Introduction Hyaluronan (HA) accumulates in the tumour microenvironment (TME) of many solid tumours and has been associated with tumour progression and negative clinical outcomes. Pegvorhyaluronidase alfa (PEGPH20, P) is a novel biologic that enzymatically degrades HA. In preclinical models, P-mediated enzymatic degradation of HA is associated with decreased tumour interstitial fluid pressure, increased tumour perfusion, and increased access and anti-tumour efficacy of cytotoxic and immunotherapies. As pancreatic ductal adenocarcinoma (PDA) has been identified as a cancer type that accumulates high levels of HA, here we evaluated whether P alters the activity of the cytotoxic components of FOLFIRINOX (FFX), a common therapeutic regimen for advanced PDA, on human and murine PDA cells. We also evaluated p+FFX in vivo anti–tumour activity in BxPC3/HAS3, a HA accumulating human PDA model. Material and methods For in vitro experiments, fluorouracil, irinotecan and oxaliplatin were evaluated individually and in combination in both 2D culture and 3D tumour spheroids. For in-vivo evaluation, mice were inoculated with BxPC3/HAS3 cells adjacent to the right tibial periosteum and tumour growth was monitored via ultrasonography. When tumours reached ~230 mm3, mice (n=8/group) were staged into treatment groups: 1) vehicle; 2) 0.0375 mg/kg P BIW; 3) low FFX - 30 mg/kg leucovorin, 15 mg/kg fluorouracil, 30 mg/kg irinotecan, and 1.2 mg/kg oxaliplatin QW; 4) high FFX - 65 mg/kg leucovorin, 32.5 mg/kg fluorouracil, 65 mg/kg irinotecan, and 2.6 mg/kg oxaliplatin QW; 5) p+low FFX; and 6) p+high FFX. FFX was administered 24 hour after P. Results and discussions PDA cells were more sensitive to chemotherapy treatment in 2D than 3D culture. The TME-modifying enzyme P did not show an effect on chemotherapy sensitivity, whether tested as individual or combined cytotoxics. In the BxPC3/HAS3 model, P increased the anti-tumour efficacy of low FFX 4-fold (56.3% vs. 11.3% tumour growth inhibition [TGI], respectively) and extended median survival time (MST) by >36% (32d vs. 23.5d, respectively), whereas P increased the efficacy of high FFX by 61% (64.3% vs. 39.8% TGI, respectively) and extended MST by 12.5% (36d vs. 32d, respectively). A maximum 5% BW loss was observed following the initial FFX dose. Conclusion Taken together, the results suggest that P does not affect the cytotoxic activity of FFX components on PDA cells in culture, and that P-mediated HA degradation improves the anti-tumour efficacy of FFX (especially suboptimal doses) in a preclinical PDA model.
Hyaluronan (hyaluronic acid, HA), a glycosaminoglycan found in tissue throughout the body, overaccumulates in the tumor microenvironment (TME) of many non-hematologic malignancies, including breast cancer. HA overaccumulation in breast cancer patients correlates with tumor progression and decreased survival (Tammi 2008). Pegylated recombinant human hyaluronidase PH20 (PEGPH20), an investigational therapeutic agent entering Phase 3 clinical development in pancreatic cancer, enzymatically removes HA from the TME. In preclinical animal models, PEGPH20-mediated HA degradation is associated with remodeling of the tumor stroma, reduction of tumor pressure, expansion of tumor blood vessels and facilitated delivery of chemotherapy (Thompson 2010, Provenzano 2012, Jacobetz 2013). Accordingly, preclinical studies investigated the combination of PEGPH20 with eribulin mesylate (ERI, HALAVEN®), a microtubule dynamics inhibitor with a novel mechanism of action (Towle 2001, Jordan 2005), currently approved for treatment of certain patients with advanced breast cancer. NCr nu/nu mice were inoculated subcutaneously with human triple-negative breast cancer (TNBC) HCC1806 or HCC1806/HAS3 cells; the latter subline was engineered to accumulate high HA levels, confirmed by immunohistochemistry, via overexpression of hyaluronan synthase 3 (HAS3). When tumors reached ∼350 mm 3 , animals were