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Biomedical subjects

M Finegold

Publications and source records attributed to M Finegold.

At least 55 records · Page 3Linked to original sources

Development of a clinical protocol for hepatic gene transfer: lessons learned in preclinical studies.

Strategies for hepatic gene therapy have been proposed that involve isolation of primary hepatocytes and introduction of recombinant genes into these cells in culture, followed by autologous hepatocellular transplantation (HCT). Consideration of clinical applications requires data suggesting that HCT can be performed safely in human subjects in addition to data indicating that recombinant gene expression can reverse a disease process. This report describes preclinical studies that underlie a clinical trial of HCT in which hepatocytes would be labeled with a marker gene to facilitate assessment of engraftment in the recipient. Human hepatocytes were harvested from liver segments preserved in Belzar's solution and transduced with an amphotropic retroviral vector carrying a recombinant marker gene (neomycin phosphotransferase II). Human hepatocytes were recovered from monolayer culture, stained with the fluorescent dye 1,1'-dioctadecyl-3,3,3,3'-tetra-methylindo-carbocyanine perchlorate (DiI) and transplanted into severe combined immunodeficient mice by splenic injection. Engrafted hepatocytes were identified in the liver and spleen of severe combined immunodeficient mice but not immunocompetent controls. Two large animal models of HCT are described. In a dog model, neomycin phosphotransferase II-containing hepatocytes were identified in the liver 7 wk after transplantation. In a baboon model, autologous HCT with DiI-stained cells demonstrated that transplanted cells assume a normal morphology and constitute up to 5% of hepatocytes. These data demonstrate transduction and transplantation of human hepatocytes and the feasibility of HCT in large animals. On the basis of these studies, the proposed clinical trial for gene transfer and transplantation in human subjects has been approved by the National Institutes of Health and the Food and Drug Administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The human osteocalcin promoter directs bone-specific vitamin D-regulatable gene expression in transgenic mice.

Osteocalcin is a major noncollagenous protein of bone regulated by 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] and is believed to be expressed only by differentiated osteoblasts. We introduced a 3.9-kilobase human osteocalcin gene promoter (hOCP)-chloramphenicol acetyltransferase (CAT) fusion gene into the germ line of mice. Examination of tissue extracts from these transgenic mice demonstrated that the expression of CAT was restricted to bone-associated tissues and the brain. Immunohistochemical staining of femur tissue sections using CAT antibodies localized the production of CAT protein to osteoblasts and maturing chondrocytes. Previous studies via transient transfection into osteoblast-like cells have identified a vitamin D response element approximately 500 basepairs up-stream of the hOCP capable of mediating 1,25-(OH)2D3 induction. As a consequence, regulation of the transgene was examined in homozygous transgenic lines for sensitivity to 1,25-(OH)2D3. Hormonal deficiency was created using a low calcium diet supplemented with 0.8% SrCl2 for 7 days and was restored in experimental mice by injection of 25 ng 1,25-(OH)2D3/day, ip, for 3 days. The low vitamin D3 diet decreased CAT activity several-fold in extracts from calvaria, femur, and brain compared to that in mice maintained on a normal diet, while 1,25-(OH)2D3 supplementation restored and enhanced CAT activity over control values. These data demonstrate that hOCP is sufficient to direct osteoblast-specific 1,25-(OH)2D3-sensitive gene expression in mice in addition to the unexpected regulatable expression in brain tissue.

Animals↗

Expression of human alpha 1-antitrypsin in dogs after autologous transplantation of retroviral transduced hepatocytes.

The liver represents an excellent organ for gene therapy since many genetic disorders result from the deficiency of liver-specific gene products. We have previously demonstrated that transgenic mouse hepatocytes can be heterologously transplanted into congenic recipients where they survived indefinitely and continued to function as hepatocytes. Here we demonstrate the autologous transplantation of retrovirally transduced canine hepatocytes. At least 1 x 10(9) hepatocytes or 5% of the liver mass can be transplanted by the portal vasculature. In two animals we have transplanted hepatocytes transduced with a retroviral vector containing the human alpha 1-antitrypsin cDNA under transcriptional control of the cytomegalovirus promoter. Both animals had significant human alpha 1-antitrypsin in the serum for 1 month. Although the serum levels of human alpha 1-antitrypsin eventually fell due to inactivation of the cytomegalovirus promoter, PCR analysis demonstrated that a significant fraction of transduced hepatocytes migrated to the liver and continued to survive in vivo. The results suggest that gene therapy of hepatic deficiencies may be achieved by hepatocellular transplantation after genetic reconstitution with the use of promoters of cellular genes that are active in the normal liver.

