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1.
Clin Pract Cases Emerg Med ; 2(4): 320-322, 2018 Nov.
Article in English | MEDLINE | ID: mdl-30443616

ABSTRACT

A young woman presented to the emergency department with lethargy, hemodynamic instability, and diffuse abdominal tenderness. On point-of-care ultrasound (PoCUS), she was found to have intraperitoneal free fluid and a large pelvic mass, which were discovered intraoperatively to be hemoperitoneum due to ruptured vessels of a uterine leiomyoma. Although rare, a life-threatening, ruptured leiomyoma may be treated surgically if recognized in an expedient fashion. A PoCUS can aid the emergency clinician in prompt diagnosis.

2.
Toxicol Appl Pharmacol ; 268(3): 318-30, 2013 May 01.
Article in English | MEDLINE | ID: mdl-23403069

ABSTRACT

Adenoviral vectors (Ads) are promising gene delivery vehicles due to their high transduction efficiency; however, their clinical usefulness has been hampered by their immunogenicity and the presence of anti-Ad immunity in humans. We reported the efficacy of a gene therapy approach for glioma consisting of intratumoral injection of Ads encoding conditionally cytotoxic herpes simplex type 1 thymidine kinase (Ad-TK) and the immunostimulatory cytokine fms-like tyrosine kinase ligand 3 (Ad-Flt3L). Herein, we report the biodistribution, efficacy, and neurological and systemic effects of a bicistronic high-capacity Ad, i.e., HC-Ad-TK/TetOn-Flt3L. HC-Ads elicit sustained transgene expression, even in the presence of anti-Ad immunity, and can encode large therapeutic cassettes, including regulatory elements to enable turning gene expression "on" or "off" according to clinical need. The inclusion of two therapeutic transgenes within a single vector enables a reduction of the total vector load without adversely impacting efficacy. Because clinically the vectors will be delivered into the surgical cavity, normal regions of the brain parenchyma are likely to be transduced. Thus, we assessed any potential toxicities elicited by escalating doses of HC-Ad-TK/TetOn-Flt3L (1×10(8), 1×10(9), or 1×10(10) viral particles [vp]) delivered into the rat brain parenchyma. We assessed neuropathology, biodistribution, transgene expression, systemic toxicity, and behavioral impact at acute and chronic time points. The results indicate that doses up to 1×10(9) vp of HC-Ad-TK/TetOn-Flt3L can be safely delivered into the normal rat brain and underpin further developments for its implementation in a phase I clinical trial for glioma.


Subject(s)
Brain Neoplasms/drug therapy , Clinical Trials, Phase I as Topic/methods , Cytotoxins/administration & dosage , Genetic Therapy/methods , Genetic Vectors/administration & dosage , Glioblastoma/drug therapy , Immunization/methods , Adenoviridae/metabolism , Animals , Brain Neoplasms/genetics , Brain Neoplasms/metabolism , Cytotoxins/adverse effects , Cytotoxins/metabolism , Drug Evaluation, Preclinical/methods , Drug Therapy, Combination , Genetic Therapy/adverse effects , Genetic Vectors/adverse effects , Genetic Vectors/metabolism , Glioblastoma/genetics , Glioblastoma/metabolism , Humans , Male , Rats , Rats, Inbred Lew , Tissue Distribution/drug effects , Tissue Distribution/physiology , Treatment Outcome
3.
Hum Gene Ther Methods ; 23(4): 271-84, 2012 Aug.
Article in English | MEDLINE | ID: mdl-22950971

ABSTRACT

Adenoviral vectors (Ads) have been evaluated in clinical trials for glioma. However, systemic immunity against the vectors can hamper therapeutic efficacy. We demonstrated that combined immunostimulation and cytotoxic gene therapy provides long-term survival in preclinical glioma models. Because helper-dependent high-capacity Ads (HC-Ads) elicit sustained transgene expression, in the presence of antiadenoviral immunity, we engineered HC-Ads encoding conditional cytotoxic herpes simplex type 1 thymidine kinase and immunostimulatory cytokine Fms-like tyrosine kinase ligand-3 under the control of the TetOn system. Escalating doses of combined HC-Ads (1×10(8), 1×10(9), and 1×10(10) viral particles [VP]) were delivered into the rat brain. We assessed neuropathology, biodistribution, transgene expression, systemic toxicity, and behavioral impact at acute and chronic time points after vector delivery. Histopathological analysis did not reveal any evidence of toxicity or long-term inflammation at the lower doses tested. Vector genomes were restricted to the injection site. Serum chemistry did not uncover adverse systemic side effects at any of the doses tested. Taken together, our data indicate that doses of up to 1×10(9) VP of each HC-Ad can be safely administered into the normal brain. This comprehensive toxicity and biodistribution study will lay the foundations for implementation of a phase 1 clinical trial for GBM using HC-Ads.


Subject(s)
Adenoviridae/genetics , Brain/metabolism , Genetic Vectors/metabolism , Animals , Behavior, Animal/drug effects , Blood Chemical Analysis , Brain/drug effects , Brain/pathology , Clinical Trials, Phase I as Topic , Disease Models, Animal , Genetic Vectors/genetics , Genetic Vectors/toxicity , Glioma/therapy , Herpesvirus 1, Human/enzymology , Humans , Male , Rats , Rats, Inbred Lew , Thymidine Kinase/genetics , Tissue Distribution , Transduction, Genetic , fms-Like Tyrosine Kinase 3/genetics
4.
Mol Ther ; 19(10): 1793-801, 2011 Oct.
Article in English | MEDLINE | ID: mdl-21505426

ABSTRACT

Glioblastoma multiforme (GBM) is a primary brain tumor with a median survival of 14.6 months postdiagnosis. The infiltrative nature of GBM prevents complete resection and residual brain tumor cells give rise to recurrent GBM, a hallmark of this disease. Recurrent GBMs are known to harbor numerous mutations/gene rearrangements when compared to the primary tumor, which leads to the potential expression of novel proteins that could serve as tumor neoantigens. We have developed a combined immune-based gene therapeutic approach for GBM using adenoviral (Ads) mediated gene delivery of Herpes Simplex Virus Type 1-thymidine kinase (TK) into the tumor mass to induce tumor cells' death combined with an adenovirus expressing fms-like tyrosine kinase 3 ligand (Flt3L) to recruit dendritic cells (DCs) into the tumor microenvironment. This leads to the induction of specific anti-brain tumor immunity and immunological memory. In a model of GBM recurrence, we demonstrate that Flt3L/TK mediated immunological memory is capable of recognizing brain tumor neoantigens absent from the original treated tumor. These data demonstrate that the Flt3L/TK gene therapeutic approach can induce systemic immunological memory capable of recognizing a brain tumor neoantigen in a model of recurrent GBM.


Subject(s)
Antigens, Neoplasm/immunology , Brain Neoplasms/therapy , Genetic Therapy , Glioblastoma/therapy , Thymidine Kinase/genetics , fms-Like Tyrosine Kinase 3/genetics , Brain Neoplasms/immunology , Brain Neoplasms/pathology , Cell Line, Tumor , Glioblastoma/immunology , Glioblastoma/pathology , Humans , Immunologic Memory , Interferon-gamma/metabolism , T-Lymphocytes/immunology
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