randomly assigned to four treatments groups: vehicle, ERI (0.7 mg/kg, IV, QW), PEGPH20 (37.5 µg/kg, IV, BIW), or ERI plus PEGPH20. In the parental HCC1806 model, addition of PEGPH20 did not significantly change the antitumor effects of ERI. In contrast, combining PEGPH20 with ERI in the HCC1806/HAS3 model increased the antitumor effects of ERI by 27% (94.5% vs. 119.7% TGI, ERI alone vs. ERI+PEGPH20, respectively; p=0.05) and resulted in 6 of 7 complete tumor regressions. In a complementary study in HCC1806/HAS3 tumors evaluating ERI pharmacokinetics with and without PEGPH20, mice were assigned to three treatments groups: ERI (0.5 mg/kg, IV), simultaneous ERI plus PEGPH20 (37.5 µg/kg, IV); or ERI plus PEGPH20 predosed 24 h prior to ERI. Animals were sacrificed at 0.5, 1, 4, 24, 48, 72 and 96 h post ERI dose, and ERI levels in tumor, muscle, plasma and liver were subsequently analyzed by liquid/liquid extraction and LC-MS/MS chromatography. Simultaneous administration of ERI and PEGPH20 increased ERI maximum tumor concentration (Cmax) slightly and approximately doubled ERI tumor exposure (AUC); whereas the 24 h pretreatment with PEGPH20 approximately doubled ERI Cmax and increased ERI AUC more than two-fold. No significant differences in plasma ERI levels were observed between groups, and no significant differences in ERI levels in liver or muscle tissue were observed between groups. Taken together, these data suggest that PEGPH20-mediated HA removal significantly increases both ERI tumor concentrations and antitumor effectiveness in an HA-high TNBC model. A clinical phase 1b/2 clinical trial is planned to evaluate PEGPH20 plus ERI in first-line HER2-negative metastatic breast cancer. Citation Format: Bahn JD, DesJardins C, Condon KB, Fathallah A, Zimmerman S, Maneval DC, Littlefield BA, Thompson CB. Pegylated recombinant human hyaluronidase PH20 (PEGPH20) enhances efficacy of eribulin mesylate (HALAVEN®) in triple negative breast cancer xenografts. [abstract]. In: Proceedings of the Thirty-Eighth Annual CTRC-AACR San Antonio Breast Cancer Symposium: 2015 Dec 8-12; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2016;76(4 Suppl):Abstract nr P1-03-09.
Abstract Hyaluronan (hyaluronic acid, HA), a glycosaminoglycan found in tissue throughout the body, overaccumulates in the tumor microenvironment (TME) of many non-hematologic malignancies, including breast cancer. HA overaccumulation in breast cancer patients correlates with tumor progression and decreased survival (Tammi 2008). Pegylated recombinant human hyaluronidase PH20 (PEGPH20), an investigational therapeutic agent entering Phase 3 clinical development in pancreatic cancer, enzymatically removes HA from the TME. In preclinical animal models, PEGPH20-mediated HA degradation is associated with remodeling of the tumor stroma, reduction of tumor pressure, expansion of tumor blood vessels and facilitated delivery of chemotherapy (Thompson 2010, Provenzano 2012, Jacobetz 2013). Accordingly, preclinical studies investigated the combination of PEGPH20 with eribulin mesylate (ERI, HALAVEN®), a microtubule dynamics inhibitor with a novel mechanism of action (Towle 2001, Jordan 2005), currently approved for treatment of certain patients with advanced breast cancer. NCr nu/nu mice were inoculated subcutaneously with human triple-negative breast cancer (TNBC) HCC1806 or HCC1806/HAS3 cells; the latter subline was engineered to accumulate high HA levels, confirmed by immunohistochemistry, via overexpression of hyaluronan synthase 3 (HAS3). When tumors reached ∼350 mm3, animals were randomly assigned to four treatments groups: vehicle, ERI (0.7 mg/kg, IV, QW), PEGPH20 (37.5 µg/kg, IV, BIW), or ERI plus PEGPH20. In the parental HCC1806 model, addition of PEGPH20 did not significantly change the antitumor effects of ERI. In contrast, combining PEGPH20 with ERI in the HCC1806/HAS3 model increased the antitumor effects of ERI by 27% (94.5% vs. 119.7% TGI, ERI alone