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Optimizing cardiovascular gene therapy: increased vascular gene transfer with modified adenoviral vectors.

BACKGROUND: Adenovirus is widely used as a vector for gene transfer to the vasculature. However, the efficiency of these vectors can be limited by ineffective viral-target cell interactions. Viral attachment, which largely determines adenoviral tropism, is mediated through binding of the adenoviral fiber coat protein to the Coxsackievirus and adenovirus receptor, while internalization follows binding of the adenoviral RGD motif to alpha(v)-integrin receptors. Modifications of the fiber coat protein sequence have been successful for targeting the adenovirus to more prevalent receptors in the vasculature, including heparan sulfate-containing receptors and alpha(v)-integrin receptors. HYPOTHESIS: Modified adenoviral vectors targeted to receptors more prevalent in the vasculature result in an increased transfer efficiency of the virus in vitro and in vivo even in the presence of clinically relevant doses of heparin. DESIGN: We tested 2 modified E1- and E3-deleted Ad5 type adenoviral vectors containing the beta-galactosidase gene. AdZ.F(pK7) contains multiple positively charged lysines in the fiber coat protein that target the adenovirus to heparan sulfate receptors, while AdZ.F(RGD) contains an RGD integrin-binding sequence in the fiber coat protein that allows binding to alpha(v)-integrin receptors. The gene transfer efficiency of these modified viruses was compared in rat aortic smooth muscle cells in vitro and in an in vivo porcine model of balloon-induced arterial injury. Because of the use of heparin during most vascular surgical procedures and the concern that heparin might interfere with the binding of AdZ.F(pK7) to heparan sulfate receptors, the effect of heparin on the in vitro and in vivo transfer efficiency of these 2 modified adenoviruses was evaluated. RESULTS: In vitro infection of rat aortic smooth muscle cells with AdZ.F(pK7) and AdZ.F(RGD) resulted in significantly higher levels of beta-galactosidase expression compared with the unmodified adenovirus (mean +/- SEM, 1766.3 +/- 89.1 and 44.8 +/- 3.4 vs 10.1 +/- 0.7 mU per milligram of protein; P<.001). Following heparin administration, the gene transfer efficiency achieved with AdZ.F(pK7) diminished slightly in a concentration-dependent manner. However, the transfer efficiency was still greater than with the unmodified virus (mean +/- SEM, 1342.3 +/- 101.8 vs 4.8 +/- 0.4 mU per milligram of protein; P<.001). In vivo, following injury to the pig iliac artery with a 4F Fogarty balloon catheter, we found that AdZ.F(pK7) transduced the artery approximately 35-fold more efficiently than AdZ.F and 3-fold more efficiently than AdZ.F(RGD) following the administration of intravenous heparin, 100 U/kg body weight, and heparinized saline irrigation. CONCLUSIONS: Modifications of the adenovirus that lead to receptor targeting resulted in significantly improved gene transfer efficiencies. These improvements in transfer efficiencies observed with the modified vectors decreased slightly in the presence of heparin. However, AdZ.F(pK7) was still superior to AdZ.F(RGD) and AdZ.F despite heparin administration. These data demonstrate that modifications of adenoviral vectors that enhance binding to heparan sulfate receptors significantly improve gene transfer efficiency even in the presence of heparin and suggest an approach to optimize gene transfer into blood vessels.

Adenoviridae↗

The Millikan modified mesh-plug hernioplasty.

HYPOTHESIS: A modified technique for mesh-plug hernioplasty is a safe and efficacious option for primary unilateral inguinal herniorrhaphy. DESIGN: Prospective analysis of 1056 patients who underwent primary unilateral inguinal hernioplasty. SETTING: A private university medical center. PATIENTS: One thousand twenty-five men and 31 women (mean age, 49 years) with primary unilateral inguinal hernias that were surgically repaired between May 1, 1997, and November 1, 2001. INTERVENTION: We performed a modified technique using a mesh plug and local anesthesia with intravenous sedation. The modified technique consisted of placing the mesh plug into the preperitoneal space and suture fixation of the plug using the inner petals. MAIN OUTCOME MEASURES: Surgical morbidity, hernia recurrence, postoperative pain medication used, and return to normal activities. RESULTS: We included 642 indirect and 414 direct hernias. Mean operative time was 25 minutes; mean recovery room time, 45 minutes. All procedures were performed as outpatient surgery. One thousand thirteen patients (95.9%) returned to normal activities within 3 days. All manual laborers returned to work on postoperative day 14. Only 169 patients (16.0%) required prescription pain medication. At 1-year follow-up, 1045 patients (99.0%) have been examined, and 1 recurrence (0.1%) has been detected. No mesh infection has occurred, and 19 hematomas spontaneously resolved. Five patients (0.5%) required treatment for persistent postoperative pain. CONCLUSIONS: The modified mesh-plug hernioplasty uses a minimum of medical resources and is associated with a small amount of postoperative pain and an early return to normal activities and manual labor with a minimal documented early recurrence rate. The Millikan modified mesh-plug hernioplasty should be adopted as the gold standard for unilateral primary inguinal hernioplasty.

