Hapten-enhanced chemoimmunotherapy by ultra-minimum incision personalized intratumoral chemoimmunotherapy
Embodiments disclosed herein provide methods for treating neoplasm in a mammal, comprising intratumorally administering to the neoplasm an effective amount of a pharmaceutical composition comprising: a hapten; and a redox agent, whereby the neoplasm is treated.
1. A method for treating neoplasm in a mammal, comprising multiple treatments, wherein each treatment comprises intratumorally administering to the neoplasm an effective amount of a pharmaceutical composition comprising:
a redox agent;
a hapten; and
at least two chemotherapeutic agents,
wherein a different hapten is used in each treatment, and
wherein a first treatment uses 2,4-dinitrophenol (DNP) as a first hapten, a second treatment uses Benzylpenicillin as a second hapten, a third treatment uses Procainamide Hydrochloride as a third hapten, and a fourth treatment uses Hydralazine Hydrochloride as a fourth hapten.
2. The method of claim 1 , wherein the haptens of the multiple treatments are selected from the group consisting of 2,4-dinitrophenol (DNP), Benzylpenicillin, Procainamide Hydrochloride, Hydralazine Hydrochloride, Quinidine, Levamisole Hydrochloride, Inosine Pranobex, Aluminium Hydroxide, trinitrophenol (TNP), N-iodoacetyl-N′-(5-sulfonic 1-naphtyl)ethylene diamine (AED), and dinitrofluorobenzene (DNFB).
3. The method of claim 1 , wherein the redox agent is selected from the group consisting of hydrogen peroxide (H 2 O 2 ), stannous chloride (SnCl 2 ), stannous sulfate (SnSO 3 ), stannous oxide (SnO), stannic oxide (SnO 2 ), sodium stannate (Na 2 SnO 3 ), sodium stannite (Na 2 SnO 2 ), stannous chloride (SnCl 2 ), stannic chloride (SnCl 4 ), thiostannate (SnS 3 ), and stannous sulfide (SnS), carbamide peroxide.
4. The method of claim 1 , wherein the at least two chemotherapeutic agents are selected from the group consisting of Mechiorethamine, Cyclophosphamide, Melphalan (L-sarcolysin), Chlorambucil, Hexamethylmelanine, Thiotepa, Busulfan, Carmustine (BCNU), Lomustine (CCNU), Semustine (methyl-CCNU), Streptozocin (streptozotocin), Dacarbazine (DTIC; dimethyltriazenoi-midazole-carboxamide), Methotrexate (amethopterin), Fluorouacil (5-fluorouracil; 5-FU), Floxuridine (fluorode-oxyuridine; FUdR), Cytarabine (cytosine arabinoside, or Ara-C), Mercaptopurine (6-mercaptopurine; 6-MP), Thioguanine (6-thioguanine; TG), Pentostatin (2′-deoxycoformycin), Vinblastine (VLB), Vincristine, Etoposide, Dactinomycin, Daunombicin, Daunomycin, Doxorubicin, Bleomycin, Plicamycin (mithramycin), Mitomycin (mitomycin C), L-Asparaginase, Interferon-alfa, Cisplatin (cis-DDP), Carboplatin, Mitoxantrone, Hydroxyurea, Procarbazine, Mitotane (o,p′-DDD), Prednisone, Hydroxyprogesterone caproate, Medroxyprogesterone acetate, Megestrol acetate, Diethylstilbestrol, Ethinyl estradiol, Tamoxifen, Testosterone propionate, Fluoxymesterone, Flutamide, and Leuprolide.
5. The method of claim 1 , wherein the multiple treatments are conducted at weekly intervals.
6. The method of claim 1 , wherein at least 2 treatments are conducted.
7. The method of claim 1 , wherein the survival rate of the patients with multiple treatments is improved in comparison to the survival rate of the patients with single treatment.
8. The method of claim 1 , wherein the mean survival of the patients with multiple treatments is improved in comparison to the mean survival of the patients with single treatment.
9. The method of claim 1 , comprising forced distribution of the pharmaceutical composition in the neoplasm.
10. The method of claim 9 , wherein the pharmaceutical composition is administered to the neoplasm using a high pressure syringe that is powered at about 4 AMP to about 6 AMP.
11. The method of claim 1 , wherein the pharmaceutical composition is distributed throughout the matrix of the whole tumor.
12. The method of claim 1 , wherein the neoplasm to be treated is selected from the group consisting of adrenal gland, anus, bile ducts, bladder, bone, breast, buccal, cervix, colon, ear, endometrium, esophagus, eyelids, fallopian tube, gastrointestinal tract, head and neck, heart, kidney, larynx, liver, lung, mandible, mandibular condyle, maxilla, mouth, nasopharynx, nose, oral cavity, ovary, pancreas, parotid gland, penis, pinna, pituitary, prostate gland, rectum, retina, salivary glands, skin, small intestine, stomach, testes, thyroid, tonsil, urethra, uterus, vagina, and vulva.
13. The method of claim 1 , wherein the neoplasm to be treated is solid tumor larger than 10 8 cells.
14. The method of claim 1 , wherein the neoplasm is induced into necrosis or is induced into fibrosis.
15. The method of claim 1 , further comprising administering an immune response potentiator to the neoplasm, and wherein the immune response potentiator is selected from the group consisting of Bacille Calmette-Guerin (BCG); Corynebacterium Parvum; Brucella abortus extract; glucan; levamisole; tilorone; an enzyme selected from the group consisting of Vibrio cholera neuramidase (VCN), Papain, β-Gal and ConA; a non-virulent Newcastle virus; and a polysaccharide selected from the group consisting of sizofuran (SPG), schizophyllan, mannan, lentinan, Su-polysaccharide (Su-Ps) and mannozym.
16. The method of claim 1 , whereby an immune response is generated against the neoplasm and the immune response comprises is a humoral or cellular immune response.
17. The method of claim 1 , wherein the at least two chemotherapeutic agents are Cytarabine (cytosine arabinoside, or Ara-C) and Daunomycin.