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The distribution of the HIV protease inhibitor, ritonavir, to the brain, cerebrospinal fluid, and choroid plexuses of the guinea pig.

Anti-human immunodeficiency virus (HIV) drug penetration into the brain and cerebrospinal fluid (CSF) is necessary to tackle HIV within the CNS. This study examines movement of [(3)H]ritonavir across the guinea pig blood-brain and blood-CSF barriers and accumulation within the brain, CSF, and choroid plexus. Ritonavir is a protease inhibitor, used in combination therapy (often as a pharmacoenhancer) to treat HIV. Drug interactions at brain barrier efflux systems may influence the CNS penetration of anti-viral drugs, thus the influence of additional protease inhibitors, nucleoside reverse transcriptase inhibitors, and non-nucleoside reverse transcriptase inhibitors on [(3)H]ritonavir CNS distribution was explored. Additionally, the involvement of transporters on [(3)H]ritonavir passage across the brain barriers was assessed. Results from in situ brain perfusions and capillary depletion analysis demonstrated that [(3)H]ritonavir uptake into the guinea pig brain was considerable (6.6 +/- 0.7 ml/100 g at 30 min, vascular space corrected), although a proportion of drug remained trapped in the cerebral capillaries and did not reach the brain parenchyma. CSF uptake was more limited (2.2 +/- 0.4 ml/100 g at 30 min), but choroid plexus uptake was abundant (176.7 +/- 46.3 ml/100 g at 30 min). [(3)H]Ritonavir brain and CSF uptake was unaffected by neither inhibitors of organic anion transport (probenecid and digoxin) or P-glycoprotein (progesterone), nor by any additional anti-HIV drugs, indicating that brain barrier efflux systems do not significantly limit brain or CSF [(3)H]ritonavir accumulation in this model. [(3)H]Ritonavir uptake into the perfused choroid plexus was significantly reduced by nevirapine and abacavir, additional perfusion studies, and isolated incubated choroid plexus experiments were carried out in an attempt to further characterize the transporter involved.

Animals↗

Inhibition of SARS coronavirus infection in vitro with clinically approved antiviral drugs.

Severe acute respiratory syndrome (SARS) is an infectious disease caused by a newly identified human coronavirus (SARS-CoV). Currently, no effective drug exists to treat SARS-CoV infection. In this study, we investigated whether a panel of commercially available antiviral drugs exhibit in vitro anti-SARS-CoV activity. A drug-screening assay that scores for virus-induced cytopathic effects on cultured cells was used. Tested were 19 clinically approved compounds from several major antiviral pharmacologic classes: nucleoside analogs, interferons, protease inhibitors, reverse transcriptase inhibitors, and neuraminidase inhibitors. Complete inhibition of cytopathic effects of SARS-CoV in culture was observed for interferon subtypes, b-1b, a-n1, a-n3, and human leukocyte interferon a. These findings support clinical testing of approved interferons for the treatment of SARS.

Antiviral Agents↗

Incidence and impact of resistance against approved antiretroviral drugs.

More than 15 antiretroviral drugs are now available for clinical use, and have led to significant reductions in morbidity and mortality for HIV infected individuals. Nevertheless, antiviral drug resistance emerges to all these drugs, which limits their benefit. This review addresses the biological basis of antiretroviral drug resistance, and the prevalence of specific drug resistance associated mutations in patients treated with the three currently available classes of agents, namely nucleoside analogue reverse transcriptase inhibitors, non nucleoside reverse transcriptase inhibitors and protease inhibitors. In addition, data on prevalence of HIV drug resistance in untreated individuals published to date are summarised, and the implications of potential transmission of drug resistant HIV is discussed.

Anti-HIV Agents↗

Options for a second-line antiretroviral regimen for HIV type 1-infected patients whose initial regimen of a fixed-dose combination of stavudine, lamivudine, and nevirapine fails.