Adolescent↗

Modified histologic grading of neuroblastomas by replacement of mitotic rate with mitosis karyorrhexis index. A clinicopathologic study of 223 cases from the Pediatric Oncology Group.

BACKGROUND: Histologic grading (HG) of neuroblastomas (NB) of prognostic significance is based on the presence of absence of calcification and low mitotic rate ( < or = 10/10 high power fields). Mitosis karyorrhexis Index (MKI) is the main feature used for prognostic categorization in Shimada classification and can be determined more readily than mitotic rate (MR). The purpose of this study is to test whether MKI can be used instead of MR for histologic grading. METHODS: Low and intermediate MKI were lumped together as low MKI. We replaced MR with the modified MKI categories. Histologic grades for 223 NBs registered with the Pediatric Oncology Group protocols 8104 and 8441, were defined ad follows: HG 1 = calcification + low MKI, HG 2 = calcification or low MKI, HG 3 = high MKI and absence of calcification. Shimada classification was also determined for comparison or modified HGs with favorable histology (FH) and unfavorable histology (UH), HGs were linked with age: low risk (LR) = HG 1 in all age groups + HG 2 in patients age younger than 1 year; high risk (HR) = HG 2 in patients age 1 year of older + HG 3 in all age groups. RESULTS: Statistically significant differences in 5-year survival were seen in the NBs of different modified HG (1: 92.7%, 2: 74.9%, and 3: 18.2%) and risk groups (LR 93.0% and HR 47.9%) (P < 0.0001 and P = 0.0001, respectively). CONCLUSIONS: Pathologists may readily adapt to the modified HG described here. Advantages of modified HGs include: (1) familiarity and reproducibility of MKI; (2) no need for linkage with age; and (3) a combination of features used in original HGs and Shimada classification.

Child↗

Modified LDLs are internalized by macrophages in part via macropinocytosis.

Macrophage foam cell formation in vitro requires uptake of modified low density lipoproteins (LDL) such as acetylated LDL (AcLDL) and moderately oxidized LDL (OxLDL). Macrophages incubated with AcLDL and OxLDL, but not LDL, showed increased membrane ruffling as seen with time-lapse phase contrast video light microscopy. Modified LDLs stimulated circular membrane ruffles between 2 and 10 min after incubation. These membrane ruffles were readsorbed into the plasma membrane between 5 and 15 min later. Phase-bright macropinosomes formed at the base of the stimulated membrane ruffles. The fluid-phase marker lucifer yellow labeled the modified LDL stimulated macropinosomes. Modified LDLs stimulate fluid-phase uptake by 1.5-fold to threefold as measured with 14C-sucrose uptake. Transmission electron microscopy showed that gold conjugated AcLDL and OxLDL bound preferentially to membrane ruffles and were present in macropinosomes (diameter >0.2 pm) underneath these membrane ruffles. AcLDL and OxLDL were also present in clathrin-coated pits and endosomes. These studies suggest that modified lipoproteins stimulate macropinocytosis. AcLDL and OxLDL are partially internalized by macropinocytosis and partially internalized via clathrin-coated pit endocytosis.

