided by Structure-Activity Relationship (SAR) studies. The process starts with lead identification, followed by optimization to enhance <a href="https://www.sciconx.com/pharma" style="color:blue; text-decoration:underline">efficacy</a>, potency, and safety. Organic synthesis techniques, including multistep reactions and catalytic methods, are commonly used to build complex drug molecules. Advanced technologies like computer-aided drug design (CADD) and <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">green chemistry</a> principles are increasingly applied to make synthesis more efficient and sustainable. The final products undergo rigorous testing to ensure their <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">stability</a>, purity, and pharmacological activity.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading3"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse3" aria-expanded="false" aria-controls="collapse3"> Potency assays </a> </h4> </div> <div id="collapse3" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading3"> <div class="panel-body"> <p><b>Potency assays</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Potency assays are laboratory tests designed to measure the biological activity of a drug or compound, indicating its efficacy in producing a desired effect at a specific concentration. These assays are critical in drug development and <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">quality control</a>, ensuring that pharmaceutical products meet efficacy standards. Potency can be assessed through various methods, such as <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">cell-based assays</a>, biochemical assays, or animal models, depending on the drug&#39;s mechanism of action. Accurate potency measurements help determine dosage guidelines and are essential for comparing the effectiveness of different batches or formulations. Robust potency assays ensure consistency, safety, and <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">therapeutic</a> value in pharmaceutical products.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading4"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse4" aria-expanded="false" aria-controls="collapse4"> Chemical stability </a> </h4> </div> <div id="collapse4" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading4"> <div class="panel-body"> <p><b>Chemical stability</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Chemical stability refers to a substance&#39;s ability to maintain its chemical structure and properties over time under specified conditions. In <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">pharmaceuticals</a>, assessing chemical stability is crucial for ensuring that drugs remain safe, effective, and consistent throughout their shelf life. Instabilities can result in degradation, forming harmful byproducts or losing potency. Factors influencing stability include temperature, light, humidity, and pH. Stability testing involves controlled studies to evaluate these effects and guide storage recommendations, <a href="https://www.sciconx.com/pharma" style="color:blue; text-decoration:underline">packaging choices</a>, and expiration dates. Understanding and maintaining chemical stability is vital for drug <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">formulation</a>, regulatory approval, and patient safety, ensuring that medications deliver the intended therapeutic effect.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading5"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse5" aria-expanded="false" aria-controls="collapse5"> Pharmacodynamics </a> </h4> </div> <div id="collapse5" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading5"> <div class="panel-body"> <p><b>Pharmacodynamics</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Pharmacodynamics is the study of how drugs interact with biological systems to produce a therapeutic effect. It focuses on the relationship between <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">drug concentration</a> at the site of action and the resulting biological response, describing the drug&rsquo;s mechanism of action. Key aspects include <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">receptor binding</a>, signal transduction pathways, and the dose-response relationship, which help determine a drug&#39;s efficacy and potency. Pharmacodynamics also explores therapeutic and toxic effects, aiding in understanding the <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">optimal dosage</a> for achieving the desired outcome while minimizing side effects. This knowledge is essential for drug development and clinical practice, ensuring safe and effective medication use in patients.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading6"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse6" aria-expanded="false" aria-controls="collapse6"> Medicinal chemistry </a> </h4> </div> <div id="collapse6" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading6"> <div class="panel-body"> <p><b>Medicinal chemistry</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif"><a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">Medicinal chemistry</a> is a multidisciplinary field that combines chemistry, pharmacology, and biology to design, synthesize, and optimize pharmaceutical compounds. It focuses on the development of new drugs by modifying <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">molecular</a> structures to enhance their efficacy, selectivity, and safety. Medicinal chemists study the interaction between drug molecules and biological targets, such as proteins or enzymes, to understand mechanisms of action. This field also involves optimizing the <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">pharmacokinetic</a> and pharmacodynamics properties of compounds. By applying principles of organic chemistry and <a href="https://www.sciconx.com/pharma" style="color:blue; text-decoration:underline">biochemistry</a>, medicinal chemistry plays a crucial role in the discovery of new treatments for various diseases and improving existing therapies.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading7"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse7" aria-expanded="false" aria-controls="collapse7"> Biopharmaceuticals </a> </h4> </div> <div id="collapse7" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading7"> <div class="panel-body"> <p><b>Biopharmaceuticals</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Biopharmaceuticals are therapeutic products derived from <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">biological sources</a>, such as proteins, antibodies, vaccines, and cell-based therapies, used in the treatment of diseases. Unlike traditional small-molecule drugs, biopharmaceuticals are typically large, complex molecules produced through biotechnological processes like recombinant <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">DNA technology</a> or monoclonal antibody production. They are designed to target specific biological pathways or molecules, offering targeted treatments with higher <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">precision</a>. Biopharmaceuticals are commonly used in the treatment of cancers, autoimmune disorders, and genetic diseases. Their development requires rigorous testing for efficacy, safety, and stability, and they often require specialized production and storage conditions due to their sensitive nature.