Animals↗

Chemotherapy can convert unresectable hepatoblastoma.

The surgical evaluation and management of children with hepatoblastoma has changed with recent advances in imaging modalities and preoperative chemotherapy. Pediatric Oncology Group (POG) Study no. 8697 has followed 63 patients with hepatoblastoma from 1986 to 1991. Twenty-six patients underwent primary tumor resection followed by chemotherapy consisting of cisplatin, vincristine, and 5-fluorouracil (group I). Thirty-seven patients with "unresectable" tumors received preoperative chemotherapy. Twenty-nine of these patients responded to chemotherapy and 26 underwent delayed surgical resection (group II). Eight patients had an inadequate response to chemotherapy; two have had successful liver transplantation and six are dead of disease progression. "Unresectable tumor" involved both liver lobes (25 patients), encased the inferior vena cava (2), involved adjacent tissues (1), involved the hepatic veins (2), or was deemed too large for safe resection (7). Two patients had distant metastases. The reason for an unresectable designation was not reported in five patients. The determination for an unresectable designation included exploratory laparotomy in 14 patients, angiogram in 7, computed tomography scan in 20, and magnetic resonance imaging in 3 patients. Operative times and transfusion requirements were similar in both groups. Perioperative complications were higher in patients in group II. There was no mortality and only minor morbidity associated with chemotherapy in each group. In both groups 77% of the patients are in complete remission after 13 to 54 months. Preoperative chemotherapy can allow successful resection of initially "unresectable" hepatoblastoma. Primary resection that may result in exsanguination should be postponed and chemotherapy given.

Antineoplastic Combined Chemotherapy Protocols↗

Hepatic gene therapy: persistent expression of human alpha 1-antitrypsin in mice after direct gene delivery in vivo.

The liver represents an excellent target organ for gene therapy. The current strategy for hepatic gene therapy involves the isolation of primary hepatocytes from a resected liver lobe, transduction of therapeutic genes in vitro followed by autologous hepatocellular transplantation. This ex vivo approach is a rather complex procedure in its entirety; thus, a simple method for direct gene delivery into hepatocytes in vivo has been developed. The procedure involves partial hepatectomy followed by the portal vein infusion of recombinant retroviral vectors. Histological analysis of hepatocytes after in vivo delivery of a recombinant retrovirus bearing the E. coli beta-galactosidase gene showed that 1-2% of the parenchymal cells were transduced. Direct hepatic transfer of human alpha 1-antitrypsin cDNA under the transcriptional direction of the albumin promoter-enhancer led to constitutive expression of the human protein in the sera of recipients at concentrations of 30-1,400 ng/ml for at least 6 months. The experimental animals showed no signs of illness and histologic analysis of the liver revealed no evidence of pathologic abnormalities. The results suggest that the in vivo approach is an attractive alternative for hepatic gene therapy.

Albumins↗

The use of DiI-marked hepatocytes to demonstrate orthotopic, intrahepatic engraftment following hepatocellular transplantation.

A novel method is described for marking primary hepatocytes with the fluorescent dye DiI prior to hepatocellular transplantation and identifying these cells within the hepatic parenchyma of recipient animals by fluorescence microscopy and flow cytometry. Optimal conditions are described for marking cells with DiI in suspension or in monolayer cultures prior to transplantation. DiI is shown to be nontoxic to hepatocytes and not to be exchanged between adjacent cells in vitro. Histological analysis of transplanted tissues shows DiI staining of engrafted hepatocytes and phagocytotic cells (Kupffer cells). This analysis shows that hepatocytes engraft within the hepatic parenchyma and exhibit a histological appearance indistinguishable from normal by conventional hematoxylin and eosin staining. Many previous reports of hepatocellular transplantation have been limited by their inability to unequivocally identify transplanted cells within the liver. These data illustrate the importance of having specific markers for transplanted cells that engraft in an orthotopic location and assume a normal morphological appearance.

Animals↗

DiI as a marker for cellular transplantation into solid organs.

Research in cellular transplantation is frequently compromised by an inability to identify transplanted cells engrafting into orthotopic sites if they exhibit normal morphology and no unique antigenic markers. A method is described for using the fluorescent dye DiI as a marker for cell transplantation studies. This dye is not metabolized or exchanged between cells in vitro or in vivo and enables identification of engrafted cells by fluorescence microscopy, flow cytometry or fluorescence-activated cell sorting. Applications are described in autologous hepatocellular and thyroid follicular cell transplantation.

Animals↗

Mouse hepatocytes migrate to liver parenchyma and function indefinitely after intrasplenic transplantation.