BACKGROUND: A fixed-dose combination of stavudine, lamivudine, and nevirapine is extensively used as an antiretroviral regimen in developing countries because of its affordability. Virological failure with this regimen has become more common, and a second-line regimen needs to be prepared in the national program. METHODS: Genotypic resistance testing was conducted among human immunodeficiency virus type 1 (HIV-1)-infected patients who experienced treatment failure with their first antiretroviral regimen (a fixed-dose combination of stavudine, lamivudine, and nevirapine) during 2003-2005. Patterns of resistance mutations and options for a second-line regimen were studied. RESULTS: We studied 98 patients (mean age, 35.2 years), of whom, 63% were male. The median duration of antiretroviral therapy was 20 months. The median HIV-1 RNA load at the time of virological failure detection was 4.1 log copies/mL. The prevalences of patients with > or =1 major mutation conferring drug resistance to nucleoside reverse-transcriptase inhibitors and nonnucleoside reverse-transcriptase inhibitors were 95% and 92%, respectively. M184V was the most common nucleoside reverse-transcriptase inhibitor resistance mutation (observed in 89% of patients). Thymidine analogue mutations, K65R, and Q151M were observed in 37%, 6%, and 8% of patients, respectively. Patients with an HIV-1 RNA load of >4 log copies/mL at the time of treatment failure had higher prevalence of thymidine analogue mutations (P=.041), K65R (P=.031), and Q151M (P=.008) mutations. The second-line regimen was determined in a resource-limited setting where tenofovir and enfuvirtide are not available; the options were limited for 48% of patients. CONCLUSIONS: After experiencing treatment failure with a fixed-dose combination of stavudine, lamivudine, and nevirapine, almost all patients have lamivudine and nonnucleoside reverse-transcriptase inhibitor resistance. The options for a second-line regimen are limited for one-half of these patients. In resource-limited settings where availability of antiretroviral agents is limited, strategies for prevention of HIV-1 resistance are crucial. Early detection of virological failure may provide more options and better treatment outcomes.

Adult↗

Viral replication under combination antiretroviral therapy: a comparison of four different regimens.

A mathematical model of the interaction among CD4+ T-cells, HIV-1, and antiretroviral drugs was fitted to the viral load decline following initiation of combination therapy to estimate differences in the residual reproductive capacity of virus (R(0)) in the average patient in each group. Four regimens were studied: 12 patients on 5-drug nucleoside reverse transcriptase inhibitor (NRTIs), nonnucleoside reverse transcriptase inhibitor (NNRTIs) and protease inhibitor (PI)-containing combination therapy, 11 patients on PI-containing triple therapy, 10 patients on double NRTI therapy, and 10 patients on NNRTI-containing triple therapy. Model fits were used to estimate R(0). The NNRTI-containing triple therapy and the 5-drug regimen blocked viral replication to the greatest extent (R(0) = 0.85; 95% confidence interval [CI], 0.79-0.91; and 0.90, 95% CI, 0.82-0.98, respectively), with the former being significantly better than the PI-containing triple regimen (R(0) = 0.98; 95% CI, 0.92-1.03; p =.007). Both the NNRTI-containing and the 5-drug regimen, as well as the PI-containing triple therapy, were significantly better at blocking viral replication than the double NRTI therapy (R(0) = 1.04; 95% CI, 1.0-1.07). Measurement of viral load after approximately 7 days provided the most accurate measure of the degree of viral suppression induced by a given drug regimen.

Adult↗

Time to discontinuation of the first highly active antiretroviral therapy regimen: a comparison between protease inhibitor- and non-nucleoside reverse transcriptase inhibitor-containing regimens.

Data from a cohort of HIV-positive individuals who were antiretroviral naive at enrollment were analysed to estimate the probability of discontinuing the first highly active antiretroviral therapy (HAART) regimen, comparing protease inhibitor- and non-nucleoside reverse transcriptase-containing regimens. Of the 2002 individuals who began HAART, 857 (42.8%) discontinued their first regimen. No statistically significant difference was found in the time to discontinuation by specific type of regimen, either when considered overall or by specific reason.

Anti-HIV Agents↗

TSAO compounds: the comprehensive story of a unique family of HIV-1 specific inhibitors of reverse transcriptase.

Emergence of drug-resistant viral strains is one of the major milestones and the main cause for the failure of antiretroviral therapy. Combination of different anti-HIV agents has become the standard clinical practice to keep the viral load at low or even undetectable levels and to prevent emergence of virus-drug resistance. Among the human immunodeficiency virus (HIV) reverse transcriptase (RT) inhibitors, the so called nonnucleoside RT inhibitors (NNRTIs) have gained a definitive place in the treatment of HIV infections in combination with nucleoside analogue RT inhibitors (NRTIs) and HIV protease inhibitors (PIs). The virus can be markedly suppressed for a relatively long period of time when exposed to multiple drug combination therapy (highly active antiretroviral therapy, HAART). TSAO derivatives are a peculiar group of highly functionalized nucleosides that belong to the so-called nonnucleoside RT inhibitors (NNRTIs). They exert their unique selectivity for HIV-1 through a specific interaction with the p51 subunit of HIV-1 RT. They are the first small molecules that seem to interfere with the dimerization process of the enzyme. This review covers the work carried out with this unique class of specific inhibitors of HIV-1 reverse transcriptase, including structure activity relationship studies (SAR), its mechanism of action, resistance studies, model of interaction with the enzyme, etc.

