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List of Interesting Pharmaceutical Chemistry Project Topics & Ideas for 2025

Pharmaceutical Chemistry Project Topics & Ideas

“Pharmaceutical chemistry research is not just about synthesizing molecules—it’s about saving lives.” This quote from Nobel laureate Gertrude Elion perfectly encapsulates the profound impact of this field. With over $1.4 trillion projected as the global pharmaceutical market value by 2028, there has never been a more exciting time to dive into groundbreaking research.

Pharmaceutical chemistry is the bridge between raw science and real-world medical solutions. It’s where theory meets practice, where creativity fuels discovery, and where innovation changes the course of human health. Yet, when faced with choosing a project topic, many students and researchers find themselves at a crossroads. How do you pick a topic that’s both impactful and aligned with your academic goals?

That’s where this article comes in. Whether you’re aiming to study drug design, improve drug delivery systems, or analyze regulatory challenges, we’ve compiled an actionable list of project topics and ideas. These aren’t generic suggestions—they’re tailored to help you make a meaningful contribution to the field.

 

List of 24 Pharmaceutical Chemistry Project Topics for 2025

So, let’s cut through the noise. In the sections that follow, you’ll find well-researched, specific, and achievable ideas that align with the latest trends and challenges in pharmaceutical chemistry. Ready to get started? Let’s dive deep into the possibilities