Animals↗

Poly(ethylene glycol)-modified ligninase enhances pentachlorophenol biodegradation in water-solvent mixtures

Polychlorinated hydrocarbons are prevalent environmental contaminants whose rates of biodegradation are limited by their minimal solubilities in aqueous solutions where the biological reactions take place. In this study, ligninase (LiP) from Phanerochaete chrysosporium was modified by poly(ethylene glycol) to enhance its activity and stability for the biodegradation of pentachlorophenol (PCP) in the presence of acetonitrile (MeCN), a water-miscible solvent. The modified enzyme retained 100% of its activity in aqueous solutions and showed enhanced tolerance against the organic solvent. The activity of the modified enzyme was found to be over twice that of the native enzyme in the presence of 10% (v/v) MeCN. The solubility of PCP was enhanced significantly by the addition of MeCN to aqueous solutions, such that it was over 10-fold more soluble in the presence of 15% (v/v) MeCN than in pure aqueous buffer solution (from 0.06 to 0.65 mM). Capitalizing on the enhanced substrate solubility and the increased activity of the modified enzyme, the catalytic efficiency of the modified LiP in solutions containing 15% MeCN was over 11-fold higher than that of the native enzyme in buffer solutions (pH 4.2) in unoptimized reactor systems (from 44 to 480 mol PCP/mol LiP.h). Continued research both in the use of organic solvents to increase the availability of recalcitrant contaminants and in the modification of enzymes to enhance their activity and stability in such solvents promises to dramatically affect our ability to remediate contaminated sites. Published by John Wiley & Sons.

Journal Article↗

Blood and tissue compatibility of modified polyester: thrombosis, inflammation, and healing.

Poly(ethylene terephthalate) (PET) has been reported in literature to be moderately inflammatory and thrombogenic. To moderate the inflammatory response, PET fabric was surface modified by either Fluoropassiv fluoropolymer (FC), or an RGD-containing peptide (RGD). Samples were subsequently autoclave sterilized and implanted subcutaneously in Sprague Dawley rats for 2 to 4 weeks. Retrieved samples were evaluated histopathologically for indications of material toxicity and healing. Minimal acute or chronic inflammation was associated with the fabrics after 2 and 4 week implant duration. However, fibroblast proliferation into FC modified fabric (PET/FC) was less than that into unmodified (PET) and RGD modified fabric (PET/RGD) after 4 weeks, suggesting that FC modification of PET may inhibit excessive tissue growth. Additional samples of modified and unmodified fabrics were placed in stainless steel mesh cages, which were then implanted subcutaneously for 4 weeks. Cellular exudate was extracted weekly and cell concentrations within the exudate measured. Total leukocyte count (TLC) (reflective of local inflammation) at 1 week for PET/RGD was greater than that for PET/FC and PET. TLCs after 4 week implant decreased for all sample groups. In a separate experiment, PET vascular grafts surface modified by either FC or RGD were contacted 1 h with blood using the baboon arteriovenous (AV) shunt model of thrombosis in both the presence and absence of heparin. Accumulation of 111In labeled platelets (reflective of thrombus accumulation) upon grafts was less in the presence of heparin (effect significant at p = 1.2 x 10(-6), two-way ANOVA). Accumulation (in the presence of heparin) upon PET/RGD was less (p = 0.19), and upon PET/FC significantly less (p = 0.016) than that upon the unmodified PET control, suggesting that FC modification of PET may inhibit thrombus accumulation.

Animals↗

Apatite formation on ethylene-vinyl alcohol copolymer modified with silanol groups.

The surfaces of ethylene-vinyl alcohol copolymer (EVOH) substrates were modified with silanol (Si-OH) groups, and their apatite forming ability was examined in a simulated body fluid (SBF) with ion concentrations nearly equal to those of human blood plasma or in a solution with ion concentrations 1.5 times those of SBF (1.5SBF). The surface modification of EVOH was carried out by reacting 3-isocyanatopropyltriethoxysilane, followed by hydrolysis of the ethoxysilyl groups into Si-OH groups. However, no apatite formation was observed on the EVOH substrate thus modified, even after 3 weeks in SBF and 1.5SBF. The Si-OH modified EVOH substrate was further modified by hydrolysis and polycondensation of tetraethyoxysilane (TEOS). It was found that the apatite forms on the TEOS-modified substrate within 3 weeks in 1.5SBF. These results suggest that the presence of a large amount of Si-OH groups (i.e., a cluster of Si-OH groups) on the substrate is prerequisite to apatite formation in the body environment. Apatite-EVOH composites prepared by this process might be useful as hard tissues substitutes.

Apatites↗

Effect of surface modifiers on the electrode reactions and conformation of cytochrome c3 adsorbed on a silver electrode.