vs. ERI+PEGPH20, respectively; p=0.05) and resulted in 6 of 7 complete tumor regressions. In a complementary study in HCC1806/HAS3 tumors evaluating ERI pharmacokinetics with and without PEGPH20, mice were assigned to three treatments groups: ERI (0.5 mg/kg, IV), simultaneous ERI plus PEGPH20 (37.5 µg/kg, IV); or ERI plus PEGPH20 predosed 24 h prior to ERI. Animals were sacrificed at 0.5, 1, 4, 24, 48, 72 and 96 h post ERI dose, and ERI levels in tumor, muscle, plasma and liver were subsequently analyzed by liquid/liquid extraction and LC-MS/MS chromatography. Simultaneous administration of ERI and PEGPH20 increased ERI maximum tumor concentration (Cmax) slightly and approximately doubled ERI tumor exposure (AUC); whereas the 24 h pretreatment with PEGPH20 approximately doubled ERI Cmax and increased ERI AUC more than two-fold. No significant differences in plasma ERI levels were observed between groups, and no significant differences in ERI levels in liver or muscle tissue were observed between groups. Taken together, these data suggest that PEGPH20-mediated HA removal significantly increases both ERI tumor concentrations and antitumor effectiveness in an HA-high TNBC model. A clinical phase 1b/2 clinical trial is planned to evaluate PEGPH20 plus ERI in first-line HER2-negative metastatic breast cancer. Citation Format: Bahn JD, DesJardins C, Condon KB, Fathallah A, Zimmerman S, Maneval DC, Littlefield BA, Thompson CB. Pegylated recombinant human hyaluronidase PH20 (PEGPH20) enhances efficacy of eribulin mesylate (HALAVEN®) in triple negative breast cancer xenografts. [abstract]. In: Proceedings of the Thirty-Eighth Annual CTRC-AACR San Antonio Breast Cancer Symposium: 2015 Dec 8-12; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2016;76(4 Suppl):Abstract nr P1-03-09.
The biology of the human epidermal growth factor (EGF) receptor-2 (HER2) has been reviewed numerous times and provides an excellent example for developing a targeted cancer therapeutic. Herceptin, the FDA-approved therapeutic monoclonal antibody against HER2, has been used to treat over 150,000 women with breast cancer. However, the developmental history of Herceptin, the key events within the program that created pivotal decision points, and the reasons why decisions were made to pursue the monoclonal antibody approach have never been adequately described. The history of Herceptin is reviewed in a way which allows the experience to be shared for the purposes of understanding the drug discovery and development process. It is the objective of this review to describe the pivotal events and explain why critical decisions were made that resulted in the first therapeutic to successfully target tyrosine kinases in cancer. New approaches and future prospects for therapeutics targeting the HER family are also discussed.
Intravesical administration of interferon alpha-2b protein (IFN) has been successfully used in the treatment of patients with superficial bladder tumors. Local dosing of IFN minimizes well-known systemic side effects of the drug, but exposure to bladder tumors is limited by the duration of instillation and transient concentrations achieved in the urothelium. Intravesical delivery of the gene encoding interferon results in an alternative strategy for IFN-based therapy of the disease, enabling sustained exposure of IFN protein that results from production by tumor and non-tumor cells in the urothelium. Efficient gene delivery and expression of IFN has been achieved using a recombinant adenovirus gene delivery system (rAd-IFN) in conjunction with the novel small molecule excipient Syn3. Studies with rAd-IFN/Syn3 in animal models result in urine concentrations of IFN that persisted for weeks and correlated with potent anti-tumor effects. The objective of this review is to communicate the rationale and preclinical findings that support ongoing clinical investigation of intravesical rAd-IFN/Syn3 in superficial bladder cancer.