</span></span></p> <p style="margin-left:0cm; margin-right:0cm; text-align:justify">&nbsp;</p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading8"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse8" aria-expanded="false" aria-controls="collapse8"> Pharmaceutical crystallography </a> </h4> </div> <div id="collapse8" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading8"> <div class="panel-body"> <p><b>Pharmaceutical crystallography</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Pharmaceutical <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">crystallography</a> is the study of the crystalline form of pharmaceutical compounds using X-ray diffraction and other techniques. This field plays a crucial role in understanding the molecular structure, <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">polymorphism</a>, and stability of drug substances. By analyzing the arrangement of atoms in a crystalline lattice, crystallography provides insights into a drug&#39;s physical properties, such as solubility, <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">dissolution rate</a>, and stability. Identifying the most stable and bioavailable crystal form is essential in drug formulation, as it can significantly affect a drug&rsquo;s efficacy and safety. Pharmaceutical crystallography is vital in the development of high-quality and consistent drug products.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading9"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse9" aria-expanded="false" aria-controls="collapse9"> Chemical synthesis automation </a> </h4> </div> <div id="collapse9" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading9"> <div class="panel-body"> <p><b>Chemical synthesis automation</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Chemical synthesis automation refers to the use of robotic systems, artificial intelligence, and advanced machinery to perform chemical reactions and synthesize compounds with minimal human <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">intervention</a>. This technology streamlines the synthesis process, improving efficiency, reproducibility, and safety in laboratories and <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">manufacturing</a>. Automation allows for precise control over reaction conditions, reducing errors and optimizing yield. In pharmaceutical development, automated systems enable the rapid and consistent production of drug candidates, accelerating the drug discovery process. Additionally, automation can facilitate high-throughput screening and the synthesis of complex molecules, enhancing <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">productivity</a> and reducing costs in pharmaceutical research and production.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading10"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse10" aria-expanded="false" aria-controls="collapse10"> Clinical efficacy and potency </a> </h4> </div> <div id="collapse10" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading10"> <div class="panel-body"> <p><b>Clinical efficacy and potency</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Clinical efficacy and potency are key measures in evaluating a drug&#39;s therapeutic value. <strong><span style="font-family:&quot;Calibri&quot;,sans-serif">Clinical efficacy</span></strong> refers to the drug&#39;s ability to produce the desired therapeutic effect in a clinical setting, typically determined through <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">clinical trials</a>. It assesses how well the drug works to treat or manage a condition in real-world patients. <strong><span style="font-family:&quot;Calibri&quot;,sans-serif">Potency</span></strong>, on the other hand, is a pharmacological term that indicates the drug&#39;s strength or concentration required to produce a specific effect. A <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">highly potent</a> drug achieves the desired effect at lower doses. Both efficacy and potency are critical in determining the appropriate dosage, safety, and overall <a href="https://www.sciconx.com/pharma" style="color:blue; text-decoration:underline">success</a> of a drug.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading11"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse11" aria-expanded="false" aria-controls="collapse11"> Drug delivery systems </a> </h4> </div> <div id="collapse11" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading11"> <div class="panel-body"> <p><b>Drug delivery systems</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Drug Delivery Systems (DDS) are technologies designed to transport pharmaceutical compounds to their intended <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">site of action</a> in the body, optimizing therapeutic effects while minimizing side effects. These systems control the release, absorption, and distribution of drugs, enhancing their bioavailability and stability. Common types of DDS include oral, injectable, transdermal, and implantable systems, as well as novel approaches like nanoparticle-based delivery, <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">liposomes</a>, and microneedles. Advanced DDS improve the precision of <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">drug administration</a>, allow for controlled release over time, and can target specific tissues or cells, making them essential for treating chronic diseases, cancer, and other complex conditions.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading12"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse12" aria-expanded="false" aria-controls="collapse12"> Pharmacological profiling </a> </h4> </div> <div id="collapse12" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading12"> <div class="panel-body"> <p><b>Pharmacological profiling</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Pharmacological profiling is the process of evaluating a drug&#39;s effects, mechanisms of action, and potential therapeutic benefits through various <em>in vitro</em> and <em>in vivo </em>tests. It involves assessing a compound&#39;s <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">interaction</a> with biological targets, such as receptors, enzymes, and ion channels, to determine its efficacy, potency, and safety. Profiling also includes testing for toxicity, <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">side effects</a>, and the drug&rsquo;s pharmacokinetic properties, like Absorption, Distribution, Metabolism, And Excretion (ADME). This comprehensive analysis helps to identify the most promising drug candidates, guiding their development, optimizing <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">dosage regimens</a>, and ensuring their clinical success in treating specific diseases.