Pharmaceutics Thesis Topics

PHARMACEUTICS THESIS TOPICS

Pharmaceutics thesis topics
  • Formulation and evaluation of emulgel containing mefenamic acid for topical application.
  • Development and optimization of nanostructured lipid carriers for transdermal delivery of an anti-inflammatory drug.
  • Design and evaluation of a nanogel formulation for the treatment of hepatocellular carcinoma using sorafenib tosylate.
  • Preparation and evaluation of floating microspheres for gastroretentive drug delivery of an antidiabetic agent.
  • Controlled-release tablet development and evaluation for naproxen sodium.
  • Development of nanoparticles for enhancing the oral bioavailability of a poorly soluble antihypertensive drug.
  • Formulation and evaluation of multiple-unit tablet systems for BCS Class-I drugs.
  • Nanoemulsion formulations for anticancer drug delivery: development and evaluation.
  • Development and evaluation of mucoadhesive buccal films for systemic delivery of an analgesic drug.
  • Formulation of niosomal drug delivery systems for antipsychotic medications: evaluation and characterization.
  • Development of a nanostructured lipid carrier-based gel for antifungal drug delivery.
  • Preparation and evaluation of transdermal patches for sustained drug release of an antiasthmatic drug.
  • Prolonged-release tablet formulation and evaluation for anti-epileptic drugs.
  • Aqueous injectable suspension of an anti-inflammatory glucocorticoid: formulation and evaluation.
  • Development of green synthesized nanoparticles for anticancer applications.
  • Study on mucoadhesive properties of tragacanth and its fractions: a detailed study.
  • Fast-dissolving tablets of telmisartan using quality by design principles: formulation and evaluation.
  • Development of bioadhesive vaginal films for local delivery of an antifungal agent.
  • Optimization of cyclodextrin-based inclusion complexes for solubility enhancement of poorly water-soluble drugs.
  • Domperidone nanoparticles prepared using grafted starch: formulation and evaluation.
  • Quantum dot formulations of anticancer drugs: synthesis and evaluation.
  • Preparation and evaluation of polymeric micelles for targeted drug delivery of a chemotherapeutic agent.
  • Design of liposomal drug delivery systems for enhanced transdermal delivery of corticosteroids.
  • Formulation development of spironolactone oral suspension: formulation and evaluation.
  • Development and in vivo study of self-microemulsifying drug delivery systems for curcumin.
  • Nanoformulations of dexketoprofen trometamol containing argan oil: formulation development.
  • Preparation and evaluation of solid lipid nanoparticles for oral drug delivery of an antidiabetic agent.
  • Rapidly disintegrating films of perphenazine: formulation and evaluation.
  • Development of a nanosuspension for enhancing the solubility of acetazolamide for ophthalmic use.
  • Green synthesis of silver nanoparticles using Azadirachta indica for wound healing.
  • Formulation and evaluation of montmorillonite-drug complexes for enhanced bioavailability.
  • Preparation and evaluation of hydrogels for localized delivery of an anti-inflammatory drug.
  • Immediate-release silymarin pellets prepared using the wurster process: formulation and optimization.
  • Itraconazole nanoparticles for ophthalmic delivery: formulation and evaluation.
  • Formulation of solid dispersions for solubility enhancement of poorly water-soluble drugs: a comparative study.
  • Development of an osmotic pump system for the controlled delivery of a cardiovascular drug.
  • Comparative evaluation of natural and synthetic polymers in the formulation of sustained-release matrix tablets.
  • Development and optimization of transdermal gels for pain management using non-steroidal anti-inflammatory drugs.
  • Preparation and evaluation of chitosan nanoparticles for drug delivery to the gastrointestinal tract.
  • Formulation of bioadhesive drug delivery systems for localized delivery of an antimicrobial agent.
  • Design and evaluation of gastroretentive floating beads for prolonged drug delivery.
  • Development and optimization of injectable depot formulations for sustained delivery of antipsychotic drugs.