Anti-HIV Agents↗

ATP binding cassette multidrug transporters limit the anti-HIV activity of zidovudine and indinavir in infected human macrophages.

OBJECTIVES: To investigate whether P-glycoprotein (P-gp) and multidrug resistance proteins (MRPs), which limit the bioavailability of HIV protease inhibitors (PIs) and nucleoside reverse transcriptase inhibitors (NRTIs), modulate the anti-HIV activity of NRTIs, non-NRTIs and PIs in vitro. DESIGN: We used primary cultures of major HIV target cells: human monocyte-derived macrophages (MDMs) and lymphocytes. METHODS: P-gp and MRP expression in response to long-term zidovudine (3'-azido-3'-deoxythymidine; AZT) or indinavir treatment was quantified by RT-PCR. MDM and lymphocytes were infected in vitro with HIV-1/Ba-L and HIV-1-LAI, respectively, and treated with antiretroviral drugs. We evaluated the activity of these drugs in combination with PSC833, a P-gp inhibitor, and/or probenecid, an MRP1 inhibitor. Intracellular AZT triphosphate derivative (AZT-TP) was quantified by HPLC-MSMS. P-gp ATPase activity was measured with inside-out native membrane vesicles enriched in P-gp. RESULTS: Levels of MDR1, mrp4 and mrp5 mRNA were high following AZT treatment. In infected MDM, PSC833 and probenecid increased the anti-HIV activity of AZT and indinavir. AZT (5 nM) decreased HIV replication by 34% alone and by 72% in combination with P-gp/MRP inhibitors. Indinavir (10 nM) gave 14% inhibition alone and 81% in combination. The increase in anti-HIV activity of AZT was correlated with an increase in intracellular AZT-TP concentration. However, unlike PIs, neither AZT nor its metabolites interacted with P-gp. CONCLUSION: AZT increases the expression of multidrug transporters, thereby decreasing its pharmacological activity. The cellular efflux of AZT probably involves MRP4 or MRP5. In contrast, increases in indinavir anti-HIV activity require the inhibition of both P-gp and MRP1.

ATP Binding Cassette Transporter, Subfamily B↗

[Options in HIV therapy: present and future].

Highly active antiretroviral therapy (HAART) has markedly decreased HIV-associated mortality. It consists of a combination of three antiretroviral drugs from four different classes: nucleoside reverse transcriptase inhibitors, non-nucleoside reverse transcriptase inhibitors, protease inhibitors and inhibitors of virus-cell fusion. Increasing resistance against antiretroviral drugs calls for the development of new compounds and drug classes. The growing understanding of molecular mechanisms in HIV-replication led to the identification of further steps which might serve as novel antiretroviral targets. Uninfected cells could be protected from HIV by inhibiting extracellular binding mechanisms. Improvement of existing antiretroviral drugs and further development of novel therapeutic targets will enrich antiretroviral treatment.

Anti-Retroviral Agents↗

A rapid phenotypic assay for detecting multiple nucleoside analogue reverse transcriptase inhibitor-resistant HIV-1 in plasma.