One approach to gene therapy for hepatic diseases is to remove hepatocytes from an affected individual, genetically alter them in vitro, and reimplant them into a receptive locus. Although returning hepatocytes to the liver itself would be advantageous, the feasibility of this approach has never been evaluated due to the inability to distinguish donor from host hepatocytes. To unambiguously identify transplanted hepatocytes after transplantation, and to better quantitate their number and degree of liver function, two transgenic mouse lines were generated in a C57BL/6 background. The first expresses the Escherichia coli beta-galactosidase gene from the relatively liver-specific human alpha 1-antitrypsin (hAAT) promoter and allows transgenic hepatocytes to be readily identified after 5-bromo-4-chloro-3-indolyl beta-D-galactoside staining; the second produces the hAAT protein under control of the same promoter, which enables hepatocyte survival and maintenance of liver function to be quantitated by measuring the serum levels of hAAT. Hepatocytes isolated from transgenic donors were transplanted into nontransgenic C57BL/6 recipients by intrasplenic injection. Surprisingly, a large fraction of these cells were identified within the liver parenchyma but not the spleen at 2 months after transplantation. The high levels of serum hAAT detected in transplant recipients were stable for greater than 6 months, suggesting that established cells will survive indefinitely. These results have important implications for liver organogenesis and hepatic gene therapy.

Animals↗

Splanchnic bed vascular malformations and the development of portal hypertension.

The vascular lesions, angiomas, and arteriovenous malformations are known to be associated with a number of complications. These lesions, when present in the liver, may precipitate heart failure in infants. Recent reports suggest that although the prognosis is good for the majority of infants who survive the neonatal period, the lesions are capable of causing portal hypertension later in life. We have encountered three patients whose vascular lesions were in continuity with the portal circulation who subsequently went on to develop portal hypertension. One patient had angiomas of the liver, one splenic and colonic angiomas, and the third had diffuse arteriovenous malformations of the intestine. Data are presented and literature is reviewed, which suggest that any vascular lesion that is capable of substantially increasing portal blood flow may lead to the development of portal hypertension. The treatment of such lesions should be aggressive. If surgical management is not possible, alternative treatments such as embolization should be attempted early in order to increase the chance for successful therapy.

Arteriovenous Malformations↗

Guide to early diagnosis of biliary obstruction in infancy. Review of 143 cases.

Presenting characteristics, long-term outcome, and techniques used in the diagnosis of 143 infants with suspected biliary obstruction are reviewed. Sixty-nine patients had surgically confirmed extrahepatic disease and 74 had intrahepatic disorders. A disproportionate number of infants with intrahepatic disease were boys (p = 0.013), low birthweight (p = 0.001), or had siblings with liver disease (p = 0.017). An initial total bilirubin of 20 mg/dl or greater was rare except in the intrahepatic disease category of neonatal hepatitis of known cause (p = 0.006). The initial percutaneous liver biopsy correctly predicted the ultimate diagnosis in 94 percent of all 143 patients. A methodological outline to diagnosis is presented, emphasizing early recognition of symptoms and careful follow-up with hepatobiliary imaging, liver biopsy, and surgical exploration, if required, until definitive diagnosis is made. This approach has aided us in reducing the age of diagnosis of biliary atresia from 12.8 +/- SD 7.3 weeks during the period 1971 through 1979 to 6.8 +/- SD 2.6 weeks from 1980 to 1982 (p = 0.0015). Eighteen-month survival has improved from 25 to 60 percent.

Bile Ducts↗

Epicardial cryoablation of the bundle of His. An experimental study.

An extracardiac, transepicardial approach to the atrioventricular junction, allowing selective cryoablation of the bundle of His, was performed in 10 mongrel dogs. This technique appears to minimize dissection complications, the risk of endocardial damage, and injury to the tricuspid valve, which are reported with endocardial cryoablation. All dogs survived this experiment, and no morbidity was reported. Cryodestruction of the atrioventricular junction is histologically selective and permanent, as was shown at the 3 month follow-up pathological examination.

Animals↗

Malignant cardiac myxoma with cerebral metastases.

Two cases of cardiac myxoma with secondary involvement of the brain and death are reported. In one case, tumor emboli to the middle cerebral artery caused massive cerebral infarction, while in the other case true cerebral metastasis developed in the cerebrum and cerebellum, with rapid demise ensuing in both patients. It is emphasized that an emergency exists in cases ihat prompt echocardiography and computerized tomography of the brain are indicated. The second case represents the only instance of cardiac myxoma behaving as a true malignant neoplasm with actual invasion of the neural tissues recorded in the literature.

Brain Neoplasms↗