  • Liposome-based drug delivery systems for the targeted delivery of anticancer drugs: formulation and characterization.
  • Formulation and evaluation of oral thin films for pediatric drug delivery.
  • Preparation of nanoparticles using the green synthesis approach for wound healing applications.
  • Nanoparticulate formulations of colesevelam hydrochloride: formulation and evaluation.
  • Development of sustained-release formulations for the controlled delivery of an anti-Parkinson drug.
  • Development and evaluation of bioadhesive ocular inserts for delivery of an anti-glaucoma drug.
  • Comparative study of microencapsulation techniques for sustained-release formulations of an antidiabetic drug.
  • Preparation and evaluation of polymeric nanoparticles for targeting inflammatory diseases.
  • Formulation and evaluation of bilayer tablets for chronotherapeutic drug delivery of antihypertensive drugs.
  • Development of polymeric nanoparticles for enhancing the oral bioavailability of a poorly soluble drug.
  • Formulation and evaluation of mucoadhesive buccal films for delivery of an antifungal agent.
  • Development of nanostructured lipid carriers for brain-targeted delivery of antiepileptic drugs.
  • Preparation and evaluation of solid dispersions for solubility enhancement of an anticancer drug.
  • Formulation of transdermal drug delivery systems using iontophoresis for enhanced permeation.
  • Study on the effect of different superdisintegrants on the dissolution profile of fast-dissolving tablets.
  • Comparative study of lipid-based and polymer-based nanoparticles for drug delivery.
  • Formulation and evaluation of microspheres for sustained drug release of a cardiovascular drug.
  • Development of fast-dissolving oral films for pediatric use using taste-masking agents.
  • Formulation and optimization of self-emulsifying drug delivery systems for poorly water-soluble drugs.
  • Green synthesis and evaluation of plant-based nanoparticles for antimicrobial applications.
  • Formulation of pulsatile drug delivery systems for chronotherapy in diabetes.
  • Comparative study of nanoemulsions and nanosuspensions for solubility enhancement of poorly soluble drugs.
  • Development of mucoadhesive microspheres for nasal drug delivery of a centrally acting drug.
  • Design and characterization of injectable in situ gels for localized drug delivery.
  • Comparative evaluation of different polymers for formulation of sustained-release matrix tablets.
  • Formulation and evaluation of transdermal patches for the delivery of a pain-relief drug.
  • Development of dual drug-loaded nanoparticles for the treatment of bacterial infections.
  • Comparative study of nanosuspensions and nanocrystals for solubility enhancement of poorly water-soluble drugs.
  • Formulation of self-microemulsifying drug delivery systems for improving oral bioavailability.
  • Development of extended-release tablet formulations using hydrophilic polymers.
  • Evaluation of natural polymers for formulation of bioadhesive gels for vaginal delivery.
  • Preparation and characterization of polymeric hydrogels for controlled drug release.
  • Development of a transdermal delivery system for the controlled release of an antihypertensive drug.
  • Formulation of nanofibers for topical drug delivery of wound-healing agents.
  • Optimization of microemulsions for transdermal delivery of corticosteroids.
  • Formulation of fast-dissolving sublingual films for systemic drug delivery.
  • Comparative study of solid lipid nanoparticles and nanostructured lipid carriers for drug delivery applications.
  • Development of in situ gels for ophthalmic drug delivery of an anti-inflammatory agent.
  • Design and evaluation of osmotically controlled drug delivery systems for centrally acting drugs.
  • Development of chitosan-coated nanoparticles for colon-specific drug delivery.
  • Preparation and characterization of hydrogels for nasal drug delivery.
  • Development and evaluation of nanoparticles for ocular delivery of anti-inflammatory agents.
  • Comparative evaluation of liposomal and niosomal formulations for topical drug delivery.
  • Development of oral thin films for systemic delivery of antiemetic drugs.
  • Optimization of floating drug delivery systems for gastroretentive applications.
