NobleBlocks

G. Pulla Reddy College of Pharmacy

UniversityHyderabad, Telangana, India

Research output, citation impact, and the most-cited recent papers from G. Pulla Reddy College of Pharmacy (India). Aggregated across the NobleBlocks index of 300M+ scholarly works.

Total works
248
Citations
7.1K
h-index
40
i10-index
165
Also known as
G. Pulla Reddy Charities Trust College of PharmacyG. Pulla Reddy College of Pharmacyజి పుల్లారెడ్డి ఫార్మసి కళాశాల

Top-cited papers from G. Pulla Reddy College of Pharmacy

Recent trends in vaccine delivery systems: A review
P K Lakshmi, Shyamala Bhaskaran, CH Saroja
2011· International Journal of Pharmaceutical Investigation158doi:10.4103/2230-973x.82384

Vaccines are the preparations given to patients to evoke immune responses leading to the production of antibodies (humoral) or cell-mediated responses that will combat infectious agents or noninfectious conditions such as malignancies. Alarming safety profile of live vaccines, weak immunogenicity of sub-unit vaccines and immunization, failure due to poor patient compliance to booster doses which should potentiate prime doses are few strong reasons, which necessitated the development of new generation of prophylactic and therapeutic vaccines to promote effective immunization. Attempts are being made to deliver vaccines through carriers as they control the spatial and temporal presentation of antigens to immune system thus leading to their sustained release and targeting. Hence, lower doses of weak immunogens can be effectively directed to stimulate immune responses and eliminate the need for the administration of prime and booster doses as a part of conventional vaccination regimen. This paper reviews carrier systems such as liposomes, microspheres, nanoparticles, dendrimers, micellar systems, ISCOMs, plant-derived viruses which are now being investigated and developed as vaccine delivery systems. This paper also describes various aspects of "needle-free technologies" used to administer the vaccine delivery systems through different routes into the human body.

Electronic tongue: An analytical gustatory tool
PK Lakshmi, R. Pushpa Latha
2012· Journal of Advanced Pharmaceutical Technology amp Research81doi:10.4103/2231-4040.93556

Taste is an important organoleptic property governing acceptance of products for administration through mouth. But majority of drugs available are bitter in taste. For patient acceptability and compliance, bitter taste drugs are masked by adding several flavoring agents. Thus, taste assessment is one important quality control parameter for evaluating taste-masked formulations. The primary method for the taste measurement of drug substances and formulations is by human panelists. The use of sensory panelists is very difficult and problematic in industry and this is due to the potential toxicity of drugs and subjectivity of taste panelists, problems in recruiting taste panelists, motivation and panel maintenance are significantly difficult when working with unpleasant products. Furthermore, Food and Drug Administration (FDA)-unapproved molecules cannot be tested. Therefore, analytical taste-sensing multichannel sensory system called as electronic tongue (e-tongue or artificial tongue) which can assess taste have been replacing the sensory panelists. Thus, e-tongue includes benefits like reducing reliance on human panel. The present review focuses on the electrochemical concepts in instrumentation, performance qualification of E-tongue, and applications in various fields.

Synthesis and biological evaluation of morpholines linked coumarin–triazole hybrids as anticancer agents
Sridhar Goud Nerella, Venkatesh Pooladanda, Ghouse S. Mahammad, Pranay Jakkula +4 more
2019· Chemical Biology & Drug Design51doi:10.1111/cbdd.13578