OBJECTIVES:To evaluate whether a recombinant replication-deficient adenovirus containing the secreted human interferon alpha-2b gene (rAd-IFN) could improve the tissue and urine levels of IFN protein by transducing the urothelium with the secreted human IFN-alpha gene. We also assessed whether varying the interval between rAd-IFN/Syn3 treatments would improve the duration and levels of gene expression.METHODS:The rats received intravesical administration of rAd-IFN at varying concentrations in a formulation containing Syn3, an agent identified that facilitates passage of the adenovirus through the protective barrier of the bladder. Urine was collected daily for 7 days, and human IFN was measured in the urine by enzyme-linked immunosorbent assay. For the redosing studies, the animals received a second dose at varying intervals ranging from 1 to 7 days after the first dose or at longer intervals (30, 60, or 90 days).RESULTS:Rats that received intravesical administration of rAd-IFN in a Syn3 formulation expressed levels of human IFN protein in their urine at peak concentrations of 50,000 to 100,000 pg/mL, but were undetectable by 7 days. Expression was localized to the bladder with only minimal systemic exposure to IFN. Short-term redosing marginally improved the IFN urine concentrations, with maximal levels achieved when a second dose was administered 3 days after a first dose. Although gene expression was attenuated when a second dose was given 5 to 7 days after the first treatment, the levels and duration of IFN expression recovered when the interval was increased to 90 days.CONCLUSIONS:Intravesical treatment with rAd-IFN facilitates high levels of IFN transgene exposure and may be a new approach to treating superficial bladder cancer.
Purpose: The purpose of this study was to assess the impact of anti-adenovirus neutralizing antibodies (AdNAbs) on the distribution, tolerability, and efficacy of intravenously administered oncolytic adenovirus. A translational model was developed to evaluate the impact of Immoral immunity on intravenous administration of oncolytic adenovirus in humans.Experimental Design: Initially, severe combined immunodeficient (SCID)/beige mice were passively immunized with various amounts of human sera to establish a condition of preexisting humoral immunity similar to humans. A replication-deficient adenovirus encoding beta-galactosidase (rAd-betagal) was injected intravenously into these mice. An AdNAb titer that mitigated galactosidase transgene expression was determined. A xenograft tumor-bearing nude mouse model was developed to assess how a similar in vivo titer would impact the activity of 01/PEME, an oncolytic adenovirus, after intravenous administration.Results: In SCID/beige mice, there was a dose dependence between AdNAbs and galactosidase transgene expression; 90% of transgene expression was inhibited when the titer was 80. A similar titer reconstituted in the nude mice with human serum, as was done in the SCID/beige mice, did not abrogate the antitumor efficacy of the replicating adenovirus after intravenous administration. Viral DNA increased in tumors over time.Conclusions: In intravenous administration, preexisting AdNAb titer of 80 significantly attenuated the activity of a 2.5 X 10(12) particles per kilogram dose of nonreplicating adenovirus; the same titer had no affect on the activity of an equivalent dose of replicating adenovirus. Our results suggest that a majority of patients with preexisting adenovirus immunity would be candidates for intravenous administration of oncolytic adenovirus.
We have produced prolonged, high local concentrations of interferon in vivo by intravesical instillation of adenoviruses encoding interferon-alpha (Ad-IFNalpha) together with the gene transfer-enhancing agent Syn3. We found sustained interferon protein levels for days, both in normal mouse urothelium and in human bladder cancer cells growing as superficial bladder tumors in nude mice using an orthotopic bladder model developed by us. Tumor burden in the bladder was determined utilizing cancer cells containing the green fluorescent protein. Marked tumor regression was observed following two 1-h exposures of Ad-IFNalpha/Syn3 and little or no cytotoxicity was detected in normal cells. Similar intravesical instillation of clinically relevant concentrations of IFN protein alone or Ad-IFNalpha without Syn3 was ineffective. Surprisingly, in vitro, Ad-IFNalpha also caused caspase-dependent death of bladder cancer cell lines that were resistant to high concentrations of IFN-alpha protein, including the cell line used in vivo. These findings demonstrate that Ad-IFNalpha can overcome resistance to IFN-alpha protein both in vitro and in vivo and support evaluation of intravesical Ad-IFNalpha/Syn3 for the treatment of superficial bladder cancer.
Glaucoma is a blinding eye disease characterized by elevated intraocular pressure (IOP). Glaucoma filtration surgery (GFS) is designed to reduce IOP, but wound healing responses to the procedure can result in surgical failure. Anti-metabolites used in conjunction with GFS are commonly employed to control the wound healing response, but have unwanted side effects. This review describes the therapeutic potential of ocular gene therapy using an adenovirus vector containing the human p21WAF-1/Cip-1 gene (rAd-p21) to control unwanted wound healing post-GFS. Here, we summarize encouraging preclinical data in relevant models, and propose rAd-p21 gene therapy as an alternative to the currently used methods of wound healing modulation.