Surface-enhanced resonance Raman scattering and electroreflectance voltammetry were used to investigate the effect of electrode surface modification on the structure and redox properties of cytochrome c3 immobilized on Ag surfaces. It is shown that the redox reactions of cytochrome c3 are more reversible at an 11-mercaptoundecanoic acid modified Ag electrode as compared to a bare metal surface. The heme of cytochrome c3 is in a mixed low and high spin state when adsorbed at the bare electrode, whereas only the low spin form is present on the 11-mercaptoundecanoic acid modified electrode, suggesting that the native conformation is maintained in the latter case. The reduction potential is close to that of the most positive macroscopic potential as determined by electroreflectance spectroscopy. In contrast, the reduction potential as determined by SERRS undergoes a large positive shift in the presence of 4,4'-bipyridine, the magnitude of which is dependent upon the concentration of 4,4'-bipyridine. These results indicate that the effect of the cytochrome c3 interaction with the 4,4'-bipyridine-modified surface is significantly different as compared to its interaction with the 11-mercaptoundecaodoic acid modified surface. Moreover, the results emphasize that electrode modifiers can have dramatically different effects on the redox properties of different proteins. It is well known that 4,4'-bipyridine acts as a redox promoter in the case of cytochrome c, whereas no electrochemical or electroreflectance response was observed in the case of cytochrome c3.

Adsorption↗

The modified WAIS: an alternative to short forms.

The Modified WAIS is an approach for shortening the total administration time of the WAIS by approximately 25%. The Modified WAIS uses the Information subtest as a criterion for raising the point at which initial questioning begins on 5 of the 11 subscales. The Modified WAIS was shown to correlate quite highly with the Standard WAIS: .999 for Verbal, Performance, and Full Scale IQ (N = 200). While the number of cases for which the Modified WAIS is applicable will vary from setting to setting depending on the number of cases that meet the criterion, the Modified WAIS appears to be a viable alternative to short forms.

Adolescent↗

Enantioselective hydrogenation over cinchona-modified Pt: the special role of carboxylic acids.

The influence of acetic acid (AcOH) and trifluoroacetic acid (TFA) on the hydrogenation of ethyl-4,4,4-trifluoroacetoacetate has been investigated by using Pt/Al(2)O(3) modified by cinchonidine and O-methylcinchonidine. We have shown that the sometimes dramatic changes in enantioselectivity and rate cannot simply be interpreted by protonation of the alkaloid modifier. We propose a new three-step reaction pathway, involving interaction of the carboxylic acid with the reactant and the chiral modifier. The mechanism is supported by IR spectroscopic identification of cyclic TFA-modifier ion pairs. This new approach can rationalise the poorly understood role of acids in the enantioselective hydrogenation of activated ketones over cinchona-modified platinum metals.

Journal Article↗

Autoantibody recognition of distinctly modified forms of the U1-70-kd antigen is associated with different clinical disease manifestations.

OBJECTIVE: To examine whether autoantibody recognition of modified forms of the U1-70-kd RNP antigen correlates with manifestations of rheumatic disease. METHODS: Blinded to clinical disease manifestations, sera from 27 rheumatic disease patients with U1-70-kd antibodies were used to immunoblot control, apoptotic, and oxidatively modified HeLa cell lysates. Using densitometry, recognition of antigen fragments was quantitated. The presence or absence of 1) lupus skin disease and 2) Raynaud's phenomenon (RP) was determined for each patient by chart review. The ability of patient sera to recognize the different fragments was compared for patients with and without skin disease and with and without RP. RESULTS: Patients with lupus skin disease had higher recognition of apoptotic U1-70 kd than did patients without skin disease (mean +/- SD fragment recognition index [FRI] 1.35 +/- 0.57 versus 0.95 +/- 0.25; P < 0.024, by Student's t-test). Patients with RP had higher recognition of oxidatively modified U1-70 kd than did patients without RP (mean +/- SD FRI 0.95 +/- 0.80 versus 0.24 +/- 0.22; P < 0.048). CONCLUSION: Recognition of apoptotically and oxidatively modified forms of the U1-70-kd autoantigen are associated with distinct clinical rheumatic disease manifestations. This finding provides in vivo evidence for the hypothesis that immune recognition of modified forms of self antigens may be relevant to the pathogenesis of systemic rheumatic diseases. Understanding the antigenic modifications to which patients react may help predict the expression of rheumatic syndromes.