Abstract A series of novel morpholines linked coumarin–triazole hybrids (6a–6v) has been synthesized and evaluated for their anti‐proliferative potential on a panel of five human cancer cell lines, namely bone (MG‐63), lung (A549), breast (MDA‐MB‐231), colon (HCT‐15) and liver (HepG2), using MTT assay. Among all, the compound 6n {7‐((1‐(2,4‐dichlorobenzyl)‐1H‐1,2,3‐triazol‐4‐yl) methoxy)‐4‐((2,6‐dimethylmorpholino) methyl)‐2H‐chromen‐2‐one} showed significant growth inhibition against MG‐63 cells with an IC50 value of 0.80 ± 0.22 μM. Further, induction of apoptosis by 6n of MG‐63 cells confirmed as a result of morphological changes, the sub‐G1 phase arrest, increased percentage of apoptotic cells, and decrease in mitochondrial membrane potential and increase in reactive oxygen species levels. The in vitro Gal‐1 expression in cell culture supernatant of MG‐63 cells treated with compound 6n showed dose‐dependent reduction. The binding constant (Ka) of 6n with Gal‐1 was calculated from the intercept value which was observed as 3.0 × 105 M−1 by fluorescence spectroscopy. Surface plasmon resonance showed that 6n binds to Gal‐1 with binding constant (Ka) of 1.29E+04 1/Ms and equilibrium constant KD value of 7.54E−07 M, respectively. Molecular docking studies revealed the binding interactions of 6n with Gal‐1.

Effect of pH on weakly acidic and basic model drugs and determination of their ex vivo transdermal permeation routes
Pranitha Akula, Lakshmi P.K.
2018· Brazilian Journal of Pharmaceutical Sciences49doi:10.1590/s2175-97902018000200070

The aim of the present study was to investigate the effect of donor pH on the transdermal permeability of the model drugs across rat skin and also to determine the major route of transport of the drugs. Weakly acidic drugs (partition coefficient) ibuprofen (3.6), aceclofenac (3.9), glipizide (1.9) and weakly basic drugs olanzapine (3.6), telmisartan (6.0), and sildenafil citrate (1.9) were selected for the study. The ex vivo permeation studies of these drugs at different donor pH (pH - 1.2, 4, 5, 6.8, 7.4, and 8) using Franz diffusion cell (area, 7.54 cm2) has shown a pH-dependent permeability. Among these drugs the weakly acidic drugs has shown higher permeation rates compared to the weakly basic drugs. The permeability coefficient and the distribution coefficient of the weakly basic drugs increased on increasing the pH whereas the weakly acidic drugs showed an inverse relation. The weakly basic drugs also showed an increase in permeation with increase in the fraction of unionized species indicating dominance of transcellular route of permeation. With an exception of sildenafil citrate, a weakly basic salt form of the drug which showed a high permeation value at pH 7.4 where 57% of the drug was unionized, indicating the involvement of both paracellular and transcellular route in its permeation.

A Review on SIRtuins in Diabetes
R. Aditya, Anjali Kiran, Dhiraj Varma, Ravichandra Vemuri +1 more
2017· Current Pharmaceutical Design49doi:10.2174/1381612823666170125153334

BACKGROUND: Type-2 Diabetes is a long lasting disease characterized by high glucose concentration in the blood due to insulin resistance. One of the recent treatment strategies is using activators against SIRT-1, which has been in clinical trials. Hence, it is necessary to know the effects of the SIRT-1 modulators against various metabolic pathways. METHODS: Many cellular processes, including insulin secretion, cell cycle, and apoptosis are imperatively regulated by a family of mediators called SIRTuins. First known mammalian sirtuin, SIRT1 is a positive regulator of insulin secretion, which triggers glucose uptake and utilization. For the past decade, a major outstanding question is whether SIRT1 activation is a safe therapy for human diseases such as diabetes? RESULTS: This review summarizes and discusses the advances of the past decade and the challenges that will brazen out perplexity of this field. We also cover the physiological regulation of sirtuin (SIRT1) activity and how these modes of regulation may be exploited to manipulate SIRT1 activity in cells. Designing of drugs using advanced computational methods that specifically target SIRT1, and also, involvement of advanced biological methods for further understanding of sirtuin1 biology to afford new optimized treatments for diabetes and several age related human diseases. CONCLUSION: Hence, this review is a serial perspective of all the above topics.