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading13"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse13" aria-expanded="false" aria-controls="collapse13"> Potency determination </a> </h4> </div> <div id="collapse13" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading13"> <div class="panel-body"> <p><b>Potency determination</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Potency determination is the process of assessing a drug&#39;s <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">ability</a> to produce a desired biological effect at a specific concentration or dose. It is typically measured through <em>in vitro</em> or <em>in vivo</em> assays, which evaluate the drug&#39;s interaction with its target, such as receptors or <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">enzymes</a>. Potency is often quantified using parameters like IC50 (the concentration required to inhibit a biological process by 50%) or EC50 (the concentration needed for half-maximum effect). Accurate potency determination is crucial for drug development, as it helps in optimizing dosing regimens, ensuring therapeutic efficacy, and minimizing side effects in <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">clinical use</a>.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading14"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse14" aria-expanded="false" aria-controls="collapse14"> Potency testing </a> </h4> </div> <div id="collapse14" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading14"> <div class="panel-body"> <p><b>Potency testing</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif"><a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">Potency testing</a> is a critical process in drug development used to evaluate the biological activity and effectiveness of a drug at specific concentrations. It involves determining how well a compound interacts with its target, such as a receptor or enzyme, to produce the desired effect. Potency testing is typically performed using in vitro assays, animal models, or <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">cell cultures</a>, and often involves measuring parameters like IC50 or EC50 values. These tests are essential for establishing the drug&rsquo;s therapeutic efficacy, guiding <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">dosing recommendations</a>, ensuring consistency across drug batches, and complying with regulatory requirements for approval.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading15"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse15" aria-expanded="false" aria-controls="collapse15"> Dose-Response Curve </a> </h4> </div> <div id="collapse15" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading15"> <div class="panel-body"> <p><b>Dose-Response Curve</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">A dose-response curve is a graphical representation that illustrates the relationship between the dose of a drug and the <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">magnitude</a> of its effect on the body. The curve typically shows how increasing the drug dose leads to a <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">corresponding</a> increase in its therapeutic effect, up to a point where further dose increments produce minimal or no additional response (plateau). The shape of the curve helps in determining key pharmacological <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">parameters</a>, such as potency (the dose required for a certain effect) and efficacy (the maximum effect achievable). Understanding dose-response relationships is crucial for establishing safe and effective dosing regimens.</span></span></p> </p> <ul> </ul> </div> </div> </div> <div class="panel panel-default"> <div class="panel-heading" role="tab" id="heading16"> <h4 class="panel-title"> <a role="button" data-toggle="collapse" data-parent="#accordion" href="#collapse16" aria-expanded="false" aria-controls="collapse16"> Pharmaceutical nanotechnology </a> </h4> </div> <div id="collapse16" class="panel-collapse collapse" role="tabpanel" aria-labelledby="heading16"> <div class="panel-body"> <p><b>Pharmaceutical nanotechnology</b><br><p style="margin-left:0cm; margin-right:0cm; text-align:justify"><span style="font-size:11pt"><span style="font-family:Calibri,sans-serif">Pharmaceutical nanotechnology involves the use of nanomaterials and <a href="https://www.sciconx.com/pharma/brochure" style="color:blue; text-decoration:underline">nanostructures</a> in the development of drug delivery systems and therapeutic agents. By manipulating substances at the nanoscale, pharmaceutical nanotechnology enhances drug solubility, stability, and bioavailability, allowing for more targeted and efficient drug delivery. Nanoparticles can be engineered to release drugs at specific sites in the body, improving the treatment of diseases like cancer, diabetes, and <a href="https://www.sciconx.com/pharma/registration" style="color:blue; text-decoration:underline">neurological disorders</a>. This technology also enables the development of advanced drug formulations, such as liposomes and dendrimers, which can cross biological barriers more easily. Pharmaceutical nanotechnology offers promising solutions for <a href="https://www.sciconx.com/pharma/abstract" style="color:blue; text-decoration:underline">personalized medicine</a> and improving patient outcomes.</span></span></p> </p> <ul> </ul> </div> </div> </div> </div> </div> </div> </div> </div> <!-- section begin --> <section id="section-quick-contact" class="bordertop"> <iframe src="https://www.google.com/maps/embed?pb=!1m18!1m12!1m3!1d155.17834702028682!2d-0.13214383194656049!3d51.51590270000002!2m3!1f0!2f0!3f0!3m2!1i1024!2i768!4f13.1!3m3!1m2!1s0x48761b2d27298e93%3A0x20f57c69154288a8!2sKings%20Houxse%2C%2017%20Soho%20Square%2C%20London%20W1D%203QJ%2C%20UK!5e0!3m2!1sen!2sin!4v1708964370214!5m2!1sen!2sin" width="100%" height="350" style="border:0;" allowfullscreen="" loading="lazy" referrerpolicy="no-referrer-when-downgrade" class="footer-location-map" title="Location Map"></iframe> <div class="container"> <div class="location-details"> <h3>Address</h3> <p>Sciconx, Kings 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