1. ANTI-MICROBIAL AND PHYTOCHEMICAL STUDIES ON NIGERIAN MEDICINAL PLANTS: PROPERTIES OF PHYLLANTHUS DISCOIDEUS
This comprehensive research explores the antimicrobial potential and phytochemical composition of Phyllanthus Discoideus, a traditional Nigerian medicinal plant. The study aims to validate traditional uses and identify novel therapeutic compounds for modern medicine.
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2. FORMULATION AND OPTIMIZATION OF ARTEMETHER AND LUMEFANTRINE CALCIUM ALGINATE CAPSULES
This research focuses on developing an optimized drug delivery system for antimalarial compounds using calcium alginate capsules, potentially improving the bioavailability and efficacy of these crucial medications.
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3. PHYTOCHEMICAL AND BIOACTIVITY-GUIDED EVALUATION OF ANTIBACTERIAL CONSTITUENTS IN PSIDIUM GUAJAVA AND LORANTHUS MICRANTHUS
This project investigates the antibacterial properties of two significant medicinal plants, identifying and isolating the active compounds responsible for their therapeutic effects against various bacterial strains.
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4. FORMULATION AND EVALUATION OF ARTEMETHER-LOADED SELF EMULSIFYING DRUG DELIVERY SYSTEM
This study examines the development of an advanced drug delivery system for artemether, focusing on improving its solubility and bioavailability through self-emulsifying technology.
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5. BIOACTIVITY-GUIDED STUDIES ON HIBISCUS ASPER HOOK F. LEAF EXTRACT AND FRACTIONS
This research explores the biological activities of various extracts and fractions from Hibiscus Asper leaves, aiming to identify potential therapeutic compounds for pharmaceutical development.
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6. PREFORMULATION STUDIES OF CYPERUS ESCULENTUS STARCH AS TABLET EXCIPIENT
This investigation evaluates the potential of Cyperus Esculentus starch as both a disintegrant and binder in paracetamol tablet formulation, offering sustainable alternatives to synthetic excipients.
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7. ENHANCED DELIVERY OF GLIMEPIRIDE THROUGH PEG 4000 AND SOLUPLUS® HYBRID SOLID DISPERSIONS
This study focuses on improving the bioavailability of the antidiabetic drug glimepiride through innovative solid dispersion techniques using polymer combinations.
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8. EVALUATION OF ANTI-ULCER PROPERTIES OF TERMINALIA SUPERBA STEM BARK METHANOL EXTRACT
This research investigates the gastroprotective potential of Terminalia Superba stem bark extract, providing scientific validation for its traditional use in treating ulcers.
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9. DEVELOPMENT OF NOVEL NANOCARRIER SYSTEMS FOR TARGETED CANCER DRUG DELIVERY
This research explores the design and optimization of nanoparticle-based drug delivery systems for enhanced cancer treatment, focusing on improved drug targeting and reduced side effects.
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10. COMPARATIVE ANALYSIS OF SYNTHETIC AND NATURAL POLYMERS AS PHARMACEUTICAL EXCIPIENTS
This study evaluates the effectiveness of various natural polymers against synthetic alternatives in drug formulation, addressing the growing demand for sustainable pharmaceutical ingredients.
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11. OPTIMIZATION OF CONTROLLED-RELEASE MATRIX TABLETS USING MODIFIED NATURAL GUMS
This project focuses on developing improved controlled-release formulations using chemically modified natural gums, offering cost-effective alternatives for sustained drug delivery.
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12. PHYTOCHEMICAL SCREENING AND ANTIMALARIAL ACTIVITY OF AZADIRACHTA INDICA EXTRACTS
This research investigates the antimalarial potential of neem tree extracts, identifying active compounds that could lead to new treatments for malaria.
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13. DEVELOPMENT OF MUCOADHESIVE MICROSPHERES FOR IMPROVED ORAL DRUG DELIVERY
This study explores the formulation of mucoadhesive microspheres to enhance drug absorption and bioavailability in the gastrointestinal tract.
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14. SYNTHESIS AND EVALUATION OF NOVEL PRODRUGS FOR ENHANCED THERAPEUTIC EFFICACY
This research focuses on designing innovative prodrug compounds to improve the pharmacokinetic properties of existing therapeutic agents.
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15. FORMULATION AND CHARACTERIZATION OF TRANSDERMAL PATCHES FOR CHRONIC PAIN MANAGEMENT
This study develops and evaluates novel transdermal drug delivery systems for improved pain management, focusing on patient compliance and controlled release.
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16. INVESTIGATION OF GREEN SYNTHESIS METHODS FOR PHARMACEUTICAL NANOPARTICLES
This research explores environmentally friendly approaches to synthesizing pharmaceutical nanoparticles using plant extracts and sustainable methods.
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17. DEVELOPMENT OF pH-RESPONSIVE HYDROGELS FOR TARGETED INTESTINAL DRUG DELIVERY
This study investigates smart hydrogel systems that respond to intestinal pH changes, enabling precise drug release at specific sites in the gastrointestinal tract.
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18. EVALUATION OF NOVEL CRYSTALLIZATION TECHNIQUES FOR IMPROVING DRUG SOLUBILITY
This research explores innovative crystallization methods to enhance the solubility and bioavailability of poorly water-soluble drugs.
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19. DESIGN AND OPTIMIZATION OF LIPOSOMAL DRUG DELIVERY SYSTEMS FOR ANTICANCER AGENTS
This project focuses on developing optimized liposomal formulations to improve the delivery and efficacy of chemotherapeutic drugs.
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20. INVESTIGATION OF CYCLODEXTRIN COMPLEXATION FOR ENHANCED DRUG STABILITY
This study examines the use of cyclodextrin inclusion complexes to improve drug stability, solubility, and bioavailability of unstable pharmaceutical compounds.
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21. DEVELOPMENT OF SUSTAINED-RELEASE MICROSPHERES USING BIODEGRADABLE POLYMERS
This research explores the formulation of biodegradable microspheres for controlled drug release, focusing on optimizing release kinetics and stability.
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22. SYNTHESIS AND EVALUATION OF NOVEL PEPTIDE-BASED DRUG CONJUGATES
This study investigates the development of peptide-drug conjugates for targeted drug delivery, improving therapeutic efficacy while reducing side effects.
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23. FORMULATION OF ORAL FAST-DISSOLVING FILMS FOR PEDIATRIC DRUG DELIVERY
This research focuses on developing child-friendly drug delivery systems using fast-dissolving oral films, addressing compliance issues in pediatric medicine.
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24. INVESTIGATION OF NATURAL STABILIZERS FOR PHARMACEUTICAL EMULSION SYSTEMS
This study evaluates the effectiveness of natural emulsifiers and stabilizers in pharmaceutical formulations, promoting sustainable drug development.
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Conclusion

The journey through pharmaceutical chemistry is as challenging as it is rewarding. These 24 research directions represent just the tip of the molecular iceberg – each one a potential gateway to groundbreaking discoveries. I’ve seen firsthand how a well-chosen research topic can evolve into something far more significant than initially imagined. Remember, the next breakthrough in drug development could start with your project choice today.

Whether you’re drawn to the computational complexity of AI-aided drug design or the hands-on world of green synthesis, your research adds another piece to our understanding of pharmaceutical science. The field is evolving rapidly, and your contribution matters. Keep exploring, stay curious, and don’t be afraid to venture into uncharted chemical territory. The future of pharmaceutical chemistry isn’t just about discovering new drugs – it’s about reimagining how we approach human health itself.

Got a burning research idea that’s not on our list? That’s exactly what scientific innovation is all about. The most impactful discoveries often come from asking questions nobody thought to ask before. Now, it’s your turn to take these insights and transform them into actionable research that advances our field. The molecules are waiting!

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