The “nano to micro” transition of hydrophobic curcumin crystals leading to in situ adjuvant depots for Au-liposome nanoparticle mediated enhanced photothermal therapy
Syed Baseeruddin Alvi, Tejaswini Appidi, B. Pemmaraju Deepak, P S Rajalakshmi +4 more
2019· Biomaterials Science48doi:10.1039/c9bm00932a

Photothermal therapy (PTT) is emerging as a promising treatment for skin cancer. Plasmon-resonant gold-coated liposome nanoparticles (Au Lipos NPs) specifically absorb Near Infra-Red (NIR) light resulting in localized hyperthermia (PTT). In the current study, curcumin (a hydrophobic anticancer agent) was entrapped in Au Lipos NPs as nanocrystals to act as an adjuvant for the PTT of melanoma. NIR light irradiation on Au Lipos Cur NPs triggered the release of curcumin nanocrystals which coalesce to form curcumin microcrystals (CMCs). An in situ"nano to micro" transition in the crystal state of curcumin was observed. This in situ transition leads to the formation of CMCs. These CMCs exhibited sustained release of curcumin for a prolonged duration (>10 days). The localized availability of curcumin aids in enhancing PTT by inhibiting the growth and mobility of cancer cells that escape PTT. In the in vitro modified scratch assay, the Au Lipos Cur NP + Laser group showed >1.5 fold enhanced therapeutic coverage when compared with the Au Lipos NP + Laser group. In vivo PTT studies performed in a B16 tumor model using Au Lipos Cur NPs showed a significant reduction of the tumor volume along with the localized release of curcumin in the tumor environment. It was observed that the localized release of curcumin enables an immediate adjuvant effect resulting in the enhancement of PTT.

Iontophoretic Transdermal Delivery of Finasteride in Vesicular Invasomal Carriers
D Prasanthi, P K Lakshmi
2013· Pharmaceutical Nanotechnology47doi:10.2174/2211738511301020009

Finasteride, lipophilic 5-α reductase inhibitor was selected as a model drug to evaluate in vivo iontophoretic transdermal delivery of novel lipid-based vesicular carriers (invasomes). The study included three protocols. The protocol I involved formulation of invasomes with terpenes (limonene, carvone and nerolidol) using Taguchi robust design for optimization. Invasomes were characterized for vesicular shape, size, zeta potential, entrapment efficiency and percutaneous permeation. The vesicles were found to be unilamellar, spherical in shape with size ranging from 4.54±0.30µm to 13.00±0.20µm. They possessed negative charge and entrapment efficiency (58.23±0.41% to 84.56±0.25 %). Formulation IF1 containing lipophilic terpene limonene (0.5%) enhanced permeation by 21.17 fold when compared with control (aqueous solution). The optimized invasomal formulation was checked for the enhanced permeation using the iontophoretic technique in second protocol. Two factors three level Taguchi robust design was used for optimizing the current density and pulse-on/off ratio. Formulation INF9 (0.5 mA/cm2, 3:1 pulse on/off ratio) enhanced flux by 25.83 fold when compared with control. In protocol III in vivo studies of optimized iontophoretic invasomal formulation in the form of gel were performed on rabbits and compared with oral suspension. Plasma samples were analyzed by LCMS and pharmacokinetic parameters were calculated. AUC and T1/2 were increased by 3.03 times and 1.34 times respectively showing effective transdermal delivery. Histopathological studies of the optimized formulation (INF9) on rat skin revealed changes in dermis indicating the effect of ethanol and terpenes present in invasomes. These results indicated invasomes as effective vesicular carriers for iontophoretic transdermal delivery of finasteride. Keywords: Finasteride, invasomes, iontophoresis, taguchi robust design, transdermal delivery.

Preparation and optimization of various parameters of enteric coated pellets using the Taguchi L9 orthogonal array design and their characterization
D. Shravani, P K Lakshmi, J. Balasubramaniam
2011· Acta Pharmaceutica Sinica B46doi:10.1016/j.apsb.2011.04.005

Duloxetine hydrochloride enteric coated pellets were formulated using fluidized bed. Three separate layers, the drug layer, the barrier layer, and the enteric layer, were coated onto the inert core pellets. The pellets were optimized with the acid resistance and drug release in simulated intestinal fluid as the process parameters, using the Taguchi L9 orthogonal array. Various other properties, such as surface morphology, bulk and tapped density, Hausner's ratio, hardness, friability, yield of pellets, moisture content, and particle size distribution, were also studied in the optimized pellets. The concentration of the enteric polymer played a vital role in acid resistance, while the type of enteric polymer affected the drug release in simulated intestinal fluid. In both cases, it was determined that binder polymer concentration was not affected much. The comparisons between the optimized pellets and a market formulation yielded f1 and f2 values within a range of 4–5 and 60–65, respectively. Three month stability studies, conducted at accelerated conditions, showed the optimized pellets to be stable. Taguchi plays an important role in optimizing parameters, and optimization of duloxetine hydrochloride can be achieved with minimal trials.