We conducted a series of experiments to determine if intraperitoneal (IP) delivery of recombinant adenovirus (rAd)-based therapies is improved through carrier vehicle selection, and compared an icodextrin solution (a high molecular weight dextrin with a prolonged peritoneal cavity residence time) with a standardized phosphate buffered saline (PBS) delivery solution. In vitro, comparative adenovirus particle concentration determination (27h) and bioactivity assay (24h) indicated equivalent compatibility with icodextrin or PBS. In vivo, rabbits treated IP (100 ml) with rAd-betagal 1 x 10(9) P/ml in icodextrin showed improved transgene expression throughout the peritoneal wall compared to rAd-betagal in PBS. In PC-3 tumor-bearing mice treated IP with 5 x 10(9) P/0.5ml or 1 x 10(10) P/0.5 ml rAd-betagal, transgene expression was significantly enhanced (p < 0.01) with icodextrin compared to PBS in both tumor specimens and peritoneal wall. In subsequent studies we compared prolongation of survival in intraperitoneal PC-3 and MDAH-2774 human xenograft tumor models in nude mice using rAd-p53 in icodextrin or PBS in multi-dose ranging (1 x 10(8) to 1 x 10(10) P) experiments. The icodextrin formulation alone significantly increased rAd-p53 mediated survival (p < 0.05). In animals, these results show that IP rAd gene therapy can be improved with the use of icodextrin, and suggest that prolonged retention and distribution in the peritoneal cavity is an important factor.
PURPOSE: To study safety, feasibility, and biologic activity of adenovirus-mediated p53 gene transfer in patients with bladder cancer. PATIENTS AND METHODS: Twelve patients with histologically confirmed bladder cancer scheduled for cystectomy were treated on day 1 with a single intratumoral injection of SCH 58500 (rAd/p53) at cystoscopy at one dose level (7.5 × 1011 particles) or a single intravesical instillation of SCH 58500 with a transduction-enhancing agent (Big CHAP) at three dose levels (7.5 × 1011 to 7.5 × 1013 particles). Cystectomies were performed in 11 patients on day 3, and transgene expression, vector distribution, and biologic markers of transgene activity were assessed by molecular and immunohistochemical methods in tumors and normal bladder samples. RESULTS: Specific transgene expression was detected in tissues from seven of eight assessable patients treated with intravesical instillation of SCH 58500 but in none of three assessable patients treated with intratumoral injection of SCH 58500. Induction of RNA and protein expression of the p53 target gene p21/WAF1 was demonstrated in samples from patients treated with SCH 58500 instillation at higher dose levels. Distribution studies after intravesical instillation of SCH 58500 revealed both high transduction efficacy and vector penetration throughout the whole urothelium and into submucosal tumor cells. No dose-limiting toxicity was observed, and side effects were local and of transient nature. CONCLUSION: Intravesical instillation of SCH 58500 combined with a transduction-enhancing agent is safe, feasible, and biologically active in patients with bladder cancer. Studies to evaluate the clinical efficacy of this treatment in patients with localized high-risk bladder cancer are warranted.
Adenovirus-mediated gene therapy of bladder diseases has been limited by the inability to transduce the urothelium successfully using adenoviral vectors. We have sought to identify agents that would increase adenovirus-mediated transgene expression in the bladder. We have utilized a rat model to screen compounds for their ability to enhance viral transgene expression in the rat bladder. Rats received intravesical administration of replication-deficient adenovirus (rAd) formulated in various agents, and transgene expression was evaluated after 48 h by determining the amount of lacZ expression in the luminal epithelium of the bladder. We report the identification of two different polyamides, each capable of dramatically increasing viral transgene expression in the bladder without causing detectable alteration of the umbrella cell layer of the urothelium. We have utilized a carcinogen-induced rat bladder tumor model to demonstrate that these polyamides are also capable of enhancing viral transgene expression in tumor tissue. The identification of these polyamides potentiates the use of adenovirus-mediated gene therapy for the treatment of superficial bladder cancer or other bladder diseases.