Zidovudine and other nucleoside analogue reverse transcriptase inhibitors (NRTIs), like zalcitabine and didanosine used for treatment of individuals infected with HIV-1, can select for viruses with Q151M and other associated mutations (for example, A62V, S68G, V751, F77L, F116Y) in the reverse transcriptase (RT) enzyme. These mutations confer resistance to multiple nucleoside analogues, and thereby compromise the efficacy of this class of drugs. Presently available phenotypic assays for detection of multiple nucleoside analogue resistant (MNR) HIV-1 require testing for each NRTI individually. Here we report an enzymatic RT assay that uses resistance to zidovudine triphosphate (zidovudine-TP) as a diagnostic biochemical marker of MNR HIV-1. This assay exploits the different biochemical mechanisms for zidovudine-resistance conferred by either Q151 M or T215Y/F mutations and the inability of conventional RT assays to detect T215Y/F-associated zidovudine resistance. The assay detects RT activity directly in plasma by using Amp-RT, an ultra-sensitive PCR-based RT assay. We show that enzymatic resistance to zidovudine-TP is specific to MNR RT and is distinguishable from both wild-type (WT) and RT containing classical zidovudine-resistant mutations (D67N, K70R, T215Y/F, K219Q). Compared to WT, MNR HIV-1 RT had 5- to 36-fold increases in the concentration of drug required to inhibit 50% (IC50) of RT activity, depending on the presence of Q151 M alone or with additional MNR mutations. A screening assay utilizing 1 microM zidovudine-TP was developed and validated on 14 reference isolates, 37 plasma specimens, and seven patient-derived viruses. Twenty-three specimens were found to have reduced susceptibility to zidovudine-TP, and all had Q151 M. In contrast, 21 specimens were sensitive to zidovudine-TP, of which 12 had WT genotypes, four had T215Y/F, and five had T69S-insertions along with T215Y/F mutations. This RT-based phenotypic assay provides a specific and rapid tool for the direct identification and monitoring of Q151M-associated MNR HIV-1 in plasma.

Adenosine Monophosphate↗

Structure of HIV-1 reverse transcriptase bound to an inhibitor active against mutant reverse transcriptases resistant to other nonnucleoside inhibitors.

We have determined the crystal structure of the HIV type 1 reverse transcriptase complexed with CP-94,707, a new nonnucleoside reverse transcriptase inhibitor (NNRTI), to 2.8-A resolution. In addition to inhibiting the wild-type enzyme, this compound inhibits mutant enzymes that are resistant to inhibition by nevirapine, efavirenz, and delaviridine. In contrast to other NNRTI complexes where tyrosines 181 and 188 are pointing toward the enzyme active site, the binding pocket in this complex has the tyrosines pointing the opposite direction, as in the unliganded protein structure, to accommodate CP-94,707. This conformation of the pocket has not been observed previously in NNRTI complexes and substantially alters the shape and surface features that are available for interactions with the inhibitor. One ring of CP-94,707 makes extensive stacking interactions with tryptophan 229, one of the few residues in the NNRTI-binding pocket that cannot readily mutate to give rise to drug resistance. In this conformation of the pocket, mutations of tyrosines 181 and 188 are less likely to disrupt inhibitor binding. Modeling the asparagine mutation of lysine 103 shows that a hydrogen bond between it and tyrosine 188 could form as readily in the CP-94,707 complex as it does in the apoenzyme structure, providing an explanation for the activity of this inhibitor against this clinically important mutant.

Benzothiazoles↗

Long-term safety and tolerability of the lamivudine/abacavir combination as components of highly active antiretroviral therapy.

BACKGROUND: Numerous large, long-term clinical trials have assessed the safety and efficacy of the two antiretroviral nucleoside analogs lamivudine and abacavir as components of highly active antiretroviral therapy for the treatment of patients with HIV-1 infection. This analysis pools the safety data on multi-drug regimens containing lamivudine/abacavir in combination with a protease inhibitor, non-nucleoside reverse transcriptase inhibitor, or nucleoside reverse transcriptase inhibitor. METHODS: Data are presented from 2279 treatment-naive HIV-1-infected patients who were enrolled in one of five clinical trials that assessed the safety and tolerability of lamivudine/abacavir in combination with a third antiretroviral agent. The well characterised combination of lamivudine/zidovudine plus efavirenz was used as the comparator arm. All available safety data (including data beyond 48 weeks) were used in all analyses, which included calculation of treatment emergent laboratory values, adverse events (AEs), serious AEs, fatalities, drug discontinuations and any summaries by study week of safety data. RESULTS: In the total lamivudine/abacavir group, 1585 of 2229 (71%) patients experienced at least one drug-related AE during the study compared with 247 of 325 (76%) patients in the lamivudine/zidovudine/efavirenz treatment group. The most common drug-related AEs reported during the study were diarrhoea (19%), nausea (18%) and dizziness (12%) in patients treated with lamivudine/abacavir plus a third agent, and nausea (31%), dizziness (27%) and headache (16%) in the comparator group. Overall, in the total lamivudine/abacavir group there were only three severe (Division of AIDS 1992 toxicity table grade 3 or 4) AEs that were reported in >1% of subjects: drug hypersensitivity, elevated ALT levels and elevated AST levels. In the lamivudine/zidovudine/efavirenz group, six severe AEs that occurred in >1% of the safety population were reported. The abacavir hypersensitivity reaction rate reported in these five studies was comparable with the previously reported rate. In addition, there were no patient fatalities attributed by investigators to the study drugs. CONCLUSION: This analysis indicates that the combination of lamivudine/abacavir is generally safe for the majority of patients when used as part of combination therapy.