Terpenes: Effect of lipophilicity in enhancing transdermal delivery of alfuzosin hydrochloride
P K Lakshmi, D Prasanthi
2012· Journal of Advanced Pharmaceutical Technology amp Research42doi:10.4103/2231-4040.104712

Transdermal drug delivery has attracted much attention as an alternative to intravenous and oral methods of delivery. But the main barrier is stratum corneum. Terpenes classes of chemical enhancers are used in transdermal formulations for facilitating penetration of drugs. The aim of the study is to evaluate terpenes as skin penetration enhancers and correlate its relationship with permeation and lipophilicity. In this study, alfuzosin hydrochloride (AH) hydrogels were prepared with terpenes using Taguchi orthogonal array experimental design. The formulations contained one of eight terpenes, based on their lipophilicity (log P 2.13-5.36). The percutaneous permeation was studied in rat skin using diffusion cell technique. Flux, cumulative amount, lag time and skin content of AH were measured over 24 hours and compared with control gels. Nerolidol with highest lipophilicity (log P 5.36 ± 0.38) showed highest cumulative amount (Q(24)) of 647.29 ± 18.76 μg/cm(2) and fluxrateof 28.16 ± 0.64 μg/cm(2)/hour. It showed decreased lag time of 0.76 ± 0.15 hours. Fenchone (2.5%) (log P 2.13 ± 0.30) produced the longest lag time 4.8 ± 0.20 hours. The rank order of enhancement effect was shown as nerolidol > farnesol > limonene > linalool > geraniol > carvone > fenchone > menthol. Lowest skin content was seen with carvone. Increase in lipophilicity of terpenes showed increase in flux, cumulative amount (Q(24)), and enhancement ratio which was significant with P < 0.000. But lag time was decreased and no correlation was found between lipophilicity and skin content. Histological studies showed changes in dermis which can be attributed to disruption of lipid packing of stratum corneum due to effect of nerolidol within lipid lamellae. It was found that small alcoholic terpenes with high degree of unsaturation enhance permeation of hydrophilic drugs, liquid terpenes enhance better than solid terpenes and terpenes with high lipophilicity are good penetration enhancers.

Self-Assembled Fluorosome–Polydopamine Complex for Efficient Tumor Targeting and Commingled Photodynamic/Photothermal Therapy of Triple-Negative Breast Cancer
P S Rajalakshmi, Syed Baseeruddin Alvi, Nazia Begum, Bantal Veeresh +1 more
2021· Biomacromolecules40doi:10.1021/acs.biomac.1c00744

Photodynamic/photothermal therapy (PDT/PTT) that deploys a near-infrared responsive nanosystem is emerging to be a promising modality in cancer treatment. It is highly desirable to have a multifunctional nanosystem that can be used for efficient tumor targeting and inhibiting metastasis/recurrence of cancer. In the current study, self-assembled chlorophyll-rich fluorosomes derived from Spinacia oleracea were developed. These fluorosomes were co-assembled on a polydopamine core, forming camouflaged nanoparticles (SPoD NPs). The SPoD NPs exhibited a commingled PDT/PTT (i.e., interdependent PTT and PDT) that inhibited both normoxic and hypoxic cancer cell growth. These nanoparticles showed stealth properties with enhanced physiological stability and passive tumor targeting. SPoD NPs also exhibited tumor suppression by synergistic PTT and PDT. It also prevented lung metastasis and splenomegaly in tumor-bearing Balb/c mice. Interestingly, treatment with SPoD NPs also caused the suppression of secondary tumors by eliciting an anti-tumor immune response. In conclusion, a co-assembled multifunctional nanosystem derived from S. oleracea showed enhanced stability and tumor-targeting efficacy, resulting in a commingled PDT/PTT effect.