  • Comparative study of nanoparticles and microparticles for targeted drug delivery.
  • Preparation of sustained-release microspheres using natural polymers.
  • Formulation of dual drug-loaded liposomes for the treatment of multidrug-resistant bacterial infections.
  • Development of bioadhesive gels for controlled ocular drug delivery.
  • Study on the use of biodegradable polymers for formulation of implantable drug delivery systems.
  • Development of bioadhesive tablets for buccal delivery of antihypertensive drugs.
  • Optimization of nanosuspensions for enhanced solubility of poorly water-soluble drugs.
  • Development and evaluation of a bioadhesive nasal gel for delivery of antiallergic drugs.
  • Formulation of nanoparticles for brain-targeted delivery of anticancer drugs.
  • Preparation of liposomal formulations for pulmonary delivery of antiasthmatic drugs.
  • Development of nanosponges for solubility enhancement of poorly water-soluble drugs.
  • Formulation of transdermal patches for localized delivery of an analgesic drug.
  • Development of polymeric nanoparticles for targeting bacterial infections.
  • Preparation of mucoadhesive hydrogels for drug delivery in periodontal diseases.
  • Comparative evaluation of hydrophilic polymers for controlled-release formulations of an anticancer drug.
  • Development of a floating drug delivery system for controlled release of a proton pump inhibitor.
  • Formulation and evaluation of dual drug-loaded hydrogels for treatment of inflammatory conditions.
  • Development of nanoparticulate drug delivery systems for ophthalmic applications.
  • Study on solubility enhancement techniques using solid dispersions and inclusion complexes.
  • Development of a self-emulsifying drug delivery system for oral delivery of poorly soluble anticancer drugs.
  • Optimization of biodegradable nanoparticles for sustained delivery of anticancer drugs.
  • Preparation and evaluation of polymer-coated capsules for colon-targeted drug delivery.
  • Development of lipid-based formulations for enhanced solubility and bioavailability of an antifungal drug.
  • Formulation and evaluation of nanoparticles for sustained ocular drug delivery.
  • Development of injectable in situ forming depots for prolonged drug delivery.
  • Comparative study of transdermal drug delivery systems using natural and synthetic polymers.
  • Preparation and evaluation of oral drug delivery systems for poorly water-soluble drugs.
  • Formulation and evaluation of nanoparticles for brain delivery of neuroprotective agents.
  • Development of nanostructured lipid carriers for enhanced oral delivery of poorly water-soluble drugs.
  • Preparation and evaluation of solid dispersions for solubility enhancement of an antihypertensive drug.
  • Formulation of nanoparticles for transdermal delivery of an anti-inflammatory drug.
  • Development of floating drug delivery systems for controlled drug release in the stomach.
  • Comparative evaluation of nanoparticles and microparticles for colon-specific drug delivery.
  • Optimization of lipid nanoparticles for the controlled delivery of an antifungal drug.
  • Development of nanocrystals for enhanced solubility of anticancer drugs.
  • Preparation of hydrogels for wound-healing applications.
  • Development and evaluation of bilayer tablets for sustained drug release.
  • Formulation of nanofibers for the controlled delivery of anticancer drugs.
  • Development of bioadhesive gels for vaginal drug delivery.
  • Preparation and evaluation of polymer-coated capsules for controlled drug release.
  • Formulation and evaluation of dual drug-loaded nanoparticles for cancer therapy.
  • Preparation and evaluation of self-emulsifying drug delivery systems for poorly water-soluble antihypertensive drugs.
  • Development of solid lipid nanoparticles for brain targeting of centrally acting drugs.
  • Formulation of nanoparticles for controlled release of cardiovascular drugs.
  • Preparation of hydrogels for controlled drug release in localized conditions.
  • Optimization of in situ forming gels for intra-articular delivery of anti-inflammatory agents.
  • Formulation of nanoparticles for sustained drug release in systemic therapy.
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