Alkynes↗

Antiviral therapy for HIV patients with renal insufficiency.

Patients with HIV infection and HIV-related opportunistic infections are treated extensively with a spectrum of drugs. Introduction of new antiretroviral drugs, such as protease inhibitors and nonnucleoside reverse transcriptase inhibitors in addition to nucleoside reverse transcriptase inhibitors, has created exciting dimensions in treatment strategies. Renal dysfunction is also common in HIV-infected patients. Because some drugs used in HIV are primarily excreted unchanged by the kidney, dose adjustments are necessary in patients with renal insufficiency. Drugs such as foscarnet, cidofovir and adefovir are directly nephrotoxic, whereas acyclovir can crystallize in the kidneys, and indinavir may cause nephrolithiasis. This paper reviews the impact of renal insufficiency on pharmacokinetics of antiviral drugs used in HIV disease and discusses dosage recommendations needed to avoid toxicity. Finally, we summarize the effects of dialysis on removal of these drugs.

AIDS-Related Opportunistic Infections↗

Nephrotoxicity as a complication of antiretroviral therapy.

Since 1984, human immunodeficiency virus-associated nephropathy has been established as a clinical entity that presents with nephrotic syndrome and progressive kidney failure. The pathological description is usually consistent with a collapsing form of focal segmental glomerulosclerosis. Podocytes and renal tubular cells have been proposed as a reservoir for the human immunodeficiency virus. This nephropathy is the third leading cause of end-stage renal disease in the population of African descent. It is documented that highly active antiretroviral therapy (HAART) successfully reverses or at least controls nephropathy in HIV-positive patients. The success of the treatment of HIV nephropathy now poses 2 problems to nephrologists: (1) an increased population of HIV-positive patients with chronic kidney disease not yet on dialysis and (2) potential nephrotoxicity of antiretroviral medications as well as medications used to treat opportunistic infections. HAART is defined by the combination of 2 reverse transcriptase inhibitors with a protease inhibitor or 3 reverse-transcriptase inhibitors. Many of these antiretrovirals have well-defined nephrotoxic effects. The objective of this text is to review data pertaining to some of the most common antiretrovirals (ARTs) and include information regarding nephrotoxicity of the medications frequently used to combat opportunistic infections. ARTs included in the review are (1) nucleoside reverse-transcriptase inhibitors (zidovudine and didanosine), (2) nucleotide reverse transcriptase inhibitors (adefovir and tenofovir), (3) the protease inhibitors (indinavir and saquinavir), and (4) the HIV fusion inhibitors.

Anti-Retroviral Agents↗

Quality assurance program for clinical measurement of antiretrovirals: AIDS clinical trials group proficiency testing program for pediatric and adult pharmacology laboratories.

Clinical trials designed to compare antiretroviral regimens, investigate therapeutic drug monitoring, or measure pharmacometrics often include protease inhibitors (PIs), nonnucleoside reverse transcriptase inhibitors (NNRTIs), and nucleoside reverse transcriptase inhibitors, requiring the measurement of these antiretrovirals in plasma. Within the adult and pediatric AIDS Clinical Trials Group (ACTG), a network of Pharmacology Support Laboratories (PSLs) is a component of the group laboratory infrastructure and conducts these types of pharmacologic assays. The adult ACTG has developed a comprehensive quality assurance program for the conduct of clinical pharmacology protocols, one component of which is the antiretroviral proficiency testing (PT) program that has been implemented between the adult and pediatric pharmacology laboratories of the ACTG. PT testing samples were prepared and distributed in July 2001, February 2002, and July 2002. High, medium, and low concentrations of PIs (indinavir, saquinavir, amprenavir, lopinavir, ritonavir, and nelfinavir) and NNRTIs (nevirapine and efavirenz) were added to drug-free EDTA plasma and distributed, on dry ice, to eight ACTG PSLs. One testing laboratory used liquid chromatography-tandem mass spectrometry, and seven used high-performance liquid chromatography-UV analysis. A result was considered acceptable if it was within 20% deviation of the assigned concentration. For all concentrations of PIs evaluated, 96% of samples tested (430 of 448 measurements) met the acceptance criteria. For both NNRTIs, 100% of samples tested (140 of 140 measurements) met the acceptance criteria. In conclusion, the PT program results presented demonstrate excellent interlaboratory agreement for all antiretrovirals tested and provide support for the merger of plasma concentration data among laboratories for large clinical trials.