Pharmacognostical Studies on Wrightia tinctoria Bark
Y.S.R. Reddy, Sama Venkatesh, Thanammal Ravichandran, T. Subburaju +1 more
1999· Pharmaceutical Biology40doi:10.1076/phbi.37.4.291.5798

The bark of Wrightia tinctoria R.Br. (Apocynaceae) is used as an adulterant for the well known drug, Holarrhena antidysenterica. The present study attempts a detailed summary of pharmacognostical characters to give a clear standard for identification of the drug.

Protective effect of lawsone on L-Arginine induced acute pancreatitis in rats.
Sandeep Biradar, Bantal Veeresh
2013· PubMed38

The efficacy of lawsone against L-arginine induced acute pancreatitis was determined at 24 h by determination of serum levels of amylase, lipase and proinflammatory cytokines [tumor necrosis factor (TNF)-alpha, C-reactive proteins and interleukin (IL)], pancreatic myeloperoxidase (MPO) activity, lipid peroxidation (thiobarbituric acid reactive substances (TBARS)], nitrate/nitrite levels, and the wet weight/body weight ratio. Lawsone and methylprednisolone treatments significantly attenuated the L-arginine- induced increases in pancreatic wet weight/body weight ratio, and decreased the serum levels of amylase and lipase, and TNF-alpha and IL-6 and significantly lowered pancreatic levels of MPO, TBARS, and nitrate/nitrite. The histoimmunological findings further proved the amelioration of pancreatic injury by lawsone and further proved anti-inflammatory and antioxidant agent property of lawsone.

Successful Use of Cefepime-Zidebactam (WCK 5222) as a Salvage Therapy for the Treatment of Disseminated Extensively Drug-Resistant New Delhi Metallo-β-Lactamase-Producing Pseudomonas aeruginosa Infection in an Adult Patient with Acute T-Cell Leukemia
Tirlangi Praveen Kumar, Bala Saheb Wanve, Ramakanth Reddy Dubbudu, Boorgula Sushma Yadav +4 more
2023· Antimicrobial Agents and Chemotherapy37doi:10.1128/aac.00500-23

With limited and often toxic treatment options, carbapenem-resistant Gram-negative infections are associated with significant mortality. Cefepime-zidebactam is a promising antibiotic option undergoing a phase 3 trial that has activity against diverse antibiotic-resistant mechanisms in Gram-negative pathogens due to its β-lactam enhancer mechanism, mediating multiple PBP binding. We report a case of disseminated infection caused by a New Delhi metallo-β-lactamase-producing, extensively drug-resistant Pseudomonas aeruginosa isolate in a patient with acute T-cell leukemia, successfully managed with cefepime-zidebactam as a salvage therapy.

A plasmon-enhanced fluorescent gold coated novel lipo-polymeric hybrid nanosystem: synthesis, characterization and application for imaging and photothermal therapy of breast cancer
Tejaswini Appidi, P S Rajalakshmi, Shubham Arunrao Chinchulkar, Arpan Pradhan +4 more
2022· Nanoscale37doi:10.1039/d2nr01378a

This study reports the synthesis and application of a hybrid lipo-polymeric nanosystem (PDPC NPs) for plasmon enhanced flourescence based NIR imaging and photothermal therapy.