Antigens↗

Genetics of hearing loss: Allelism and modifier genes produce a phenotypic continuum.

Recent genetic and genomic studies have greatly advanced our knowledge of the structure and function of genes involved in hearing loss. We are starting to recognize, however, that many of these genes do not appear to follow traditional Mendelian expression patterns and are subject to the effects of allelism and modifier genes. This review presents two genes illustrative of this concept that have varied expression pattern such that they may produce either syndromic or nonsyndromic hearing loss. One of these genes, cadherin 23, produces a spectrum of phenotypic traits, including presbycusis, nonsyndromic prelingual hearing loss (DFNB12), and syndromic hearing loss as part of Usher syndrome (Usher 1D). Missense mutations in CDH23 have been associated with presbycusis and DFNB12, whereas null alleles cause the majority of Usher 1D. Modifier gene products that interact with cadherin 23 also affect the phenotypic spectrum. Similarly, allelsim in the gene encoding wolframin (WFS1) causes either a nonsyndromic dominant low-frequency hearing loss (DFNA6/14/38) or Wolfram syndrome. Missense mutations within a defined region are associated with DFNA6/14/38, while more severe mutations spanning WFS1 are found in Wolfram syndrome patients. The phenotypic spectrum of Wolfram syndrome is also hypothesized to be influenced by modifier genes products. These studies provide increasing evidence for the importance of modifier genes in elucidating the functional pathways of primary hearing loss genes. Characterizing modifier genes may result in better treatment options for patients with hearing loss and define new diagnostic and therapeutic targets.

Animals↗

Immune responses to hapten-modified self and their regulation in normal individuals and patients with systemic lupus erythematosus.

Purified T cells from normal subjects and patients with systemic lupus erythematosus (SLE) were studied for their abilities to respond to hapten modified self antigens and to antigens on autologous non T cells. Primary and secondary proliferative T cell responses to trinitrophenyl modified (TNP) non T cells were markedly impaired in patients with active SLE as compared with normal subjects or patients with inactive SLE. In contrast, patients with active SLE had significantly stronger cytotoxic activity against TNP modified autologous non T cells. Patients with active SLE had impaired proliferative responses to nonmodified autologous non T cells (auto-MLR). A significant negative correlation was observed between the degree of the auto-MLR and the degree of cytotoxic ability against TNP modified autologous cells in patients with SLE. This observation suggests that cells capable of proliferating in the auto-MLR might regulate the generation of cytotoxic T cell responses against modified self. We then analyzed the ability of anti T cell antibodies from patients with active SLE to preferentially interfere with this naturally occurring suppressor T cell function.

Antigens↗

Capture and release of DNA using aminosilane-modified bacterial magnetic particles for automated detection system of single nucleotide polymorphisms.

Bacterial magnetic particles (BMPs) were modified with 3-[2-(2-aminoethylamino)-ethylamino]-propyltrimethoxysilane (AEEA) to produce a dense amine surface. Modification of BMPs in a toluene solution resulted in an increased amine yield, and approximately 11.3 x 10(4) surface amines were detected on a single particle. The modified BMPs were capable of efficient electrostatic capture of DNA. The maximum amount of DNA captured on 10 microg of aminosilane-modified BMPs was 600 ng. A 10 mM phosphate buffer effectively released the captured DNA. This efficiency was dramatically enhanced by incubation at 80 degrees C and DNA recovery from aminosilane-modified BMPs approached 95%. DNA extraction from whole blood using these modified BMPs, followed by PCR, was successfully performed. Furthermore, automated single nucleotide polymorphism (SNP) detection of the aldehyde dehydrogenase 2 (ALDH2) was demonstrated.

Bacterial Proteins↗

Quick aspiration cytology for thyroid nodules by modified Ultrafast Papanicolaou staining.

Quick cytologic diagnosis by Ultrafast Papanicolaou stain (Ultrafast stain) is useful in various neoplastic diseases; however, it has a significant drawback in that the ground-glass appearance of nuclei is a preparation artifact in some specimens from thyroid aspirations. To eliminate this artifact, the nucleus was stained with Gill-5 Hematoxylin (modified Ultrafast stain) rather than with Richard-Allan Hematoxylin 2 in Ultrafast stain. The applicability of this modified Ultrafast stain for quick diagnosis of thyroid diseases was investigated. Two specimens from each of 251 thyroid aspirations (122 malignant and 131 benign) were prepared using the modified Ultrafast stain and the standard Papanicolaou stain. The sensitivities of cytologic diagnosis in specimens stained by the standard Papanicolaou method and the modified Ultrafast method were 95.0% and 93.3%, respectively, and the specificities were 99.2% and 97.7%, respectively. The modified Ultrafast stain is a reliable procedure for quick diagnosis in thyroid aspiration cytology.