Acquired Immunodeficiency Syndrome↗

[A study of initial antiretroviral therapy effectiveness, survival and safety in HIV+ patients].

OBJECTIVE: To study initial antiretroviral therapies indicated for HIV-infected patients during the 2001-2003 period regarding effectiveness, survival and safety. METHOD: A descriptive, retrospective study of clinical and drug-related variables of naïve HIV-infected patients through pharmacotherapeutic history. RESULTS: Mean CD4+ lymphocytes counts were 209.6 cells/mm3. Pneumonia by Pneumocystis carinii was the most commonly found condition at antiretroviral treatment onset. Most commonly used therapies included those based on a non-nucleoside reverse transcriptase inhibitor (NNRTI) combined with two nucleoside reverse transcriptase inhibitors (NRTIs). The longest mean survival was achieved by using combinations of three nucleoside reverse transcriptase inhibitors. The primary reason for initial antiretroviral therapy discontinuation were adverse effects, with stavudine exhibiting the poorest tolerability. CONCLUSIONS: Therapies based on non-nucleoside reverse transcriptase inhibitors and protease inhibitors (PIs) have shown similar effectiveness to increase CD4+ cell counts. Regarding viral load decreases, protease inhibitors were most effective. Therapies using three nucleoside reverse transcriptase inhibitors resulted in peak survival.

Adult↗

Template-competitive inhibitors of HIV-1 reverse transcriptase: design, synthesis and inhibitory activity.

We report the design, synthesis and activity studies on a novel class of template-competitive reverse transcriptase inhibitors (TCRTIs). The TCRTIs are 1,N(6)-etheno analogues of a series of dATP-based template-competitive DNA polymerase inhibitors synthesized in our laboratory (Moore, B. M.; Jalluri, R.; Doughty, M.B. Biochemistry 1996, 35, 11634). Thus, nucleotides 2-(4-azidophenacyl)thio-1,N(6)-etheno-2'-deoxyadenosine 5'-triphosphate 1, the tetrafluoro analogue 2-(4-azido-2,3,5,6-tetrafluorophenacyl)thio-1,N(6)-etheno-2'-deoxyadenosine 5'-triphosphate 2 and its analogues were synthesized by alkylation of 2-thio-1,N(6)-etheno-2'-deoxyadenosine 5'-monophosphate with the corresponding chloro- or bromo-alkyl halides and converted to the triphosphate. Kinetically, nucleotides 1 and 2 are both competitive inhibitors of reverse transcriptase versus template/primer with K(i)'s of 8.0 and 7.4 microM, respectively, and non-competitive inhibitors versus TTP with K(i)'s of 15 and 10 microM, respectively. Nucleotide 3, which differs from 1 only in that it lacks the etheno group, non-complementary nucleotide triphosphates, and related monophosphates and nucleosides, are completely inactive as inhibitors of reverse transcriptase at concentrations up to 1 mM. Photoinactivation of RT by 1 was both time- and concentration-dependent, and protected by template/primer but not by dNTPs. The concentration-dependent inactivation data gave a K(D,app) of 17.2 microM and maximum inactivation of 90%, and radiolabeled [beta, gamma-32P]-1 photoincorporated specifically and covalently into the p66 subunit of RT. Thus the photoinactivation data support our main conclusion from the kinetic data that this class of RT inhibitors are non-substrate and template-competitive.

Binding, Competitive↗

[Development of new enzyme inhibitors for the treatment of AIDS[ ].

Two different approaches can be used to discover new lead structures for further drug design. Till now, de novo drug design, however, has not led to compounds active against HIV. The more classical approach, based on screening programmes, has led to the discovery of three different enzyme inhibitors active against HIV: transition state analogues (protease inhibitors), antimetabolites (azidothymidine and analogues as reverse transcriptase inhibitors), and TIBO and its congeners (reversible reverse transcriptase inhibitors).

Acquired Immunodeficiency Syndrome↗