Iontophoresis mediated localized delivery of liposomal gold nanoparticles for photothermal and photodynamic therapy of acne
Syed Baseeruddin Alvi, P S Rajalakshmi, Anil Jogdand, Ambekar Yogeshwari Sanjay +3 more
2021· Biomaterials Science37doi:10.1039/d0bm01712d

Acne is one of the common dermatological skin inflammatory conditions. The current therapeutic modalities for the treatment of acne include the administration of antibiotics and anti-inflammatory agents. The rising instance of antibiotic resistance in acne strains has led to the exploration of alternative therapeutic modalities. In the current study, we have employed a liposomal gold nanoparticle entrapping curcumin (Au Lipos Cur NPs) for dual light-mediated therapy for the treatment of acne. These nanoparticles exerted a positive zeta potential that enabled their localized follicular delivery by iontophoresis. The localized deposition of Au Lipos NPs leads to photothermal transduction causing destruction of sebaceous glands. Furthermore, when the nanoparticles were assessed in vitro by sequential irradiation with NIR and blue light, it resulted in significant inhibition of bacterial growth. Thus the dual light-mediated therapy by Au Lipos Cur NPs can form a potential therapeutic modality for the efficient treatment of recurrent acne.

Design of a novel bilayered gastric mucoadhesive system for localized and unidirectional release of lamotrigine
Kale Mohana Raghava Srivalli, P K Lakshmi, J. Balasubramaniam
2012· Saudi Pharmaceutical Journal34doi:10.1016/j.jsps.2012.01.004

Lamotrigine is a BCS class II drug with pH dependent solubility. The bilayered gastric mucoadhesive tablets of lamotrigine were designed such that the drug and controlled release polymers were incorporated in the upper layer and the lower layer had the mucoadhesive polymers. The major ingredients selected for the upper layer were the drug and control release polymer (either HPMC K15M or polyox) while the lower MA layer predominantly comprised of Carbopol 974P. A 2(3) full factorial design was constructed for this study and the tablets were optimized for parameters like tablet size, shape, ex vivo mucoadhesive properties and unidirectional drug release. Oval tablets with an average size of 14 mm diameter were set optimum. Maximum mucoadhesive bond strength of 79.3 ± 0.91 * 10(3) dyn/cm(2) was achieved with carbopol when used in combination with a synergistic resin polymer. All the tested formulations presented a mucoadhesion time of greater than 12 h. The incorporation of methacrylic polymers in the lower layer ensured unidirectional drug release from the bilayered tablets. The unidirectional drug release was confirmed after comparing the dissolution results of paddle method with those of a modified basket method. Model independent similarity and dissimilarity factor methods were used for the comparison of dissolution results. Controlled drug release profiles with zero order kinetics were obtained with polyox and HPMC K15M which reported t 90% at 6th and 12th hours, respectively. The "n" value with polyox was 0.992 and that with HPMC K15M was 0.946 indicating an approximate case II transport. These two formulations showed the potential for oral administration of lamotrigine as bilayered gastric mucoadhesive tablets by yielding highest similarity factor values, 96.06 and 92.47, respectively, between the paddle and modified basket method dissolution release profiles apart from reporting the best tablet physical properties and maximum mucoadhesive strength.

Human Galectin-1 and Its Inhibitors: Privileged Target for Cancer and HIV
Narella Sridhar Goud, P.S. Lakshmi Soukya, Mahammad Ghouse, Komal Daipule +2 more
2019· Mini-Reviews in Medicinal Chemistry33doi:10.2174/1389557519666190304120821

Galectin 1(Gal-1), a β-galactoside binding mammalian lectin of 14KDa, is implicated in many signalling pathways, immune responses associated with cancer progression and immune disorders. Inhibition of human Gal-1 has been regarded as one of the potential therapeutic approaches for the treatment of cancer, as it plays a major role in tumour development and metastasis by modulating various biological functions viz. apoptosis, angiogenesis, migration, cell immune escape. Gal-1 is considered as a biomarker in diagnosis, prognosis and treatment condition. The overexpression of Gal-1 is well established and seen in many types of cancer progression like osteosarcoma, breast, lung, prostate, melanoma, etc. Gal-1 greatly accelerates the binding kinetics of HIV-1 to susceptible cells, leading to faster viral entry and a more robust viral replication by specific binding of CD4 cells. Hence, the Gal-1 is considered a promising molecular target for the development of new therapeutic drugs for cancer and HIV. The present review laid emphasis on structural insights and functional role of Gal-1 in the disease, current Gal-1 inhibitors and future prospects in the design of specific Gal-1 inhibitors.