Artifacts↗

Effect of organic modifier on resolution of hydrophobic compounds by micellar electrokinetic chromatography.

Three organic modifiers, methanol, acetonitrile, and dimethylformamide, were used as organic modifiers to improve the resolution of hydrophobic compounds in micellar electrokinetic chromatography. The capacity factor decreased with increasing concentration of organic modifier. Acetonitrile and dimethylformamide were more effective modifiers to decrease the capacity factor than methanol. Maximum resolution was obtained when the capacity factor was reduced to about 2. Methanol enhanced the resolution for less hydrophobic compounds, while acetonitrile and dimethylformamide were better modifiers to improve the resolution for strongly hydrophobic compounds.

Acetonitriles↗

Radical, modified, and selective neck dissection for cutaneous malignant melanoma.

BACKGROUND: The roles of modified and selective neck dissections in treating patients with clinical metastatic melanoma and the place of adjuvant radiotherapy are unclear. In the elective setting, the efficacy of various selective dissections also requires clarification. METHODS: The prospectively documented experience of the senior author (COB) was analyzed. A total of 175 patients had 183 neck dissections and 92 parotidectomies in 6 years. There were 75 therapeutic and 108 elective operations. Modified or selective neck dissections were performed in 58% of patients with clinical neck metastases. Ali but two elective operations were modified or selective dissections. Postoperative radiotherapy was given to 27 dissected necks. Minimum follow-up was 12 months, and 86% of patients were followed up for 2 years or to neck recurrence. RESULTS: Nodes were histologically positive in 80 dissections. The cumulative rate of control of metastatic melanoma in the neck was 86% at 5 years. Neck recurrence developed in 14% of radical dissections, 0% of modified, and 23% of selective dissections performed for clinical disease. Neck recurrence occurred after 5% of elective dissections. Recurrence was 7% among irradiated necks compared to 23% in nonirradiated (p-value not significant). The 5-year survival rate was 50%, and this was significantly worsened by increasing node involvement. CONCLUSIONS: Modified radical neck dissection is highly effective in controlling metastatic melanoma in selected patients. Selective dissections are less effective and need further study. Adjuvant radiotherapy appears to decrease the risk of neck recurrence. In the elective setting, recurrence is uncommon following the selective neck dissections described.

Adolescent↗

A novel approach for modifying tumor cell-derived plasma membrane vesicles to contain encapsulated IL-2 and engrafted costimulatory molecules for use in tumor immunotherapy.

The genetic modification of tumor cells and delivery of cytokines have been proposed as useful strategies in the development of anti-tumor vaccines; however, a number of factors limit their use in clinical settings. To facilitate vaccine development, we explored the possibility of modifying plasma membrane vesicles (PMV) by using a novel chelator lipid, nitrilotriacetic acid ditetradecylamine (NTA-DTDA). Our analyses by flow cytometry show that NTA-DTDA can be incorporated into PMV prepared from murine P815 mastocytoma and that the incorporated NTA-DTDA permits anchoring or "engraftment" onto the vesicle surface of hexahistidine-tagged proteins such as recombinant forms of the costimulatory molecules B7.1 and CD40. The engrafted PMV also can incorporate and deliver the immunostimulatory cytokine Interleukin-2 (IL-2). Our results show that modified PMV derived from P815 cells bind the murine T cell clone D10 in a receptor-ligand dependent manner, inducing cell adhesion and promoting cell survival in vitro. The modified PMV can bind syngeneic T cells, stimulating T cell proliferation and cytotoxic T cell responses. Moreover, when used as vaccines in syngeneic animals, the modified vesicles induce significant protection against challenge with the native P815 tumor. The results indicate that PMV modified by engraftment of recombinant forms of B7.1 and CD40 and incorporation of IL-2 can be used to modulate immune responses, which provides a novel approach for the development of anti-tumor vaccines and cancer immunotherapies.

Animals↗