Development of ethosomes with taguchi robust design-based studies for transdermal delivery of alfuzosin hydrochloride
D Prasanthi, P K Lakshmi
2012· International Current Pharmaceutical Journal32doi:10.3329/icpj.v1i11.12063

In the present investigation efficiency of ethosomes as novel lipid carriers for transdermal delivery of Alfuzosin Hydrochloride (AH) has been evaluated. Taguchi robust design method was used for optimization of ethosomal formulations. Phospholipid type, concentration of phospholipid and concentration of ethanol was selected as independent variables and their effect on the dependent variables (entrapment efficiency and flux) was studied. Ethosomal formulation (EA8) with soya phosphatidylcholine (3%) and ethanol 20% were optimized. Vesicles were spherical, unilamellar with smooth surface. The optimized formulation exhibited vesicle size (6.85 ± 1.35µm), zeta potential (-8.14 ± 0.62mv), entrapment efficiency (91.86 ± 3.25%), flux (27.42 ± 0.04µg/cm2/hr), lag time (0.26±0.20hr) and skin deposition (298.01 ± 15.4µg/g). Transdermal flux was enhanced by 6.92 times over drug solution. Vesicle skin interaction studies showed fatty change in the dermis. The formulations were stable at 4°C for 120 days. Results suggested ethosomes as efficient carriers for AH transdermal delivery.DOI: http://dx.doi.org/10.3329/icpj.v1i11.12063 International Current Pharmaceutical Journal 2012, 1(11): 370-375

Effect of Chemical Enhancers in Transdermal Permeation of Alfuzosin Hydrochloride
D Prasanthi, P K Lakshmi
2012· ISRN Pharmaceutics31doi:10.5402/2012/965280

The objective of the present study is to explore the efficient chemical penetration enhancer among the various enhancers available in overcoming the stratum corneum barrier in transdermal delivery of Alfuzosin hydrochloride (AH). The different enhancers were incorporated in 2% Carbopol gel which was selected as a control and evaluated by in vitro diffusion studies through dialysis membrane and permeation through the rat abdominal skin using Keshary-Chien diffusion cells. All the enhancers increased the release rate through the dialysis membrane when compared with control except oleic acid which decreased the release rate but showed maximum solubility of the drug. Among the various enhancers Transcutol 20% and tween-20 (2%) showed the highest cumulative amount (Q(24)) of 702.28 ± 6.97 μg/cm(2) and 702.74 ± 7.49 μg/cm(2), respectively. A flux rate of 31.08 ± 0.21 μg/cm(2)/hr by Transcutol 20% and 30.38 ± 0.18 μg/cm(2)/hr by tween-20 (2%) was obtained. Transcutol 20% showed decreased lag time of 0.13 ± 0.05 hr. The lowest skin content of 342.33 ± 5.30 μg/gm was seen with oleic acid 2.5%. Maximum enhancement of flux by 3.94-fold was obtained with transcutol 20%. Primary skin irritation studies were performed with rabbit. Histopathological studies of transcutol 20% showed marked changes such as degeneration and infiltration of mononuclear cells in dermis indicating the effect of transcutol on the skin. Among the different enhancers transcutol is efficient in enhancing transdermal delivery of AH.

Cytotoxic effect of transdermal invasomal anastrozole gel on MCF-7 breast cancer cell line
K Vidya, P K Lakshmi
2019· Journal of Applied Pharmaceutical Science28doi:10.7324/japs.2019.90308

Anastrozole is an anti-cancer drug, an effective aromatase inhibitor for the treatment of breast cancer in post-menopausal women. As it undergoes extensive first-pass metabolism and has many side effects related to oral use, it has been envisaged to develop anastrozole invasomes in the form of transdermal gel. Objective: The objective of this work was to prepare, characterize, and evaluate invasomal gel of anastrozole. Materials and Methods: Invasomes were prepared by thin layer film hydration method using Phospholipon 80H, fenchone (terpene), and ethanol. The optimized invasomes were incorporated into sodium carboxy methyl cellulose gel. Prepared formulations were evaluated and cytotoxic study on Michigan cancer foundation (MCF)-7 cancer cell line was studied.